Weight reduction is a hot topic in automotive industry. Both the applications of tube hydroforming technique and magnesium alloys offer a large potential for reducing the weight of automotive components. In this research, the relationship between forming pressure and bulge height, the maximum forming pressure and the forming limit during the tube hydraulic bulging process are first analysed. A self-designed warm hydraulic bulge forming equipment and the seamlessly extruted magnesium alloy AZ61 tubes, are used for carrying out a series of warm hydraulic bulge tests, and discussing the formalibility of the magnesium tubes at various temperatures. Furthermore, the flow stress curves are determined by the mathematical model in this paper with the bulge forming test results. Then the validity of the analytical model is verified by comparing the forming pressure and bulge height between analytical and experimental values.
Identifer | oai:union.ndltd.org:NSYSU/oai:NSYSU:etd-0903108-220632 |
Date | 03 September 2008 |
Creators | Chuang, Han-chieh |
Contributors | Fuh-Kuo Chen, Su-Hai Hsiang, Wei-Ching Yeh, Yeong-Maw Hwang, Woei-Shyan Lee |
Publisher | NSYSU |
Source Sets | NSYSU Electronic Thesis and Dissertation Archive |
Language | Cholon |
Detected Language | English |
Type | text |
Format | application/pdf |
Source | http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0903108-220632 |
Rights | campus_withheld, Copyright information available at source archive |
Page generated in 0.0083 seconds