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首页> 外文期刊>Journal of Pressure Vessel Technology >Optical Monitoring of Bolt Tightening Using 3D Electronic Speckle Pattern Interferometry
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Optical Monitoring of Bolt Tightening Using 3D Electronic Speckle Pattern Interferometry

机译:使用3D电子散斑图干涉法对螺栓拧紧进行光学监控

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摘要

An optical method is presented for the real-time monitoring of the bolt tightening process that provides the necessary clamping force in bolted assemblies. The method uses the 3D electronic speckle pattern interferometry (ESPI) technique to measure and monitor the joint deformation and strain fields in the joint around the tightened fastener, and establish a reliable correlation with the clamp load provided by the fastener tightening. Because the relationship between the clamp load and joint deformation is independent of the frictional variables of the fastener, the direct monitoring of the deformation and strain fields in the clamped joint would provide a more reliable measure of the clamp load level, as compared to the conventional reliance on the tightening torque to predict the resulting clamp load level. This technique is beneficial, especially for monitoring, with high precision, the proper tightening of critical bolted connections such as those used in many pressure vessels in the nuclear power industry. The validity of the optical technique is also ascertained by comparing the results to that obtained by using finite element analysis and other classical mechanics of materials methods.
机译:提出了一种用于实时监控螺栓拧紧过程的光学方法,该方法可在螺栓连接组件中提供必要的夹紧力。该方法使用3D电子散斑图案干涉(ESPI)技术来测量和监视拧紧的紧固件周围的接头中的接头变形和应变场,并与由紧固件拧紧提供的夹紧载荷建立可靠的关联。由于夹紧载荷和接头变形之间的关系与紧固件的摩擦变量无关,因此,与常规方法相比,直接监控夹紧接头中的变形和应变场将提供一种更可靠的夹紧载荷水平度量依靠紧固扭矩来预测所产生的夹具负载水平。这项技术特别有利于高精度监控关键螺栓连接的正确紧固,例如核电行业中许多压力容器中使用的那些。通过将结果与使用有限元分析和其他经典的材料力学方法获得的结果进行比较,也可以确定光学技术的有效性。

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