VS-E Untwisting, Scouring and Squeezing Machine belongs to the technical field of fabric post-finishing processing devices, and specifically relates to a cylindrical cloth edge separating machine, which is used to separate the selvedges of dyed cylindrical cloth for subsequent shaping process .
Background technique:
As is well known in the industry, tubular cloth refers to fabrics processed by circular knitting machines or weft knitting machines. This fabric can only enter the subsequent raising process after cutting the width, and enter dyeing after the raising is completed. Cutting the width is to change the circular cloth into the unfolded plain cloth. However, when the plain cloth is dyed after raising, it is necessary to sew a pair of selvedges of the plain cloth to re-form the state of the cylindrical cloth. Before dyeing, the plain cloth after cutting the velvet should be stitched again, this is to avoid damage to the edge structure of the cloth during the dyeing process and to ensure the dyeing effect on the edge of the cloth. Because, if the plain cloth is directly sent to dyeing without stitching, it will cause damage or even tear to the selvedge in different degrees during the dyeing, and the cloth will be defective in light cases, and it will be scrapped in severe cases. After the dyeing process is finished and sent to the finalizing process, the cylindrical cloth will be restored again, that is, the cylindrical cloth will be edge-separated, and the previous seams will be removed, so that the cylindrical cloth will return to the plain cloth state and enter the final shape.
In the prior art, the process of dividing the dyed cylinder cloth into plain cloth is usually done manually. It goes without saying that the efficiency of manual side dividing is not only low, but also requires a lot of manpower. The labor intensity of the workers is high, and it also affects the subsequent processes, because once the edge separation speed cannot meet the demand for sizing, the sizing machine will be in a state of slowdown. Also have, the cloth after manual side division is often in disorderly stacking state, also must rearrange again when sending to finalizing, thereby has increased the waste of manpower resource again.
In view of the above situation, some people may think of adopting the slitting machine in the prior art without hesitation, and this idea has already been tried by countless manufacturers, but practice has proved that the special slitting machine cannot take on this responsibility. The reason is that this kind of cutting belongs to the category of secondary cutting, and it is not as handy as the original cutting for the first time, because the bonding force and bonding state between the selvedges of the sewn circular cloth have changed, for example, there are Factors such as the density of stitches or the density of stitches and the tortuousness of the suture line (sewing track) make the slitting machine unable to adapt, and the edge separation operation is reluctantly undertaken by hand.
Therefore, it is necessary to explore a side-splitting device that can eliminate the above-mentioned deficiencies, so as to reduce the labor intensity of the workers, and to ensure that the shaping device does not stop supplying and the cloth after the side-splitting is folded in order. The technology that will be introduced below The program is based on this background. Contents of the invention
The task of the utility model is to provide a cylinder cloth side-separating machine with high side-splitting efficiency, which can reduce the labor intensity of workers and orderly fold flat cloth after side-splitting.
The task of the present utility model is accomplished in this way, a kind of cylinder edge dividing machine, it comprises a frame that is made of a pair of the first, the second support that is arranged in parallel with each other and is connected with each other, and the
One side is configured as a cylindrical cloth inlet, and the other side is configured as a flat cloth outlet; one is used to guide the cylindrical cloth from one side of the cylindrical cloth inlet of the frame to one side of the flat cloth outlet A side-separating mechanism for separating the cylindrical cloth while guiding it is provided on the first and second brackets and is located on one side of the introduction port of the cylindrical cloth; a cloth-drawing mechanism is provided On the upper part of the pair of first and second brackets of the frame and between the inlet of the cylindrical cloth and the outlet of the flat cloth; a cloth guiding mechanism is arranged on the pair of first and second brackets and located on one side of the flat cloth outlet; a cloth drop mechanism, connected with the cloth guide mechanism in a cantilever state and located below the cloth guide mechanism; a power transmission mechanism, located at the first On the bracket or the second bracket, the power transmission mechanism is in transmission connection with the cloth dragging mechanism and is also in transmission connection with the cloth guiding mechanism and the cloth dropping mechanism.
In a specific embodiment of the present invention, the first bracket extends a first horizontal arm toward the side of the flat cloth outlet, and the second bracket extends toward a side of the flat cloth outlet. There is a second horizontal arm extending sideways, and the cloth guide mechanism is arranged on the first and second horizontal arms; the first bracket extends a third horizontal arm toward the side of the cylindrical cloth inlet. arm, the second bracket extends a fourth horizontal arm toward the side of the cylinder cloth inlet, the side dividing mechanism corresponds to the third and fourth horizontal arms, and the The power transmission mechanism is arranged on the first bracket.
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Post time: Apr-25-2023