Spinning machinery: transformation and innovation

During the "Eleventh Five-Year Plan" period, spinning machinery will see a strong focus on modernizing cotton spinning equipment, while also advancing wool, hemp, and silk spinning technologies. This initiative aims to enhance productivity, improve quality, and align with global standards in textile manufacturing. For cotton spinning, efforts will center on upgrading traditional equipment by integrating network and information technologies. The goal is to achieve partial continuous production, reducing the number of workers per 10,000 spindles to around 70. A new generation of cotton spinning machinery with independent intellectual property rights will be developed, utilizing digital and automation technologies to increase efficiency, simplify structure, and lower costs. This advanced equipment will target a workforce of about 30 people per 10,000 spindles, with yarn quality reaching approximately 15% of the Uster standard. Wool spinning machinery will emphasize improving mechanical-electrical integration, automation, and environmental sustainability. New technologies will be introduced to expand textile variety and enhance reliability. For hemp spinning, key developments will include long-twist linen machines, short-spinning systems, and ramie-spinning equipment to address current limitations and boost production efficiency. Silk reeling machinery will evolve toward mechanization, automation, and continuous operation, aiming for per capita silk production exceeding 2,000 kg. Traditional cotton spinning equipment will also be upgraded, with improved automation, process control, and integration. Innovations such as high-speed draw frames, multi-motor driven roving machines, and automatic doffing systems will be implemented to streamline operations. New cotton spinning equipment will incorporate smart controls, network interfaces, and real-time monitoring. Advanced features like robotic integration, flexible production, and automated feeding of cans and rovings will be explored. Key components like carding machines, rubber rollers, and spindles will undergo rigorous quality improvements. In the wool sector, new spinning machines with multi-motor drives and collective doffing devices will be developed. Technologies such as rotor spinning and friction spinning will be adopted to enhance yarn quality. For linen and hemp, new short-spinning machinery will be designed to increase fiber count and reduce labor intensity, improving both quality and productivity. Finally, the development of fully automated wire production equipment will cover all stages from drying to cutting. Automatic reeling machines and advanced carding systems will be introduced to support efficient and high-quality textile production. Overall, these advancements aim to build a modern, intelligent, and sustainable spinning industry.

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