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Bending moment evaluation of a long specimen using a radial speckle pattern interferometer in combination with relaxation methods

机译:径向散斑干涉仪结合松弛法评估长样品的弯矩

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The authors developed an achromatic speckle pattern interferometer able to measure in-plane displacements in polar coordinates. It has been used to measure combined stresses resulting from the superposition of mechanical loading and residual stresses. Relaxation methods have been applied to produce on the surface of the specimen a displacement field that can be used to determine the amount of combined stresses. Two relaxation methods are explored in this work: blind hole-drilling and indentation. The first one results from a blind hole drilled with a high-speed drilling unit in the area of interest. The measured displacement data is fitted in an appropriate model to quantify the stress level using an indirect approach based on a set of finite element coefficients. The second approach uses indentation, where a hard spherical tip is firmly pressed against the surface to be measured with a predetermined indentation load. A plastic flow occurs around the indentation mark producing a radial in-plane displacement field that is related to the amount of combined stresses. Also in this case, displacements are measured by the radial interferometer and used to determine the stresses by least square fitting it to a displacement field determined by calibration. Both approaches are used to quantify the amount of bending stresses and moment in eight sections of a 12 m long 200 mm diameter steel pipe submitted to a known transverse loading. Reference values of bending stresses are also determined by strain gauges. The comparison between the four results is discussed in the paper.
机译:作者开发了一种消色差斑点图案干涉仪,该干涉仪能够测量极坐标中的平面内位移。它已用于测量由于机械载荷和残余应力叠加而产生的组合应力。已应用松弛方法在试样表面产生位移场,该位移场可用于确定组合应力的大小。在这项工作中探索了两种松弛方法:盲孔钻孔和压痕。第一个结果是在相关区域内用高速钻孔装置钻孔的盲孔。将测得的位移数据拟合到适当的模型中,以基于一组有限元系数的间接方法来量化应力水平。第二种方法使用压痕,其中硬球形尖端以预定的压痕载荷牢固地压在要测量的表面上。在凹痕周围发生塑性流动,产生与组合应力大小有关的径向平面内位移场。同样在这种情况下,通过径向干涉仪测量位移,并通过将其最小二乘拟合到通过校准确定的位移场来确定应力。两种方法都用于量化承受已知横向载荷的12 m长,200 mm直径钢管的八个部分的弯曲应力和弯矩。弯曲应力的参考值也由应变仪确定。本文讨论了这四个结果之间的比较。

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