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工序间“孔面”间距的快速检测
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作者 朱正德 《现代制造工程》 CSCD 北大核心 2002年第5期50-51,共2页
关键词 机械加工 尺寸检测 检具 孔面间距测量
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工序间“孔面”间距的快速检测
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作者 朱正德 《柴油机设计与制造》 2001年第3期50-51,共2页
关键词 测量 检验夹具 发动机 孔面间距
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工序间“孔面”间距的快速检测
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作者 朱正德 《杭州机械》 2000年第1期27-28,共2页
关键词 工房间孔面间距 快速检测 检具
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工序间“孔面”间距的快速检测
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作者 朱正德 《湖北汽车》 2001年第1期87-88,101,共3页
关键词 汽车 发动机 缸体 机械制造 间距 工序间检测 检具 比较测量法
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Evaluation of significant manufacturing parameters in lost foam casting of thin-wall Al-Si-Cu alloy using full factorial design of experiment 被引量:4
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作者 Hassan JAFARI Mohd Hsbullah IDRIS Amirreza SHAYGANPOUR 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第10期2843-2851,共9页
Controlling process parameters of lost foam casting (LFC) enables this process to produce defect-free complex shape castings. An experimental investigation on lost foam casting of an A1-Si-Cu cast alloy was carried ... Controlling process parameters of lost foam casting (LFC) enables this process to produce defect-free complex shape castings. An experimental investigation on lost foam casting of an A1-Si-Cu cast alloy was carried out. The effects of pouting temperature, slurry viscosity, vibration time and sand size on surface finish, shrinkage porosity and eutectic silicon spacing of thin-wall casting were investigated. A full two-level factorial design of experimental technique was used to identify the significant manufacturing factors affecting the properties of casting. Pouring temperature was found as the most significant factor affecting A1-Si-Cu lost foam casting quality. It was shown that flask vibration time interacted with pouring temperature influenced euteetic silicon spacing and porosity percentage significantly. The results also revealed that the surface quality of the samples cast in fine sand moulds at higher pouring temperatures was almost unchanged, while those cast in coarse sand moulds possessed lower surface qualities. Furthermore, variation in slurry viscosity showed no significant effect on the evaluated properties compared to other parameters. 展开更多
关键词 Al-Si-Cu alloy lost foam casting full factorial design surface finish POROSITY silicon spacing
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