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A Low-Cost Residual Stress Measuring Instrument

机译:低成本的残余应力测量仪器

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The hole-drilling method is the approach most used for residual stress measurement and most of the commercially available instruments are based on this working principle. The idea is quite simple: drill a small hole on the surface of the components and measure the strain/displacement components resulting on the surface. The stress components can be estimated from these data with a reverse calibration process. The measurement of the displacement/strain field is usually performed using either strain gauges or interferometric optical methods, thus the cost of the instruments is significant. Recently, it has been proposed to replace the interferometric method with an integrated Digital Image Correlation (i-DIC) approach: by using problem-specific displacement functions, all difficulties related to the low sensitivity of DIC are avoided and the measurement procedure simply requires acquisition of an image after each drilling step. This paper describes the development of a low-cost instrument based on this working principle: the imaging subsystem is based on a Raspberry-Pi camera module whereas step motors are controlled by an Arduino board. Finally, the frame is built using a 3D-printer.
机译:该钻孔方法是最用于残余应力测量和大部分市售仪器是基于这个工作原理的方法。我们的想法是很简单:钻部件的表面上的小孔,并测量所得的表面上的应变/位移分量。应力分量可以从这些数据与反向校准过程来估计。之后,通常使用任一应变仪或干涉式光方法中执行的位移/应变场的测量,因此,仪器的成本显著。最近,已经提出以替换具有集成数字图像相关(I-DIC)的方法的干涉测量方法:通过使用特定问题位移函数,相关的DIC的低灵敏度所有困难避免和测量过程仅需要采集的每个钻孔步骤后的图像。本文描述了基于这一工作原理低成本仪器的发展:成像子系统是基于树莓丕相机模块,而步进电机是由一个Arduino板控制上。最后,该框架是使用三维打印机建造。

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