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Ultrahigh-strength CoCrFeMnNi high-entropy alloy wire rod with excellent resistance to hydrogen embrittlement

机译:具有高抗氢脆性的超高强度CoCrFeMnNi高熵合金线材

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An ultrahigh-strength CoCrFeMnNi high-entropy alloy wire rod was produced using cryogenic temperature caliber rolling. Because of the highly increased twinning activity caused by lowering the temperature to 77 K, significant twinning-induced grain refinement occurred; thus, an ultrafine (< 100 nm) grain structure could be achieved in the processed material. The processed material showed a remarkably high tensile strength of ~ 1.7 GPa, and also had excellent resistance to hydrogen embrittlement (HE), in contrast to the typical trade-off relationship between these two properties. The exceptionally high resistance to HE was attributed to the combined effects of (1) difficulties in accumulating hydrogen owing to the sluggish hydrogen diffusion caused by the face-centered cubic crystal structure and the severe lattice distortion, (2) the high hydrogen threshold required for HE at the dominant cracking sites of twin boundaries, and (3) absence of martensite transformation.
机译:使用低温温度口径轧制生产了超高强度CoCrFeMnNi高熵合金线材。由于将温度降低到77 K会大大增加孪晶活性,因此发生了显着的孪晶诱导晶粒细化。因此,可以在加工的材料中获得超细(<100 nm)的晶粒结构。与这两种性能之间的典型权衡关系相反,该加工材料显示出极高的抗拉强度〜1.7 GPa,并且还具有出色的抗氢脆性(HE)。对HE的极高抵抗力归因于以下两个方面的综合作用:(1)由于面心立方晶体结构导致的氢扩散缓慢以及严重的晶格畸变,导致氢积累困难;(2)所需的高氢阈值HE在双晶界的主要开裂部位,以及(3)马氏体相变不存在。

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