Rheological Study on Blend Solutions of Non-mulberry Silk Fibroin and Gelatin Biopolymers

IF 0.3 4区 材料科学 Q4 POLYMER SCIENCE Journal of Polymer Materials Pub Date : 2024-03-22 DOI:10.32381/jpm.2023.40.3-4.6
P. P, R. Sachan, R. Purwar
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Abstract

In current research work, we have studied the blending effect of non-mulberry silk fibroin (10% weight/volume basis) and gelatin (20% weight/volume basis) in formic acid. Several blends as SF10G0, SF2G8, SF3G7, SF5G5 and SF0G10 have been made and their rheological behaviour was investigated. The blend solutions were subjected to a steady shear rheological study in the variety of range of shear rates, namely 0.01–500 sec-1 and the viscosities of blend solutions were noticed to decrease in comparison to pure silk solution. The frequency sweep was employed in dynamic rheological tests to determine complex viscosity of these solutions from range of angular sweep 0.1–100 rad/sec. The consistent shear-thinning behaviour was noted for all the blends. The difference in numerical values of shear and complex viscosities indicated disobedience of Cox-Merz rule. Such analysis can be utilised for tailoring the properties of solution prior to processing them to create a versatile range of materials.
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非桑葚蚕丝纤维素和明胶生物聚合物混合溶液的流变学研究
在当前的研究工作中,我们研究了甲酸中非桑蚕丝纤维素(重量/体积比 10%)和明胶(重量/体积比 20%)的混合效果。我们制作了 SF10G0、SF2G8、SF3G7、SF5G5 和 SF0G10 等几种混合物,并研究了它们的流变特性。在 0.01-500 sec-1 的剪切速率范围内,对混合溶液进行了稳定的剪切流变研究,发现混合溶液的粘度与纯丝溶液相比有所下降。在动态流变测试中采用了频率扫描,以确定这些溶液在 0.1-100 弧度/秒的角度扫描范围内的复合粘度。所有混合物都具有一致的剪切稀化特性。剪切粘度和复合粘度的数值差异表明不符合 Cox-Merz 规则。这种分析可用于在加工溶液之前调整溶液的特性,从而制造出多种材料。
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来源期刊
Journal of Polymer Materials
Journal of Polymer Materials 工程技术-高分子科学
CiteScore
1.00
自引率
0.00%
发文量
27
审稿时长
4.7 months
期刊介绍: Journal of Polymer Materials-An International Journal is published quarterly (4 issues per year), which covers broadly most of the important and fundamental areas of Polymer Science and Technology. It reports reviews on current topics and original research results on synthesis of monomers and polymers, polymer analysis, characterization and testing, properties of polymers, structure-property relation, polymer processing and fabrication, and polymer applications. Research and development activities on functional polymers, polymer blends and alloys, composites and nanocomposites, paints and surface coatings, rubbers and elastomeric materials, and adhesives are also published.
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