The carding process targets the fiber layer (licker-in carding), fiber bundles (flat carding), and pseudo-neps within the fibers (cylinder and flat carding). Adjacent carding teeth in a carding machine are arranged in a crisscrossing or parallel configuration. The relative movement between the teeth occurs in different directions, interacting and generating impact, friction, and carding forces on the fibers. These forces penetrate and break down the fiber bundles into individual fibers, dissolving neps. Excessive or insufficient force will affect the carding teeth's ability to grasp, card, release, and transfer fibers, leading to an increase in short linters and neps.
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Silk-like wadding is a higher-end variety of spray-bonded cotton products, commonly known in the market as "silk cotton." Compared to stiff cotton, it is lighter, softer, and has better warmth retention. It can replace down as an excellent insulating material for clothing filling. High-end silk-like wadding is easily integrated with fashion trends, does not easily absorb moisture, and its warmth retention is not easily diminished, making it widely used in high-end fashion and uniforms.
The carding machine is suitable for the opening and carding of cotton, removing loose impurities, producing cotton slivers quickly and with high quality, resulting in a clean and knot-free cotton batting. It can process cotton, chemical fibers, etc. In terms of process, structure, and cotton output quality, the carding machine surpasses the carding standards of fine cotton carding machines.