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渔用自增强聚乙烯单丝的拉伸力学性能分析
引用本文:石建高,王鲁民,汤振明,柴秀芳,史航,毕士川,施锦飞.渔用自增强聚乙烯单丝的拉伸力学性能分析[J].上海水产大学学报,2004,13(4):323-327.
作者姓名:石建高  王鲁民  汤振明  柴秀芳  史航  毕士川  施锦飞
作者单位:中国水产科学研究院东海水产研究所农业部海洋与河口渔业重点开放实验室,中国水产科学研究院东海水产研究所农业部海洋与河口渔业重点开放实验室,中国水产科学研究院东海水产研究所农业部海洋与河口渔业重点开放实验室,中国水产科学研究院东海水产研究所农业部海洋与河口渔业重点开放实验室,中国水产科学研究院东海水产研究所农业部海洋与河口渔业重点开放实验室,中国水产科学研究院东海水产研究所农业部海洋与河口渔业重点开放实验室,中国水产科学研究院东海水产研究所农业部海洋与河口渔业重点开放实验室 上海 200090,上海 200090,上海 200090,上海 200090,上海 200090,上海 200090,上海 200090
基金项目:国家"十五"科技攻关资助项目(2001BA505B0202),农业部重点项目(渔85 91 09 04 01)
摘    要:在标准实验室环境里,对渔用自增强聚乙烯(self-reinforced polyethylene,简称SRPE)单丝的结晶形态、拉伸力学性能进行了分析。结果表明:渔用SRPE单丝结晶度、声速值比普通聚乙烯(polyethylene,简称PE)单丝均有提高,其内部生成了串晶结构;SRPE单丝断裂强度、结节强度和结强损失率比普通PE单丝分别提高了12.75%、4.82%和12.69%,而断裂伸长率降低了27.72%。结论可供渔具设计及网线材料选配时参考。

关 键 词:聚乙烯单丝  拉伸力学性能  渔用  自增强
文章编号:1004-7271(2004)04-0323-05
修稿时间:2004年5月8日

Analysis of tensile mechanic performance of self-reinforced polyethylene monofilament for fishing gear
SHI Jian-gao,WANG Lu-min,TANG Zhen-min,CHAI Xiu-fang,SHI Hang,BI Shi-chuan,SHI Jin-fei.Analysis of tensile mechanic performance of self-reinforced polyethylene monofilament for fishing gear[J].Journal of Shanghai Fisheries University,2004,13(4):323-327.
Authors:SHI Jian-gao  WANG Lu-min  TANG Zhen-min  CHAI Xiu-fang  SHI Hang  BI Shi-chuan  SHI Jin-fei
Abstract:The structure and tensile mechanic performance of self-reinforced polyethylene (SRPE)monofilament for fishing gear have been analyzed in standard laboratory. Compared with common polyethylene (PE)monofilament, SRPE monofilament gets a bit higher crystallization, sonic velocity value, and the morphology of the SRPE monofilament was shish-kebab structure; the SRPE monofilament is 12.75%,4.82% and 12.69% higher than the common PE monofilament in breaking strength ,knot breaking strength and rate of loss of knot breaking strength , respectively, while in percentage of breaking elongation the latter is 27.72% higher than the former. The conclusion reached can be used as reference in designing fishing gear and selecting netting materials.
Keywords:polyethylene monofilament  tensile mechanic performance  fisheries  self-reinforcement
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