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The relationship between decoration and density



The relationship between decoration and density When designing plain fabrics, the density of warp and weft yarns has a greater impact on the loom construction. The specific situati…

The relationship between decoration and density

When designing plain fabrics, the density of warp and weft yarns has a greater impact on the loom construction. The specific situation is as follows: (1) First, we must understand the large density range that the silk loom can weave. For example, the density range of the K274 silk loom is 6.9-114 threads/cm, and it has weavability as long as it is within this range during design. (2) In the warp direction, the influence of warp density on heald density should be considered to study whether there is weavability. Of course, heald density is not only affected by warp density, but also by fabric structure, warp raw materials, and heald threading methods. Commonly used The heald density range is 7-2. If it exceeds this range, the number of healds should be increased accordingly. Heald density (roots/cm) = number of inner warp yarns (inner reed width Form, when the pattern width and number of needles are determined, to increase the density, you can adopt a hoisting system, but this must also be within the range of the number of needles. In addition, the increase or decrease in warp density is also affected by the number of ground tissue cycles. restrictions. In short, the design of warp and weft density is affected by many factors and should be considered comprehensively. Based on silk, viscose silk and tussah silk, the commonly used linear density and tissue density requirements are listed in Table 7-3 for reference during design. Since the weft density can be adjusted during the trial weaving process, the weft density design has greater sensitivity. However, some fabrics that have strict requirements on pattern appearance, such as group flowers, squares, elephant scenes, etc. cannot be adjusted arbitrarily, otherwise it will cause The pattern is deformed and becomes a defective product. When designing, the weft density of the fabric is generally less than the warp density. This is mainly because the linear density of the warp yarn is thin, the quality of the warp yarn is good, the tension on the machine is large, and the yarn is complete, which has a greater impact on the quality of the fabric. The weft density is small. It is helpful to improve production efficiency, and it is easy to remove weft when weaving defects occur. The meridional density reference is shown in Table 7-3.
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