PMUT-Based System for Continuous Monitoring of Bolted Joints Preload

Author:

Sanvito Stefano1,Passoni Marco2ORCID,Giusti Domenico3,Terenzi Marco3,Prelini Carlo2,La Mura Monica4ORCID,Savoia Alessandro Stuart4ORCID

Affiliation:

1. Department of Engineering and Applied Science, University of Bergamo, Via Galvani, 2, 24044 Dalmine, Italy

2. STMicroelectronics, Via C. Olivetti 2, 20864 Agrate Brianza, Italy

3. STMicroelectronics, Via Tolomeo 1, 20007 Cornaredo, Italy

4. Department of Industrial, Electronic and Mechanical Engineering, Roma Tre University, Via della Vasca Navale 84, 00146 Roma, Italy

Abstract

In this paper, we present a bolt preload monitoring system, including the system architecture and algorithms. We show how Finite Element Method (FEM) simulations aided the design and how we processed signals to achieve experimental validation. The preload is measured using a Piezoelectric Micromachined Ultrasonic Transducer (PMUT) in pulse-echo mode, by detecting the Change in Time-of-Flight (CTOF) of the acoustic wave generated by the PMUT, between no-load and load conditions. We performed FEM simulations to analyze the wave propagation inside the bolt and understand the effect of different configurations and parameters, such as transducer bandwidth, transducer position (head/tip), presence or absence of threads, as well as the frequency of the acoustic waves. In order to couple the PMUT to the bolt, a novel assembly process involving the deposition of an elastomeric acoustic impedance matching layer was developed. We achieved, for the first time with PMUTs, an experimental measure of bolt preload from the CTOF, with a good signal-to-noise ratio. Due to its low cost and small size, this system has great potential for use in the field for continuous monitoring throughout the operative life of the bolt.

Funder

European Union through the ECSEL Joint Undertaking project Moore4Medical

Publisher

MDPI AG

Reference36 articles.

1. Barrett, R. (2005). Fastener Design Manual, University Press of the Pacific.

2. Bickford, J. (1995). An Introduction to the Design and Behavior of Bolted Joints, Taylor & Francis. [3rd ed.]. Mechanical Engineering.

3. Oberg, E., Jones, F., Horton, H., and Ryffel, H. (2004). Machinery’s Handbook, Industrial Press, Inc.

4. Lyndon, B., and Center, J.S. (1998). Criteria for Preloaded Bolts, NASA. Technical Report.

5. Mechanical behaviors of bolted joint during tightening using torque control;Fukuoka;JSME Int. J. Ser. Solid Mech. Mater. Eng.,1998

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