When analyzing and designing mechanical parts, adhere to the principle of "more loose, less tight, early fall, less breakage, and less waste."
For example, some opener machines utilize a two-hand roller with relative rotation and control ribs for the picking method, which has multiple picking points and the two picking hands have an angle and do not repeat. The vertical stroke of the picking arm is not greater than 0.1mm. It can pick cotton bundles smaller, finer, and more evenly, which is more conducive to de-dusting and mixing. Some opener machines are equipped with an inverted picking roller system for cotton. This ensures that the cotton bundles picked by the two beaters are of equal weight and achieve the desired opening effect.
For the opening and cleaning cotton machinery, the打击points transition from coarse to fine, from free striking to gripping striking, meeting the technological requirements of early shedding, minimal fiber breakage, and impurity removal. To minimize the damage to fibers from striking and impurity removal, Heggt Co. first applied the principle of needle combing and impurity removal to the opening and sliding cotton equipment, enhancing the impurity and dust removal effects, achieving early shedding with minimal breakage. The equipment occupies 50% less space than traditional equipment, has a 70% reduction in impurity air volume, and consumes 54% less electricity than traditional equipment.
From the above introduction, it is apparent that to facilitate the realization of the system goal of opening and cleaning cotton, an integrated design approach should be adopted. This approach will ensure that the five key elements of electromechanical integration are themselves high-performance and highly functional, while also enabling these elements to complement and coordinate with each other, achieving a perfect match.




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