Thermostructural composite materials: From space to advanced fission applications. EUROMAT 2005
|
|
|
- Georgiana Morgan
- 9 years ago
- Views:
Transcription
1 Thermostructural composite materials: From space to advanced fission applications. EUROMAT 005 Authors: I. Berdoyes, J. Thebault Snecma Propulsion Solide (SAFRANGroup) Les cinq Chemins Le Haillan France Abstract: Materials improvement is one of the key factors for designing advanced solid rocket motor nozzles and for increasing missile vehicles performances. Those applications require materials with good resistance to high temperatures, to oxidant environments and to mechanical stresses. Then, specific carbon-carbon composites materials have been developed for about thirty-five years at Snecma Propulsion Solide. Because of their strong thermal and mechanical performances, these composite materials are named at Snecma Propulsion Solide thermostructural composite materials. The aim was to find replacement materials to tungsten, pyrographites and polycristallin graphites. Due to the extreme variety of carbon fibers, fibrous reinforcements and densification processes, these carbon/carbon composites materials, constitute a very wide range of materials, with mechanical and thermal characteristics depending on components and processes choice. The thermostructural C/C materials range is branded as Sepcarb. Because of the carbon-carbon sensibility to oxidation, ceramic matrix have been developed since the end of the seventies to substitute silicon carbide matrix for carbon matrix and perform long life materials withstanding high thermal fluxes and mechanical loads under oxidation environment. These thermostructural carbon/ silicon carbide composites materials are called Sepcarb-inox. The other step is with ceramic fiber, and the material is called Cerasep. These composites, custom-made in accordance to technical requirements and working conditions, have found industrial applications, for example for engine flaps, thermal treatment facilities and experimental nuclear fusion reactors. Snecma Propulsion Solide is equipped with facilities available to manufacture complex and large C-C or C/C- SiC components. Moreover, Snecma Propulsion Solide has adequate competencies and software to design complete systems. Thus, Snecma propulsion Solide can be a partner involved in the definition of systems specifications. These various topics will be successively approached and examples will be shown. 1. INTRODUCTION The carbon-carbon thermostructural composites materials are considered as an attractive choice for plasma facing components in fusion application. These materials are low atomic number and they are of utmost importance for the thermal shocks resistance as well as heat resistance and high temperature strength. Through its position as designer and manufacturer of propulsion systems, Snecma Propulsion Solide has pioneered and mastered the advanced technologies needed for the design, the development and production of carbon-carbon and ceramic composite materials. 1
2 Snecma Propulsion Solide (originally SEP), SAFRAN Group, devotes a continuous effort in this field, and is extending the prime application (space) to several others applications such as fusion and fission nuclear (industry) [1]. Development of carbon-carbon thermostructural composites materials started at SEP in In those days, the aim was to improve performances and reliability of solid propellant rocket nozzles and to find replacement materials to tungsten (too heavy), pyrographite (not suitable for making large integral parts) and polycrystalline graphites (too brittle). For long duration use in oxidative environment Snecma Propulsion solid has developed Ceramic Matrix composites (CMC) since the mid 70 s. Carbon-carbon composite materials can be considered as the first generation of thermostructural composites. At the end of the seventies, SEP used to design solid rocket motors nozzles carbon-carbon materials with D reinforcement. But this kind of material suffers from poor isotropy and low shear resistance. Moreover, this reinforcement is sensitive to delamination especially for thick reinforcement. That is why SEP decided at the beginning of the eighty s to develop a 3D texture called Novoltex. Novoltex is a 3D carbon non-woven preform construction made through automatic technology from PolyAcriloNitrile fibers. This needling process consists in attaching fabric layers to each other s with carbon fibers pushed by hook fitted needles (Fig.1). The acquired knowledge and know-how developed in solid propulsion applications turns to account for nuclear applications. The matter of this paper is to present an overview of the composite materials manufactured at Snecma Propulsion Solide, their application in the nuclear field and the developments that could improve performances for fourth generation of fission reactors. The large range of thermostructural material properties allows to meet requirements of these applications [].. OVERVIEW THERMOSTRUCTURAL MATERIALS AT SNECMA PROPULSION SOLIDE. Snecma Propulsion Solide has developed thermostructural composite materials for a large range of aeronautic, space, defense and industrial applications. These materials are called thermostructural composite materials because of both mechanical and thermal resistance. The objectives of those thermostructural materials were: to withstand high temperatures (well above 1000 C), to obtain large parts with a greater toughness than monolithic ceramic or graphite which are vulnerable to thermal and mechanical shocks. to provide a more lightweight solution than refractory metals. The material development is tuned according to the technical requirement. Fig.1: needle-punching Principe To increase the performances and decrease the cost of Solid Rocket Nozzles materials, the development of that 3D reinforcement has been carried out. New fabrics development has started at the end of the nineties. This needled 3D industrial fabric is called Multirex. The last development step of this texture is a low cost 3D reinforcement called Naxeco made from carbon fibers. Snecma Propulsion Solide suggests a thermostructural composite material according to the required properties and working conditions. Then, the nature of the fibers (ex-pan, ex-pitch) their arrangement, the fabrics manufacturing and the densification processes are adapted. For the ceramic-ceramics materials (Cerasep range of materials), the preform is obtained by preparing a stack of SiC woven fabric layers. This stack is then compacted in a special tool so as to obtain a preform with a fiber volume fraction compatible with the procedure of gaseous processing of the silicon carbide matrix. To avoid delamination risks, Snecma Propulsion Solide has also developed multiplayer weavines named Guipex..1. Reinforcement: Preform production equipment
