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Microstructure and Room-Temperature Mechanical Properties of FeCrMoVTix High-Entropy Alloys

机译:FECRMOVTIX高熵合金的微观结构和室温机械性能

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FeCrMoVTix (x values represent the molar ratio, where x = 0, 0.5, 1.0, 1.5, and 2.0) high-entropy alloys were prepared by a vacuum arc melting method. The effects of Ti element on the microstructure and room-temperature mechanical properties of the as-cast FeCrMoVTix alloys were investigated. The results show that the prepared alloys exhibited typical dendritic microstructure and the size of the microstructure became fine with increasing Ti content. The FeCrMoV alloy exhibited a single body-centered cubic structure (BCC1) and the alloys prepared with Ti element exhibited BCC1 + BCC2 mixed structure. The new BCC2 phase is considered as (Fe, Ti)-rich phase and was distributed in the dendrite region. With the increase of Ti content, the volume fraction of the BCC2 phase increased and its shape changed from a long strip to a network. For the FeCrMoV alloy, the fracture strength, plastic strain, and hardness reached as high as 2231 MPa, 28.2%, and 720 HV, respectively. The maximum hardness of 887 HV was obtained in the FeCrMoVTi alloy. However, the fracture strength, yield stress, and plastic strain of the alloys decreased continuously as Ti content increased. In the room-temperature compressive test, the alloys showed typical brittle fracture characteristics.
机译:FECRMOVTIX(X值表示摩尔比,其中X = 0,0.5,1.0,1.5和2.0)通过真空电弧熔化方法制备高熵合金。研究了Ti元件对铸造FECRMOVTIX合金的微观结构和室温力学性能的影响。结果表明,制备的合金表现出典型的树突式微观结构,并且随着Ti含量的增加,微结构的尺寸变得微妙。 FECRMOV合金表现出单一的全体立方体结构(BCC1),并用TI元素制备的合金表现出BCC1 + BCC2混合结构。新的BCC2相被认为是(Fe,Ti)-RICH期,并分布在树突区域中。随着Ti含量的增加,BCC2相的体积分数增加,其形状从长条转到网络。对于FECRMOV合金,分别高达2231MPa,28.2%和720HV的断裂强度,塑性菌株和硬度。在FECRMOVTI合金中获得887 HV的最大硬度。然而,随着Ti含量的增加,合金的断裂强度,屈服应力和塑料应变连续下降。在室温压缩试验中,合金显示出典型的脆性断裂特性。

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