Applied of New Materials in Explosion-proof Enclosures for Mobile Explosion-proof Equipment
LIU Kaihua
Abstract:Addressing the issues of heavy weight,high cost,and inconvenience for underground transportation and daily movement of mobile explosion-proof equipment,this project aims to establish a simulation model suitable for the optimal design of explosion-proof power box enclosures by studying the explosion-proof factors of coal mine-used explosion-proof power box enclosures,combining optimization theory from mathematics,establishing objective functions,determining optimization methods,and setting boundary constraints.By examining the material characteristics and mechanical properties of non-metallic materials,new materials suitable for the lightweight design of explosion-proof power box enclosures were identified.Through finite element analysis,the impact of structural types on the lightweight design of explosion-proof power box enclosures was studied[1].A lightweight design method and verification scheme for explosion-proof power box enclosures based on finite element analysis,selection of new materials,and appropriate structural types were formulated,providing a theoretical basis for future lightweight design of explosion-proof power box enclosures[2].
Keywords:new materialsexplosion-proof enclosureexplosion-proof factorssimulation modellightweight designverification scheme
Publication Date:2025-12-31
Online Publishing Date:2026-01-29(First online date of this platform, not the publication date of the document)
Pages:6( 57-62 )