3 Snecma Propulsion Solide has set several needling equipments able to build preform flat panels up to.6m width by 6 m length, and cylindrical or conical parts up to.6 m diameter and 3m length. Note: The 3D reinforcement Novoltex and Naxeco are adapted to gas infiltration densification. The preform thickness is adapted to the final size of the parts. Carbon-carbon Matrix: The matrix is obtained either by gas infiltration (CVI) or by pitch impregnation with carbonization. The figure shows the Snecma Propulsion Solide facilities. Snecma Propulsion Solide has developed an optimized densification process with the aim of improving the reliability and reducing the cost. Ceramic matrix: For applications in an oxidative environment Snecma Propulsion Solide selects C-SiC or SiCSiC composite materials. These materials are obtained by: Ø Chemical Vapor Infiltration process (CVI), Ø Densification with combination of liquid impregnation and hydrolysis (PIP). Ž Fig.: Novoltex preforms manufacturing units Densification production equipment Snecma Propulsion Solide owns many installations: CVI furnaces for both carbon and silicon carbide infiltration, resin impregnation units and pitch impregnation unit (Fig.4)... Densification: High performances thermostructural composite materials imply different combinations of fibers, interphase layers and matrix. These three components give the composite materials their characteristics (density, thermal and mechanical properties). Specific developments have allowed to obtain carbonisation or CVI customized furnaces able to manufacture parts with.5m diameter and 3.5m length and sustain a temperature up to 3000 C. Different processes can be used to densify the fibrous texture. Snecma Propulsion Solide is the only one European company that owns at the plant, the three densification processes. A schematic view is presented on the next chart (Fig.3). CARBON FIBER (Pressure up to 1000 bar) 13 REINFORCEMENT (D, 3D, nd) 3 RESIN PITCH HYDROCARBON 3 IMPREGNATION IMPREGNATION CARBONIZATION * MULTILAYER CVI FURNACES n times n times n times CARBONIZATION CHEMICAL VAPOR INFILTRATION * * Fig.4: carbon and silicon carbide densification capabilities. MACHINING HIGH TEMPERATURE HEAT TREATMENT.3. Comparison of D and 3D composite material: CARBON-CARBON SEPCARB Fig.3: C/C manufacturing processes. 3
4 The main characteristics of the D and 3D composite materials are compared in the next table (table 1): D preform 3D preform Mechanical properties Flexural bending Good average bending but poor reliability for thickness greater than 100mm (local defect) Thermal shock Can be delaminated Interlaminar Can be locally shear very low Thermal properties Conductivity Good in the fiber direction Bad in perpendicular direction. Expansion Low in fiber direction High in Z direction Manufacturing Industrial production experience Table 1 Good even for materials with thickness > 100mm Better Better Not so good as D, but higher in Z direction Low in all directions Industrial production experience So, mainly for carbon/carbon composite materials, Snecma Propulsion Solide prefers the 3D texture..4. Selection of the densification process According to the thermo-dynamical stability of the thermostructural material, Snecma Propulsion Solide chooses within its Sepcarb, Sepcarb-inox and Cerasep range of materials, the most adapted for the applications. The choice of the composite material depends on working temperature, pressure, time exposition and chemical environment (Fig.5). Although the carbon-carbon and carbon-silicon carbide composite materials have both high temperature resistances, the environment will drive down the selection of the material. T ( C).5. Example of main characteristics of materials The properties of the material depend on texture, interphase and matrix. To give an idea, the characteristics of different materials are compared in the next tables. The characteristics are compared to graphite characteristics. Mechanical characteristics: Graphite C/C C/C/SiC SiC/SiC Density Tensile stress (MPa) In plane at RT to 00 Tensile stress (MPa) In plane at 1000 C 55 to to to Tensile modulus (GPa) In plane at RT to to Table : mechanical characteristics Composite materials are less brittle than graphite. The main characteristics depend on the nature of the fiber, the fiber ratio in the direction characterization and the matrix without forget the interphase (table ). Thermal expansion characteristics: RT to 1000C Graphite C/C C/C/SiC SiC/SiC CTE (10-6 / C) In plane Table 3: Coefficient of thermal expansion at 1000 C Composite materials have a low thermal dilatation in the plane (table 3). The nature of the matrix impacts this characteristic Thermal characteristics: Carbone/Carbone Carbone/SiC SiC/SiC t (hours) Fig.5: Domain of application of thermostructural composite materials RT Graphite C/C C/C/SiC SiC/SiC Conductivity in plane at RT (W/m.K) to 50 0 to 50 5 to 15 Table 4: Thermal conductivity at room temperature 4
5 The introduction of ex-pitch fiber in the C/C material allows obtaining higher characteristics (table 4). By Si doping, the resistance to oxidative environment is well improved, and the thermal conductivity remains the same as for non-si doped materials. 3. ADAPTATION OF THESE MATERIALS TO NUCLEAR FISSION APPLICATIONS Direct outgrowths of work in Snecma Propulsion Solide laboratories, carbon-carbon, carbon-ceramic and ceramics-ceramics have found new industrial applications. Originally designed to meet the constraints of military rocket motor nozzles, these materials are today used in brakes, thermal furnaces, semiconductor equipments, experimental nuclear fusion reactors or other areas. From the 030 years, the fission reactors of fourth generation will be entered in service. In the new considered concepts, Snecma Propulsion Solide materials will interest two of them: Sepcarb material is a good candidate for VHTR (Very High Temperature Reactor) concept, Cerasep material will satisfy the technical need for GFR (Gas Fast Reactor) concept VHTR concept For this application, new varieties of graphite have been developed in some locations and for specific purposes. This material will be replaced by carboncarbon composite material, in particular, insulator and safety structure components like control rods. Control rods are composed of several segments (Fig.6), which consist in two co-axial C/C tubes containing absorbent material. They have to be designed to withstand the distortion of the control rod channel. As a consequence, each section of the control rod is linked to the other with a carbon Fiber Composite pin, which allows the control rod to be flexible. Due to their positions in the reactors, the control rods are facing neutron fluxes. Fig.6: Schematic view of C/C composite control Rod [3] The selection of Sepcarb material depends on the requirements. The studies carried out for understanding the effects of irradiation on dimensional and mechanical properties of carboncarbon composite material allow defining some characteristics of the material [4, 5, 6]. In fact, neutrons effects affect the dimensions and their variations depend on: Fiber nature: Ex-pitch fibers, because of their organization, are more stable after irradiation than ex-pan fibers. Fiber architecture: the dimensional changes of 3D composite materials are more isotropic and lower than those of 1D or D composites. Heat treatment improves dimensional stability under irradiation. Neutron also induces damages that lead to change the properties of CFC materials: mechanical properties and thermal conductivity. So, some materials used in fusion nuclear like N11 or NB31 can be considered for this component. But studies are in progress to develop a new material more isotropic at different scales. [7] Another stress suffered by the material seems to be the oxidation in normal conditions and emergency. In this case, a coating will cover the material. Sepcarb-inox, like NS 31, developed for the fusion nuclear can meet these requirements. 