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Effect of Dimension Parameters on the Torsion Property of A C/SiC Pipe

Effect of Dimension Parameters on the Torsion Property of A C/SiC Pipe
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摘要 Through finite element numerical simulation and based on laminated plate theory, the effect of dimension on the torsion properties of uniform C/SiC composites pipe was studied to provide a theoretical guidance for preparing the C/SiC pipe with different dimensions. The results show that, with increasing length of pipe, the anti-torsion section coefficient of pipe increases whereas the torsion angle per unit length decreases. Increasing the length can improve the torsion property. Anti-torsion section coefficient rises with increasing internal radius, while the torsion angle per unit length decreases to a constant. With increasing thickness, the anti-torsion section coefficient increases whereas the amplitude decreases gradually, and the torsion angle per unit length is a constant. Increment of internal radius and thickness improves the torsion property finitely. Through finite element numerical simulation and based on laminated plate theory, the effect of dimension on the torsion properties of uniform C/SiC composites pipe was studied to provide a theoretical guidance for preparing the C/SiC pipe with different dimensions. The results show that, with increasing length of pipe, the anti-torsion section coefficient of pipe increases whereas the torsion angle per unit length decreases. Increasing the length can improve the torsion property. Anti-torsion section coefficient rises with increasing internal radius, while the torsion angle per unit length decreases to a constant. With increasing thickness, the anti-torsion section coefficient increases whereas the amplitude decreases gradually, and the torsion angle per unit length is a constant. Increment of internal radius and thickness improves the torsion property finitely.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第2期389-393,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Natural Science Foundation of China(Nos.51772246,51272210,50902112,and U1737209) the Program for New Century Excellent Talents in University(NCET-13-0474) the Fundamental Research Funds for the Central Universities(3102017jg02001) the National Program for Support of Topnotch Young Professionals
关键词 dimension parameter torsion property finite element C/SiC pipe dimension parameter torsion property finite element C/SiC pipe
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