Application Example: Rapid Manufacturing. Toolmaking: Milling on digitized data, Casted Blanks



Similar documents
Application Example: 3D Scanning

Application Example: Quality Control

Application Example: Quality Control

Application Example: Reverse Engineering

Application Example: Quality Control of Injection-Molded Parts

Application Example: Quality Control. Turbines: 3D Measurement of Water Turbines

Application Example: Quality control of sheet metal components

Optical Digitizing by ATOS for Press Parts and Tools

Application Example: Automotive Testing: Optical 3D Metrology improves Safety and Comfort

Application Example: Automated Robot Inspection Cell for Quality Control on Sheet Metal Components. The future of metrology in vehicle construction

Application Example: Scanning down to the smallest Detail Optical Metrology supports the Building of full-scale Helicopter Mock-ups

GOM Optical Measuring Techniques. Deformation Systems and Applications

3D SCANNING: A NEW APPROACH TOWARDS MODEL DEVELOPMENT IN ADVANCED MANUFACTURING SYSTEM

Arm2. Arm Arm22. Articulated Arm. machines MEASURING. tridimensional measuring FRATELLI ROTONDI

Manufacturing Process and Cost Estimation through Process Detection by Applying Image Processing Technique

Integration Services

Automotive Applications of 3D Laser Scanning Introduction

Industrial 3D Measurement Technology

NX CAM TURBOMACHINERY MILLING PRODUCT REVIEW

CNC Applications. Tool Radius Compensation for Machining Centers

SprutCAM is a CAM system for NC program generation for machining using multi-axis milling, turning, turn/mill, Wire EDM numerically controlled

Stanz- und Feinwerktechnik. Welcome to Hölzel. The company at a glance

Success story. OPEN MIND Cuts a Path To Success In The UK Aero Industry

Enter into the world of unprecedented accuracy! IScan D104 Series

2010 CATIA V5 CAM EĞĐTĐMLERĐ ĐÇERĐĞĐ

Seamlessly integrated for continuous processing. cad integration

The automotive industry

NX for Tooling and Fixture Design Transforming today s processes for designing and manufacturing injection molds, dies and fixtures

EasySTONE Info Sheet

How To Program A Laser Cutting Robot

Advantages and application of PCD and CBn tools

Milling & Machining Centers

MEASURING WHEEL ALIGNMENT

Lamination Production. by: John Roberts / Sko Die, Inc

Tutorial: Rapid Prototyping Technologies

Eckold Seamclosing Technique

LOST FOAM PROTOTYPING METHODS

A Fuzzy System Approach of Feed Rate Determination for CNC Milling

NX CAD/CAM 3-Axis Milling Foundation

VECTORAL IMAGING THE NEW DIRECTION IN AUTOMATED OPTICAL INSPECTION

Precision Manufacturing Regional Alliance Project (PMRAP) Accelerated Weekend Program. Springfield Technical Community College.

0 INTRODUCTION. Fig. 1. Atos II optical scanner schematics

PRODUCT BROCHURE SPATIAL ANALYZER. Powerful, traceable and easy-to-use metrology and analysis software

Value adding process chain by Rapid Prototyping and Tele Engineering

Correcting the Lateral Response Artifact in Radiochromic Film Images from Flatbed Scanners

A Comprehensive Set of Image Quality Metrics

Application report. matec-30 S / SD. of the monitoring system. Data communication : Digital. Removed material : ceramic glass

CT for the production floor: Recent developments in Hard- and Software for industrial CT Systems

Introduction to Manufacturing Process

The benefits of ease of use in CAD/CAM software.

Full Denture System. Full denture prosthetics for dental technicians customised, precise, aesthetic

Introduction to JIGS AND FIXTURES

Renishaw apply innovation TM. Calibrating 5-axis machines to improve part accuracy. 5Align

AXIS DESIGNATION IN NC PART PROGRAMMING

MET 306 Activity 6. Using Pro/MFG Milling Operations Creo 2.0. Machining a Mast Step

How To Install A Perfect 16 Id Series Filter System

Multiphysics Software Applications in Reverse Engineering

Protocol for Microscope Calibration

3.3 Recording of Requests for Inspection and Inspection Certificates

Introduction FRIGERIO ETTORE spa Lecco (Italy) Rev.09 1 / 19

Empfehlung für eine Vorschrift. zur Standardisierung und Kalibrierung von H-Punkt- und Kopfstützenmessgeräten

NIKON METROLOGY I VISION BEYOND PRECISION. Focus 10 point cloud software Streamlining CMM and handheld laser scanning inspection

Optimized NC programming for machinery and heavy equipment. Summary NX CAM software redefines manufacturing productivity with a full range of NC

8.0. The most complete image analysis solution CLEMEX VISION PE. Intelligent systems designed for multiple or complex applications

HS-Steel-Classic. Curing chambers for the concrete block industry in a proven steel version

Precast Manhole Sections and Castings. These items shall conform to Section 31, "Storm Drain Installation," of these Standard Provisions.

