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Resistance element weld-bonding and resistance spot weld-bonding of Mg alloy/austenitic stainless steel

机译:镁合金/奥氏体不锈钢的电阻元件焊接和电阻点焊

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摘要

Mg alloy/austenitic stainless steel (ASS) joints were produced by resistance element weld-bonding (REWB) and resistance spot weld-bonding (RSWB) techniques. Both joints consisted of two zones, namely, the adhesive zone and weld zone. The weld zone of the REWB joints was formed through a metallurgical reaction between the rivet and ASS. The microstructure of the fusion zone consisted of austenite and intercrystalline delta ferrite. The weld zone of the RSWB joints was formed via welding-brazing mechanism (involving molten Mg alloy and solid ASS), and the nugget was formed in the Mg alloy. The nugget microstructure consisted of fine columnar dendritic structure. Digital image correlation (DIC) analysis was used to study the deformation behavior and strain evolution in the loading direction during lap-shear test. The REWB and RSWB joints experienced lower degree of out-of-plane displacement, sustained higher peak load, and exhibited higher strain to failure than their conventional counterparts. However, the REWB joints exhibited superior lap-shear performance, with high energy absorption and favorable failure mode (pull out failure in the ASS sheet). Upon the failure of the adhesive zone at peak load, the load was sustained by the weld, and the final failure occurred via pullout mode in the ASS. The RSWB joints failed in a sudden manner, mainly by cohesive failure in the adhesive zone and Mg alloy nugget/ASS interface failure in the weld zone.
机译:镁合金/奥氏体不锈钢(ASS)接头通过电阻元件焊接(REWB)和电阻点焊(RSWB)技术生产。两个接头都由两个区域组成,即粘合区域和焊接区域。 REWB接头的焊接区是通过铆钉和ASS之间的冶金反应形成的。熔合区的显微组织由奥氏体和晶间δ铁素体组成。 RSWB接头的焊接区域是通过焊接-钎焊机制(涉及熔融的Mg合金和固态ASS)形成的,并且在Mg合金中形成了熔核。熔核组织由细的柱状树枝状结构组成。使用数字图像相关(DIC)分析研究搭接剪切试验期间载荷方向的变形行为和应变演化。与传统的接头相比,REWB和RSWB接头的面外位移程度较低,承受的峰值载荷较高,并且表现出更高的破坏应变。但是,REWB接头表现出优异的搭接剪切性能,具有高能量吸收和良好的破坏模式(在ASS板中拉出破坏)。在最大负荷下,粘合区发生故障时,焊缝会承受该负荷,最后的故障是通过ASS中的拔出模式发生的。 RSWB接头突然失效,主要是由于粘合区的内聚破坏和焊接区的Mg合金块/ ASS界面失效。

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