分析选定棉线在环境温度和条件下的化学和物理变化

C. S. Souza, J. U. Mendes
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摘要

棉花是一种亲水性纺织纤维,具有不稳定的特性,因此它的性能会随着环境的变化而变化。湿度和温度是影响棉纺行业和棉纺质量的两个最重要的因素。这两个特性可以改变整个纺纱过程。了解了这一点,在纺纱过程中必须控制好湿度和温度;一旦环境炎热干燥,棉纱就会吸收水分,失去最小的稠度。根据这一信息,本章编写了四种棉纱,一种来自巴西,另一种来自埃及。将纱线置于不同的温度和湿度下进行5次不同的试验,每次试验中对6个样品进行物理和力学测试:抗力、强度、韧性、纱线毛羽度、纱线条干度和纱线捻度。所有的分析都是在Laboratório de mecnica dos Fluidos和COATS Corrente s.a.完成的,在那里可以使用对本章的发展至关重要的设备,例如测量强度和韧性的STATIMAT ME;Zweigler G566,测量纱线的毛羽度;绞纱机;还有一台扭丝机。分析结果直接揭示了纱线特性的变化;例如,随着湿度和温度的增加,纱线的强度、韧性和毛羽也会增加。根据所有分析的结果,可以说在相对较低的温度和较高的湿度下,棉纱的性能最好。
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Analyzing Chemical and Physical Variations in Selected Cotton Wires at Ambient Temperatures and Conditions
Cotton, a hydrophilic textile fiber, has unstable characteristics and, for this rea-son, it varies its properties according to the environmental changes. Moisture and temperature are the two most important factors that lead a cotton spinning sector and influence its quality. Those two properties can change the entire spinning process. Understanding this, moisture and temperature must be kept under control during the spinning process; once the environment is hot and dry, the cotton yarns absorb moisture and lose the minimal consistency. According to this information, this chapter was developed testing four types of cotton yarns, one kind of cotton from Brazil and the others from Egypt. The yarns were exposed to different temperatures and moisture in five different tests, and in each test, six samples were examined through physical and mechanical tests: resistance, strength, tenacity, yarn’s hairiness, yarn’s evenness, and yarn’s twisting. All the analyses were accom-plished at Laboratório de Mecânica dos Fluidos and at COATS Corrente S.A., where it was possible to use the equipment which were fundamental to development of this chapter, such as the STATIMAT ME, which measures strength, tenacity; Zweigler G566, which measure hairiness in the yarn; a skein machine; and a twisting machine. The analyses revealed alterations in the yarn’s characteristics in a direct way; for example, as moisture and temperature were increased, the yarn’s strength, tenacity, and hairiness were increased as well. Having the results of all analyses, it is possible to say that with a relatively low temperature and high humidity, cotton yarns have the best performance.
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