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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part A. Defect and Diffusion Forum >The Influence of Post-quenching Deep Cryogenic Treatment on Tempering Processes and Properties of D2 Tool Steel. Studies of Structure, XRD, Dilatometry, Hardness and Fracture Toughness
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The Influence of Post-quenching Deep Cryogenic Treatment on Tempering Processes and Properties of D2 Tool Steel. Studies of Structure, XRD, Dilatometry, Hardness and Fracture Toughness

机译:淬火后的深冷处理对D2工具钢回火工艺和性能的影响。研究结构,XRD,膨胀系数,硬度和断裂韧性

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摘要

A significant increase in durability of cryogenically treated tools after quenching was reported by a number of publications [1, 2], As research studies show [4, 5, 6, 7], the main reason for this is the kind of carbides precipitated during tempering at temperature range of 150 -200 ℃, which is different than in the case of conventional treatment. These carbides are finer and more evenly distributed in the matrix of steel. The number of carbides is higher than in conventionally treated steels because of higher fraction of martensite in cryogenically treated steels produced by retained austenite transformation at cooling to deep cryogenic temperatures. The number of carbides precipitated from martensite at low temperatures of tempering is proportional to shrinkage produced at the same temperatures of tempering. Calculations on the basis of dilatometric experiments show thai the shrinkage difference between the same D2 steel cryogenically and conventionally treated is higher than that which results from the increased fraction of martensite in cryogenically treated steel. The XRD studies of cryogenically treated steel show a presence of two kinds of martensites differing in tetragonality. Low temperature tempering of cryogenically treated steel produced two types of carbides - s carbide and η carbide. The conventionally treated steel consists of one kind of tetragonal martensite and one kind of carbide - the ε carbide. The hardness of cryogenically treated samples was somewhat higher than in conventionally treated ones, while fracture toughness of conventionally treated samples was somewhat higher than in cryogenically treated ones. The results obtained were discussed in reference to literature data.
机译:许多出版物[1,2]报道了淬火后低温处理的工具的耐用性显着提高,研究表明[4,5,6,7],其主要原因是在碳化过程中析出的碳化物种类。在150 -200℃的温度范围内回火,这与常规处理的情况不同。这些碳化物在钢的基体中更细,更均匀地分布。碳化物的数量比常规处理的钢要多,这是因为在冷却至深低温时,残余奥氏体转变而产生的低温处理钢中马氏体的比例更高。在低温回火下从马氏体中析出的碳化物的数量与在相同回火温度下产生的收缩成正比。根据膨胀试验得出的计算结果表明,同一种D2钢经深冷处理和常规处理后的收缩率差异要大于深冷处理钢中马氏体含量增加所导致的收缩率差异。进行深冷处理的钢的X射线衍射研究表明,存在两种四方性不同的马氏体。低温处理钢的低温回火产生两种类型的碳化物-s碳化物和η碳化物。经过常规处理的钢由一种四方马氏体和一种碳化物-ε碳化物组成。低温处理的样品的硬度略高于常规处理的样品,而常规处理的样品的断裂韧性略高于常规处理的样品。参考文献数据讨论了获得的结果。

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