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Mechanical Properties of Weldbonded Joints of Advanced High Strength Steels

机译:高强度高强度钢焊接接头的力学性能

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摘要

In lightweight car body shell mass production, due to requirements on vehicle weight reduction and carbon dioxide emissions, joining of advanced high strength steels (AHSS) with different joining procedures and especially hybrid bonding techniques is becoming more and more important. One of these hybrid bonding techniques is the combination of resistance spot welding and adhesive bonding called weldbonding. One of the important advantages of weldbonded joints in comparison to resistance spot welded joints are the enhanced mechanical properties. To guarantee sufficiently high quality conditions regarding the strength of the weldbonded joints, the influences of the applied adhesive systems and of different base metal combinations are studied. This is carried out for both non-corrosive and corrosive environments and for the choice of different joining parameters settings. In particular, the mechanical behaviour of the weldbonded joints is investigated under quasi-static, impact and fatigue loads. Furthermore, the energy absorption of the weldbonded joints for both non-corrosive and corrosive environments is studied. It is shown that the weldbonded joints possess higher mechanical strengths in all load cases (quasi-static, impact and fatigue). Corrosive attack affects weldbonded joints, and the quasi-static strength is reduced. Resistance spot welded joints are not affected by the corrosive attack, but even after several weeks of corrosive attack, the quasi-static strength of weldbonded joints remains higher than that of resistance spot welded joints.
机译:在轻量化的车身壳体的批量生产中,由于对减轻车辆重量和减少二氧化碳排放的要求,采用不同的接合程序,特别是混合接合技术接合的高级高强度钢(AHSS)变得越来越重要。这些混合键合技术之一是电阻点焊和称为焊接键合的胶粘剂的结合。与电阻点焊接头相比,焊接接头的重要优点之一是增强的机械性能。为了保证有关焊接接头强度的足够高的质量条件,研究了所施加的粘合剂体系和不同贱金属组合的影响。这适用于非腐蚀性和腐蚀性环境以及选择不同的连接参数设置。特别是,在准静态,冲击和疲劳载荷下研究了焊接接头的机械性能。此外,还研究了在非腐蚀和腐蚀环境下焊接接头的能量吸收。结果表明,在所有载荷情况下(准静态,冲击和疲劳),焊接接头均具有较高的机械强度。腐蚀侵蚀会影响焊接接头,并降低准静态强度。电阻点焊接头不受腐蚀侵蚀的影响,但是即使经过数周的腐蚀侵蚀,焊接接头的准静态强度仍高于电阻点焊接头。

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