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Research on reliability of punch bonding technology with steel-aluminum sheet metals

机译:钢-铝薄板冲压技术可靠性的研究

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摘要

In order to reveal the influence of technological parameters in the punch bonding process with dissimilar sheet metals, using experimental methods in this article, laws of the influence of technological parameters on the connection in quality and reliability are analyzed systematically. The results show that the connection thickness decreases when punching load increases. When punching load increases to 28 kN, the maximum shearing load immediately presents decreasing trend after arriving at the peak, and the defects of the shearing tests change into the ring groove cracking from the bottom one. Along with increasing of X_1 and X_2, the thicknesses of the joint parts all tend to reduce, and connection strength reaches the maximum when X_2 is 1.0 mm. The technology experiment of punching bonding is performed and the results show that when the steel sheet is located at the punch side, it is easy to form an "S" type interlocking structure, whose ultimate shearing load value is about seven times larger than that of the aluminum sheet. The above results provide theoretical basis for the process development of punch bonding technology with dissimilar sheet metals and the die design.
机译:为了揭示工艺参数在异种钣金冲压加工中的影响,本文采用实验方法,系统分析了工艺参数对连接质量和可靠性的影响规律。结果表明,随着冲压载荷的增加,连接厚度减小。当冲切载荷增加到28 kN时,最大剪切载荷在达到峰值后立即呈现下降趋势,并且剪切试验的缺陷从底部开始变成环槽裂纹。随着X_1和X_2的增加,接头的厚度都趋于减小,并且当X_2为1.0 mm时,连接强度达到最大值。进行了冲孔粘接的工艺实验,结果表明,当钢板位于冲孔侧时,很容易形成“ S”型联锁结构,其极限剪切载荷值约为钢板的七倍。铝板。以上结果为不同金属薄板冲压技术的发展和模具设计提供了理论依据。

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