玻璃纤维
玻璃纖維
파리섬유
FIBER GLASS
2012年
2期
29-33
,共5页
难熔金属组元%碳纤维增强复合材料棒%结构与性能
難鎔金屬組元%碳纖維增彊複閤材料棒%結構與性能
난용금속조원%탄섬유증강복합재료봉%결구여성능
refractory metal component%carbon fiber reinforced composite rod%structure and properties
利用拉伸测试、弯曲测试、扫描电子显微镜等方法研究了金属组元的含量、粒径的大小、组元的分散状况对碳纤维增强复合材料结构与性能的影响。研究结果表明,难熔金属组元的引入和组元含量的增加都会造成复合材料棒力学性能的降低。其中,纳米级金属组元的引入对复合材料力学性能的损伤低于微米级金属组元对复合材料力学性能的损伤。同时超声波分散和高速机械式剪切分散都能最大限度的使纳米或者微米级金属组元分散在基体树脂中。SEM分析表明对于提高纳米或者微米级金属组元在树脂体系中分散均匀性,超声波的分散方式优于高速机械式剪切的分散方式。
利用拉伸測試、彎麯測試、掃描電子顯微鏡等方法研究瞭金屬組元的含量、粒徑的大小、組元的分散狀況對碳纖維增彊複閤材料結構與性能的影響。研究結果錶明,難鎔金屬組元的引入和組元含量的增加都會造成複閤材料棒力學性能的降低。其中,納米級金屬組元的引入對複閤材料力學性能的損傷低于微米級金屬組元對複閤材料力學性能的損傷。同時超聲波分散和高速機械式剪切分散都能最大限度的使納米或者微米級金屬組元分散在基體樹脂中。SEM分析錶明對于提高納米或者微米級金屬組元在樹脂體繫中分散均勻性,超聲波的分散方式優于高速機械式剪切的分散方式。
이용랍신측시、만곡측시、소묘전자현미경등방법연구료금속조원적함량、립경적대소、조원적분산상황대탄섬유증강복합재료결구여성능적영향。연구결과표명,난용금속조원적인입화조원함량적증가도회조성복합재료봉역학성능적강저。기중,납미급금속조원적인입대복합재료역학성능적손상저우미미급금속조원대복합재료역학성능적손상。동시초성파분산화고속궤계식전절분산도능최대한도적사납미혹자미미급금속조원분산재기체수지중。SEM분석표명대우제고납미혹자미미급금속조원재수지체계중분산균균성,초성파적분산방식우우고속궤계식전절적분산방식。
With the help of ultrasonic wave and high-speed mechanical shearing, the dispersion of nanoand micron-size metal components in the matrix resin was improved. The effects of the content, particle size and dispersion state of metal components on the structure and properties of carbon fiber reinforced composites were studied by tensile tests, SEM and other methods. The results indicated that the introduction and the increased content of refractory metal components would cause the reduction of mechanical properties of composite rods. The introduction of nano metal component exhibited less harm to the mechanical properties of the rods compared with the micron-size metal component. Both ultrasonic wave and high-speed mechanical shearing were able to make the nano-and micron-size metal components dispersed in the matrix resin to the maximum extent, and SEM showed that ultrasonic wave was superior over high-speed mechanical shearing in improving the dispersion of the nanoor micron-size metal components in the matrix resin.