3.. GFR concept In opposite to VHTR concept, GFR concept cannot be defined with carbon-carbon material because of the high-speed neutrons. The SiC-SiC materials produced by Snecma Propulsion Solide for Fusion nuclear applications (Cerasep ) offer a potential solution. Cerasep combine a number of attractive properties: low activation, good resistance to shocks and heat cycling, convenient strength and an ability to retain their good mechanical properties to temperatures over C. Three materials in the range of SiC/SiC composite materials (Cerasep brand) have been developed for nuclear fusion: A standard SiC-SiC composite material. CERASEP N-1 was used to carry out the initial evaluation work and demonstrate the various benefits offered by these materials for fusion application. One of the characteristics of this particular SiC-SiC material composite was 5
6 its two-dimensional strengthening feature. This performance is achieved using standard fiber (a fiber containing oxygen) and by increasing the density of the composite part by CVI. Ø CERASEP N3-1 was subsequently developed in order to improve the material's shear-related properties and to reduce the macro-porosities. This material is also produced using standard fibre, however this grade offers an innovative three-dimensional strengthening feature, named Guipex. Ø CERASEP N4-1. This material is performed with a more stable fiber. Ø Develop specific dedicated textures, adapted to the design of the parts to be manufactured. One way is to perform 3D reinforcement like for Sepcarb materials. The main advantages of 3-D material over the -D material are as follows: Ø Thermal conductivity in the Z-direction is increased, Ø Interlaminar shear failure stress is increased. 4. CONCLUSION Ø Adapt the fiber/ matrix interface to reduce the amount of carbon and thus the irradiation behaviour will be improved. Ø Adapt the matrix production processes with the aim of increasing the thermal conductivity of the materials. Snecma Propulsion Solide has developed a large range of carbon-carbon, carbon-silicon carbide and SiC-SiC composite materials with high mechanical and thermal performances. SAFRAN Group manufactures over 400 metric tons per year of C-C, C-SiC and SiC-SiC composites materials, mainly for solid rocket propulsion, brakes discs, jet engines and fusion nuclear applications. Development of composite initially dedicated to rocket engine nozzle application and since the beginning of the years 90 for fusion nuclear, is now expending its scope of activities for fission application. For this specific application existing composites materials must be adapted. And the ways to improve those Snecma Propulsion Solide composite materials are identified. Snecma Propulsion Solide has experienced to manufacture simple geometry parts, like plate or cylindrical part, and also complex parts. Examples of complex parts are given in the figure 7. Fig.7: examples of complex parts RERENCES: [1] L. Filipuzzi, E. Subrenat, Thermostructural composites and nuclear fusion, Industrial Ceramics volume 18 N But these Cerasep N-1 and N3-1 materials have some limitations, mainly due to the impurities of the fiber and a insufficient conductivity in Z direction. Further improvements have Particularly, it is important to: been [] Design, Fabrication and Applications of thermostructural composites like C/C, C/SiC and SiC/SiC Composites, F. Christin, 00, Advanced engine materials identified. Ø Use new, improved-purity SiC fibers (virtually stoechiometric and "oxygen-free"). The thermal conductivity of such fibers is intrinsically higher than that of the standard fiber. Moreover, the rate at which its properties change when exposed to neutron irradiation will be reduced. Other positive aspects relating to the use of these fibers are: * an increase in the maximum service temperature, from 1100 C to about around 1400 C. * a significant improvement in mechanical properties. [3] S. Ishiyama et al, Strength Test of C/C Composite High Performance Control Rod for HTGRs, Nippon Genshiryoku Gakkai-Shi, 41 (10), 109 (1999) [4] J.P. Bonal, L. Giomain, Le graphite et les composites carbone-carbone dans les réacteurs nucléaires du future, Journées scientifiques du GFEC du 15 au 18 septembre 003 [5] Overview of EU CFCs development for plasma facing materials, C.H. Wu, C. Alessandrini, P. Bonal, H. Grote, R. Moormann, M. Rödig, J. Roth, 6
7 H. Werle, G. Vieider, Journal of Nuclear Materials (1998) [6] Chapître 5 : comportement sous irradiation, P. Bonal, DTEC/STCF/005/NT07 pages 81 à 149. [7] Improved SiC / SiC and C/C materials - applications parts. I. Berdoyes, J. Thebault, E. Bouillon, EUROMAT
IMPROVED SiC / SiC AND C/C MATERIALS APPLICATIONS PARTS. EUROMAT 2005
IMPROVED SiC / SiC AND C/C MATERIALS APPLICATIONS PARTS. EUROMAT 2005 Authors: I. Berdoyes, J. Thebault, E. Bouillon Snecma Propulsion Solide (SAFRAN Group) Les cinq Chemins 33187 Le Haillan France Abstract:
Heat Treatment Process
Heat Treatment Process Holytown, Scotland UK Resistors - Insulation - Protection Chongqing, China C/C fixturing, rods & beams Insulation St-Marys, USA Gennevilliers, France Main production sites Industrial
PROCESSING, PERFORMANCE, AND CHARACTERIZATION OF CONTINUOUS FIBER CERAMIC COMPOSITES WITH NANOPARTICLES
PROCESSING, PERFORMANCE, AND CHARACTERIZATION OF CONTINUOUS FIBER CERAMIC COMPOSITES WITH NANOPARTICLES David Narahara Department of Mechanical Engineering University of Hawai i at Mānoa Honolulu, HI 96822
COMPARISON BETWEEN GLASS AND FLAX NON-CRIMP STITCHED FABRICS
18 TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS COMPARISON BETWEEN GLASS AND FLAX NON-CRIMP STITCHED FABRICS L. Bizet 1 *, S. Guéret 1, C. Re 1, P. Ouagne 2 1 Laboratoire Ondes et Milieux Complexes,
THE ELEMENT C. Introduction graphite and carbon Lattice Classification of grain size. Properties of graphite and carbon
THE ELEMENT C Introduction graphite and carbon Lattice Classification of grain size Fine-grained graphite Coarse-grained graphite Properties of graphite and carbon High temperature properties Introduction
Steel production. Furnace linings made from carbon and graphite are applied for the production of primary iron.
