黄色大片网站-男生女生插插插-亚洲美女网站-亚洲69-国产免费自拍视频-一区二区日本-av导航在线-yy6080午夜-亚洲午夜久久久久久久国产-在线啊v-99久久久无码国产精品衣服-亚洲美女福利视频-午夜精品久久久久久久99热黄桃-高h文在线-右手影院亚洲欧美-一区二区三区精品在线观看-性――交――性――乱-亚洲综合图片一区-苍井空浴缸大战猛男120分钟-久久这里只有精品国产-在线免费视频一区二区-国产精品网友自拍-日韩av在线高清-女主播在线观看-亚洲色图国产视频-激情五月婷婷小说-欧日韩中文字幕-海角国产精品-97精品国产97久久久久久久久久久久-欧美少妇网站

Investigations on the interactions between Li-TFSI and glass fibers in the ternary PP/GF/Li-TFSI composites

2019-11-04 18:17:27 adman 43
文件格式 :
.pdf
立即下載

Investigations on the interactions between Li-TFSI and glass fibers in the ternary PP/GF/Li-TFSI composites

Chinese Journal of Polymer Science
January 2018, Volume 36, Issue 1, pp 113–118


Abstract

The polypropylene/glass fiber (PP/GF) composites with excellent antistatic performance and improved mechanical properties have been reported by incorporation of a very small amount of the organic salt, lithium bis(trifluoromethanesulfonyl)imide (Li-TFSI), into the PP/GF composites. It was considered that GF could play the role as the pathways for the movements of ions in the ternary composites. In this work, the interactions between Li-TFSI and glass fiber and the effects of such interactions on the physical properties of the composites have been systematically investigated. Three types of glass fibers with different ―OH group concentrations have been prepared in order to compare the interactions between GF and Li-TFSI. It was found that the ―OH group concentrations on the surface of glass fiber have significant effects on interactions between glass fibers and Li-TFSI. Such interactions are crucial for both the antistatic and mechanical performances of the final PP/GF/Li-TFSI composites. The investigation indicated that the GF with high ―OH group concentrations confined the movement of TFSI?, which decreased the antistatic properties of PP/GF/Li-TFSI composites. On the other hand, the GF with low ―OH group concentrations inhibited the absorption of Li-TFSI onto the GF, which also hindered the formation of Li-TFSI conductive pathway. The best antistatic performance of the ternary composites can be achieved at the intermediate ―OH concentrations on the GF.

Keywords

Polypropylene Glass fiber Li-TFSI Antistatic performance 



標簽:  玻璃纖維 復合材料 LiTFSI Li-TFSI 雙三氟甲磺酰亞胺鹽