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Tribological simulation of porous self-lubricating PEEK composites with heat-stress coupled field

机译:热应力耦合场的多孔自润滑PEEK复合材料的摩擦学模拟

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A novel two-dimensional (2D) model was developed and heat-stress coupled field was applied to reveal the self-lubricating process and effects of porosity on tribological properties of porous PEEK composites by finite element (FE) analysis. Results indicated that the numerical distributions of temperature, displacement and stress were accurately calculated by using heat-stress coupled field analysis. Porosity was crucial for the self-lubricating properties of porous PEEK composites. By experimental verification, the simulated results were consistent with the experimental results with the maximal errors less than 7%. The FE analysis using heat-stress coupled field was effective to study the self-lubricating behaviors of porous polymer composites.
机译:建立了一种新型的二维(2D)模型,并利用热应力耦合场通过有限元(FE)分析揭示了自润滑过程和孔隙率对多孔PEEK复合材料摩擦学性能的影响。结果表明,利用热应力耦合场分析可以准确计算出温度,位移和应力的数值分布。多孔性对于多孔PEEK复合材料的自润滑性能至关重要。通过实验验证,仿真结果与实验结果一致,最大误差小于7%。利用热应力耦合场进行的有限元分析对于研究多孔聚合物复合材料的自润滑行为是有效的。

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