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Laser transformation hardening of carbon steel sheets using a heat sink

机译:使用散热器对碳钢板进行激光相变硬化

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A heat-sink assisted laser transformation hardening method is presented as a way to enhance the hard-enability of carbon steel sheets. In this study, the thermal conductivity of the heat sink and the thermal contact resistance between the steel sheet and the heat sink were identified as the two primary parameters for the process. Using a process map approach, the heat-treatability of steel sheets was studied theoretically focusing on carbon diffusion and cooling time characteristics. For validation purposes, 2 mm thick DP 590 and boron steel sheets were laser-hardened using four types of heat sink: stainless steel, steel, copper, and no heat sink. Surface hardness, hardening width and depth were measured and analyzed over a wide range of process parameters. From this study, it was revealed that, when a heat sink is used, both cooling and carbon diffusion characteristics become roughly on par with those of the thick plate case, but the heat treatable region remains similar to that of the no heat sink case. The use of a heat sink was found to be an effective way of enhancing the hardenability of steel sheets and the amount of enhancement is largely proportional to the heat sink thermal conductivity.
机译:提出了一种散热辅助的激光相变硬化方法,以提高碳钢板的淬硬性。在这项研究中,散热器的导热系数以及钢板与散热器之间的热接触电阻被确定为该过程的两个主要参数。使用过程图方法,从理论上着眼于碳扩散和冷却时间特性,研究了钢板的热处理性能。为了进行验证,使用四种散热器:不锈钢,钢,铜和无散热器对2毫米厚的DP 590和硼钢板进行了激光硬化处理。在广泛的工艺参数中测量并分析了表面硬度,硬化宽度和深度。从这项研究中可以看出,当使用散热器时,冷却和碳扩散特性与厚板壳体的散热和碳扩散特性大致相同,但是可热处理区域仍然与无散热器壳体的相似。发现使用散热器是增强钢板的淬透性的有效方法,并且增强量在很大程度上与散热器的热导率成正比。

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