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Effect Of Mo-fe Substitution On Glass Forming Ability, Thermal Stability, And Hardness Of Fe-c-b-mo-cr-w Bulk Amorphous Alloys

机译:Mo-fe替代对Fe-c-b-mo-cr-w块状非晶态合金的玻璃形成能力,热稳定性和硬度的影响

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Amorphous Fe_(67-x)C_(10)B_9Mo_(7+x)Cr_4W_3 (x = 1-7 at. %) plates with 640 μm thickness were prepared by copper mold casting. The thermal properties and microstructural development during heat treatments were investigated by a combination of differential scanning calorimetry (DSC), differential thermal analysis, and X-ray diffractometry (XRD). The glass forming ability (GFA) and activation energy for crystallization have a distinct dependence on Mo content. Fe_(62)C_(10)B_9Mo_(12)Cr_4W_3 is the best glass former in this study, demonstrating a supercooled liquid region, △T_x = 51 K, and an activation energy for crystallization, Q = 453 kJ/mol. The GFA of alloys in this system was governed by elastic strain optimization resulting directly from the variation in Mo content. Heat treatments were performed to demonstrate resistance to crystallization under typical processing conditions. Alloys in this system exhibited a three-phase evolution during crystallization. A second set of heat treatments was performed to identify each phase. Hardness data was collected at each of the heat treatment conditions, and a bulk metallic glasses (BMG)-derived composite containing a Mo-rich phase exhibited Vickers Hardness in excess of 2000. The fully amorphous alloys had an average hardness approaching 1500.
机译:通过铜铸模制备厚度为640μm的非晶Fe_(67-x)C_(10)B_9Mo_(7 + x)Cr_4W_3(x = 1-7 at。%)板。通过差示扫描量热法(DSC),差示热分析和X射线衍射法(XRD)的组合研究了热处理过程中的热性能和微观结构。玻璃形成能力(GFA)和结晶活化能对Mo含量有明显的依赖性。 Fe_(62)C_(10)B_9Mo_(12)Cr_4W_3是本研究中最好的玻璃形成剂,显示了过冷的液体区域△T_x = 51 K,以及结晶的活化能Q = 453 kJ / mol。该系统中合金的GFA受弹性应变优化的支配,该优化直接源自Mo含量的变化。进行热处理以证明在典型加工条件下的抗结晶性。该系统中的合金在结晶过程中表现出三相演变。进行第二组热处理以识别每个相。在每个热处理条件下收集硬度数据,并且含有大量富Mo相的块状金属玻璃(BMG)衍生的复合材料的维氏硬度超过2000。完全非晶态合金的平均硬度接近1500。

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