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The effect of deep cryogenic treatments on the mechanical properties of an AISI H13 steel

机译:深低温处理对AISI H13钢力学性能的影响

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摘要

Cryogenic treatments are considered a good way to reduce the retained austenite content and improve the performance of tool steels. Four different heat treatments, two of which included a deep cryogenic stage, were applied in this study to an H13 tool steel, subsequently determining its mechanical properties by means of tensile, hardness and fracture toughness tests. Furthermore, scanning electron microscopy and X-ray diffraction analysis were performed to gain an insight into the microstructural evolution of these heat treatments during all the stages. It was concluded that the application of a deep cryogenic treatment to H13 steel induces higher thermal stresses and structural defects, producing a dispersed network of fine carbides after the subsequent tempering stages, which were responsible for a significant improvement in the fracture toughness of this steel without modifying other mechanical properties. Although the application of a deep cryogenic treatment reduces the retained austenite content, there is a minimum innate content which cannot be transformed by heat treatment. Nevertheless, this austenite is hence believed to be stable enough and should not transform during the normal service life of forging dies.
机译:低温处理被认为是减少残余奥氏体含量并改善工具钢性能的好方法。在这项研究中,对H13工具钢进行了四种不同的热处理,其中两个包括深低温阶段,随后通过拉伸,硬度和断裂韧性测试确定其机械性能。此外,进行了扫描电子显微镜和X射线衍射分析,以了解这些热处理在所有阶段的微观结构演变。结论是,对H13钢进行深低温处理会引起较高的热应力和结构缺陷,在随后的回火阶段后会产生细小的碳化物的分散网络,这可显着改善这种钢的断裂韧性,而无修改其他机械性能。尽管深低温处理的应用降低了残余奥氏体含量,但存在固有的最低含量,该含量不能通过热处理转化。然而,据信这种奥氏体足够稳定,在锻模的正常使用寿命期间不应变形。

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