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首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >Pearlite in Ultrahigh Carbon Steels: Heat Treatments and Mechanical Properties
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Pearlite in Ultrahigh Carbon Steels: Heat Treatments and Mechanical Properties

机译:超高碳钢中的珠光体:热处理和机械性能

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摘要

Two ultrahigh carbon steel (UHCS) alloys containing 1.5 and 1.8 wt pct carbon, respectively, were studied. These materials were processed into fully spheroidized microstructures and were then given heat treatments to form pearlite. The mechanical properties of the heat-treated materials were evaluated by tension tests at room temperature. Use of the hypereutectoid austenite-cementite to pearlite transformation enabled achievement of pearlitic microstructures with various interlamellar spacings. The yield strengths of the pearlitic steels are found to correlate with a predictive relation based on interlamellar spacing and pearlite colony size. Decreasing the pearlite interlamellar spacing increases the yield strength and the ultimate strength and decreases the tensile ductility. It is shown that solid solution alloying strongly influences the strength of pearlitic steels.
机译:研究了两种分别含1.5和1.8 wt pct碳的超高碳钢(UHCS)合金。这些材料被加工成完全球化的微结构,然后进行热处理以形成珠光体。通过在室温下的拉伸试验评价热处理材料的机械性能。使用超共析奥氏体-钙钛矿向珠光体的转变使得能够实现具有不同层间间距的珠光体微结构。发现珠光体钢的屈服强度与基于层间间距和珠光体集落尺寸的预测关系相关。珠光体层间间距的减小会增加屈服强度和极限强度,并降低拉伸延性。结果表明,固溶合金化强烈影响珠光体钢的强度。

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