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滑动轴承双金属结合强度实验研究 被引量:1
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作者 郭千文 强健 《热力透平》 2016年第2期111-113,122,共4页
结合上海汽轮机厂滑动轴承产品特征,选择不同的巴氏合金、瓦胎材料及连接形式组成18组实验试样,并对试样进行了双金属结合强度测试。实验结果表明:γ型巴氏合金、B型钢瓦胎以及W型连接形式可提供最好的结合强度,可成为滑动轴承设计过程... 结合上海汽轮机厂滑动轴承产品特征,选择不同的巴氏合金、瓦胎材料及连接形式组成18组实验试样,并对试样进行了双金属结合强度测试。实验结果表明:γ型巴氏合金、B型钢瓦胎以及W型连接形式可提供最好的结合强度,可成为滑动轴承设计过程中的首选。 展开更多
关键词 滑动轴承 巴氏合金 瓦胎 连接形式 双金属结合强度
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Bonding properties of interface in Fe/Al clad tube prepared by explosive welding 被引量:18
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作者 孙显俊 陶杰 郭训忠 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第10期2175-2180,共6页
A Fe/Al clad tube was prepared by explosive welding.Then the bonding characteristic of the interface was investigated by compression,flattening and compression-shear test.The test results exhibit that the clad tubes p... A Fe/Al clad tube was prepared by explosive welding.Then the bonding characteristic of the interface was investigated by compression,flattening and compression-shear test.The test results exhibit that the clad tubes possessing good bonding interface have higher shear strength than that of pure aluminum and can bear both axial and radial deformation.The original interface between aluminum layer and ferrite layer was observed by scanning electron microscopy(SEM).The results show that the clad tubes with good bonding properties possess the interface in wave and straight shape.The Fe/Al clad tube was used to manufacture the T-shape by hydro-bulging.It is found that the good-bonding interface of the Fe/Al clad tube plays a dominant role in the formation of the T-shape. 展开更多
关键词 Fe/Al clad tube bonding property INTERFACE plastic deformation T-shape hydro-bulging
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Interfacial microstructure of Cu Cr/1Cr18Ni9Ti bi-metal materials and its effect on bonding strength
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作者 ZHANG Qiao LIANG ShuHua +1 位作者 ZOU JunTao YANG Qing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第5期825-831,共7页
The Cu Cr/1Cr18Ni9 Ti bi-metal materials were prepared by the solid-liquid bonding method. The microstructures, mechanical properties and formation mechanism of the bonding interface were studied. The results show tha... The Cu Cr/1Cr18Ni9 Ti bi-metal materials were prepared by the solid-liquid bonding method. The microstructures, mechanical properties and formation mechanism of the bonding interface were studied. The results show that there exists a serrated transition layer with a certain width at the interface of Cu Cr/1Cr18Ni9 Ti bi-metal materials, and the transition layer consists of Fe-based and Cu-based solid solutions. The elastic modulus and hardness reach the maximum values at the interface closing to the 1Cr18Ni9 Ti zone. The bonding temperature has a significant effect on the width and morphology of the transition layer. The interfacial bonding strength is at least 30% higher than that of the Cu Cr alloy, and the tensile fracture occurs at the side of the Cu Cr alloy rather than at the bonding interface. 展开更多
关键词 bonding modulus tensile interfacial SAED hardness closing polymerization Figure bonded
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