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首页> 外文期刊>BHM Berg und Huttenmannische Monatshefte >Direct Quenching After Forging and Inductive Re-heating—A?New Efficient Process Technology
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Direct Quenching After Forging and Inductive Re-heating—A?New Efficient Process Technology

机译:锻造和电感重新加热后直接淬火 - a?新的高效过程技术

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摘要

The biggest challenges for the forging industry at present are the general economic situation and the growing demands of environmental protection. Therefore, an efficient process using process heat for sustainable production is increasingly indispensable. One possibility is the combination of forging and quenching, the so-called quenching from the hot deformation heat. For more than ten years, this process has been established at BGH Edelstahl Siegen GmbH for many steels. However, this method cannot be applied to steels in which the forging end temperature is below the required quenching temperature. Thus, the process cannot be used for duplex and austenitic stainless steels due to the high solution annealing temperatures. In order to use this approach also for these steel grades, the process has been extended to include the option of inductive reheating. After forging, it is possible to raise the temperature to a?required range to quench the material. This process is much faster and more effective than in a?standard furnace. This process leads to several advantages in terms of product quality, such as precipitation states, mechanical properties, and residual stresses. The paper gives an overview of the industrial installation of the developed induction re-heating system.
机译:目前锻造行业的最大挑战是普遍经济形势和日益增长的环保需求。因此,使用工艺热量进行可持续生产的有效方法越来越不可或缺。一种可能性是锻造和淬火的组合,来自热变形热的所谓猝灭。十多年来,这一过程已经在BGH Edelstahl Siegen GmbH为许多钢材建立。然而,这种方法不能施加到钢材,其中锻造端温度低于所需的淬火温度。因此,由于高溶液退火温度,该过程不能用于双工和奥氏体不锈钢。为了使用这种方法,也可以延长这种方法,包括归纳再加热的选择。在锻造之后,可以将温度提高到a所需的范围以淬灭材料。该过程比A标准炉更快,更有效。该过程在产品质量方面导致了几个优点,例如降水状态,机械性能和残余应力。本文概述了开发的感应重新加热系统的工业安装。

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