STATIC STIFFNESS MODELING AND SENSITIVITY ANALYSIS OF SHIELD PROPULSION SYSTEM BASED ON VIRTUAL DISPLACEMENT PRINCIPLE
XU YouNan
SHI ZiQuan
HE Liu
CHU Hang
Abstract:Propulsion system is an important part of shield machine,and its stiffness will affect the propelling and steering function.In order to obtain the effective parameterized stiffness model of shield propulsion system,and to accurately describe the static stiffness of shield propulsion system in the whole working space,the static stiffness modeling method is studied.The physical model of shield propulsion system was established and its movement and force were analyzed.The stiffness model of shield propulsion cylinder was established by material mechanics formula and the relation between deformation of the end of the mechanism in each direction and force or moment was constructed based on the principle of virtual displacement.The calculation formula of total stiffness matrix of shield propulsion system was obtained by superposition principle.The accuracy of the static stiffness model was verified by finite element method and its sensitivity was analyzed.It provides theoretical basis for structural design optimization and research analysis of shield propulsion system
Keywords:Virtual displacement principleShield propulsion systemMechanism static stiffnessFinite element methodSensitivity analysis
Publication Date:2023-12-15
Online Publishing Date:2026-09-12(First online date of this platform, not the publication date of the document)
Pages:13( 1419-1431 )
Journal of Mechanical Strength

Journal of Mechanical Strength

ISTICPKUCSCD
ISSN:1001-9669
Year, Vol.(Issue):2023,45(6)