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Surface Hardening of Steel by Novel Heat Treatment Method 'N-QUENCH'

机译:通过新型热处理方法“n-quench”表面硬化

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Gas carburizing with quenching is one of the most useful heat treatment process for steel parts. However, after quenching distortion is still occurs. A novel heat treatment process named "N-QUENCH" for solving this problem was developed. In N-QUENCH, nitrogen is infiltrated into the steel parts in austenite phase, and then is quenched to harden. The N-QUENCH process can also be applied to cheap low carbon steel such as the Cold Rolled Carbon Steel Sheet. In this study, the effectiveness of N-QUENCH was examined. After the N-QUENCH process, hardness profiles, structure, nitrogen and carbon concentration profiles were observed. Also, distortion and tribological properties were examined. The effective case depth (ECD), which is treated by N-QUENCH, is larger than ECD of gas nitrocarburizing for same period of time. Distortion of N-Quench is much smaller than that of gas carbonitriding, and is almost equal with that of gas nitrocarburizing. The seizure load is same as with other heat treatment processes. The wear loss of N-QUENCH is a lower, in the amount of about 1/2 that of the carbonitrided specimen and 1/3 that of the gas nitrocarburized specimen. The N-QUENCH is an effective heat treatment process for parts which require wear resistance. The tempering softening resistance is improved by nitrogen infiltration.
机译:淬火气体渗碳是钢部件最有用的热处理过程之一。然而,在淬火失真仍然发生之后。开发了一种用于解决这个问题的新型热处理过程,用于解决这个问题。在N-骤冷中,氮气在奥氏体相中渗透到钢部件中,然后淬灭以硬化。 N-淬火过程也可以应用于廉价的低碳钢,例如冷轧碳钢板。在这项研究中,检查了N-骤冷的有效性。在N-淬火过程中,观察到硬度谱,结构,氮气和碳浓度谱。此外,检查了变形和摩擦学性质。通过N-淬火处理的有效壳体深度(ECD)大于同一时间段的气体氮碳的ECD。 N-淬火的变形远小于气体碳凝集的抗变形,并且几乎与氮乙碳脱碳的差距。癫痫发作负载与其他热处理过程相同。 N-淬火的磨损损失是较低的,其碳氮样品的约1/2的量和气体氮碳排斥的标本的1/3。 N-淬火是需要耐磨性的部件的有效热处理过程。通过氮气渗透改善了回火软化抗性。

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