Structural Optimization of Main Frame of Mine Transverse Ceramic Membrane Water Purification Device Based on ANSYS
SUN Jin
MA Ning
CAO Chao
ZHANG Yu
Abstract:To address the issue of excessive overall mass in the main frame of horizontally mounted ceramic membrane plate water purification units for mines,structural optimization studies were conducted on the main frame using ANSYS.Firstly,the three-dimensional model of the main frame was imported into ANSYS Workbench to conduct a static analysis.According to the deformation and stress cloud maps,it was concluded that the support frame of the main frame contained too many invalid parts.The variable density method was then used to optimize the topology of the support frame to meet the design requirements.Finally,the support frame was found to be almost stress-free based on the topology optimization results.The optimized support frame model was then established and static test analysis was carried out on the optimized support frame and the main frame.The results show that the overall deformation of the mine's main frame with a transverse ceramic membrane plate water purification device designed on this theoretical basis is 0.063 mm.This meets the actual working conditions and reduces the mass by 7.4%compared to the original,proving the method's rationality and effectiveness.This approach provides a new idea for the lightweight design of the main frame of a mine with a transverse ceramic membrane plate water purification device and has certain practical application value.
Keywords:ANSYSceramic membrane platewater purification devicevariable density methodtopology optimization
Publication Date:2025-12-30
Online Publishing Date:2026-01-17(First online date of this platform, not the publication date of the document)
Pages:6( 71-76 )
