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Investigations on the mechanical behavior of Advanced High Strength Steels resistance spot welds in Cross Tension and Tensile Shear

机译:对高强度钢的力学行为的调查,抗矫热器抗矫焊剂抗性点焊

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Advanced High Strength Steels (AHSS) are key materials in the conception of car body structures, permitting to reduce their weight while increasing their behavior in crash conditions. Nevertheless, the weldability of AHSS presents some particular aspects, in that complex failure types involving partial or full interfacial failure can be encountered more often than with conventional mild steels during destructive testing, despite high spot weld strength levels. This paper aims at characterizing the behavior of different AHSS spot welds under two quasi-static loading conditions, tensile shear and cross tension, often used in the automotive industry for the determination of their weldability. Interrupted cross tension and tensile shear tests were performed and spot welds failure was investigated with optical micrographs, SEM fractography and 3D-tomography in order to follow the three-dimensional crack paths due to the complex loading modes. A limited number of failure zones and damage mechanisms could be distinguished for all steel grades investigated. Moreover, numerical simulation of the tests was used to better understand the stress state in the weld and the influence of geometrical features such as weld size on the occurrence of the different failure types.
机译:先进的高强度钢(AHSS)是汽车体结构概念的关键材料,允许减轻其体重,同时增加其在碰撞条件下的行为。然而,AHSS的可焊性提出了一些特定的方面,因为在破坏性测试期间,涉及部分或完全界面故障的复杂失效类型可能比在破坏性测试期间与传统的温和钢相常见,尽管点焊强度水平高。本文旨在表征在两种准静态负载条件下不同AHSS点焊的行为,拉伸剪切和交叉张力,通常用于汽车行业的焊接性。正在进行中断的交叉张力和拉伸剪切试验,并用光学显微照片,SEM Fractography和3D断层扫描研究了点焊衰竭,以便由于复杂的装载模式而遵循三维裂纹路径。对于所有研究的钢等级,可以区分有限数量的故障区域和损坏机制。此外,使用测试的数值模拟来更好地理解焊缝中的应力状态以及诸如焊缝尺寸的几何特征对不同故障类型的发生的影响。

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