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3D Printing Technology for Short-continuous Carbon Fiber Synchronous Reinforced Thermoplastic Composites:A Comparison between Towpreg Extrusion and In Situ Impregnation Processes 被引量:1
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作者 Fuji Wang Gongshuo Wang +3 位作者 Hongquan Wang Rao Fu Yajing Lei Jianing He 《Chinese Journal of Mechanical Engineering(Additive Manufacturing Frontiers)》 2023年第3期46-54,共9页
Three-dimensional(3D)printing of carbon fiber-reinforced thermoplastic composites(CFRTPs)provides an ef-fective method for manufacturing the CFRTPs parts with complex structures.To increase the mechanical per-formance... Three-dimensional(3D)printing of carbon fiber-reinforced thermoplastic composites(CFRTPs)provides an ef-fective method for manufacturing the CFRTPs parts with complex structures.To increase the mechanical per-formance of these parts,a 3D printing technology for short-continuous carbon fiber synchronous-reinforced thermoplastic composites(S/C-CFRTPs)has been proposed.However,the synchronous reinforcement that ex-isted only at particular positions led to a limited improvement in the mechanical performance of the 3D-printed S/C-CFRTP part,which made it challenging to meet the engineering requirements.To solve this problem,two methods for achieving synchronous reinforcement at all the positions of the 3D-printed S/C-CFRTP part are pro-posed.To determine a suitable printing process for the S/C-CFRTP part,a comprehensive comparison between the two methods was conducted through theoretical analysis and experimental verification,involving the print-ing mechanism,fiber content,impregnation percentage,and mechanical performance.The results indicated that the towpreg extrusion process was suitable for manufacturing the 3D-printed S/C-CFRTP part.Compared with the in situ impregnation process,the towpreg extrusion process led to a fiber content increase of approximately 7%and void rate reduction of approximately 6%,resulting in 19%and 20%increases in the tensile and flexural strengths of the 3D-printed S/C-CFRTPs,respectively.Additionally,an optimized process parameter setting for fabricating an S/C-CFRTP prepreg filament with excellent mechanical performance was proposed.The findings of this study can provide a new approach for further improving the mechanical performance of the 3D-printed advanced composites. 展开更多
关键词 Short-continuous carbon fiber synchronous-reinforced thermoplastic composites(S/C-CFRTPs) 3d printing fiber content Impregnation percentage mechanical performance
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三维针刺C/SiC复合材料无纬布纤维方向对材料力学性能的影响 被引量:13
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作者 邓娟利 范尚武 +1 位作者 成来飞 张立同 《硅酸盐通报》 CAS CSCD 北大核心 2012年第3期571-574,共4页
通过化学气相渗透法结合反应熔体浸渗法制备了三维针刺C/SiC复合材料,采用扫描电子显微镜观察材料的显微结构,并研究了无纬布纤维方向对材料力学性能的影响。结果表明,三维针刺C/SiC复合材料由0°无纬布层、短纤维胎网层、90°... 通过化学气相渗透法结合反应熔体浸渗法制备了三维针刺C/SiC复合材料,采用扫描电子显微镜观察材料的显微结构,并研究了无纬布纤维方向对材料力学性能的影响。结果表明,三维针刺C/SiC复合材料由0°无纬布层、短纤维胎网层、90°无纬布层以及针刺纤维束组成,无纬布层纤维方向对材料性能有显著影响。试样的拉伸强度和弯曲强度随着无纬布纤维方向与试样长度方向的夹角θ(0~45°)值的增大而减小,面内剪切强度和冲击韧性随θ角的增大而增大。 展开更多
关键词 三维针刺C/SiC复合材料 纤维方向 力学性能
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三维织物构件的力学性能探讨 被引量:2
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作者 周详 何文元 白燕 《合成纤维》 CAS 北大核心 2006年第7期27-29,36,共4页
探讨了用芳纶织制的三维机织物结构,并对该三维织物构成的简支梁进行力学性能测试,证明45°方向和90°方向接结纱共存的织物组成的简支梁的力学性能优于仅含90°方向接结纱的织物组成的简支梁。
关键词 三维织物 芳纶 力学性能
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三维玻璃纤维连体织物增强硫铝酸盐水泥性能研究 被引量:2
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作者 刘志成 崔琪 李清海 《混凝土》 CAS 北大核心 2015年第12期67-70,74,共5页
水泥砂浆是一种典型的脆性材料,为有效改善其韧性,降低其脆性,引入三维玻璃纤维连体织物来增强硫铝酸盐水泥砂浆,同时对其力学性能、抗冻融性和耐老化性能进行了研究。研究结果表明,三维玻璃纤维连体织物增强硫铝酸盐水泥砂浆的力学性... 水泥砂浆是一种典型的脆性材料,为有效改善其韧性,降低其脆性,引入三维玻璃纤维连体织物来增强硫铝酸盐水泥砂浆,同时对其力学性能、抗冻融性和耐老化性能进行了研究。研究结果表明,三维玻璃纤维连体织物增强硫铝酸盐水泥砂浆的力学性能显著提高,抗弯曲强度和抗冲击强度分别提高至3倍和20倍左右;并且其抗冻融性优异,25次冻融循环后力学强度损失在5%以下;试件经过90 d的室外自然老化和50℃热水加速老化后,力学强度保留率仍在90%左右,耐老化性能良好。 展开更多
关键词 三维玻璃纤维连体织物 硫铝酸盐水泥 力学性能 抗冻融性 耐老化性
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