Steel production Furnace linings made from carbon and graphite are applied for the production of primary iron. Graphite electrodes and nipples (connecting pins) are applied for the production of steel.
CVD SILICON CARBIDE. CVD SILICON CARBIDE s attributes include:
CVD SILICON CARBIDE CVD SILICON CARBIDE is the ideal performance material for design engineers. It outperforms conventional forms of silicon carbide, as well as other ceramics, quartz, and metals in chemical
Mechanical Properties of Metals Mechanical Properties refers to the behavior of material when external forces are applied
Mechanical Properties of Metals Mechanical Properties refers to the behavior of material when external forces are applied Stress and strain fracture or engineering point of view: allows to predict the
3 Nextel Textiles. Ceramic fiber products for outerspace applications.
3 Nextel Textiles Ceramic fiber products for outerspace applications. Physical Properties 3M Nextel Fabrics, Tapes, and Sleevings are designed to meet the toughest thermal, mechanical and electrical performance
North American Stainless
North American Stainless Flat Products Stainless Steel Sheet T409 INTRODUCTION NAS 409 is an 11% chromium, stabilized ferritic stainless steel. It is not as resistant to corrosion or high-temperature oxidation
Manufacturing Process and Material Properties of Carbon and Graphite Materials. Schunk Kohlenstofftechnik
Manufacturing Process and Material Properties of Carbon and Graphite Materials Schunk Kohlenstofftechnik Carbon and graphite materials are manufactured according to processes based on conventional ceramic
Microwave absorbing tiles:
On the basis of the results obtained from the first project activities, the grinding conditions on a larger scale were determined. As regards the sintering, an adjustment has been made to the roller furnaces
North American Stainless
Introduction: North American Stainless Flat Products Stainless Steel Grade Sheet 309S (S30908)/ EN1.4833 SS309 is a highly alloyed austenitic stainless steel used for its excellent oxidation resistance,
Broad Base. Best Solutions. SIGRAFIL Continuous Carbon Fiber Tow
Broad Base. Best Solutions. COMPOSITEs Fibers and MATERIALS SIGRAFIL Continuous Carbon Fiber Tow 2 Carbon fibers and composites made by SGL Group. Q Comprehensive product range Q Integrated value chain
Advanced materials & solutions for high h temperatures
2010 Advanced materials & solutions for high h temperatures t Mission To engineer innovative solutions for our customers High temperature Corrosion Mechanical wear 2010 From material to engineering solutions
TITANIUM FABRICATION CORP.
TITANIUM FABRICATION CORP. Titanium, Zirconium, and Tantalum Clad Construction General Considerations In many applications, particularly for large pressure vessels designed for high temperature and pressure,
LASER MACHINING OF MELT INFILTRATED CERAMIC MATRIX COMPOSITE
LASER MACHINING OF MELT INFILTRATED CERAMIC MATRIX COMPOSITE Jarmon, D. C. 1, Ojard, G. 2, and Brewer, D. 3 1 United Technologies Research Center, East Hartford, CT 2 Pratt & Whitney, East Hartford, CT
Research and Development Program of HTGR Fuel in Japan
Research and Development Program of HTGR Fuel in Japan Kazuhiro SAWA, Shouhei UETA, Tatsuo IYOKU Masuro OGAWA, Yoshihiro KOMORI Department of Advanced Nuclear Heat Technology Department of HTTR Project
Naue GmbH&Co.KG. Quality Control and. Quality Assurance. Manual. For Geomembranes
Naue GmbH&Co.KG Quality Control and Quality Assurance Manual For Geomembranes July 2004 V.O TABLE OF CONTENTS 1. Introduction 2. Quality Assurance and Control 2.1 General 2.2 Quality management acc. to
A Study on the Flexural and Split Tensile Strengths of Steel Fibre Reinforced Concrete at High Temperatures
A Study on the Flexural and Split Tensile Strengths of Steel Fibre Reinforced Concrete at High Temperatures 1 P. Jyotsna Devi, 2 Dr. K. Srinivasa Rao 1,2 Dept. of Civil Engg, Andhra University, Visakhapatnam,
Composite Design Fundamentals. David Richardson
Composite Design Fundamentals David Richardson Contents A review of the fundamental characteristics of composites Stiffness and Strength Anisotropic Role of fibre, matrix and interface Composite failure
North American Stainless
North American Stainless Flat Products Stainless Steel Grade Sheet 310S (S31008)/ EN 1.4845 Introduction: SS310 is a highly alloyed austenitic stainless steel designed for elevated-temperature service.
Formation of solids from solutions and melts
Formation of solids from solutions and melts Solids from a liquid phase. 1. The liquid has the same composition as the solid. Formed from the melt without any chemical transformation. Crystallization and
XFA 600 Thermal Diffusivity Thermal Conductivity
XFA 600 Thermal Diffusivity Thermal Conductivity Thermal Diffusivity, Thermal Conductivity Information of the thermo physical properties of materials and heat transfer optimization of final products is
How do single crystals differ from polycrystalline samples? Why would one go to the effort of growing a single crystal?
