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Formation of ductile α/β-Ti phases in Ti_5Si_3 intermetallic compound and their effects on the microstructure and mechanical properties

机译:Ti_5Si_3金属间化合物中韧性α/β-Ti相的形成及其对组织和力学性能的影响

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The effect of ductile phase on structural and mechanical properties of the refractory intermetallic compound was studied. There are two types of Ti solid solution, α-Ti (bcc) and (β-Ti (hcp). The later phase is unstable under the temperature of β transus about 1138K in Ti-Si system. Therefore, it is necessary to add ternary element to make the β phase stable at room temperature. It was determined that the optimum compositions of (Ti_5Si_3+β-Ti) two phase alloys were Ti-32mol%Si-10mol%V and Ti-32mol%Si-5mol%Mo by using arc-melted samples. Ti_5Si_3 monolithic, (Ti_5Si_3+α-Ti) and two types of (Ti_5Si_3+(β-Ti) alloys were fabricated by mechanical alloying and vacuum hot pressing method. Mechanical properties including fracture toughness and high temperature strength were investigated by micro-Vickers hardness test from room temperature to 1373K.
机译:研究了韧性相对难熔金属间化合物结构和力学性能的影响。 Ti固溶体有α-Ti(bcc)和(β-Ti(hcp)两种,在Ti-Si系中,约在βtransus温度约1138K下,后一相不稳定。三元元素使β相在室温下稳定,确定(Ti_5Si_3 +β-Ti)两相合金的最佳组成为Ti-32mol%Si-10mol%V和Ti-32mol%Si-5mol%Mo通过电弧熔化的样品,通过机械合金化和真空热压法制备了整体的Ti_5Si_3,(Ti_5Si_3 +α-Ti)和两种类型的(Ti_5Si_3 +(β-Ti)合金,其力学性能包括断裂韧性和高温强度。通过Micro-Vickers硬度测试从室温到1373K进行了研究。

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