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Rheological Characterization of Polymers Fiber Composite

机译:聚合物纤维复合材料的流变特性

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The use of reinforced polymer composites has continued to show substantial growth due to desirable cost and performance characteristics, especially related to mechanical properties. Wollastonite and glass fibers are materials that can be used to improve polymer performance. Its vast array of applications suggests potential usage in various fields of work (e.g., plastics, friction materials paintings, coating, and construction products), but there is not much data available in the literature related to rheological properties of fiber reinforced polymers. In this work, a study of shear and extensional properties of composite materials containing wollastonite and glass fibers is performed using rotational and extensional rheometry. Suspensions containing different concentrations of wollastonite and glass fibers, in Newtonian and viscoelastic matrices are investigated. Results are obtained for different concentrations and temperatures. It is observed that even the addition of low fiber concentration can affect both shear and elongational properties, leading to different final products characteristics.
机译:由于所需的成本和性能特征,特别是与机械性能有关,增强的聚合物复合材料的使用继续显示出显着的增长。硅灰石和玻璃纤维是可用于改善聚合物性能的材料。它的广泛应用表明其在各种工作领域中的潜在用途(例如,塑料,摩擦材料涂料,涂料和建筑产品),但是在文献中没有太多数据与纤维增强聚合物的流变特性有关。在这项工作中,使用旋转流变学和拉伸流变学对含硅灰石和玻璃纤维的复合材料的剪切和拉伸性能进行了研究。研究了在牛顿和粘弹性基质中含有不同浓度硅灰石和玻璃纤维的悬浮液。获得了不同浓度和温度的结果。可以看出,即使添加低浓度的纤维也会影响剪切性能和伸长性能,从而导致不同的最终产品特性。

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