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首页> 外文期刊>Journal of Applied Polymer Science >Rheological properties of cellulose/chitin xanthate blend solutions and properties of the prepared fibers
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Rheological properties of cellulose/chitin xanthate blend solutions and properties of the prepared fibers

机译:纤维素/几丁质黄原酸酯共混物溶液的流变性质和制备纤维的性质

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摘要

The focus of this article is the rheological properties of cellulose xanthate, chitin xanthate, and their blend solutions with cellulose/chitin blend weight ratios of 9.5 : 0.5, 9 : 1, S : 2, and 5 : 5 (mostly 9 : 1 blend solutions). The preparation and properties of fibers front 9 : 1 blend Solutions and cellulose xanthate solutions are also discussed. The non-Newtonian index of the investigated solutions was found to vary in the following order: chitin < cellulose < 9.5 : 0.5 blend < 9 : 1 blend < 8 : 2 blend < 5 : 5 blend. Showing a tendency contrary to that of the non-Nowtonian index, the structure viscosity index varies in the following order: chitin > cellulose > 9.5 : 0.5 blend > 9 : I blend > 8 : 2 blend > 5 : 5 blend. For 5-9 wt % 9 : 1 blend solutions, increasing the solution temperature aids the improvement of the fluidity of 9 : 1 blend solutions in the temperature range of 10-40 degrees C. The zero shear viscosity decreases in an index manner with the solution temperature increasing. The 7-8 wt% 9 : 1 blend solutions have good filtering and rheological properties and are ideal for spinning fibers. The mechanical properties of blend fibers spun from 7% 9 : 1 blend Solutions are lower than those of pure cellulose and are Much higher than those of Crabyon fiber, and they still reach the national criteria and fit the need for further processing. This proves that the viscose method which we have developed here is an efficient way of preparing cellulose/chitin blend fibers; with satisfactory mechanical properties and processing properties. Scanning electron microscopy photographs show that the surface of 9 : 1 blend fibers is coarser than that of pure cellulose fibers. (c) 2008 Wiley Periodicals, Inc.
机译:本文的重点是纤维素黄原酸酯,几丁质黄原酸酯及其共混物溶液的流变特性,纤维素/几丁质共混物的重量比为9.5:0.5、9:1,S:2和5:5(大多数为9:1混合物)解决方案)。还讨论了纤维前9:1共混溶液和纤维素黄药溶液的制备和性能。发现所研究溶液的非牛顿指数按以下顺序变化:几丁质<纤维素<9.5:0.5共混物<9:1共混物<8:2共混物<5:5共混物。显示出与非诺顿指数相反的趋势,结构粘度指数按以下顺序变化:几丁质>纤维素> 9.5:0.5共混物> 9:1共混物> 8:2共混物> 5:5共混物。对于5-9 wt%的9:1共混溶液,提高溶液温度有助于在10-40摄氏度的温度范围内改善9:1共混溶液的流动性。零剪切粘度随着温度的升高呈指数下降。溶液温度升高。 7-8 wt%的9:1混合溶液具有良好的过滤和流变性能,非常适合纺丝纤维。由7%9:1混纺纱纺制的混纺纤维的机械性能低于纯纤维素,远高于Crabyon纤维,仍然符合国家标准,适合进一步加工。这证明我们在这里开发的粘胶法是制备纤维素/几丁质共混纤维的有效方法。具有令人满意的机械性能和加工性能。扫描电子显微镜照片显示9∶1混合纤维的表面比纯纤维素纤维的表面粗糙。 (c)2008 Wiley期刊公司

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