Magnetic Sensor Array for Determining the Assembly Torsion and Preload of a Bolted Joint

Thorben Schuthe, K. Riemschneider, A. Meyer-Eschenbach
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Abstract

In this paper, we present an innovative concept for determining the assembly preload of a bolted joint. The torsion of the bolt is recorded as a measured variable. Two measurement methods are presented for this task. They are applied simultaneously and compared with each other. The optical method allows high accuracy and is suitable for test benches and characterization of screw parameters. The magnetic measuring method is suitable both for the test bench and for measurements in the practical application of bolted joints. The required measuring accuracy and robustness against geometric misalignment can be achieved by a magnetic sensor array. This offers many advantages over a single angle sensor. A test bench is presented on which both methods are applied simultaneously. Experimental results are shown and compared for verification. As a next development objective, a concept for a tool integrating a magnetic sensor array for torsion measurement is proposed.
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用于确定螺栓连接总成扭矩和预紧力的磁传感器阵列
在本文中,我们提出了一种确定螺栓连接的装配预紧力的创新概念。螺栓的扭转被记录为一个测量变量。针对这一任务,提出了两种测量方法。它们同时应用并相互比较。光学方法精度高,适用于试验台和螺杆参数的表征。磁测法既适用于试验台架,也适用于螺栓连接实际应用中的测量。磁传感器阵列可以达到所需的测量精度和抗几何偏差的鲁棒性。与单角度传感器相比,这提供了许多优点。给出了两种方法同时应用的试验台。给出了实验结果,并进行了对比验证。作为下一个发展目标,提出了一种集成磁传感器阵列的扭矩测量工具的概念。
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