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Effects of strain rate on room- and cryogenic-temperature compressive properties in metastable V10Cr10Fe45Co35 high-entropy alloy

机译:应变速率对亚稳V10Cr10Fe45Co35高熵合金室温和低温压缩性能的影响

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摘要

Quasi-static and dynamic compressive properties of an FCC-based metastable HEA (composition; V10Cr10Fe45Co35 (at.%)) showing both Transformation Induced Plasticity (TRIP) and TWinning Induced Plasticity (TWIP) were investigated at room and cryogenic temperatures. During the quasi-static and dynamic compression at room temperature, the FCC to BCC TRIP occurred inside FCC grains, and resulted in very high strain-hardening rate and consequently maximum compressive strength over 1.6 GPa. The dynamic compressive strength was higher by 240 MPa than the quasi-static strength because of strain-rate-hardening effect, and kept increasing with a high strain-hardening rate as the twinning became activated. The cryogenic-temperature strength was higher than the room-temperature strength as the FCC to BCC TRIP amount increased by the decrease in stability of FCC phase with decreasing temperature. Under dynamic loading at cryogenic temperature, twins were not formed because the increase in SFE due to adiabatic heating might not be enough to reach the TWIP regime. However, the dynamically compressed specimen showed the higher strength than the quasi-statically compressed specimen as the strain-rate-hardening effect was added with the TRIP.
机译:在室温和低温下研究了基于FCC的亚稳态HEA(成分; V10Cr10Fe45Co35(at。%))的准静态和动态压缩性能,既显示了转变诱导的可塑性(TRIP)又显示了孪晶诱导的可塑性(TWIP)。在室温下的准静态和动态压缩过程中,FCC到BCC TRIP发生在FCC晶粒内部,并导致非常高的应变硬化速率,因此在1.6 GPa以上具有最大压缩强度。由于应变速率硬化效应,动态抗压强度比准静态强度高240 MPa,随着孪晶的活化,动态压缩强度以较高的应变硬化率保持增加。随着温度降低,FCC相的稳定性降低,从FCC到BCC TRIP的量增加,低温强度高于室温强度。在低温下的动态载荷下,未形成孪晶,因为绝热加热导致SFE的增加可能不足以达到TWIP方案。但是,由于TRIP加上了应变速率硬化效应,因此动态压缩的试样比准静态压缩的试样具有更高的强度。

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