塑料工业
塑料工業
소료공업
CHINA PLASTICS INDUSTRY
2010年
1期
32-35
,共4页
聚芳醚腈%复合材料%力学性能%流变性能
聚芳醚腈%複閤材料%力學性能%流變性能
취방미정%복합재료%역학성능%류변성능
Polyarylene Ether Nitrile%Composite%Mechanical Properties%Rheological Properties
以聚芳醚腈(PEN)为基体,采用双螺杆挤出机熔融共混制备了玻纤、石墨复合材料,重点研究了两种不同形貌的增强填料对PEN树脂的协同增强作用.测试了不同样品的拉伸、弯曲和冲击等力学性能,利用扫描电镜对拉伸断面进行形貌分析,并对样品进行了TGA测试和流变性能测试.结果表明,大量玻纤以棒状存在于PEN树脂当中,构成骨架结构,使得PEN树脂力学性能大幅度提高,石墨以片层形状存在于PEN树脂与玻纤之间,进一步增强了PEN树脂基体的连接作用,从而使得复合材料力学性能进一步提高;石墨在提高PEN树脂强度的同时能够提高PEN树脂的热稳定性;在相同频率下,PEN基复合材料的储能模量和耗能模量均随玻纤和石墨填料含量增加而提高,低含量的石墨填入对体系的模量和黏度影响较小.
以聚芳醚腈(PEN)為基體,採用雙螺桿擠齣機鎔融共混製備瞭玻纖、石墨複閤材料,重點研究瞭兩種不同形貌的增彊填料對PEN樹脂的協同增彊作用.測試瞭不同樣品的拉伸、彎麯和遲擊等力學性能,利用掃描電鏡對拉伸斷麵進行形貌分析,併對樣品進行瞭TGA測試和流變性能測試.結果錶明,大量玻纖以棒狀存在于PEN樹脂噹中,構成骨架結構,使得PEN樹脂力學性能大幅度提高,石墨以片層形狀存在于PEN樹脂與玻纖之間,進一步增彊瞭PEN樹脂基體的連接作用,從而使得複閤材料力學性能進一步提高;石墨在提高PEN樹脂彊度的同時能夠提高PEN樹脂的熱穩定性;在相同頻率下,PEN基複閤材料的儲能模量和耗能模量均隨玻纖和石墨填料含量增加而提高,低含量的石墨填入對體繫的模量和黏度影響較小.
이취방미정(PEN)위기체,채용쌍라간제출궤용융공혼제비료파섬、석묵복합재료,중점연구료량충불동형모적증강전료대PEN수지적협동증강작용.측시료불동양품적랍신、만곡화충격등역학성능,이용소묘전경대랍신단면진행형모분석,병대양품진행료TGA측시화류변성능측시.결과표명,대량파섬이봉상존재우PEN수지당중,구성골가결구,사득PEN수지역학성능대폭도제고,석묵이편층형상존재우PEN수지여파섬지간,진일보증강료PEN수지기체적련접작용,종이사득복합재료역학성능진일보제고;석묵재제고PEN수지강도적동시능구제고PEN수지적열은정성;재상동빈솔하,PEN기복합재료적저능모량화모능모량균수파섬화석묵전료함량증가이제고,저함량적석묵전입대체계적모량화점도영향교소.
The polyarylene ether nitritle (PEN) matrix composites filled with glass fiber and graphite were prepared by means of melt blending with twin-extruder. Studied the synergistic enhancement of two different morphologies of reinforcing filler on the PEN resin. Tested the mechanical property such as tensile strength, bending and impact sthength and other mechanical properties of different samples, using scanning electron microscopy (SEM) characterized the morphology of cross-section, and TGA tests and rheological properties test on the sample were also used. The results showed that a large number of rod-like glass existed in the PEN resin which constituted a skeleton structure, allowing mechanical properties of PEN resin greatly improved, graphite existed as lamellar shape in the PEN resin and glass, further enhanced the PEN resin matrix's connection function, thus improved the mechanical properties of composite; graphite raised strength and thermal stability of PEN resin. At the same frequency, the storage and energy modulus of PEN-based composites increased with the glass fiber and graphite filler content. The low content of graphite filling on the system modulus and viscosity were less affected.