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Effects of molybdenum and nickel additions on the structure and properties of carburized and hardened low carbon steels

机译:钼和镍的添加对渗碳淬火低碳钢组织和性能的影响

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摘要

The effect of molybdenum and nickel on the microstructure and properties of low carbon steels in the carburized and hardened conditions were studied by means of optical microscopy, surface hardness and microhardness measurements, X-ray diffractometry and impact tests. It was found that molybdenum produces fine martensite and nickel has no effect in refining the size of martensite. Molybdenum with nickel is more effective than molybdenum without nickel in refining the size of martensite. Molybdenum and nickel enhance the formation of retained austenite in the case of carburized and hardened low carbon steels but nickel is more effective than molybdenum in enhancing the formation of retained austenite. Molybdenum improves and nickel reduces the maximum case hardness steels. The presence of nickel decreases the effect of molybdenum in the increment of maximum case hardness. Molybdenum and nickel both increase the core hardness but molybdenum is more effective than nickel in increasing the core hardness. Molybdenum with nickel is more effective in increasing the core hardness than molybdenum without nickel. Molybdenum and nickel both reduce the toughness of the core the steels. Nickel is more detrimental to toughness than molybdenum.
机译:通过光学显微镜,表面硬度和显微硬度测量,X射线衍射和冲击试验研究了钼和镍对低碳钢在渗碳和硬化条件下的组织和性能的影响。发现钼产生细的马氏体,镍对细化马氏体的尺寸没有影响。含镍的钼比不含镍的钼更有效地细化马氏体的尺寸。在渗碳和淬火低碳钢的情况下,钼和镍可增强残留奥氏体的形成,但镍在增强残留奥氏体形成方面比钼更有效。钼改善了镍含量,降低了最高表面硬度的钢。镍的存在以最大表面硬度的增加降低了钼的作用。钼和镍均会增加芯部硬度,但是钼在增加芯部硬度方面比镍更有效。与不含镍的钼相比,含镍的钼在提高芯部硬度方面更为有效。钼和镍都会降低钢芯的韧性。镍比钼更不利于韧性。

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