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An investigation on performance optimization of r-PET/cotton and ⅴ-PET/cotton knitted fabric

机译:R-PET /棉花和棉绒/棉质针织面料性能优化调查

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Purpose The purpose of this paper is to compare the bursting strength, bursting distension, air permeability and wale wise wicking rate properties of recycled polyester (r-PET) and virgin polyester (v-PET) raw materials from which single jersey knitted fabric samples are manufactured. Meanwhile, numerical optimization method was used in predetermined parameters to determine the optimum r-PET and v-PET blend ratio and yarn manufacturing technology. In the optimization analysis, the average values of the important yarn and fabric properties inspected were taken as a target according to the 50 percent proportion of r-PET and v-PET fiber for both compact and ring yarn manufacturing technology.Design/methodology/approach To encourage the use of value-added textile products produced from recycling PET bottle with the focus of social responsibility is a condition that should be evaluated within the scope of waste management. The recycling of PET bottles and finding new opportunities for the uses in different field are crucial for both contributing environmental economy and conserving natural energy resources. The most important alternative ways is to use the r-PET fiber from recycling PET bottle in textile industry. In this study, 19.7 tex r-PET/cotton and v-PET/cotton-blended compact and ring spun yarns were produced at different blending ratios at the same production parameters.Findings Results showed that blend type, blend ratio and yarn manufacturing technology have statistical significance effect on bursting strength and air permeability. Besides, it was found that blend type has no significance on wale wise wicking rate unlike other parameters. Optimization analysis indicated that single jersey knitted fabric with v-PET/CO 58.62/41.38 percent compact yarn had higher desirability with the value of 0.72.Originality/value At the present time, r-PET fiber is blended in small amount (approximately 5-15 percent blend ratio) with both cotton and polyester together. In addition, it is possible using different fiber blend types instead of cotton and polyester according to the usage area. The most important question is to determine the amount of r-PET proportion. In other words, both optimum yarn/fabric quality parameters should be ensured and at the same time life cycle of the apparels should not be short when the optimum r-PET proportion is taken into consideration.
机译:目的本文的目的是比较再生聚酯(R-PET)和维珍聚酯(V-PET)原料的爆破强度,爆裂的扩散,透气性和WALE明智的芯吸率特性,从中有哪些针织织物样品制造。同时,在预定参数中使用数值优化方法来确定最佳的R-PET和V-PET混合物比和纱线制造技术。在优化分析中,根据紧凑型和环纱制造技术的50%的R-PET和V-PET纤维,将检查的重要纱线和织物性能的平均值作为靶标.Design/methodology/approach为鼓励使用从回收宠物瓶产生的增值纺织品,具有社会责任的重点是应在废物管理范围内进行评估的条件。宠物瓶的再循环以及为不同领域的用途寻找新的机会对于贡献环境经济和保护自然能源来说至关重要。最重要的替代方式是使用R-PET纤维在纺织业中回收宠物瓶。在本研究中,在相同的制作参数下以不同的混合比在不同的混合比下产生19.7 TEX R-PET /棉和棉混纺紧凑型和环纺纱。结果表明混合型,混合比和纱线制造技术有统计显着性对爆破强度和透气性的影响。此外,发现混合型对与其他参数不同的WALE WISE芯吸率没有意义。优化分析表明,具有V-PET / CO 58.62 / 41.38%的单个泽西针织织物具有更高的柔性纱线,具有0.72.目前的值/值,R-PET纤维少量混合(约5- 15%的混合比)用棉和聚酯在一起。此外,根据使用区域,可以使用不同的纤维混合物代替棉和聚酯。最重要的问题是确定R-PET比例的数量。换句话说,应确保最佳纱/织物质量参数,并且在考虑最佳的R-PET比例时,服装的寿命周期不应短。

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