Abstract
Element geometry can be restored with basic measurement techniques. However if the element geometry is too complex (free form surfaces), it is not possible to take all measurements in that way. Example presented in the paper is a drop forged element (car suspension link). In situation when spare element is out of reach (product withdraw from market, producer technological process tooling redesign), the element can be reproduced (singularly or in series, depending on producer). Reconstructed element is slightly different from a master element (impossible existence of reliable identically designed and manufactured parts), because of measurement uncertainty. Another problem is that original element is usually worn out or during disassembly process can be damaged, so it has different geometry,(when worn out – is not fitting to tolerances) than newly manufactured one. The practical approach for reverse engineering is based on: measurement uncertainty extrapolation, 3D part scanning, transformation of point cloud to solid model, composition examination of an alloy. The method is a complex solution which involves: geometrical description and material assignment and heat treatment. An important part of the method is typical measurement techniques. In cases when tolerances have to be preserved, additional tolerance assignment is needed according to linkage between redesigned part of element and parts of other elements in assembly. The insurance of measurement was checked according to typical tolerance of the drop forged element. The retrieved 3D model was compared with virtual mass to real master element mass. The technological tooling reconstructed prototype and element reconstructed prototype have been made. Finally the alloy material is assigned according to measurement result analysis (electron spectroscopy – EDS). Proposed example shows many important clues that can be used in order to provide properly redesigned element.
| Original language | English |
|---|---|
| Title of host publication | Engineering Solutions and Technologies in Manufacturing - Innovative Manufacturing Engineering International Conference, IManE 2014 |
| Editors | Laurentiu Slătineanu, Vasile Merticaru, Gheorghe Nagîţ, Margareta Coteaţă, Eugen Axinte, Petru Duşa, Gavril Muscă, Florin Negoescu, Octavian Lupescu, Oana Dodun, Irina Tiţa, Laurenţiu Ghenghea |
| Publisher | Trans Tech Publications Ltd. |
| Pages | 755-759 |
| Number of pages | 5 |
| ISBN (Electronic) | 9783038352754 |
| DOIs | |
| Publication status | Published - 2014 |
| Event | Innovative Manufacturing Engineering International Conference, IManE 2014 - Chisinau, Moldova, Republic of Duration: 29 May 2014 → 30 May 2014 |
Publication series
| Name | Applied Mechanics and Materials |
|---|---|
| Volume | 657 |
| ISSN (Print) | 1660-9336 |
| ISSN (Electronic) | 1662-7482 |
Conference
| Conference | Innovative Manufacturing Engineering International Conference, IManE 2014 |
|---|---|
| Country/Territory | Moldova, Republic of |
| City | Chisinau |
| Period | 29/05/14 → 30/05/14 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 9 Industry, Innovation, and Infrastructure
Keywords
- 3D scanning
- CAD
- CAM
- CMM
- Geomagic
- Reverse engineering
- Siemens NX
ASJC Scopus subject areas
- General Engineering
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