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Additive manufacturing of steel-copper functionally graded material with ultrahigh bonding strength

Tan, Chaolin; Chew, Youxiang; Bi, Guijun*; Wang, Di; Ma, Wenyou; Yang, Yongqiang; Zhou, Kesong*
Science Citation Index Expanded
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摘要

Additive manufacturing enables processing of functionally graded materials (FGMs) with flexible spatial design and high bonding strength. A steel-copper FGM with high interfacial strength was developed using laser powder bed fusion (LPBF). The effect of laser process parameters on interfacial defects was evaluated by X-ray tomography, which indicates a low porosity level of 0.042 % therein. Gradient/fine dendritic grains in the interface are incited by high cooling rates, which facilitates interface strengthening. Multiple mechanical tests evaluate the bonding reliability of interface; and the fatigue tests further substantiate the ultrahigh bonding strength in FGMs, which is superior to traditional manufacturing methods. Mechanisms of the high interfacial bond strength were also discussed.

关键词

Laser powder bed fusion Steel-copper multi-materials Fatigue Functionally graded materials Bonding strength