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Microstructural Evolution during DPRM Process of Semisolid Ledeburitic D2 Tool Steel

机译:半固态D2工具钢DPRM过程中的组织演变

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摘要

Semisolid metal processing is a relatively new technology that offers several advantages over liquid processing and solid processing because of the unique behaviour and characteristic microstructure of metals in this state. With the aim of finding a minimum process chain for the manufacture of high-quality production at minimal cost for forming, the microstructural evolution of the ledeburitic AISI D2 tool steel in the semisolid state was studied experimentally. The potential of the direct partial remelting (DPRM) process for the production of AISI D2 with a uniform globular microstructure was revealed. The liquid fraction was determined using differential scanning calorimetry. The microstructures of the samples were investigated using an optical microscope and a scanning electron microscope equipped with an energy dispersive spectroscopy analyser, while X-ray phase analysis was performed to identify the phase evolution and the type of carbides. Mechanical characterisation was completed by hardness measurements. The typical microstructure after DPRM consists of metastable austenite which was located particularly in the globular grains (average grain size about 50 μm), while the remaining interspaces were filled by precipitated eutectic carbides on the grain boundaries and lamellar network.
机译:半固态金属加工是一种相对较新的技术,由于在这种状态下金属具有独特的行为和特征的微观结构,因此与液态加工和固态加工相比,它具有多种优势。为了找到最小的加工链,以最低的成型成本制造高质量的产品,对半固态状态下的长晶AISI D2工具钢的组织演变进行了实验研究。揭示了直接部分重熔(DPRM)工艺生产具有均匀球状微结构的AISI D2的潜力。使用差示扫描量热法测定液体分数。使用配备有能量色散光谱分析仪的光学显微镜和扫描电子显微镜对样品的微观结构进行了研究,同时进行了X射线相分析,以确定相的演变和碳化物的类型。通过硬度测量完成机械表征。 DPRM后的典型显微组织由亚稳态奥氏体组成,该奥氏体特别位于球状晶粒中(平均晶粒尺寸约为50μm),而其余的空隙则由晶界和层状网络上沉淀的共晶碳化物填充。

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