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Evaluating the Effect of Applied Tension During Natural Fiber Welding of Lignocellulose Yarns

机译:木质纤维素纱线天然纤维焊接期间施加张力的影响

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This study evaluated how applying tension in the axial dimension during Natural Fiber Welding (NFW) of lignocellulose yarn impacted the mechanical and morphological properties. Understanding the combined effects of applied tension and polymer mobilization is vital for controlling sample contraction during NFW experiments, and it will inform the design of scale-up processes that rely upon tension for pulling yarn and cloth stocks through continuous treatment. The tensile strength and Young's modulus of the fiber-welded taut linen yarns slightly increased over the tension values for the untreated linen. The greatest increase in the tensile strength and Young's modulus of the treated linen yarn occurred when taut linen yarn was treated with either 1-ethyl-3-methylimidazolium acetate or acetonitrile at 40 °C for 60 s. No tensile value improvements were observed in the NFW treated taut bamboo yarns. However, slight increases in the energy at break and tensile strength were observed when bamboo yarn was treated with methanol or warm acetonitrile. It is thought that the observed tension property differences between the treated linen and bamboo yarns is related to the cellulose and lignin content in the tested material.
机译:该研究评估了木质纤维素纱线天然纤维焊接期间轴向尺寸施加张力的施加效应影响机械和形态学性质。了解施加张力和聚合物摩托化的组合效果对于控制NFW实验期间的样品收缩至关重要,它将通过连续治疗方式通知依赖张力张力的扩大过程的设计。纤维焊接塔麻织物的拉伸强度和杨氏模量略微增加未处理亚麻布的张力值。当在40℃下用1-乙基-3-甲基咪唑鎓或乙腈在40℃下用1-乙基-3-甲基咪唑鎓或乙腈处理时,将处理的亚麻纱的拉伸强度和杨氏模量的增加最大。在NFW处理的绷紧竹纱中没有观察到拉伸值改善。然而,当用甲醇或温热乙腈处理竹纱时,观察到断裂和拉伸强度的能量略微增加。据认为,所观察到的亚麻织物和竹纱之间的张力性差异与测试材料中的纤维素和木质素含量有关。

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