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Physical and tensile properties of raw and treated silk fibres

机译:生丝和处理丝纤维的物理和拉伸性能

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摘要

[Abstract]:\udNatural fibres have gained a paramount importance in composite field due to their low densities, biodegradability and other environmental performance. Silk appears to be a promising fibre as a reinforcing agent in composite due to its mechanical properties consisting of a combination of high strength, high toughness, extensibility and compressibility. The main objective of this research is to evaluate the effect of span length on the tensile properties of raw and alkali treated silk fibres. The fibres were characterized using Thermo-Gravimetric Analysis (TGA) and Scanning Electron Microscopy (SEM). Tensile testing of raw and alkali treated silk fibres was carried out by varying span length. Newly developed equations were used to correct the Young’s modulus and strain to failure values. It is observed that tensile strength and strain to failure decreased, while Young’s modulus increased with an increase in span length of single fibre. This is because larger span length minimizes the slippage effect more compared to smaller span length. Alkali treated silk fibres had better tensile properties, smoother surface and lower thermal stability compared to raw silk fibres.
机译:[摘要]:\ ud天然纤维由于其低密度,可生物降解性和其他环境性能,在复合材料领域已变得至关重要。丝绸由于其机械性能(包括高强度,高韧性,可延展性和可压缩性的组合)而成为复合材料中作为增强剂的有前途的纤维。这项研究的主要目的是评估跨度对生丝和碱处理丝纤维拉伸性能的影响。使用热重分析(TGA)和扫描电子显微镜(SEM)对纤维进行表征。通过改变跨度长度来对生丝和碱处理的丝纤维进行拉伸测试。新开发的方程式用于将杨氏模量和应变校正为破坏值。可以看出,抗张强度和破坏应变降低,而杨氏模量随单根纤维长度的增加而增加。这是因为与较小的跨距长度相比,较大的跨距长度会最大程度地减小滑移效果。与生丝纤维相比,经碱处理的蚕丝纤维具有更好的拉伸性能,更光滑的表面和更低的热稳定性。

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