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材料导报  2021, Vol. 35 Issue (Z1): 518-521    
  高分子与聚合物基复合材料 |
乳胶手套的性能与乳胶手套穿戴的选择
李志锋1,2, 陶金龙1,2, 孔娜1,2, 赵鹏飞1,2, 关杰1,2, 丁宏达1,2
1 中国热带农业科学院农产品加工研究所,湛江 524001
2 广东省天然橡胶加工重点实验室, 湛江 524001
Performance of Latex Gloves and the Choice of Latex Gloves to Wear
LI Zhifeng1,2, TAO Jinlong1,2, KONG Na1,2, ZHAO Pengfei1,2, GUAN Jie1,2, DING Hongda1,2
1 Agricultural Product Processing Research Institute of Chinese Academy of Tropical Agricultural Sciences, Zhanjiang 524001, China
2 Guangdong Provincial Key Laboratory of Natural Rubber Processing,, Zhanjiang 524001, China
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摘要 天然胶乳手套用作防护用品历史悠久,但性能上存在不足和有过敏症风险。石油工业的发展推动了合成胶乳手套和人造胶乳手套的发展,丁腈胶乳手套、氯丁胶乳手套、丁基胶乳手套和聚异戊二烯胶乳手套各有特殊的性能优点。本文对天然胶乳手套、合成胶乳手套和人造胶乳手套的性能进行综述,旨在为乳胶手套穿戴的选择提供参考。
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李志锋
陶金龙
孔娜
赵鹏飞
关杰
丁宏达
关键词:  天然胶乳  合成胶乳  人造胶乳  穿戴舒适感  价格    
Abstract: Natural rubber gloves have a long history of applying as protective equipment, however, the related products still face performance weaknesses and risks of allergy which restrict their further application. The development of the petroleum industry has promoted the dynamic growth of synthetic and artificial rubber gloves, such as nitrile, neoprene, butyl and polyisoprene latex gloves with specific properties. Herein, the purpose of this paper is to provide comprehensive insights into natural rubber gloves, synthetic rubber gloves and artificial rubber gloves to provide references on the selection of rubber gloves under various situations.
Key words:  natural rubber latex    synthetic rubber latex    artificial rubber latex    wearing comfort    price
                    发布日期:  2021-07-16
ZTFLH:  R136  
基金资助: 2018年度广东省科技战略创新专项基金竞争性分配项目(2018A01004);中国热带农业科学院基本科研业务费(1630122017012);广东省天然橡胶加工重点实验室专项基金(2019B121203004)
通讯作者:  jinlongt1983@163.com   
作者简介:  李志锋,中国热带农业科学院农产品加工研究所工程师。主要从事天然胶乳应用研究与制品生产工作。长时间在生产一线从事高性能胶乳产品研究和研发工作,积累了丰富的橡胶制品实践经验,参与多项省部级课题,主持省部级课题1项,发表论文18篇,申请发明专利4项,其中已获授权3项。陶金龙,中国热带农业科学院农产品加工研究所副研究员、硕士生导师。2012年7月取得吉林大学物理化学专业博士学位,2016—2018年在澳大利亚迪肯大学开展博士后研究。主要从事天然橡胶基功能材料应用基础研究。近年来,主持4项省部级课题,发表论文 20余篇。
引用本文:    
李志锋, 陶金龙, 孔娜, 赵鹏飞, 关杰, 丁宏达. 乳胶手套的性能与乳胶手套穿戴的选择[J]. 材料导报, 2021, 35(Z1): 518-521.
LI Zhifeng, TAO Jinlong, KONG Na, ZHAO Pengfei, GUAN Jie, DING Hongda. Performance of Latex Gloves and the Choice of Latex Gloves to Wear. Materials Reports, 2021, 35(Z1): 518-521.
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http://www.mater-rep.com/CN/  或          http://www.mater-rep.com/CN/Y2021/V35/IZ1/518
1 李志锋, 吕明哲, 杨子明,等. 橡胶工业, 2020, 67(2), 153.
2 魏邦柱.胶乳·乳液应用技术, 化学工业出版杜, 2003.
3 Jacob J L. 范思伟译.热带作物译丛,1987(4), 4.
4 诸杰.中国血液流变学杂志, 2006, 16(l), 153.
5 刘通, 李普旺, 李思东,等.材料导报, 2016, 30(2), 353.
6 郭平.中国橡胶, 2005, 21(17), 6.
7 Anon, 唐翠芳译.天津橡胶,2002(1), 43.
8 马自立.橡胶参考资料, 2017 (2), 24.
9 冯霆钧, 廖红云.合成材料老化与应用, 1997(4), 19.
10 李志锋, 吕明哲, 杨子明, 等.橡胶工业,2020, 67(5), 395.
11 钱迎春, 张平, 高尚.中国专利, CN101208742A, 2007.
12 Thomas S, Aldlyami E, Gupta S, et al. In: 2010 Annual Meeting of the American Academy of Orthopaedic surgeons. New Orleans, 2010.
13 相刚, 刘洪明, 刘晓星, 等.中国专利, CN107400190B, 2020.
14 环球聚氨酯, 2018(8), 18.
15 Dalrymple S J, et al.Rubber Developments, 1992, 45(2-3), 51.
16 袁小龙, 陈鹰.热带作物研究, 1998(1), 69.
17 廖益传, 徐对功, 张鹏程, 等.高分子材料科学与工程, 2016, 32(5), 182.
18 肖迪娥, 张望.特种橡胶制品, 2009, 30(4), 43.
19 沈云初, 吴同锴.特种橡胶制品,1980(2), 36.
20 刘志成.中国橡胶, 2004, 20(17), 20.
21 郭济中.天津橡胶,1996(1), 34.
22 王应富.特种橡胶制品, 1984(1), 35.
23 郭济中.天津橡胶,1996(3), 40.
24 G·伯恩, T·A·莫塞里, Y·S·T·叶.中国专利, CN1256702, 2000.
25 周星余, 孙永峰.中国专利, CN108477714A, 2018.
26 刘达奎.特种橡胶制品, 1983(3), 40.
27 巫惠琼, 李惠.橡胶科技市场, 2003(19), 7.
28 杨福英.特种橡胶制品,1982(3), 47.
29 李苗, 张颖, 黄文正, 等.中国专利, CN110801065A, 2020.
30 贺小进, 张杰, 王雪, 等.中国专利, CN107226916A, 2017.
31 Bert Krutzer, Marianne Ros, Joris Smit, et al. Rubber World,2012, 247(2), 18.
32 涂学忠摘译.橡胶工业, 2002(6), 343.
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