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首页> 外文期刊>International journal of structural integrity >Experimental characterization and numerical analysis of the weld-region material in friction stir welded thick AA2139-T8 plates
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Experimental characterization and numerical analysis of the weld-region material in friction stir welded thick AA2139-T8 plates

机译:搅拌摩擦焊接厚AA2139-T8板中焊接区域材料的实验表征和数值分析

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摘要

Purpose - The weld region obtained during friction stir welding (FSW) of metallic materials (including aluminum alloys) contains typically well-defined zones, each characterized by fairly unique microstructure and properties. The purpose of this paper is to carry out combined experimental and numerical investigations of the mechanical properties of materials residing in different weld zones of FSW joints of thick AA2139-T8 plates. Design/methodology/approach - Within the experimental investigation, the following has been conducted: first, optical-microscopy characterization of the transverse sections of the FSW joints, in order to help identify and delineate weld zones; second, micro hardness field generation over the same transverse section in order to reconfirm the location and the extent of various weld zones; third, extraction of miniature tensile specimens from different weld zones and their experimental testing; and finally, extraction of a larger size tensile specimen spanning transversely the FSW weld and its testing. Within the computational investigation, an effort was made to: first, validate the mechanical properties obtained using the miniature tensile specimens; and second, demonstrate the need for the use of the miniature tensile specimens. Findings - It is argued that the availability of weld-zone material mechanical properties is critical since: first, these properties are often inferior relative to their base-metal counterparts; second, the width of the weld in thick metallic-armor is often comparable to the armor thickness, and therefore may represent a significant portion of the armor exposed-surface area; and finally, modeling of the weld-material structural response under loading requires the availability of high-fidelity/validated material constitutive models, and the development of such models requires knowledge of the weld-material mechanical properties. Originality/value - The importance of determining the mechanical properties of the material in different parts of the weld zone with sufficient accuracy is demonstrated.
机译:目的-在金属材料(包括铝合金)的搅拌摩擦焊(FSW)过程中获得的焊接区域通常包含定义明确的区域,每个区域均具有相当独特的微观结构和性能。本文的目的是对位于AA2139-T8厚板FSW接头不同焊接区域的材料的力学性能进行组合的实验和数值研究。设计/方法/方法-在实验研究中,进行了以下工作:首先,对FSW接头的横截面进行光学显微镜表征,以帮助识别和划定焊接区域;第二,在相同的横截面上产生显微硬度场,以重新确定各个焊接区的位置和范围。第三,从不同的焊接区域提取微型拉伸试样并进行实验测试;最后,提取横向跨FSW焊缝的较大尺寸拉伸试样并进行测试。在计算研究中,我们努力进行以下工作:首先,验证使用微型拉伸试样获得的机械性能;第二,证明使用微型拉伸试样的必要性。研究结果-有人认为,焊接区材料机械性能的可用性至关重要,因为:首先,这些性能通常相对于贱金属性能差;其次,厚金属铠装中的焊缝宽度通常与铠装厚度相当,因此可能代表铠装暴露表面区域的很大一部分。最后,在载荷作用下对焊接材料结构响应进行建模需要提供高保真/经过验证的材料本构模型,而开发此类模型则需要了解焊接材料的机械性能。原创性/价值-证明了以足够的精度确定焊接区域不同部分的材料机械性能的重要性。

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