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Precise In-Process Strain Measurements for the Investigation of Surface Modification Mechanisms

机译:精确的过程中应变测量,用于研究表面改性机理

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The question, how certain surface layer properties (for example, hardness or roughness) can be specifically influenced in different manufacturing processes, is of great economic interest. A prerequisite for the investigation of the formation of surface layer properties is the metrological assessment of the material stresses during processing. Up to now, no commercial in-process measuring system exists, which is able to determine material stresses in the form of mechanical strains in high-dynamic manufacturing processes with sufficient accuracy. A detailed analysis of the resolution limits shows that speckle photography enables deformation measurements with a resolution in the single-digit nanometer range. Thus, speckle photography basically offers the potential to measure material stresses during processing. Using the example of single-tooth milling, the applicability of speckle photography for in-process stress measurements is demonstrated. Even in such highly dynamic manufacturing processes with cutting speeds up to 10 m/s, the absolute measurement uncertainty of the strain is less than 0.05%. This is more than one order of magnitude lower than the occurring maximal strain. Therefore, speckle photography is suitable for characterizing the dynamic stresses and the material deformations in manufacturing processes.
机译:如何在不同的制造过程中特定地影响某些表面层特性(例如硬度或粗糙度)的问题在经济上具有重大意义。研究表面层特性形成的前提条件是在加工过程中对材料应力进行计量评估。迄今为止,还没有商业化的过程中测量系统,该系统能够以足够的精度确定高动态制造过程中机械应力形式的材料应力。对分辨率极限的详细分析表明,散斑摄影可以以单位数纳米范围内的分辨率进行变形测量。因此,散斑摄影基本上提供了在加工过程中测量材料应力的潜力。以单齿铣削为例,演示了散斑摄影在过程中应力测量中的适用性。即使在切削速度高达10 m / s的这种高度动态的制造过程中,应变的绝对测量不确定度也小于0.05%。这比发生的最大应变低一个数量级。因此,散斑摄影适合于表征制造过程中的动态应力和材料变形。

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