Crystal Growth How do single crystals differ from polycrystalline samples? Single crystal specimens maintain translational symmetry over macroscopic distances (crystal dimensions are typically 0.1 mm 10
Module 1 : Conduction. Lecture 5 : 1D conduction example problems. 2D conduction
Module 1 : Conduction Lecture 5 : 1D conduction example problems. 2D conduction Objectives In this class: An example of optimization for insulation thickness is solved. The 1D conduction is considered
ME349 Engineering Design Projects
ME349 Engineering Design Projects Introduction to Materials Selection The Material Selection Problem Design of an engineering component involves three interrelated problems: (i) selecting a material, (ii)
CHARACTERIZATION OF POLYMERS BY TMA. W.J. Sichina, National Marketing Manager
PERKIN ELMER Polymers technical note CHARACTERIZATION OF POLYMERS BY W.J. Sichina, National Marketing Manager Thermomechanical analysis () is one of the important characterization techniques in the field
Ceralink Capabilities and Opportunities
Ceralink Capabilities and Opportunities Dr. Holly Shulman President, Materials Scientist Ceralink Inc. Rensselaer Technology Park 105 Jordan Rd. Troy, New York 12180 [email protected] www.ceralink.com
Unit 6: EXTRUSION. Difficult to form metals like stainless steels, nickel based alloys and high temperature metals can also be extruded.
1 Unit 6: EXTRUSION Introduction: Extrusion is a metal working process in which cross section of metal is reduced by forcing the metal through a die orifice under high pressure. It is used to produce cylindrical
FIBERGLASS REINFORCED PLASTIC (FRP) PIPING SYSTEMS DESIGNING PROCESS / FACILITIES PIPING SYSTEMS WITH FRP
FIBERGLASS REINFORCED PLASTIC (FRP) PIPING SYSTEMS DESIGNING PROCESS / FACILITIES PIPING SYSTEMS WITH FRP A COMPARISON TO TRADITIONAL METALLIC MATERIALS Prepared by: Kevin Schmit, Project Engineer Specialty
Pierre Marchand, product director, speciality product Meeting NEI-NRC March 14th 2013
Pierre Marchand, product director, speciality product Meeting NEI-NRC March 14th 2013 Agenda Dubuc works: location and overview MMC fabrication process at Rio Tinto Alcan Boralcan product caracteristics
COMPOSITE MATERIALS. Asst. Prof. Dr. Ayşe KALEMTAŞ
COMPOSITE MATERIALS Office Hours: Tuesday, 16:30-17:30 [email protected], [email protected] Phone: +90 252 211 19 17 Metallurgical and Materials Engineering Department CONTENT Composite Materials Metal
TIE-31: Mechanical and thermal properties of optical glass
PAGE 1/10 1 Density The density of optical glass varies from 239 for N-BK10 to 603 for SF66 In most cases glasses with higher densities also have higher refractive indices (eg SF type glasses) The density
Nomex KD Technology. DuPont TM. DuPont s Heritage in Hot Gas Filtration Application. For over 4 decades, a filter media made of Nomex
DuPont s Heritage in Hot Gas Filtration Application For over 4 decades, a filter media made of Nomex brand fibre has been considered as the state of the art product in typical filtration applications such
Lapping and Polishing Basics
Lapping and Polishing Basics Applications Laboratory Report 54 Lapping and Polishing 1.0: Introduction Lapping and polishing is a process by which material is precisely removed from a workpiece (or specimen)
Engine Bearing Materials
Engine Bearing Materials Dr. Dmitri Kopeliovich (Research & Development Manager) The durable operation of an engine bearing is achieved if its materials combine high strength (load capacity, wear resistance,
TechCut 4 Precision Low Speed Saw
Product Brochure TechCut 4 Precision Low Speed Saw 3" - 6" Blade Range Digital Speed Display 1-Micron Sample Indexing Spring-Loaded Dressing Stick Attachment All Aluminum & Stainless Steel Construction
THERMAL CONDUCTIVITY AND THERMAL EXPANSION COEFFICIENT OF GFRP COMPOSITE LAMINATES WITH FILLERS
THERMAL CONDUCTIVITY AND THERMAL EXPANSION COEFFICIENT OF GFRP COMPOSITE LAMINATES WITH FILLERS K. Devendra $ and T. Rangaswamy & $ Asst. Professor, Dept. of Mech. Engineering, SKSVMACET, Laxmeshwar, KA,
North American Stainless
North American Stainless Long Products Stainless Steel Grade Sheet 2205 UNS S2205 EN 1.4462 2304 UNS S2304 EN 1.4362 INTRODUCTION Types 2205 and 2304 are duplex stainless steel grades with a microstructure,
TECHNICAL DATA SHEET
EPOXY - NG1001 Formulated Resin System for Pre-preg Process General information Description: TECHNICAL DATA SHEET EPOXY - NG1001 is a formulated epoxy based resin system for hot melt pre-preg and pressure
Non- Carbon Fiber Electrical Heating Textile Introduction:
Non- Carbon Fiber Electrical Heating Introduction: This Heating is a new generation electrical heating system which is specially designed for mobile heating, energy saving and safety orientated requirements
VISCOSE FIBRES WITH NEW FUNCTIONAL QUALITIES
VISCOSE FIBRES WITH NEW FUNCTIONAL QUALITIES Walter Roggenstein Kelheim Fibres GmbH, Regensburger Str. 109, 93309 Kelheim, Germany Phone: (+49) 9441 99-489; Fax: (+49) 9441 99-1489; Email: [email protected]
Lecture 12. Physical Vapor Deposition: Evaporation and Sputtering Reading: Chapter 12. ECE 6450 - Dr. Alan Doolittle
Lecture 12 Physical Vapor Deposition: Evaporation and Sputtering Reading: Chapter 12 Evaporation and Sputtering (Metalization) Evaporation For all devices, there is a need to go from semiconductor to metal.
