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DEVELOPMENT OF A LABORATORY INTENSIVE QUENCHING (IQ) SYSTEM

机译:发展实验室密集淬火(IQ)系统

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To perform intensive quenching (IQ), it is important that a sufficient mass of fluid is available to remove heat from the hot-metal interface so that the boundary temperature is at, or as close a possible, to the bath temperature. This condition requires a sufficiently high fluid mass flow rate and it is not equivalent to "high" or "very high" agitation rate. Adequate heat removal for the component being quenched is a necessary condition for the formation of optimally high surface compressive stresses, which is a fundamental characteristic of intensive quenching. Although a limited number of laboratory quenching systems that provide the necessary fluid flow/heat transfer conditions to provide optimal surface compressive stresses have been reported, most are relatively large requiring large quantities of quenchant. A brief overview of previously reported IQ systems will be provided here in addition to the details of the development of a smaller laboratory IQ system that has been shown to successfully produce very high surface compressive stresses will be provided here.
机译:为了执行强化淬火(IQ),重要的是,足够大量的流体可用于从热金属界面上除去热量,使得边界温度在浴温处或接近可能。该条件需要足够高的流体质量流量,并且不等于“高”或“非常高”的搅拌速率。用于淬火的组分的足够热除去是形成最佳高表面压缩应力的必要条件,这是强化淬火的基本特征。虽然已经报道了提供了提供必要的流体流动/传热条件以提供最佳表面压缩应力的有限数量的实验室淬火系统,但大多数是需要大量猝灭剂的相对大。此处还将提供先前报告的IQ系统的简要概述,除了显示成功产生非常高的表面压缩应力的较小实验室IQ系统的开发的细节之外,还将提供。

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