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Determination of cracking susceptibility of resistance spot welded advanced high strength steels

机译:电阻点焊高级高强度钢的裂纹敏感性的测定

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摘要

In order to respond to the challenges of reducing pollutant emissions and fuel consumption, e.g., by weight reduction, as well as for enhancement of passenger safety, new materials are being applied in automotive industry. These modern materials, namely advanced high strength steels, show superior mechanical properties and a good weldability in general. But despite their qualities, the complex microstructure of these steel types leads to an increased cracking susceptibility, especially during resistance spot welding. Because the potential influences of the occurring imperfections on spot welded joints are not investigated finally, avoiding them is still an important issue in industrial practice. Therefore, a simple and manufacture-oriented method was developed, which enables even small companies to determine the cracking susceptibility of the material combinations which they process. The method is based on the forced and reproducible generation of cracks and uses a simple setup. Samples are being welded under tensile loading, which is applied to basically-shaped samples by a hydraulic frame. The resulting crack lengths can be evaluated optically, and conclusions regarding the cracking susceptibility in industrial environments can be drawn. This way, a material ranking of susceptibility to crack during resistance spot welding of advanced high strength steel combinations can be established.
机译:为了应对减少污染物排放和燃料消耗的挑战,例如通过减轻重量以及提高乘客安全性,在汽车工业中正在使用新材料。这些现代材料,即高级高强度钢,通常显示出优越的机械性能和良好的可焊性。但是,尽管它们具有优良的品质,但这些钢种的复杂微观组织却导致开裂敏感性增加,尤其是在电阻点焊过程中。由于最终缺陷的潜在影响对点焊接头的影响尚未得到最终调查,因此避免这些缺陷仍然是工业实践中的重要问题。因此,开发了一种简单且面向制造的方法,该方法甚至使小公司也可以确定所加工材料组合的开裂敏感性。该方法基于强制性和可复制的裂纹生成,并使用简单的设置。样品在拉伸载荷下焊接,然后通过液压框架将其施加到基本成形的样品上。由此产生的裂纹长度可以用光学方法进行评估,并且可以得出有关工业环境中裂纹敏感性的结论。这样,可以建立高级高强度钢组合的电阻点焊过程中的裂纹敏感性材料等级。

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