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Numerical simulation of TiC cermet/iron joint brazed with Ag-Cu-Zn filler metal

Numerical simulation of TiC cermet/iron joint brazed with Ag-Cu-Zn filler metal
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摘要 Stress concentration zones and the maximum value of thermal stress of TiC cermet/iron joint brazed with Ag-Cu-Zn filler metal during cooling were studied. The results show that when the temperature is 300K, the maximum values of shear stress and tensile stress on TiC cermet/iron interface both appear on the tip of Ag-Cu-Zn/iron interface, which makes Ag-Cu-Zn/iron interface become weak zone of the interface. Tensile stress on iron undersurface relaxes to the inner of iron, and the compression stress on iron undersurface concentrates on the side of iron as the temperature decreases, so cracks appear easily at the site where tensile and compression stress cross. Stress concentration zones and the maximum value of thermal stress of TiC cermet/iron joint brazed with Ag-Cu-Zn filler metal during cooling were studied. The results show that when the temperature is 300K, the maximum values of shear stress and tensile stress on TiC cermet/iron interface both appear on the tip of Ag-Cu-Zn/iron interface, which makes Ag-Cu-Zn/iron interface become weak zone of the interface. Tensile stress on iron undersurface relaxes to the inner of iron, and the compression stress on iron undersurface concentrates on the side of iron as the temperature decreases, so cracks appear easily at the site where tensile and compression stress cross.
出处 《中国有色金属学会会刊:英文版》 CSCD 2005年第S2期30-34,共5页 Transactions of Nonferrous Metals Society of China
基金 Project(50325517)supportedbytheNationalNaturalScienceFoundationofChina
关键词 numerical simulation TIC CERMET IRON BRAZING TAPPET numerical simulation TiC cermet iron brazing tappet
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