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A Novel Methods for Fracture Toughness Evaluation of Tool Steels with Post-Tempering Cryogenic Treatment

机译:回火后低温处理工具钢断裂韧性评估的新方法

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摘要

Cryogenic treatments are usually carried out immediately after quenching, but their use can be extended to post tempering in order to improve their fracture toughness. This research paper focuses on the influence of post-tempering cryogenic treatment on the microstructure and mechanical properties of tempered AISI M2, AISI D2, and X105CrCoMo18 steels. The aforementioned steels have been analysed after tempering and tempering + cryogenic treatment with scanning electron microscopy, X-ray diffraction for residual stress measurements, and micro- and nano-indentation to determine Young’s modulus and plasticity factor measurement. Besides the improvement of toughness, a further aim of the present work is the investigation of the pertinence of a novel technique for characterizing the fracture toughness via scratch experiments on cryogenically-treated steels. Results show that the application of post-tempering cryogenic treatment on AISI M2, AISI D2, and X105CrCoMo18 steels induce precipitation of fine and homogeneously dispersed sub-micrometric carbides which do not alter hardness and Young’s modulus values, but reduce residual stresses and increase fracture toughness. Finally, scratch test proved to be an alternative simple technique to determine the fracture toughness of cryogenically treated steels.
机译:低温处理通常在淬火后立即进行,但可以扩展到回火后使用,以提高其断裂韧性。本研究的重点是回火后低温处理对回火的AISI M2,AISI D2和X105CrCoMo18钢的组织和力学性能的影响。在对上述钢材进行回火和回火+低温处理后,使用扫描电子显微镜,X射线衍射进行残余应力测量以及微观和纳米压痕确定杨氏模量和塑性因子测量后,进行了分析。除了提高韧性之外,本工作的另一个目的是研究通过低温处理钢的划痕实验表征断裂韧性的新技术的适用性。结果表明,对AISI M2,AISI D2和X105CrCoMo18钢进行回火低温处理后,会析出细小且均匀分散的亚微米级碳化物,这些碳化物不会改变硬度和杨氏模量,但会降低残余应力并增加断裂韧性。 。最后,划痕测试被证明是一种确定低温处理钢的断裂韧性的替代简单技术。

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