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In situ TEM tensile testing on high-entropy alloy coating by laser surface alloying

机译:通过激光表面合金化高熵合金涂层的原位TEM拉伸试验

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摘要

A unique technique, in situ TEM tensile testing, was used to investigate the fracture process of Ni-Cr-CoTi-V-Al high-entropy alloy coating with complex phases. The results of in situ TEM observation indicated that during the fracture process, dislocations get together in the interface between BCC HEA phase and (Co, Ni) Ti-2 compounds and crack propagation happens along the phase interface, leading to the final rupture, which proves that the phase interface may be the probable failure place. Also, the fracture strength and Young's modulus were calculated according to the stress-strain curve from the in situ TEM tensile testing. The stress-strain curve shows a good linearity, confirming the brittle failure. The fracture strength is calculated to be similar to 3.3 GPa and the fracture strain is measured to be similar to 3.1%. The Young's modulus of the tensile sample is calculated to be similar to 102 GPa, quite close to that of bulk titanium alloy. (C) 2017 Elsevier B.V. All rights reserved.
机译:一种独特的技术,原位TEM拉伸试验用于研究Ni-Cr-Coti-V-Al高熵合金涂层与复杂相的裂缝过程。原位TEM观察结果表明,在裂缝过程中,位于BCC HEA相和(CO,Ni)Ti-2化合物之间的界面中的脱位在一起,沿相位界面发生裂纹传播,导致最终破裂,这证明相位接口可能是可能的故障位置。而且,根据原位TEM拉伸试验的应力 - 应变曲线计算裂缝强度和杨氏模量。应力 - 应变曲线显示出良好的线性,证实脆性失败。计算断裂强度与3.3GPa类似,测量骨折菌株与3.1%相似。计算拉伸样品的杨氏模量与102GPa相似,非常接近散装钛合金。 (c)2017年Elsevier B.V.保留所有权利。

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