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Research on Interface Characteristics and Mechanical Properties of 6061 Al Alloy and Q235a Steel by Hot Melt-Explosive Compression Bonding

机译:热熔爆炸压缩6061铝合金及Q235A钢界面特性和机械性能研究

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摘要

In order to solve the shortcomings of the traditional explosion welding method for direct magnesia-aluminum alloy and steel welding, a processing method of groove hot casting plus explosion compression bonding (HCECB) was put forward, and the related theory of hot-melt metal plus explosion bonding was also proposed. Taking 6061 aluminum and Q235a steel as examples, the hot casting plus explosion compression test was carried out by the prefabrication of a dovetail groove on Q235a steel plate and the microstructure and mechanical properties of the interface were analyzed. The results showed that the 6061 aluminum/Q235a steel can be directly combined by the HCECB method. The interface is mainly irregularly microwave-shaped and straight-shaped with no defects, such as melting layer, holes and cracks, found. The hardness of the upper interface of the dovetail groove is larger than that far away from the welding interface, while the hardness of the lower interface is the same as that far away from the interface. The tensile and shear test results show that the shear strength is greater than 80 MPa, which meets the requirements of aluminum-steel composite plate bonding strength.
机译:为了解决直接氧化镁铝合金和钢焊接传统爆炸焊接方法的缺点,提出了一种沟槽热铸造加爆炸压缩粘合(HCECB)的加工方法,以及热熔金属的相关理论还提出了爆炸键。采用6061铝和Q235A钢作为示例,通过Q235A钢板上的燕尾槽的预制件进行热铸件加爆炸压缩试验,并分析了界面的微观结构和机械性能。结果表明,6061铝/ Q235A钢可以通过HCECB方法直接组合。该界面主要是不规则的微波形和直形,没有缺陷,例如熔化层,孔和裂缝,发现。燕尾槽的上界面的硬度大于远离焊接界面的宽度,而下界面的硬度与远离界面的硬度相同。拉伸和剪切测试结果表明,剪切强度大于80MPa,符合铝 - 钢复合板键合强度的要求。

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