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大型制品成型新工艺——螺旋挤压模铸工艺 被引量:2
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作者 程春扬 《火炸药》 1992年第1期26-30,共5页
论述了挤压、浇铸、等静压等六种工艺的优缺点,并提出一种新的螺旋挤压模铸工艺。叙述了该工艺的原理,推导了影响因素,列举了制造火箭推进剂药柱的试验数据以及 CT 扫描和点火试验结果,证实成型质量良好,还提出了连续化生产的设想。
关键词 成型 螺旋挤压模铸 推进剂药柱
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小设备压制大规格石墨电极的新工艺
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作者 程春扬 《炭素技术》 CAS CSCD 2002年第4期48-48,共1页
关键词 设备 压制 大规格 石墨电极 新工艺 挤压模铸
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Simulation and experimental verification of interfacial interactions in compound squeeze cast Al/Al-Cu macrocomposite bimetal 被引量:3
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作者 Mohammad Hossein BABAEE Behzad NIROUMAND +1 位作者 Ali MALEKI Meysam LASHANI ZAND 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第5期950-963,共14页
The objective of this work was to investigate the thermal and mechanical interactions between the two components of a compound squeeze cast macrocomposite bimetal. First, an Al/Al-4.5wt.%Cu macrocomposite bimetal was ... The objective of this work was to investigate the thermal and mechanical interactions between the two components of a compound squeeze cast macrocomposite bimetal. First, an Al/Al-4.5wt.%Cu macrocomposite bimetal was fabricated by compound squeeze casting process. Then, heat transfer, solidification and distribution of the generated stresses along the interface region of the bimetal were analyzed using Thermo-Calc, ProCAST and ANSYS softwares, and structure, copper distribution and microhardness changes across the interface of the bimetal were studied. The results showed no noticeable change in the structure of the Al-4.5wt.%Cu insert and no obvious micromixing and diffusion of copper across the interface. Simulation results were in good agreement with the experimental ones only when an equivalent oxide layer at the interface was defined and its effect on heat transfer was considered. This layer caused up to 50% decrease in local liquid fraction formed on the surface of the insert. Simulation of the generated stresses showed a uniformly distributed stress along the interface which was significantly lower than the compressive strength of the oxide layer, resulting in its good stability during the fabrication process. It was postulated that this continuous oxide layer not only acted as a thermal barrier but prevented the direct metal-metal contact along the interface as well. 展开更多
关键词 Al/Al-Cu macrocomposite BIMETAL compound squeeze casting simulation interface stress
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