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首页> 外文期刊>Intermetallics >Designing novel lightweight, high-strength and high-plasticity Ti-x(AlCrNb)(100-x) medium-entropy alloys
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Designing novel lightweight, high-strength and high-plasticity Ti-x(AlCrNb)(100-x) medium-entropy alloys

机译:设计小说轻型,高强度和高塑性Ti-X(Alcrnb)(100-x)中等熵合金

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摘要

Due to the demand for reduced energy consumption by transportation vehicles, lighter weight high-entropy alloys (with density comparable to that of commercial Ti alloys around 4.5-5 g/cm(3)) are attracting more attention in terms of alloy design and application as structural materials. In this study, a nonequiatomic quaternary alloy system, Ti-x(AlCrNb)(100-x), was designed through the calculation of phase diagrams. Simulation results reveal that a single body-centered cubic (BCC) phase can be formed and can be stable at temperatures above 950 degrees C. Accordingly, a series of Ti-x(AlCrNb)(100-x), (x = 45-80) alloys containing a BCC structure were prepared through vacuum arc melting and rapid cooling. The designed alloys can exhibit desirable mechanical properties with high compression yield strength about 1500 MPa, high compression fracture strength about 1800 MPa and high compression plasticity more than 30% at room temperature. Moreover, the Ti65 alloy can demonstrate a tensile strength of 1200 MPa with a tensile elongation of 32%, after a homogenization treatment for 24 h. The specific compression and tensile strength can reach 0.36 and 0.24 GPa cm(3)/g.
机译:由于运输车辆的能耗降低,重量较轻的高熵合金(与商业TI合金相当的密度约为4.5-5克/厘米(3))在合金设计和应用方面都会吸引更多的关注作为结构材料。在本研究中,通过计算相图设计了一种非Quiatomic第四次合金系统Ti-x(Alcrnb)(100-x)。仿真结果表明,可以形成单一的立体(BCC)相,并且在950℃的温度下可以稳定。因此,一系列Ti-x(AlcrNb)(100-x),(x = 45- 80)通过真空熔融和快速冷却制备含有BCC结构的合金。设计的合金可以在室温下具有约1500MPa,高压缩塑性的高压缩屈服强度的理想机械性能,在室温下大于30%以上的高度压缩骨折强度。此外,在均质化处理24小时后,Ti65合金可以证明具有32%的拉伸伸长率为32%的拉伸强度。具体的压缩和拉伸强度可达到0.36和0.24gPa cm(3)/ g。

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