Inspection of diffusely reflecting surfaces

Precise. Powerful. Pure.

DESIGN & PROJECT MANAGEMENT

Paladin Pellet mills.

SFI SPECIFICATION EFFECTIVE: FEBRUARY 26, 2014 *

LASER ENGRAVING REFLECTIVE METALS TO CREATE SCANNER READABLE BARCODES Paper P516

DIE SETS - MACHINED PLATES ACCORDING TO DRAWING CONTENTS

Structural Integrity Analysis

5-Axis Test-Piece Influence of Machining Position

ENGLISH FORK GUIDE 2013

Router. A. Identify the major parts of the router. B. Complete a written test on safety and operating procedures of the router with 100% accuracy.

Technical What s New. Autodesk Alias Product Line

IBM Product Lifecycle Management. Machining solutions

Sheet Metal Stamping Dies & Processes

Armaturenwerk Hötensleben GmbH. AWH-Connect

Home"" """"> ar.cn.de.en.es.fr.id.it.ph.po.ru.sw

AUTOMOTIVE EXCELLENCE

Tool Design and Concurrent Engineering using Rapid Tooling Construction Methods

SFI SPECIFICATION 61.1 EFFECTIVE: FEBRUARY 26, 2014

e-manufacturing Solutions

in Thüringen, Germany

Case Study: Mass Production in Small Scale Industries

ADVANCES IN AUTOMATIC OPTICAL INSPECTION: GRAY SCALE CORRELATION vs. VECTORAL IMAGING

SPERRYN GAS CONTROLS DELTA FLUID PRODUCTS LIMITED

CAD/ CAM Prof. P. V. Madhusudhan Rao Department of Mechanical Engineering Indian Institute of Technology, Delhi Lecture No. # 03 What is CAD/ CAM

Innovation From Concept to Production

TRUSTED SOLUTIONS AND INNOVATION CATALOG DIE SETS

REV G D Boeing Partner Network REFERENCE ONLY Copy 1 of 15

Pump Skid Fabrication for Magnetic Coupling. Rick Soltis Chief Mechanic City of Bedford

GOM 3D File Format. Version 1.1b GOM mbh, July GOM mbh Mittelweg Braunschweig

The Coating Machinery Experts Supplier Questionnaire

Theatres/Channels All theatres. Indirect channel. Author/Owner

Transcription:

Application Example: Rapid Manufacturing Toolmaking: Milling on digitized data, Casted Blanks Measuring Systems: ATOS Keywords: casted blanks, stamping process, cutter path, toolmaking Big tools or dies for sheet metal work are mostly milled out from casted blanks. The blank has to have excess material to compensate for deviations in the imbedding and the casting. In addition the blank has to have excessive material in the active areas to allow machining and hand tuning of the tool to produce the requested form and surface quality of the part in the stamping process. The digitizing of the blanks can be done by the ATOS Scanner and the ATOS export data can be directly imported in CAM systems. Based on the actual data, the form of the blank can now be fitted into the needed tooling geometry. Then an optimal fit can be defined with minimized processing time. In addition an optimized and collision free cutting path can be calculated, with ideal cutting parameters and minimized cutting time to generate the tool from the blank in a predictable, fast, save and unmanned operation. GOM mbh Mittelweg 7-8 38106 Braunschweig Germany Phone +49 531 390 29 0 Fax +49 531 390 29 15 info@gom.com GOM International AG Bremgarterstrasse 89B 8967 Widen Switzerland Phone +41 5 66 31 04 04 Fax +41 5 66 31 04 07 international@gom.com GOM France SAS 10 Quai de la Borde - Bât A2 91130 Ris Orangis France Phone +33 1 60 47 90 50 Fax +33 1 69 06 63 60 info-france@gom.com GOM UK Ltd Business Innovation Centre Coventry, CV3 2TX Great Britain Phone +44 2476 430 230 Fax +44 2476 430 001 info-uk@gom.com GOM Branch Benelux Interleuvenlaan 15 E 3001 Leuven Belgium Phone +32 16 408 034 Fax +32 16 408 734 info-benelux@gom.com Copyright 2008 GOM mbh All rights reserved! Rev. A (en) 08082008 www.gom.com 1

