This paper describes algorithms for automated design of rotary-platen type of multi-shot molds for manufacturing multi-material objects. The approach behind our algorithms works in the following manner. First, we classify the given multi-material object into several basic types based on the relation
Geometric algorithms for automated design of multi-piece permanent molds
โ Scribed by Alok K. Priyadarshi; Satyandra K. Gupta
- Publisher
- Elsevier Science
- Year
- 2004
- Tongue
- English
- Weight
- 886 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0010-4485
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โฆ Synopsis
Multi-piece molds, which consist of more than two mold pieces, are capable of producing very complex parts-parts that cannot be produced by the traditional molds. The tooling cost is also low for multi-piece molds, which makes it a candidate for pre-production prototyping and bridge tooling. However, designing multi-piece molds is a time-consuming task. This article describes geometric algorithms for automated design of multi-piece molds. A multi-piece mold design algorithm has been developed to automate several important molddesign steps: finding parting directions, locating parting lines, creating parting surfaces, and constructing mold pieces. This algorithm constructs mold pieces based on global accessibility analysis results of the part and therefore guarantees the disassembly of the mold pieces. A software system has been developed, which has been successfully tested on several complex industrial parts.
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