正火处理和电包渗碳工艺对低碳钢力学性能影响的实验研究

Citra Annisa, I. Renreng, Lukamnul Hakim Arma, William Pian
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引用次数: 0

摘要

钢是工程中最常用的一种金属。本研究旨在从硬度、延展性等力学性能方面提高低碳钢的力学性能,并比较经电渗碳处理的碳钢与未经电渗碳处理的碳钢的硬度。本研究通过改变热处理工艺,即有电渗碳和无电渗碳,其中渗碳工艺使用重量百分比为80%和20%的K2CO3(碳酸钾)活性炭椰壳炭,温度为9000C,保温时间为60分钟,120分钟和180分钟。本研究结果表明,在电偶加热温度为9000C、保温时间为1小时时,碳钢的力学性能(硬度)有所提高,硬度值优于非电偶加热。电法得到的硬度值为94.06 HRB,非电法得到的硬度值为76.4 HRB。并形成珠光体相,提高了试样表面的硬度值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study Experimental the Effect of Normalizing Treatment and Galvanic Pack Carburizing Process on Mechanical Properties of Low Carbon Steel
Steel is the type of metal most often used in engineering. This study aimed to improve the mechanical properties of mild steel in terms of hardness, ductility, and other mechanical properties and to compare the hardness of carburized steel by galvanic treatment with non-galvanic carburizing of the steel. This research was carried out by varying the heat treatment process, namely carburizing with galvanic heat treatment and carburizing without galvanic, where the carburizing process uses activated carbon coconut shell charcoal with a weight percentage of 80% and 20% of K2CO3 (Potassium Carbonate) at a temperature of 9000C with a holding time of 60 minutes, 120 minutes and 180 minutes. The results obtained from this study indicate that the mechanical properties (hardness) of carbon steel increase at a temperature of 9000C with a holding time of 1 hour on the galvanic heating method with a better hardness value than the hardness of steel on the non-galvanic method. The hardness value obtained in the galvanic method is 94.06 HRB, while in the non-galvanic method, it is 76.4 HRB. And the pearlite phase is formed, increasing the hardness value on the surface of the specimen.
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