Four steps to identify high-end suits



Four steps to identify high-end suits Four steps to identify high-end suits Pure wool fabrics are warm, beautiful, and elastic, and are the first choice for making high-end suits. However, with the development …

Four steps to identify high-end suits

Four steps to identify high-end suits
Pure wool fabrics are warm, beautiful, and elastic, and are the first choice for making high-end suits. However, with the development of modern textile technology, there are more and more kinds of imitation wool fabrics that are relatively cheap and give people a fake and real feeling. Here are several ways to identify pure wool fabrics for your reference when choosing clothing:
1. Look at the color. The color of pure wool fabric is natural and soft, bright and not stale. In contrast, blended or pure fiber fabrics may have a darker luster or have a shimmery feel.
2. Pure wool fabrics usually feel smooth to the touch, soft and not stiff, while some blended or pure fiber products are not soft, some are too soft and loose, and have a sticky feeling.
3. To test the elasticity, pinch the fabric tightly with your hands, then release it immediately to see the elasticity of the fabric. Pure wool fabrics have a high rebound rate and can recover quickly, while blended or pure fiber products have poor wrinkle resistance, and most of them leave obvious wrinkle marks or recover slowly.
4. Combustion method: Pull out a bunch of yarn at the break of the fabric, ignite it with a match, and carefully observe the fiber burning speed, flame color and residual ash, etc. Generally, pure wool fibers burn quickly, have small flames, smell of burning hair, and are extinguished as soon as they are removed from the fire. And the burned ashes are curly, with black agglomerations, which are easy to crush with your fingers and are in powder form. If there are viscose particles, it means that the fabric contains chemical fiber components. The more hard objects with viscose particles, the It means the higher the proportion of chemical fiber components. 0pDU5F7


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