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作 者:张一川 刘枫 符寿康 王亮燕 孙克俭 李凡珠[1] 卢咏来[1] ZHANG Yichuan;LIU Feng;FU Shoukang;WANG Liangyan;SUN Kejian;LI Fanzhu;LU Yonglai(Beijing University of Chemical Technology,Beijing 100029,China;Nanjing Orientleader Technology Co.,Ltd,Nanjing 210028)
机构地区:[1]北京化工大学有机无机复合材料国家重点实验室,北京100029 [2]南京利德东方橡塑科技有限公司,江苏南京210028
出 处:《橡胶工业》2020年第2期83-90,共8页China Rubber Industry
基 金:国家重点研发计划项目(2018YFB1502501);中央高校基本科研业务费专项资金资助项目(ZY1911)
摘 要:采用代表体积单元理论的细观力学分析法,推导出制动胶管纤维编织骨架层(简称编织层)正交各向异性力学性能分析方法,并通过编织层轴向拉伸试验对等效拉伸模量进行验证;开发了编织层的快速建模和等效力学性能分析软件,基于编织层的正交各向异性本构方程建立了制动胶管的高精度有限元模型,并进行扭转变形仿真分析和试验验证。试验表明制动胶管编织层正交各向异性力学性能的分析方法和管体扭转变形的仿真分析方法均合理和可靠。By using micro-mechanics analysis method based on representative volume element theory,the analytical method of orthogonal anisotropic mechanical properties of the braided fibrous framework layer(referred to as braided layer)of the brake hose was derived.The equivalent mechanical modulus was verified by axial tensile experiment of the braided layer.The software of fast modeling and equivalent mechanical properties analysis of the braided layer was developed.Based on the orthogonal anisotropic constitutive equation of the braided layer,a high-precision finite element model of the brake hose was established,and the simulation analysis and experimental verification of the torsion deformation were carried out.The results showed that,the analysis method of orthogonal anisotropic mechanical properties of the braided layer and the simulation method of the torsion characteristics of the hose were reasonable and reliable.
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