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首页> 外文期刊>Welding Journal >Flaw Tolerance in Lap Shear Brazed Joints ― Part 1
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Flaw Tolerance in Lap Shear Brazed Joints ― Part 1

机译:搭接剪切钎焊接头的容差―第1部分

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摘要

Furnace brazing is a joining process used in the aerospace and other industries to produce strong permanent and hermetic structural joints. As in any joining process, brazed joints have various imperfections and defects. At the present time, our understanding of the influence of the internal defects on the strength of the brazed joints is not adequate. The goal of this three-part investigation is to better understand the properties and failure mechanisms of the brazed joints containing defects. This study focuses on the behavior of brazed lap shear joints because of their importance in manufacturing aerospace structures. In Part 1, an average shear strength capability and failure modes of the single lap joints are explored. Stainless steel specimens brazed with pure silver are tested in accordance with the AWS C3.2 standard. Comparison of the failure loads and the ultimate shear strength with the finite element analysis (FEA) of the same specimens as a function of the overlap widths shows excellent correlation between the experimental and calculated values for the defect-free lap joints. A damage zone criterion is shown to work quite well in understanding the failure of the braze joints. In Part 2, the findings of Part 1 will be verified on the larger test specimens. Also, various flaws will be introduced in the test specimens to simulate incomplete braze coverage in the lap joints. Mechanical testing and FEA will be performed on these joints to verify that behavior of the flawed ductile lap joints is similar to joints with a reduced braze area. Finally, in Part 3, the results obtained in Parts 1 and 2 will be applied to the actual brazed structure to evaluate the load-carrying capability of a structural lap joint containing discontinuities. In addition, a simplified engineering procedure will be offered for the laboratory testing of the lap shear specimens.
机译:熔炉钎焊是一种在航空航天和其他行业中用于产生牢固的永久性和密封结构接头的连接工艺。像在任何连接过程中一样,钎焊接头具有各种缺陷和缺陷。目前,我们对内部缺陷对钎焊接头强度的影响的了解还不够。此三部分研究的目的是更好地理解包含缺陷的钎焊接头的特性和失效机理。由于钎焊搭接接头在制造航空航天结构中的重要性,因此本研究着重于钎焊搭接接头的性能。在第1部分中,探讨了单搭接接头的平均抗剪强度能力和破坏模式。焊有纯银的不锈钢试样根据AWS C3.2标准进行测试。使用相同宽度的样品进行有限元分析(FEA)进行破坏载荷和极限抗剪强度的比较,结果表明无缺陷搭接接头的实验值与计算值之间具有极好的相关性。示出了损坏区域标准在理解钎焊接头的故障方面非常有效。在第2部分中,将在较大的试样上验证第1部分的发现。另外,试样中会引入各种缺陷,以模拟搭接处的钎焊覆盖不完全。将对这些接头进行机械测试和有限元分析,以验证有缺陷的延性搭接接头的行为类似于钎焊面积减小的接头。最后,在第3部分中,将在第1部分和第2部分中获得的结果应用于实际的钎焊结构,以评估包含不连续性的结构搭接接头的承载能力。此外,还将提供一种简化的工程程序,用于对搭接剪切试样进行实验室测试。

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