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The Three-System Computerized Flat Knitting Machine

The global computerized flat knitting machine market is expected to grow rapidly in the next few years. This is due to the increasing demand for ready-to-wear clothes and rising disposable income among consumers. In addition, the use of this machine helps in producing fabrics with complex designs and patterns. It also ensures error-free knitting, reduces fabric waste and increases productivity. However, the high initial investment and installation costs of this machine are hindering the market growth.

The Three-system computerized flat knitting machine is a digital flatbed machine that knits various types of materials such as cotton, silk and wool. Its technology enables it to produce different types of textile products such as sweaters, socks and other accessories. It can also produce jacquard and apparent shape garments. It can also knit basic stitches like plain stitch, rib fabric and interlock stitch. It can also knit irregular multi color jacquard, twit flowers weft organization, cord weave, racked stitch and cable.

This machine has several advantages over traditional flat knitting machines, including its ability to process different yarn types, as well as its speed and accuracy. The machine can be programmed to create a variety of shapes, and its high-speed operation allows it to knit large volumes of products quickly and efficiently. It is also easy to use and requires little maintenance. In addition, it is capable of creating multiple patterns and colors, making it a popular choice for companies that want to increase their productivity.

Moreover, the system can detect any errors in the machine, such as wrong stitch count, yarn breakage and skeins that are not wound tightly enough. It can also identify the temperature of the knitted fabric and adjust its dimensions accordingly. This helps in ensuring that the finished product meets customer specifications.

Aside from reducing the time and labor required to prepare a garment, it can also help in minimizing the costs associated with reworking and repairing defective products. Moreover, it can significantly improve the quality of a garment, as it allows for more precise stitch control.

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