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Heat-assisted hole-clinching process for joining magnesium alloy and ultra-high-strength steel

机译:加入镁合金和超高强度钢的热辅助空穴铆接工艺

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摘要

Due to the limited formability of magnesium alloy and ultra-high-strength steel, joining by forming of these dissimilar materials is still a big challenge, which requires suitable manufacturing technologies. To join both of the two limited formability materials, a heat-assisted hole-clinching process was investigated using numerical method and experiment test; AZ31B was chosen as the material of the upper sheet, and the numerical model was built in the DEFORM-2D software; isothermal thermo-dynamic coupling method was used to analyze the effect of upper sheet temperature on its formability during hole-clinching using the proposed numerical model and experiment tests. Meanwhile, the stress developing during hole-clinching which causes material fractures were analyzed, and damage distribution and fracture evolution were investigated. The results showed that the heat-assisted hole-clinching process can be predicted by the proposed numerical model; the formability of magnesium increased significantly as upper sheet temperature is raised; AZ31B and 22MnB5 can be joined using a hole-clinching method with the usage of heat. The results point to the applicability of the heat-assisted hole-clinching process to the joining of two limited formability materials.
机译:由于镁合金和超高强度钢的成形性有限,通过成形这些异种材料进行连接仍然是一个巨大的挑战,这需要合适的制造技术。为了连接这两种有限成形性材料,采用数值方法和实验测试研究了热辅助固孔工艺;选择AZ31B作为上片材料,在DEFORM-2D软件中建立数值模型;利用所提出的数值模型和实验测试,采用等温热力耦合方法分析了上板温度对固孔成形性的影响。同时,分析了固孔过程中引起材料断裂的应力发展,研究了损伤分布和断裂演化规律。结果表明,该数值模型可以预测热辅助固孔过程;随着上板温度的升高,镁的成形性显著提高;AZ31B和22MnB5可以通过使用热的方式使用孔固定方法进行连接。结果表明,热辅助固孔工艺适用于两种有限成形性材料的连接。

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