Research on Path Planning for Reducing Vibration Fatigue of Precision Equipment Transportation

Author:

Huang Ying12,Xie Quanmin3,Wang Xingjun4

Affiliation:

1. College of Aeronautical Engineering (College of Intelligent Manufacturing), Taizhou University, Taizhou 318000, China;

2. Jean le Rond d'Alembert Institute, CNRS UMR 7190, Case 162, Sorbonne University/Pierre-and-Marie-Curie, University/Paris 6, 4 Place Jussieu, Paris Cedex 05 75252, France

3. Hubei Key Laboratory of Blasting Engineering, Jianghan University, Wuhan 430056, China

4. Key Laboratory of Mechanics on Disaster and Environment in Western China, College of Civil Engineering and Mechanics, Lanzhou University, Lanzhou 730000, China

Abstract

Abstract This paper analyzes the safety and reliability problems of large precision instruments and equipment in highway transportation, aiming at reducing the vibration fatigue damage of equipment to the greatest extent from the perspective of road planning. Based on the dynamic response model of the equipment, the relationship between the ground spectrum response and the cumulative fatigue damage of the equipment is analyzed. Based on the method of probability and statistics, an equipment fatigue prediction model is established. Based on the study of the relationship between the roughness of pavement grade and the reliability of equipment, the low-risk path planning is proposed. This paper adapts the Dijkstra shortest path algorithm. Not only the basic information such as the length of the highway is considered but also the road factors related to the reliability of the equipment and the environmental factors affecting the driving safety are considered. Try to avoid the adverse environment which has a great impact on the reliability of the equipment, reduce the vibration fatigue of the equipment in the process of transportation, and improve the quality of transportation. Using geographic information system secondary development, database, global positioning system positioning, and other technologies, this paper provides users with the shortest path and low-risk path planning for reference, which has a certain practical significance for highway transportation of high reliability products such as vulnerable products, precision instruments, and special equipment.

Funder

National Natural Science Foundation of China

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Graphics and Computer-Aided Design,Computer Science Applications,Software

Reference26 articles.

1. Simulation of Dynamic Effects of Vehicles on Pavement Using a 3D Interaction Model;Shi;J. Trans. Eng.,2009

2. Nonlinear Dynamic Modeling of Elastic Beam Fixed on a Moving Cart and Carrying Lumped Tip Mass Subjected to External Periodic Force;Ghaith,2009

3. Bouncing of a Vehicle on an Irregularity: A Mathematical Model;Michaltsos;J. Vib. Control,2010

4. Effect of Vehicle Speed on Shock and Vibration Levels in Truck Transport;Lu;Packag. Technol. Sci.,2010

5. The Test and Verification Methods for the Transportation Vibration Absorption System of Spacecraft;Liu,2020

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