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The Ideal Quenching Medium? Characterisation of Ionic Liquids for Heat Treatment of Metallic Components

机译:理想的淬火介质?用于金属零件热处理的离子液体的表征

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摘要

Quenching as a part of heat treatment is an important process in the manufacturing chain of metallic components. One of the most common processes is immersion quenching in vaporising liquids. Unfortunately, this process is affected by the Leiden-frost-phenomenon. This effect can generate inhomogeneous quenching and thus asymmetrical residual stresses and avoidable distortion. In this work, ionic liquids have been investigated as new quenching media, which can be used as baths near room temperature. Aluminium cylinders have been quenched in baths of different ionic liquids with varying water contents and bath temperatures. The time-temperature curves have been recorded and the heat transfer coefficients were determined and compared to quenching in water. Addition of a few percents water to the ionic liquids increases the cooling rate significantly. Even at higher water contents, bubble boiling and convection are predominant and almost no Leidenfrost-effect occurs. This offers a huge potential to accelerate and homogenise immersion quenching.
机译:淬火是热处理的一部分,是金属零件制造链中的重要过程。最常见的方法之一是在蒸发的液体中进行浸入淬火。不幸的是,这个过程受到莱顿霜现象的影响。这种作用会产生不均匀的淬火,从而产生不对称的残余应力和可避免的变形。在这项工作中,已经研究了离子液体作为新的淬灭介质,可以将其用作室温附近的浴液。铝钢瓶已在不同离子液体的浴中淬火,且水含量和浴温度不同。记录了时间-温度曲线,确定了传热系数,并将其与水中淬火进行了比较。在离子液体中添加百分之几的水可以显着提高冷却速度。即使在较高的水含量下,气泡沸腾和对流也是主要的,几乎没有莱顿弗罗斯特效应发生。这为加速和均匀化浸没淬火提供了巨大的潜力。

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