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首页> 外文期刊>Journal of Applied Polymer Science >Temperature responsive fibers with anisotropic transitional behavior
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Temperature responsive fibers with anisotropic transitional behavior

机译:具有各向异性过渡行为的温度响应纤维

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Temperature sensitive polymer hydrogels are being extensively studied because of their potential applications in the biomedical, robotics, and chemical industries. However, major hurdles in their development have been their slow response, low efficiency (swelling/deswelling ratios), and poor mechanical properties due to difficulty in processing them into mechanically strong and fine structures. Fibers made from such polymers would be highly desirable. A temperature sensitive random linear copolymer of N-tert-butylacrylamide (NTBA) and acrylamide (Am) was synthesized by the solution polymerization method, using regulated dosing of comonomers. Using a novel approach, a high molecular weight poly(N-tert-butylacrylamide-ran-acrylamide::27:73) has been converted to insoluble strong fibers with fineness of 30-50 microns by solution spinning, drawing, and subsequent crosslinking. Fibers were solution spun in acetone using a 14% copolymer solution in acetic acid with polycarboxylic acid as a crosslinker and sodium hypophosphite as a catalyst. The crosslinks were formed, subsequent to drawing, between reactive amide side groups of the acrylamide moiety of the polymer and the carboxylic acid group of the crosslinker by thermal treatment at 160degreesC. The transition temperatures of the crosslinked fibers were found to shift towards the lower temperature from 37degreesC (in linear copolymer) to 22-25degreesC. These engineered fibers display sharp temperature sensitivity, extremely high reversible change in dimensions (1000% in diameter and similar to 70% in length), and extremely fast response time ( < 20 s for expansion and < 2 s for contraction). (C) 2004 Wiley Periodicals, Inc.
机译:由于对温度敏感的聚合物水凝胶在生物医学,机器人技术和化学工业中的潜在应用,因此正在广泛地进行研究。然而,由于难以将它们加工成机械强度高且精细的结构,因此其发展的主要障碍是其响应慢,效率低(溶胀/溶胀比)和差的机械性能。由这种聚合物制成的纤维将是非常需要的。使用共聚单体的定量加料,通过溶液聚合法合成了N-叔丁基丙烯酰胺(NTBA)和丙烯酰胺(Am)的温度敏感型无规线性共聚物。使用一种新颖的方法,通过溶液纺丝,拉伸和随后的交联,将高分子量的聚(N-叔丁基丙烯酰胺-ran-丙烯酰胺:: 27:73)转化为细度为30-50微米的不溶性强纤维。使用14%的乙酸共聚物溶液,多羧酸作为交联剂和次磷酸钠作为催化剂,将纤维在丙酮中溶液纺丝。在拉伸之后,通过在160℃下的热处理,在聚合物的丙烯酰胺部分的反应性酰胺侧基和交联剂的羧酸基之间形成交联。发现交联纤维的转变温度朝着较低的温度从37℃(在线性共聚物中)转变为22-25℃。这些工程纤维显示出敏锐的温度敏感性,极高的尺寸可逆变化(直径为1000%,长度类似为70%),以及极快的响应时间(膨胀<20 s,收缩<2 s)。 (C)2004年Wiley Periodicals,Inc.

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