A computerized flat knitting machine and its knitting method
A computerized flat knitting and stitching technology, applied in the directions of knitting, weft knitting, flat knitting with separate action needles, etc., can solve the problems of increasing the number of knitting rows, reducing the efficiency, wasting time, etc. The effect of improving production efficiency
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Embodiment 1
[0021] like figure 1 As shown, the present embodiment provides a knitting method for a computerized flat knitting machine, including:
[0022] Step S1: Obtain the pattern file;
[0023] Step S2: Calculating and extracting pattern row data satisfying two or more stitches within a predetermined distance from the pattern file;
[0024] Step S3: Combining the above two stitches into the same system and the same stroke in the pattern row data;
[0025] Step S4: Processing the pattern row data to control the triangular mechanism to perform more than two actions sequentially according to the combined stitches in the same stroke of the same system.
[0026] The above is the core content of the present invention. The knitting method of the present invention can be implemented in one row. When the distance allows, different stitches can be combined into the same system and the same stroke, and the triangular mechanism can be used in the same system and the same stroke. One action, so...
Embodiment 2
[0056] This embodiment provides a knitting method for a computerized flat knitting machine, including:
[0057] Step S1: Obtain the pattern file;
[0058] Step S2: Calculating and extracting pattern row data satisfying two or more stitches within a predetermined distance from the pattern file;
[0059] Specifically, with Figure 5 For example, the same pattern line includes knitting zone 1, transfer zone, and knitting zone 2. The distance between the knitting zone 1 and the transfer zone is W1, and the distance between the transfer zone and the knitting zone 2 is W2. In this embodiment, the response time of the electromagnet × the maximum knitting speed of the computerized flat knitting machine + the length of a single system < the predetermined distance < the length of the needle plate, the electromagnet response time t is 0.04s, and the maximum knitting speed v of the computerized flat knitting machine is 1.6m / s, the length d of the single system is 0.1m, wherein the leng...
Embodiment 3
[0074] This embodiment provides a knitting method for a computerized flat knitting machine, including:
[0075] Step S1: Obtain the pattern file;
[0076] Step S2: Calculating and extracting pattern row data satisfying two or more stitches within a predetermined distance from the pattern file;
[0077] Specifically, in this embodiment, the Figure 6 For example, the same pattern row includes transfer, knitting, tuck, and stitching sequentially. The distance between the transfer and knitting is L1, and the distance between the knitting and tuck is L2. The distance between the tuck and the connecting needle is L3.
[0078] In this embodiment, the response time of the electromagnet × the maximum knitting speed of the computerized flat knitting machine + the length of a single system < the predetermined distance < the length of the needle plate, the electromagnet response time t is 0.04s, and the maximum knitting speed v of the computerized flat knitting machine is 1.6m / s, the...
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