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An evaluation of atmosphere and vacuum carburizing methods for the heat treatment of gears

机译:对齿轮热处理的大气和真空渗碳方法的评价

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Vacuum carburizing has proven itself a robust heat treatment process and a viable alternative to atmosphere carburizing. Many companies are currently evaluating which technology to invest in for the future. The work reported here will provide technical reasons why vacuum carburizing should be chosen. Gear manufacturers of heavy-duty, off-road transmissions and related equipment such as Twin Disc Corporation have found numerous benefits to substitute vacuum carburizing with high gas pressure quenching technology for either atmosphere or vacuum carburizing with oil quenching technology. This paper will present scientific data in support of this choice. Of paramount importance is lowering unit cost that can only be achieved by improved dimensional control and cost- effective manufacturing methods. Compared is an atmosphere carburized gear requiring press quenching to achieve dimensional tolerances in a "one piece at a time" heat treating operation with a vacuum carburized load of gears that have been high gas pressure quenched within required tolerances. The benefits achieved by this process can be realized in high volume, critical component manufacturing operations. The results are parts with enhanced hardness and mechanical properties.
机译:真空渗碳已证明自己是一种强大的热处理过程,以及渗碳的可行替代品。许多公司目前正在评估哪种技术投资未来。在此报告的工作将提供技术原因,为什么选择真空渗碳。齿轮制造商的重型,越野传输及相关设备,如双盘公司,发现替代真空渗碳与高气体压力淬火技术,用于用油淬火技术用高气体压力淬火技术替代真空渗碳技术。本文将展示科学数据支持此选择。最重要的重要性是降低单位成本,只能通过改进的尺寸控制和成本效益的制造方法来实现。比较的是一种气氛渗碳齿轮,需要压紧淬火,以在“一件时”热处理操作中的尺寸公差,其具有在所需公差内淬火的高气体压力淬火的真空渗碳负荷。通过该过程实现的益处可以在大容量,关键部件制造操作中实现。结果是具有增强硬度和机械性能的部件。

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