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Design of Quenching Process for Large-sized AISI P20 Steel Block Used as Plastic Die

机译:大型AISI P20钢模冲模淬火工艺设计。

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For large-sized AISI P20 steel block used as plastic die with a thickness of more than 200 mm, appropriate quenching processes are the key to obtain much thick hardened layer. In this paper, different quenching processes of AISI P20 steel block such as oil quenching, direct water quenching, water quenching with pre-cooling and water quenching with pre-cooling and self-tempering were numerically investigated by computer simulation based on the detailed discussion on the mathematical models of quenching processes including partial differential equations of heat transfer, thermal physical properties, latent heat, heat transfer coefficient and calculation of phase transformation, The results show that the water quenching with pre-cooling and self-tempering process can not only effectively avoid quenching cracks, but also obtain deeper harden depth than oil quenching.
机译:对于用作塑料模具且厚度超过200毫米的大型AISI P20钢块,适当的淬火工艺是获得足够厚的硬化层的关键。本文在详细讨论的基础上,通过计算机模拟数值研究了AISI P20钢块的不同淬火工艺,例如油淬火,直接水淬,预冷水淬,预冷和自回火水淬。淬火过程的数学模型包括传热的偏微分方程,热物理性质,潜热,传热系数和相变的计算,结果表明,预冷和自回火的水淬不仅能有效避免淬火裂纹,而且可以获得比油淬火更深的硬化深度。

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