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Optimization of the constant resistance performance of pre-folded energy-absorbing elements
Author: XU Hailiang,DU Yu,SONG Yimin,GAO Hanjun,TAN Anfu Time: 2024-03-25 Counts:

doi:10.16186/j.cnki.1673-9787.2022080016

Received:2022/08/08

Revised:2023/05/11

Published:2024/03/25

Optimization of the constant resistance performance of pre-folded energy-absorbing elements

XU HailiangDU YuSONG YiminGAO HanjunTAN Anfu

School of Civil EngineeringNorth China University of TechnologyBeijing 100144China

Abstract: Objectives The support effectiveness of energy-absorbing anti-scouring hydraulic support serving as the core component to safeguard hydraulic cylinder operation during rock burst incidents is a critical criterion for evaluating its performance. Methods Based on the widely used square pre-folded energy-absorbing component the fish swarm optimization algorithm is adoptedand the numerical simulation and data processing software are used to establish the optimization process of energy-absorbing componentand the rib area of energy-absorbing component is obtainedand the feasibility of the scheme is proved by comparing it with the original component. Results The results show that 1the square pre-folded energy-absorbing component is composed of 8 trapezoidal and 8 triangles which are arranged symmetrically along the central axis.By analyzing the deformation of the componentit can be seen that the deformation area is concentrated in the upper part of the triangle area and the bottom of the trapezoidal areaand there is a trend to extend to the top along the two waist pre-foldsand the plastic deformation zone appears in the middle of the trapezoidal side wall;(2by thickening the square pre-folded energy-absorbing component locallythe attenuation degree of the force-displacement curve after the end of the elastic segment deformation is significantly reduced;(3compared with the original componentthe optimized component crush peak load increasesand the support performance is improved to varying degreesand the optimization effect of energy-absorbing component is good. Conclusions The new optimization method of adding ribs in this paper is reliable and feasible and has important significance for preventing rock burst.

Key words:energy-absorbing memberequivalent plastic strainnumerical simulationsupport performanceartificial fish swarm algorithm

 

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