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首页> 外文期刊>Journal of Materials Engineering and Performance >Carbon Restoration for Decarburized Layer in Spring Steel
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Carbon Restoration for Decarburized Layer in Spring Steel

机译:弹簧钢中脱碳层的碳还原

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It is well known that decarburization has a bad effect on spring steel strength. This research presents a method to improve the product quality by means of recovering the decarburization layer. Unlike conventional methods, which usually use mechanical means, this method relies on a basic metallurgical principle, the process of diffusion. A carbon-rich layer is coated on the surface of the object. The object is then heat treated at conditions similar to the manufacturing process. To accomplish the objective, an experiment and a finite-element analysis (FEA) simulation were performed. The material chosen was a hypo-eutectoid steel with an excessive decarburization layer. The simulation was performed by digitizing the optical micrograph of decarburized raw materials and meshing the picture to get elements to start the analysis. Simple diffusion theory was then applied to the model. Various time parameters were used to simulate the redistribution of the carbon atoms. Comparable with the simulation, an experiment was also performed. The experiment began by coating a carbon-rich material onto decarburized raw material. The samples were then austenitized and subsequently either annealed or quenched. The state of the carbon restoration was then evaluated. The research concluded that the idea of carbon restoration can be implemented in the manufacturing process.
机译:众所周知,脱碳对弹簧钢强度有不良影响。本研究提出了一种通过回收脱碳层来提高产品质量的方法。与通常使用机械手段的常规方法不同,该方法依赖于基本的冶金原理,即扩散过程。富碳层被涂覆在物体的表面上。然后在类似于制造过程的条件下对物体进行热处理。为了实现该目标,进行了实验和有限元分析(FEA)仿真。选择的材料是具有过量脱碳层的亚共析钢。通过对脱碳原料的光学显微图进行数字化处理并进行网格划分以获取元素以开始分析,从而进行了模拟。然后将简单扩散理论应用于该模型。使用各种时间参数来模拟碳原子的重新分布。与模拟相比,还进行了实验。实验通过将富含碳的材料涂覆到脱碳的原材料上开始。然后将样品奥氏体化,然后退火或淬火。然后评估碳还原的状态。研究得出结论,碳还原的想法可以在制造过程中实施。

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