SALT SPRAY AND IMMERSION CORROSION TESTING OF PM STAINLESS STEEL MATERIALS. W. Brian James Hoeganaes Corporation. Cinnaminson, NJ 08077
SALT SPRAY AND IMMERSION CORROSION TESTING OF PM STAINLESS STEEL MATERIALS W. Brian James Hoeganaes Corporation Cinnaminson, NJ 08077 Leander F. Pease III Powder-Tech Associates Inc. Andover, MA 01845
TEMPCORE, the most convenient process to produce low cost high strength rebars from 8 to 75 mm
1 TEMPCORE, the most convenient process to produce low cost high strength rebars from 8 to 75 mm J.F. Noville, Centre for Research in Metallurgy (CRM), Liège, Belgium Contact data Noville Jean-François,
Overview of Recent Developments in 3D Structures
Overview of Recent Developments in 3D Structures Michael McClain, Senior R&T Engineer Organic Matrix Composites Jonathan Goering Divisional Chief Technology Officer Albany Engineered Composites 112 Airport
Simulation of Embedded Components in PCB Environment and Verification of Board Reliability
Simulation of Embedded Components in PCB Environment and Verification of Board Reliability J. Stahr, M. Morianz AT&S Leoben, Austria M. Brizoux, A. Grivon, W. Maia Thales Global Services Meudon-la-Forêt,
CRASH ANALYSIS OF AN IMPACT ATTENUATOR FOR RACING CAR IN SANDWICH MATERIAL
F2008-SC-016 CRASH ANALYSIS OF AN IMPACT ATTENUATOR FOR RACING CAR IN SANDWICH MATERIAL Boria, Simonetta *, Forasassi, Giuseppe Department of Mechanical, Nuclear and Production Engineering, University
Excerpt Direct Bonded Copper
xcerpt irect Bonded Copper Presented by ouglas C. Hopkins, Ph.. 312 Bonner Hall University at Buffalo Buffalo, Y 14620-1900 607-729-9949, fax: 607-729-7129 Authors thank Curamik lectronics A member of
CARBON/DYNEEMA INTRALAMINAR HYBRIDS: NEW STRATEGY TO INCREASE IMPACT RESISTANCE OR DECREASE MASS OF CARBON FIBER COMPOSITES
26 TH INTERNATIONAL CONGRESS OF THE AERONAUTICAL SCIENCES CARBON/DYNEEMA INTRALAMINAR HYBRIDS: NEW STRATEGY TO INCREASE IMPACT RESISTANCE OR DECREASE MASS OF CARBON FIBER COMPOSITES J. G. H. Bouwmeester*,
Figure 10.1. Process flow from starting material to polished wafer.
Figure 10.1. Process flow from starting material to polished wafer. 1/11/003 Ettore Vittone- Fisica dei Semiconduttori - Lectio XI 1 Starting material: silicon dioxide (SiO ): pure form of sand (quartzite)
VeMet, Utrecht, NL «Solution in Wear Protection» 26.10.2011 Dipl.-Ing. Wolfgang Leichnitz. Quit
VeMet, Utrecht, NL «Solution in Wear Protection» 26.10.2011 Dipl.-Ing. Wolfgang Leichnitz Quit Theory and Practice of Wear Definition In materials science, wear is the erosion of material from a solid
CONSOLIDATION AND HIGH STRAIN RATE MECHANICAL BEHAVIOR OF NANOCRYSTALLINE TANTALUM POWDER
CONSOLIDATION AND HIGH STRAIN RATE MECHANICAL BEHAVIOR OF NANOCRYSTALLINE TANTALUM POWDER Sang H. Yoo, T.S. Sudarshan, Krupa Sethuram Materials Modification Inc, 2929-P1 Eskridge Rd, Fairfax, VA, 22031
Thermoplastic composites
Thermoplastic composites Definition By definition, a thermoplastic is a material based on polymer (macromolecular compound) which can be shaped, in a liquid (viscous) state at a temperature either higher
COMPOSITE MATERIALS. Asst. Prof. Dr. Ayşe KALEMTAŞ
COMPOSITE MATERIALS Office Hours: Tuesday, 16:30-17:30 [email protected], [email protected] Phone: +90 252 211 19 17 Metallurgical and Materials Engineering Department ISSUES TO ADDRESS Classification
STAVAX SUPREME. Stainless tool steel
STAVAX SUPREME Stainless tool steel General Demands placed on plastic mould tooling are increasing. Such conditions require mould steels that possess a unique combination of toughness, corrosion resistance
Radiation-Resistant Single-Mode Optical Fibers
Radiation-Resistant Single-Mode Optical Fibers Kazuhiko Aikawa, 1 Katsuaki Izoe, 1 Naoki Shamoto, 1 Manabu Kudoh, 1 and Takashi Tsumanuma 1 Loss of silica-based optical fibers increases when they are exposed
4.461: Building Technology 1 CONSTRUCTION AND MATERIALS FALL TERM 2004 SCHOOL OF ARCHITECTURE AND PLANNING: MIT
4.461: Building Technology 1 CONSTRUCTION AND MATERIALS Professor John E. Fernandez FALL TERM 2004 SCHOOL OF ARCHITECTURE AND PLANNING: MIT Concrete and Composites Stadelhofen Station Zurich Santiago Calatrava
Basic Properties and Application of Auto Enamels
Basic Properties and Application of Auto Enamels Composition of Ceramic Automotive Glass Enamels Ceramic automotive glass colours are glass enamels that fire on to the glass during the bending process
Chapter 5 - Aircraft Welding
Chapter 5 - Aircraft Welding Chapter 5 Section A Study Aid Questions Fill in the Blanks 1. There are 3 types of welding:, and, welding. 2. The oxy acetylene flame, with a temperature of Fahrenheit is produced
REPAIR CONCEPT SUPPORTED BY LASER REMOVAL AND INDUCTIVE HEATING
