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Surface Roughness Measurement of Weft Knitted Fabrics Using Image Processing

机译:利用图像处理技术测量纬编织物的表面粗糙度

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This paper focuses on measuring the roughness of knitted fabrics using a non-contact method. Research on objectifying the handle of textile fabrics is a very important factor in textile and garment manufacturing and retailing industries. Fabric handle is influenced by mechanical and surface properties. The KES-F system is a standard objectified method among different measurement methods. However, the KES-F system is time-consuming, and the translation of the data measured is difficult. In addition, the KES-F method as a contact-method is more easily affected by environmental conditions, such as moisture, and is not suitable as an on-line system in the manufacturing process. Hence the surface roughness of knitted fabrics without any deformation was measured by a non-contact method using a high resolution scanner. The data was controlled on a computer by using MATLAB software to obtain the roughness index. The results were compared with the surface characteristic values (SMD) measured by the KES-F system. The findings show a good correlation between fabric roughness values measured by the two different methods. Moreover, a negative correlation coefficient shows that the roughness value measured by Kawabata changes reversely proportional to those measured by the image processing method. Finally, the non-contact measurement of fabric roughness using a high resolution scanner is useful for the description of fabric roughness.
机译:本文着重于使用非接触法测量针织物的粗糙度。在纺织服装制造和零售行业中,研究使织物的手感客观化是非常重要的因素。织物手感受机械和表面性能的影响。在不同的测量方法中,KES-F系统是一种标准的客观方法。但是,KES-F系统非常耗时,并且难以转换所测数据。另外,作为接触方法的KES-F方法更容易受到诸如湿气的环境条件的影响,并且不适合作为制造过程中的在线系统。因此,使用高分辨率扫描仪通过非接触法测量了没有任何变形的针织物的表面粗糙度。通过使用MATLAB软件在计算机上控制数据以获得粗糙度指数。将结果与通过KES-F系统测得的表面特征值(SMD)进行比较。研究结果表明,通过两种不同方法测得的织物粗糙度值之间具有良好的相关性。此外,负相关系数表明,川端康成测得的粗糙度值与图像处理方法测得的粗糙度值成反比。最后,使用高分辨率扫描仪对织物粗糙度进行非接触式测量可用于描述织物粗糙度。

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