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首页> 外文期刊>Journal of engineering materials and technology >Hole-Within-a-Hole Method for Determining Residual Stresses
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Hole-Within-a-Hole Method for Determining Residual Stresses

机译:孔内孔法确定残余应力

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The strain gauge rosette hole drilling method is often used for determining residual stresses versus depth to depths on the order of 0.5-1.5 mm. Frequently, it is of interest to find stress profiles to greater depths. To provide such a capability, a new approach is presented. Residual stresses versus depth are found by drilling a small diameter hole incrementally to a depth of half of its diameter. The profile of stresses versus depth is found from changes in surface displacements associated with the stress relief from introducing the hole, observed by optical means. Next, a larger diameter, square-bottomed hole is milled directly over the small hole to a depth equaling that of the smaller diameter hole. The bottom of the larger hole provides a fresh surface for optical observation and incremental drilling of a new small hole. This procedure is repeated until a desired total depth is reached. A computational approach is described for correcting the stresses found from the small holes to account for the perturbation of stresses by the material removed by the larger diameter hole. Results of applying this method to find stresses versus depth in a plate subject to uniaxial bending stress and a plate with biaxial residual stresses that vary from compression to tension through the thickness are shown.
机译:应变仪的玫瑰花结钻孔方法通常用于确定残余应力与深度之间的关系,深度约为0.5-1.5 mm。通常,有趣的是找到更大深度的应力分布。为了提供这种能力,提出了一种新的方法。残余应力与深度的关系是通过逐渐钻一个小直径孔至其直径的一半来发现的。应力与深度的关系曲线是从表面位移的变化中发现的,该变化与通过光学手段观察到的,由于引入孔而引起的应力释放有关。接下来,将较大直径的方形底孔直接铣削到小孔上方,使其深度等于较小直径孔的深度。大孔的底部为光学观察和新小孔的增量钻孔提供了新鲜的表面。重复该过程,直到达到期望的总深度。描述了一种计算方法,该方法用于校正从小孔中发现的应力,以解决由较大直径的孔去除的材料引起的应力扰动。显示了使用此方法查找承受单轴弯曲应力的平板和具有双轴残余应力的平板的应力与深度的关系的结果,该双轴向残余应力在整个厚度范围内从压缩到拉伸都不同。

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