28 TH INTERNATIONAL CONGRESS OF THE AERONAUTICAL SCIENCES REPAIR CONCEPT SUPPORTED BY LASER REMOVAL AND INDUCTIVE HEATING Markus Kaden*, Rüdiger Keck* *German Aerospace Center [email protected];[email protected]
NetShape - MIM. Metal Injection Molding Design Guide. NetShape Technologies - MIM Phone: 440-248-5456 31005 Solon Road FAX: 440-248-5807
Metal Injection Molding Design Guide NetShape Technologies - MIM Phone: 440-248-5456 31005 Solon Road FAX: 440-248-5807 Solon, OH 44139 [email protected] 1 Frequently Asked Questions Page What
Fracture and strain rate behavior of airplane fuselage materials under blast loading
EPJ Web of Conferences 6, 6 42017 (2010) DOI:10.1051/epjconf/20100642017 Owned by the authors, published by EDP Sciences, 2010 Fracture and strain rate behavior of airplane fuselage materials under blast
Influence of Belt Furnace on Glass-to-Metal Seal Process
Influence of Belt Furnace on Glass-to-Metal Seal Process Introduction The glass, under suitable conditions, will bond well to a wide variety of metals and alloys which has led to the development of many
AUSTENITIC STAINLESS DAMASCENE STEEL
AUSTENITIC STAINLESS DAMASCENE STEEL Damasteel s austenitic stainless Damascene Steel is a mix between types 304L and 316L stainless steels which are variations of the 18 percent chromium 8 percent nickel
Compression RTM - A new process for manufacturing high volume continuous fiber reinforced composites
Compression RTM - A new process for manufacturing high volume continuous fiber reinforced composites 5 th International CFK-Valley Stade Convention 07-08 June 2011, STADEUM Stade, Germany Authors Raman
Q&A. Contract Manufacturing Q&A. Q&A for those involved in Contract Manufacturing using Nelco Electronic Materials
Q&A Q&A for those involved in Contract Manufacturing using Nelco Electronic Materials 1. Do Nelco laminates have any discoloration effects or staining issues after multiple high temperature exposures?
Design and Fabrication of a Wear Testing Machine
Leonardo Electronic Journal of Practices and Technologies ISSN 1583-1078 Issue 19, July-December 2011 p. 39-48 Design and Fabrication of a Wear Testing Machine Amal Ebrahim NASSAR * and Eman Ebrahim NASSAR
Silicone Rubber Thermal Interface Materials: Applications and Performance Considerations
Silicone Rubber Thermal Interface Materials: Applications and Performance Considerations David C. Timpe Jr. Arlon Silicone Technologies Division 1100 Governor Lea Road, Bear, DE 19701 P: 800-635-9333 F:
Urea and Nitric Acid Plants: Improvement of Shut-Down, Revamping, Debottlenecking and Refurbishment
pp Urea and Nitric Acid Plants: Improvement of Shut-Down, Revamping, Debottlenecking and Refurbishment J. M. SLUYTERS GEMACO SA Herstal, Belgium A presentation on special corrosion-resistant steels for
Copper Alloys for Injection, Thermoform and Blow Molds
Copper Alloys for Injection, Thermoform and Blow Molds by Robert Kusner Manager of Technical Services June 2015 Today s Agenda History of copper mold alloys Why use copper? Which copper alloy should I
Fired Heater Design and Simulation
Fired Heater Design and Simulation Mahesh N. Jethva 1, C. G. Bhagchandani 2 1 M.E. Chemical Engineering Department, L.D. College of Engineering, Ahmedabad-380 015 2 Associate Professor, Chemical Engineering
GMI. Family of Companies. Graphite Machining, Inc. Experts in Graphite & Carbon Manufacturing, Purification & Machining C A R B O N
GMI Family of Companies Experts in Graphite & Carbon Manufacturing, Purification & Machining Made with Pride in the Graphite Machining, Inc. C A R B O N NAC NAC CARBON PRODUCTS, INC. The GMI Family of
COATED CARBIDE. TiN. Al 2 O 3
COATED CARBIDE GENERAL INFORMATION CVD = Chemical Vapour Deposition coated grades GC2015, GC2025, GC2135, GC235, GC3005, GC3015, GC3020, GC3025, GC3115, GC4015, GC4025, GC4035, S05F, and CD1810. PVD =
The Mechanical Properties of Glass
The Mechanical Properties of Glass Theoretical strength, practical strength, fatigue, flaws, toughness, chemical processes Glass Engineering 150:312 Professor Richard Lehman Department of Ceramics and
Raman and AFM characterization of carbon nanotube polymer composites Illia Dobryden
Raman and AFM characterization of carbon nanotube polymer composites Illia Dobryden This project is conducted in High Pressure Spectroscopy Laboratory (Materials Physics group) Supervisor: Professor Alexander
Stainless steel grade chart
Stainless steel grade chart ATLAS STEELS METAL DISTRIBUTION Chemical analysis (%) specified C Si Mn P S Cr Mo Ni Other Austenitic stainless steels 253MA S30815 0.05 1.1-2.0 0.8 0.040 0.030 20.0-22.0 10.0-12.0
PRELIMINARY BROCHURE. Uddeholm Corrax
PRELIMINARY BROCHURE Uddeholm Corrax Uddeholm Corrax Uddeholm Corrax stainless moulds steel has a unique set of properties that makes it the ultimate choice in a large number of demanding applications.
