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首页> 外文期刊>Journal of Constructional Steel Research >Fatigue-strength assessment of laser welds in corrugated core steel sandwich panels
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Fatigue-strength assessment of laser welds in corrugated core steel sandwich panels

机译:瓦楞芯钢夹芯板激光焊接的疲劳强度评估

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摘要

The work presented in this paper addresses the topic of fatigue in laser stake-welds that join the constituent plates in corrugated core steel sandwich panels for bridge application. In order to investigate the fatigue strength of the stake-welds, and furthermore the panel joints, numerical analyses and experimental tests have been conducted for specimens of "cell"- and "panel"-types. Load-cases that produce joint-deformations of the smaller cell-specimens were adopted to reflect the deformation of full-scale panel joints. The investigations regard both conventional structural C-Mn and stainless steel materials. In addition to the common mode of crack propagation through the weld itself, a mode of cracking that initiates at the stake-weld root and propagates through the base plate was observed in the experiments. Regardless of the type of crack-mode, the results of this paper show that the fatigue-strength given in current recommendations, based on the effective notch stress as the fatigue parameter, can be used for fatigue design of laser-welded bridge decks. In addition to the fatigue tests on the smaller scale cell-specimens, a larger scale panel was tested where the results proof the concept of using laser-welded corrugated core steel sandwich panels for bridge application, with respect to fatigue performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出的工作解决了激光焊接中的疲劳问题,这些焊接将波纹芯钢夹芯板中的组成板连接起来,用于桥梁应用。为了研究熔接焊缝以及面板接头的疲劳强度,已经对“单元”和“面板”型样品进行了数值分析和实验测试。采用能产生较小单元试样接缝变形的工况来反映全尺寸面板接缝的变形。研究涉及常规的结构C-Mn和不锈钢材料。在实验中,除了常见的裂纹扩展方式是通过焊缝本身传播外,还出现了一种裂纹形式,该模式始于桩头焊缝的根部,然后扩展至基板。不管裂纹模式的类型如何,本文的结果表明,当前建议中基于有效缺口应力作为疲劳参数给出的疲劳强度可用于激光焊接桥面板的疲劳设计。除了在较小规模的电池试样上进行疲劳测试外,还对较大规模的面板进行了测试,结果证明了在疲劳性能方面,采用激光焊接波纹芯钢夹芯板用于桥梁的概念。 (C)2019 Elsevier Ltd.保留所有权利。

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