This invention discloses an antibacterial and antistatic
cellulose blended
yarn. The raw materials for preparing the blended
yarn include natural fibers, deodorizing hemp pulp fibers, antistatic
carbon fibers, mineral-modified fibers, and an
antistatic agent. The raw materials, by weight, include the following components: 20-30 parts natural fibers, 10-12 parts deodorizing hemp pulp fibers, 10-20 parts antistatic
carbon fibers, and 6-8 parts mineral-modified fibers. The natural fibers include bamboo fibers, cotton fibers, and hemp fibers, and possess inherent antibacterial components. The mineral-modified
fiber raw materials are nano-
zinc oxide and nano-
titanium dioxide particles. The advantages of this invention compared to existing technologies are: the antibacterial and antistatic
cellulose blended
yarn of this invention has a soft and smooth hand feel and improved weaving performance; it retains the unique antibacterial and
moisture-wicking functions of hemp fibers, while inheriting the comfortable and
skin-friendly characteristics of cotton and
viscose regenerated cellulose fibers; and it improves the antistatic performance of the blended yarn.