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Simulation of Quenching Crack Generation in Low Alloy Cast Steel by Using Heat-treatment CAE Software

机译:热处理CAE软件模拟低合金铸钢淬火裂纹的产生。

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摘要

In order to understand the quenching crack phenomenon in cast steel, a disk shaped low alloy cast steel specimen having a opening was quenched in water at 1123K. The behavior of a quench crack was investigated by microstructure observation and analyzed by the Heat treatment CAE software. The results obtained are as follows. (1)The quench cracking easily occurred as the volume of specimen increased. The mass effect for quenching crack was significant. (2)The quench cracking was due to time lag in martensitic transformation at surface side and inner side of the quenched specimen, but not due to the thermal stress in the specimen. (3)The behavior of a quenching crack was able to be predicted by the Heat treatment CAE software. (4)Therefore, the Heat treatment CAE software is useful for a counterplan preventing the quenching crack.
机译:为了理解铸钢中的淬火裂纹现象,将具有开口的圆盘状低合金铸钢试样在1123K的水中淬火。通过显微组织观察研究了淬火裂纹的行为,并通过热处理CAE软件对其进行了分析。得到的结果如下。 (1)随着试样体积的增加,容易发生淬火裂纹。淬火裂纹的质量效应是显着的。 (2)淬火裂纹是由于淬火试样的表面,内侧的马氏体相变的时间滞后引起的,而不是由于试样的热应力引起的。 (3)可以通过热处理CAE软件预测淬火裂纹的行为。 (4)因此,CAE热处理软件可用于防止淬火裂纹的对策。

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