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Failure Pressure of Welded Hollow Spherical Joints Containing Grooving Corrosion Defects and Wall Reduction

机译:含有凹槽腐蚀缺陷的焊接中空球形接头的故障压力和壁减小

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摘要

Welded hollow spherical joints (WHSJ) have been widely used in various space structures. Corrosion of WHSJ is inevitable and will eventually threaten the structural safety. This paper makes an assessment of the accuracy of quality inspection procedures commonly employed by spatial grid structure to calculate the failure pressure of corroded WHSJ via finite element analyses (FEA). Second, this paper studies the influence of the corrosion depth, corrosion pattern, groove height, joint size and other parameters on the bearing capacity of WHSJ also via FEA. Analytical procedures to calculate the failure pressure associated grooving corrosion are not available yet. Thus, based on the parametric analysis results, such a procedure is devised and proposed here. Results indicated that the wall thickness loss and the diameter ratio were the main factors affecting the ultimate compressive performances of WHSJ; the volume loss of WHSJ outside the "critical latitude of groove" had nothing to do with the compressive performances; the influence of corrosion on the ultimate compressive performances was independent of the diameter and thickness of WHSJ. The derived result would lay a foundation for the prediction and evaluation of the residual bearing capacity of space grid structures with WHSJ.
机译:焊接中空球形接头(WHSJ)已广泛用于各种空间结构。 WHSJ的腐蚀是不可避免的,最终会威胁到结构安全。本文评估了空间网格结构通常采用的质量检测程序的准确性,以通过有限元分析(FEA)计算腐蚀WHSJ的故障压力。其次,本文研究了腐蚀深度,腐蚀图案,沟槽高度,关节尺寸和其他参数对WHSJ的承载力的影响。计算故障压力相关的凹槽腐蚀的分析程序尚未使用。因此,基于参数分析结果,这里设计并提出了这样的程序。结果表明,壁厚损失和直径比是影响WHSJ的最终压缩性能的主要因素; “凹槽关键纬度”外的WHSJ的体积损失与压缩性能无关;腐蚀对最终压缩性能的影响与WHSJ的直径和厚度无关。导出的结果将为WHSJ进行空间网格结构的剩余承载力的预测和评估奠定基础。

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