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MACHINABILITY IMPROVEMENT THROUGH HEAT TREATMENT IN 8620 LOW-CARBON ALLOYED STEEL

机译:通过热处理改善8620低碳合金钢的可加工性

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摘要

The effect of different heat treatments is evaluated on SAE 8620 low-carbon alloyed steel by means of drilling tests. Improving machinability through prior heat treatment in steels used for nitro-carburizing surface treatments is very important in the manufacturing of large series of parts, due to its impact in production costs. This is the case for the commonly used SAE 8620 grade, in its carburized and quenched and tempered state, for the production of gears, shafts and other transmission box components for the automobile industry. The machinability of the steel, determined by simple drilling tests (which are typical in industry labs), is a function of microstructure, which is determined by the state in which the steel is received and/or heat treatments prior to carburizing. This work shows that by employing some inter-critic annealing treatments, followed by sub-critic isothermal ones, the machinability of 8620 steel can be improved by ~16% over the typical as-received cold drawn state.
机译:通过钻孔测试评估了SAE 8620低碳合金钢的不同热处理效果。通过对氮碳共渗表面处理所用的钢进行预先热处理来提高可加工性,因为它会影响生产成本,因此在制造大量零件时非常重要。渗碳,淬火和回火状态下常用的SAE 8620牌号就是这种情况,用于生产汽车行业的齿轮,轴和其他变速箱组件。通过简单的钻孔测试(在工业实验室中很常见)确定钢的可加工性,是微观结构的函数,微观结构取决于渗碳前钢的接受状态和/或热处理的状态。这项工作表明,通过采用多次临界退火处理,然后再进行次临界等温处理,可以使8620钢的切削性能比通常的冷拔状态提高约16%。

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