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Fatigue behaviour of a box-welded joint under biaxial cyclic loading: effects of biaxial load range ratio and cyclic compressive loads in the lateral direction

机译:盒式焊接接头在双轴循环载荷下的疲劳行为:双轴载荷范围比和横向压缩载荷在横向上的影响

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The biaxial fatigue of a steel plate (JIS SM400B) having a box-welded (wrap-around) joint was experimentally studied. Special concerns were focused on the effects of the biaxial load range ratio and compressive cyclic loading in the lateral direction. The direction of fatigue crack propagation under biaxial cyclic tensile loading, which has a phase difference of pi, changed according to the biaxial load range ratio, R-xy=DeltaP(x)/DeltaP(y). When R-xy was less than 0.56, fatigue cracks propagated along the toe of the weld in the x-direction because the principal tensile stress range Deltasigma(y) at that location exceeded the orthogonal value Deltasigma(x) at the box-weld toe. The fatigue lives in biaxial tests related well to the data from uniaxial tests when invoking the Deltasigma(5) criterion. However, the location and direction of Deltasigma(5) should be chosen according to the R-xy value and the failure crack direction. An increase in Deltasigma(5) , as induced by the Poisson's ratio effect from either the out-of-phase tensile loading or the in-phase compressive loading in the y-direction, leads to an increase in fatigue damage (decrease in fatigue resistance or specifically a faster crack propagation rate), and this effect can be successfully estimated from uniaxial fatigue test data. [References: 10]
机译:实验研究了具有箱式焊接(缠绕)接头的钢板(JIS SM400B)的双轴疲劳。特别关注的是双轴载荷范围比和横向压缩循环载荷的影响。具有双轴相位差pi的双轴循环拉伸载荷下疲劳裂纹扩展的方向根据双轴载荷范围比R-xy = DeltaP(x)/ DeltaP(y)而变化。当R-xy小于0.56时,疲劳裂纹沿着焊缝的趾部在x方向上传播,因为该位置的主要拉伸应力范围Deltasigma(y)超过了箱式焊趾处的正交值Deltasigma(x)。 。当调用Deltasigma(5)准则时,双轴测试中的疲劳寿命与单轴测试中的数据密切相关。但是,应根据R-xy值和破坏裂纹的方向选择Deltasigma(5)的位置和方向。由y方向上的异相拉伸载荷或同相压缩载荷引起的泊松比效应引起的Deltasigma(5)的增加导致疲劳损伤的增加(疲劳强度的降低)或更快的裂纹扩展速率),并且可以从单轴疲劳测试数据成功估算出这种效果。 [参考:10]

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