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The Influence of Particle Size and Soaking Time onSurface Hardness of Carburized AISI 1018 Steel

机译:粒度和保温时间对渗碳AISI 1018钢表面硬度的影响

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This work examines the effect of process variables on the mechanical property of carburized AISI 1018 steel quenched in water and oil for improved performance. A carburizer consisting of charcoal was used for research with sea shell as energizer. Samples were carburized using weight percent of seashell (10, 20, 30 and 40%) with particle sizes of 212 µm, 425 µm and 600 µm respectively. The process was carried out at carburizing temperature of 950°C, soaked for 4, 6, and 8 hours and quenched in oil and water. The samples were further tempered at 200°C for 1hour to relieve the stress built up during quenching. Hardness test was carried on the steel samples. The results of the study showed that hardness values of the carburized and tempered steel increased with influence of soaking time, volume fraction and particle sizes of energizer. The optimal carburizing effect was achieved at 90% charcoal and 10% seashell (energizer) of 212 µm particle size at 8 hrs soaking time when quenched in water.
机译:这项工作研究了工艺变量对在水和油中淬火的渗碳AISI 1018钢的机械性能的影响,以提高性能。使用由木炭组成的渗碳剂进行研究,并以贝壳作为增能剂。使用贝壳的重量百分比(10%,20%,30%和40%)对样品渗碳,颗粒尺寸分别为212 µm,425 µm和600 µm。该过程在950℃的渗碳温度下进行,浸泡4、6和8小时,然后在油和水中淬火。将样品在200°C下进一步回火1小时,以消除淬火过程中产生的应力。对钢样品进行硬度测试。研究结果表明,渗碳钢和回火钢的硬度值随浸泡时间,体积分数和激发剂粒径的影响而增加。当在水中淬火8小时后,在212 µm粒径的90%木炭和10%贝壳(增能剂)下可获得最佳的渗碳效果。

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