Cutting Tool Materials
Training Objectives After watching the video and reviewing this printed material, the viewer will gain knowledge and understanding of cutting tool metallurgy and specific tool applications for various
Effective Cooling Method for Spin Casting Process
Effective Cooling Method for Spin Casting Process Yong-Ak Song, Sehyung Park, Yongsin Kwon Korea Institute of Science and Technology KIST, CAD/CAM Research Center P.O. Box 131, Cheongryang, Seoul, Korea
TEXTILE FABRICS AS THERMAL INSULATORS
TEXTILE FABRICS AS THERMAL INSULATORS Zeinab S. Abdel-Rehim 1, M. M. Saad 2, M. El-Shakankery 2 and I. Hanafy 3 1 Mechanical Engineering Department of the National Research Center, Dokki, Giza, Egypt 2
Composite Materials. Mary P. Shafer. Fabric Development, Inc. Quakertown, PA 18951
Composite Materials Mary P. Shafer Fabric Development, Inc. Quakertown, PA 18951 Composite Material Two inherently different materials that when combined together produce a material with properties that
Greening our Roads. Approach
Greening our Roads Approach To create a Sustainable Future for the world, by achieving Resource Extension economically, by reducing usage of limiting resources and extending life cycle Ensuring Green Roads
PIEZOELECTRIC FILMS TECHNICAL INFORMATION
PIEZOELECTRIC FILMS TECHNICAL INFORMATION 1 Table of Contents 1. PIEZOELECTRIC AND PYROELECTRIC EFFECTS 3 2. PIEZOELECTRIC FILMS 3 3. CHARACTERISTICS PROPERTIES OF PIEZOELECTRIC FILMS 3 4. PROPERTIES OF
CHARACTERIZATION OF HIGH PRESSURE RTM PROCESSES FOR MANUFACTURING OF HIGH PERFORMANCE COMPOSITES
CHARACTERIZATION OF HIGH PRESSURE RTM PROCESSES FOR MANUFACTURING OF HIGH PERFORMANCE COMPOSITES R. Chaudhari 1*, M. Karcher 1, P. Elsner 1, F. Henning 1 1 Fraunhofer Institute for Chemical Technology,
CONTENTS. ZVU Engineering a.s., Member of ZVU Group, WASTE HEAT BOILERS Page 2
WASTE HEAT BOILERS CONTENTS 1 INTRODUCTION... 3 2 CONCEPTION OF WASTE HEAT BOILERS... 4 2.1 Complex Solution...4 2.2 Kind of Heat Exchange...5 2.3 Heat Recovery Units and Their Usage...5 2.4 Materials
Since the middle of the 20 th century, the variety of applications
Since the middle of the 0 th century, the variety of applications requiring electromagnetic absorbers has been increasing rapidly. Therefore, new materials had to be developed, each targeting a specific
DESIGN AND ANALYSIS OF CFRP COMPOSITE MULTILAYER HIGH PRESSURE VESSELS AND BURST PRESSURE ANALYSIS FOR VARIOUS FIBER ORIENTATION ANGLES
DESIGN AND ANALYSIS OF CFRP COMPOSITE MULTILAYER HIGH PRESSURE VESSELS AND BURST PRESSURE ANALYSIS FOR VARIOUS FIBER ORIENTATION ANGLES Rayapuri Ashok 1, R Ranjith Kumar 2, Tirumala Rao 3 1, 2, 3 Department
Assistant Professor of Civil Engineering, University of Texas at Arlington
FRC Performance Comparison: Direct Tensile Test, Beam Type Bending Test, and Round Panel Test Shih Ho Chao (Presenting Author) Assistant Professor of Civil Engineering, University of Texas at Arlington
AISI O1 Cold work tool steel
T OOL STEEL FACTS AISI O1 Cold work tool steel Great Tooling Starts Here! This information is based on our present state of knowledge and is intended to provide general notes on our products and their
Unit 6 Plane Stress and Plane Strain
Unit 6 Plane Stress and Plane Strain Readings: T & G 8, 9, 10, 11, 12, 14, 15, 16 Paul A. Lagace, Ph.D. Professor of Aeronautics & Astronautics and Engineering Systems There are many structural configurations
The following sketches show the plans of the two cases of one-way slabs. The spanning direction in each case is shown by the double headed arrow.
9.2 One-way Slabs This section covers the following topics. Introduction Analysis and Design 9.2.1 Introduction Slabs are an important structural component where prestressing is applied. With increase
Fire-Damage or Freeze-Thaw of Strengthening Concrete Using Ultra High Performance Concrete
Fire-Damage or Freeze-Thaw of Strengthening Concrete Using Ultra High Performance Concrete Ming-Gin Lee 1,a, Yi-Shuo Huang 1,b 1 Department of Construction Engineering, Chaoyang University of Technology,Taichung
Xantu.LayrTM nanofibre interleaving veils provide a technological leap forward for the toughening of high performance composites.
Continuous Nanofibre. Performance composites Xantu.LayrTM nanofibre interleaving veils provide a technological leap forward for the toughening of high performance composites. Xantu.LayrTM enhances composite
Comparison of Mechanical Properties on 15CDV6 Steel Plates by TIG- Welding with and without copper coated filler wires
Comparison of Mechanical Properties on 15CDV6 Steel Plates by TIG- Welding with and without copper coated filler wires S Sapthagiri 1, K Jayathirtha Rao 2, K Ashok Reddy 3 and C Sharada Prabhakar 4 1,
The Original Carbon Fiber Reinforced Polymer System
Infrastructure The Original Carbon Fiber Reinforced Polymer System Phone: 52.292.39 Toll Free: 866.38.269 Fax: 52.48.5274 282 E. Fort Lowell Rd. Tucson, AZ 8576 www.dowaksausa.com Test results are supported
Chapter 17: Springs. Fundamentals of Machine Elements, 3 rd ed. Schmid, Hamrock and Jacobson. 2014 CRC Press
Chapter 17: Springs It must be confessed that the inventors of the mechanical arts have been much more useful to men than the inventors of syllogisms. Voltaire A collection of helical compression springs.
How To Improve Mechanical Properties Of A Composite Material
Usak University Journal of Material Sciences journal homepage: http://uujms.usak.edu.tr Research article Mechanical properties of bi axial glass fiber and pistachio shell reinforced polyester composites
WJM Technologies excellence in material joining
Girish P. Kelkar, Ph.D. (562) 743-7576 [email protected] www.welding-consultant.com Weld Cracks An Engineer s Worst Nightmare There are a variety of physical defects such as undercut, insufficient
