Leno woven fabric is a special weaving technique used in knitting, shuttle weaving, and weaving. In this process, additional yarns are passed through the gaps between every two warp threads (the longitudinal threads) to form a crisscrossed loop, creating a mesh or net-like structure, also known as leno woven fabric.
In traditional shuttle or weaving machines, this technique requires a special wheel to help introduce an additional yarn through the gaps between every two warp threads. However, in electronic weaving machines, leno is accomplished by a set of electronic combs that pass the additional yarn through the warp threads without the need for a wheel.
Leno technology on electronic weaving machines enables more efficient and flexible fabric production. Utilizing leno allows for smaller pores and more intricate bends, resulting in the production of more complex fabrics. Leno on electronic weaving machines can also aid in producing high-quality yarns, especially for fine threads and special industrial fabrics such as silk and linen textiles.
As the textile industry continues to evolve and innovate, leno technology on electronic weaving machines will undergo continuous improvement and refinement. In the future, more intelligent and automated technologies will be applied to electronic weaving machines to enhance production efficiency and quality. Additionally, with increasing calls for environmental protection and sustainable development, leno technology on electronic weaving machines will also focus more on environmental and energy consumption issues, presenting new prospects for the industry.
In conclusion, leno technology on electronic weaving machines is a crucial technique in the textile industry. It offers a more efficient and precise method of fabric production, improving the output efficiency and economic benefits of the fiber industry.
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