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首页> 外文期刊>Thin-Walled Structures >Thin circular hollow section-to-plate T-joints: Stress concentration factors and fatigue failure under in-plane bending
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Thin circular hollow section-to-plate T-joints: Stress concentration factors and fatigue failure under in-plane bending

机译:薄型空心空心截面T型接头:面内弯曲下的应力集中系数和疲劳破坏

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Welded thin-walled (t < 4 mm) tube-to-plate T-joints made up of cold-formed circular hollow sections welded onto a plate to form a moment resistant connection are used in the road transport and agricultural industry to manufacture equipment and other structural systems. Fatigue design of these joints is not available in current standards. An understanding of the stress concentrations and failure in these connections is therefore necessary as a step towards understanding the fatigue behaviour of these connections. Stress concentration factors (SCFs) of welded thin-walled (t < 4 mm) circular hollow section (CHS)-to-plate T-joints are determined at different locations along the weld toes on the tubular brace. The distribution of SCFs along the weld toes shows that the highest SCF occurs at the weld toes in the circular brace at the 0° line. The ratio of the end of test fatigue life (N4) to the through-thickness fatigue life (N3) in the thin CHS-plate T-joints is found to fall within the range of N4/N3 found in previous research of both thick and thin-walled joints. Surface crack growth monitoring is used to obtain an approximation of the length of surface crack at the point of occurrence of a through-thickness crack. The relationship between surface crack length and the occurrence of a through-thickness crack is important in that it can be used as a measure of the criticality of a surface crack during structural health monitoring of equipment or structures.
机译:薄壁(t <4 mm)管对板T形焊接接头由冷弯的圆形空心型材焊接到板上以形成耐力矩连接而成,用于公路运输和农业生产设备和其他结构系统。这些接头的疲劳设计在当前标准中不可用。因此,有必要了解这些连接中的应力集中和破坏,这是理解这些连接的疲劳行为的一个步骤。沿管形支撑上的焊趾沿不同位置确定薄壁(t <4 mm)圆形空心截面(CHS)-板形T形焊接头的应力集中系数(SCF)。 SCF沿焊趾的分布表明,最高的SCF发生在0°线的圆形支架中的焊趾处。在薄的CHS板T型接头中,测试疲劳寿命的终点(N4)与厚度疲劳寿命(N3)的比率都落在先前研究中发现的N4 / N3的范围之内。薄壁的关节。使用表面裂纹扩展监测来获得在出现全厚度裂纹时的表面裂纹长度的近似值。表面裂纹长度和厚度贯穿裂纹的发生之间的关系很重要,因为它可以用作设备或结构的结构健康监测过程中表面裂纹的临界程度的度量。

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