Rapid Manufacturing/ Toolmaking Milling on digitized data, Casted Blanks Measuring Systems: ATOS Keywords: casted blanks, stamping process, cutter path, toolmaking Big tools or dies for sheet metal work are mostly milled out from casted blanks. To produce these blanks, models are built using easy to process materials (Styropor or similar). Then foundry relevant additions, such as inlets and outlets are added. Then the form is imbedded in casting sand. After the backing of the form, the model material is burned out and the casting is made. The blank has to have excess material to compensate for deviations in the imbedding and the casting. In addition the blank has to have excessive material in the active areas to allow machining and hand tuning of the tool to produce the requested form and surface quality of the part in the stamping process (Fig. 1). Fig. 1: Casted blank (1.5 x 1.0 x 0.5 meter) digitized using the ATOS scanner with a big measuring area Fig. 2: Casted blank digitized using the ATOS scanner with a big measuring area Copyright 2008 GOM mbh All rights reserved! Rev. A (en) 08082008 www.gom.com 2

For the machining, the blank is aligned and bolted down on the worktable of an appropriate big horizontal milling machine. First usually the bottom is machined to a flat plane and then the blank is turned and the coarse contour of the tool is visible. As the processing time of the blank on the milling machine is a mayor cost, a time reduction is very welcome. Therefore big blanks are often inspected and alignment marks are manually applied on the blank before its positioning on the milling machine. Based on the marks, the blank is positioned on the milling table, aligned and bolted down. Then, usually casting specific modifications are removed by cutting them off or milling them down in manual control. Then the first contact point of the milling tool and the blank is defined letting the cutter work in the air with careful manual approach of the cutter to the blank. From this starting point the roughing is started. As the cutting depth is not uniform and can not be predicted by the CAM software, a slow feeding rate has to be used, with manual supervision and correction. Fig. 3: Digitized blank and the optimized roughing of a blank using a ball cutter. Based on the digitizing the roughing could be reduced from 12.5 hours to 6 hours using Tebis milling software. Based on measurements with manual calipers a safe or optimized alignment of a big and complicated blank is not possible. A bad alignment can even ask for deposition welding to be able to machine all relevant surfaces of the future tool. For the digitizing of blanks GOM has added a large measuring area to the ATOS digitizer. For the digitizing of the big casted blanks, markers are applied on the blank.then a central view is captured. Then additional views are captured and automatically transferred into the existing scanned data. Based on this technique, blanks with up to 5 x 3 meter size can be digitized in one hour keeping the requested accuracy. The export data from the ATOS system is either a file in "stl" format or section data, in "iges" or "vda" format. The ATOS export data can be directly imported in CAM systems such as TEBIS ("SCAN" module) or WorkNC ("NCSpeed" module from Sescoi Inc). Based on the actual data, the form of the blank can now be fitted into the needed tooling geometry. Then an optimal fit can be defined with minimized processing time. Copyright 2008 GOM mbh All rights reserved! Rev. A (en) 08082008 www.gom.com 3

In addition an optimized and collision free cutting path can be calculated, with ideal cutting parameters and minimized cutting time to generate the tool from the blank in a predictable, fast, save and unmanned operation. Used is the above described process at BMW, Mercedes and Audi, in Germany, in collaboration with TEBIS and SESCOI. In the actual case, the time on the milling machine could be reduced from 48 hours to 8 hours. Important for the customer was, in addition to the time and money saving, the reliable, save and predictable process. Fig. 4: Casted blank, 3 x 2 x 1 meter Fig 5: Digitized blank with foundry relevant modifications (left) and optimized cutting paths produced by Tebis. Automotive customers start to ask for ready to use tools, with a digital description of the actual tooling form from their suppliers. Based on this data, a quality control and traceability process can be started. Wear can be quantified, rework of the tool can be ordered and tested with a well defined master form and, if needed, an accurate copy of the tool can be produced fast. The GOM scanner can also be used to scan the tool for this application. To get the needed high accuracy, the ATOS scanner is calibrated to digitize a smaller measuring area. Markers are attached to the tool and the TRITOP photogrammetry system from GOM is used to define the accurate position of this markers. Then the ATOS digitizer is used to scan the tool and insert the digitized data into the grid defined by the markers. Using this (ATOS XL) technology, an accuracy of the scanned data of few hundredths of a millimeter can be guaranteed. Copyright 2008 GOM mbh All rights reserved! Rev. A (en) 08082008 www.gom.com 4

The ATOS (XL) digitizing system is the standard for the digitizing in design, in product development and in quality control. The two cameras used in the ATOS scanners verify the calibration of the scanner in each measurement and are therefore a necessity for the use of a transportable system in quality control applications. Also the change of the measuring area with calibration based on a certified artifact is done by the user in a few minutes. Using this potential, a GOM digitizer can be adjusted to different customer needs and deliver accurate and efficient results. Fig. 6: Tooling from the inner side of a hood Copyright 2008 GOM mbh All rights reserved! Rev. A (en) 08082008 www.gom.com 5