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Experimental and continuous stamping simulation study on surface wear of hardened steel mold

机译:硬化钢模表面磨损的实验和连续冲压仿真研究

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摘要

Many researches on mold wear are based on numerical simulation of single stamping, which is difficult to reflect the cumulative wear caused in the real continuous stamping process. By designing the stamping trajectory, a numerical simulation method based on continuous stamping is proposed. The modeling of the mold is analyzed and the formula of the wear amount is deduced. And a series of tests are designed to analyze the surface morphology which provided the theoretical and factual basis for numerical simulation and verifies the correctness of the numerical simulation method. Then the variation of heat, wear and stress field distribution during continuous stamping process are investigated by numerical simulation. The relationship between the stress and wear increment of the mold is studied. Finally, the variation rule of the wear amount after continuous stamping is summarized and the criterion of entering the steady wear state is given. The maximum wear depth is fitted linearly and the service life is predicted. This provides a theoretical basis for studying the wear rules of the dies in the continuous stamping process.
机译:对模具磨损的许多研究基于单冲压的数值模拟,这难以反映真正连续冲压过程中引起的累积磨损。通过设计冲压轨迹,提出了一种基于连续冲压的数值模拟方法。分析模具的建模,推导出磨损量的公式。并且,一系列测试旨在分析表面形态,为数值模拟提供了理论和事实基础,并验证了数值模拟方法的正确性。然后通过数值模拟研究了连续冲压过程中的热量,磨损和应力场分布的变化。研究了模具的应力和磨损增量之间的关系。最后,总结了连续冲压后磨损量的变化规则,并给出了进入稳定磨损状态的标准。最大磨损深度线性拟合,预测使用寿命。这为研究了连续冲压过程中的模具的磨损规则提供了理论依据。

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