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Grain growth and Hall-Petch relationship in Ti37V15Nb22Hf23W3 refractory high-entropy alloys

机译:Ti37V15Nb22Hf23W3难熔高熵合金晶粒长大及Hall-Petch关系

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摘要

Given the potential high-temperature applications of refractory high-entropy alloys (RHEAs), fully understanding the influence of heat treatment conditions on the microstructural evolution is very urgent. The effects of annealing on the mechanical characteristics of non-equiatomic Ti37V15Nb22Hf23W3 RHEAs that are 80 cold rolled are investigated in this study. Firstly, a single-phase body-centered cubic (BCC) solid solution is identified in both as cold-rolled and recrystallized states at 1000 degrees C, and the tensile strength decreases as the annealing time increases. Furthermore, the Hall-Petch relationship in the formula of sigma = 786 + 712D(-1/2) is shown to be effectively characterized the relationship between the grain size and yield strength. The friction stress of 786 MPa in Ti37V15Nb22Hf23W3 RHEAs is higher than that of most metals and alloys reported previously, indicating that the current BCC RHEA has a high intrinsic stress. The coefficient, 712 MPa mu m(0.5), is higher than that in the HfNbTaTiZr RHEA and lower than in the HfNbTiZr RHEA, indicating greater grain-boundary strengthening.
机译:鉴于难熔高熵合金(RHEA)在高温下的潜在应用,充分了解热处理条件对微观组织演化的影响是非常迫切的。研究了退火对80%冷轧非等原子Ti37V15Nb22Hf23W3 RHEAs力学特性的影响。首先,在1000°C下,单相体心立方(BCC)固溶体在冷轧和再结晶状态下均处于冷轧状态,抗拉强度随退火时间的增加而降低;此外,sigma = 786 + 712D(-1/2)公式中的Hall-Petch关系被证明有效地表征了晶粒尺寸与屈服强度之间的关系。Ti37V15Nb22Hf23W3 RHEAs中786 MPa的摩擦应力高于前人报道的大多数金属和合金,表明目前的BCC RHEA具有较高的内禀应力。该系数为712 MPa μ m(0.5),高于HfNbTaTiZr RHEA和HfNbTiZr RHEA的晶界强化。

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