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铝制板翅式换热器真空钎接下凹原因探讨 被引量:2
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作者 朱宇龙 黄文大 《低温与特气》 CAS 2006年第1期19-21,共3页
基于铝制板式体的基本结构,提出了板式体真空钎接下凹形成原理,并在此基础上分析了影响板式体钎接下凹的因素:材料的影响、天气的影响、板式体外形的影响及钎接温度的影响。最后针对下凹问题,提出了几点改进意见。
关键词 铝制板翅式换热器 真空钎接 下凹
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杭氧大型真空钎接炉投入应用
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《化工科技市场》 CAS 2003年第7期48-48,共1页
关键词 大型真空钎接 应用 杭州杭氧股份有限公司 板翅式换热器 计算机程序 自动控制系统
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Interfacial features of TiAl alloy/316L stainless steel joint brazed with Zr−Cu−Ni−Al amorphous filler metal 被引量:9
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作者 Hong-gang DONG Run-ze ZHANG +2 位作者 Yue-qing XIA Xiao-hu HAO Peng LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第6期1680-1688,共9页
TiAl alloy and 316L stainless steel were vacuum-brazed with Zr−50.0Cu−7.1Ni−7.1Al(at.%)amorphous filler metal.The influence of brazing time and temperature on the interfacial microstructure and shear strength of the r... TiAl alloy and 316L stainless steel were vacuum-brazed with Zr−50.0Cu−7.1Ni−7.1Al(at.%)amorphous filler metal.The influence of brazing time and temperature on the interfacial microstructure and shear strength of the resultant joints was investigated.The brazed seam consisted of three layers,including two diffusion layers and one residual filler metal layer.The typical microstructure of brazed TiAl alloy/316L stainless steel joint was TiAl alloy substrate/α2-(Ti3Al)/AlCuTi/residual filler metal/Cu9Zr11+Fe23Zr6/Laves-Fe2Zr/α-(Fe,Cr)/316L stainless steel substrate.Discontinuous brittle Fe2Zr layer formed near the interface between the residual filler metal layer andα-(Fe,Cr)layer.The maximum shear strength of brazed joints reached 129 MPa when brazed at 1020℃ for 10 min.The diffusion activation energies ofα2-(Ti3Al)andα-(Fe,Cr)phases were−195.769 and−112.420 kJ/mol,respectively,the diffusion constants for these two phases were 3.639×10^(−6) and 7.502×10^(−10)μm^(2)/s,respectively.Cracks initiated at Fe2Zr layer and propagated into the residual filler metal layer during the shear test.The Laves-Fe2Zr phase existing on the fracture surface suggested the brittle fracture mode of the brazed joints. 展开更多
关键词 vacuum brazing dissimilar joining Zr-based amorphous filler metal intermetallic compound growth kinetics
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