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Influence of zirconium addition on the microstructure, thermodynamic stability, thermal stability and mechanical properties of mechanical alloyed spark plasma sintered (MA-SPS) FeCoCrNi high entropy alloy

机译:锆添加对机械合金电火花等离子体烧结(MA-SPS)Fecocrni高熵合金的微观结构,热力稳定性,热稳定性和力学性能的影响

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摘要

Equiatomic FeCoCrNi (Zr-0) and non-equiatomic FeCoCrNiZr0.4 (Zr-0.4) high-entropy alloys (HEAs) were synthesised by mechanical alloying and spark plasma sintering. XRD analysis verified the formation of FCC and BCC solid solution phases in both alloys after 30 h of ball milling. While the SPS FeCoCrNi alloy contains both FCC and BCC solid solution phases, the FeCoCrNiZr0.4 presents an FCC solid solution. The thermodynamic analysis showed that FeCoCrNiZr0.4 is more stable with respect to the FeCoCrNi alloy. The phase stability of FeCoCrNiZr0.4 was revealed up to similar to 800 degrees C. The shear strength and hardness of the FeCoCrNi HEA improved with Zr addition. Failure analysis of the shear punch tested samples revealed a ductile fracture with dimple structure for FeCoCrNi and a brittle fracture with a smooth featureless surface for FeCoCrNiZr0.4.
机译:通过机械合金化和火花等离子体烧结合成了赤脂植物(Zr-0)和非均衡的Fecocrnizr0.4(Zr-0.4)高熵合金(SEE)。 XRD分析验证了在球磨后30小时后的两种合金中FCC和BCC固溶体相的形成。 虽然SPS Fecocri合金包含FCC和BCC固溶体相,但FecOrcnizr0.4呈现FCC固溶体。 热力学分析表明,FecOrcnizr0.4相对于Fecocrni合金更稳定。 Fecocrnizr0.4的相位稳定性显示为类似于800℃。Zr加入的Fecocri Hea的剪切强度和硬度改善。 剪切打孔测试样品的失效分析显示了具有Fecocrni的凹槽结构和脆性骨折,具有用于Fecocrnizr0.4的光滑无特色表面。

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