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- W4306377758 abstract "• Cu and 316L stainless steel with abundant crystal defects are constructed on bonding surfaces using high-current pulsed electron beam, and direct bonding is carried out in vacuum. • The well-diffused Cu-316L interfaces were attributed to enhanced atomic interdiffusion between the two bonding surfaces with large quantities of crystal defects. • After HCPEB pretreatment, the shear strength was found to be 134.8 MPa for the treated-850°C joint, which increased by approximately 1.70 times than that of the initial. • HCPEB technique is an effective pretreatment approach to improve the joint performance of Cu-316L. In this paper, Cu and 316L stainless steel with abundant crystal defects are constructed on bonding surfaces using high-current pulsed electron beam (HCPEB), and direct bonding is carried out in vacuum. The bonding temperature was varied as 800 °C and 850 °C, while the bonding pressure of 5 MPa and the bonding time of 40 min was maintained. Microstructure observations revealed that the initial coarse grains of the 316L was significantly changed to fine grains with abundant crystal defects after HCPEB irradiation. After diffusion bonding, the bonded area of the initial joint is not completely joined. Comparatively, the joints pretreated by HCPEB displayed a well-bonded interface. The diffusion coefficient of Cu at interface is significantly increased as well, which is attributed to the acceleration of atomic diffusion. Bonding strength indicates that the shear strength of the joints prepared via HCPEB pretreatment is much higher than the initial joints." @default.
- W4306377758 created "2022-10-17" @default.
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- W4306377758 date "2022-11-01" @default.
- W4306377758 modified "2023-09-29" @default.
- W4306377758 title "Influence of high-current pulsed electron beam irradiation on elemental diffusion and mechanical properties of copper/316L stainless-steel bonded joints" @default.
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- W4306377758 doi "https://doi.org/10.1016/j.nimb.2022.09.021" @default.
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