A tape slitting assisting machine

CN224604342UActive Publication Date: 2026-08-07SHUYANG XINXIELI PRECISION MACHINERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHUYANG XINXIELI PRECISION MACHINERY CO LTD
Filing Date
2024-10-09
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]针对现有技术存在的不足,本实用新型目的是提供一种胶带分条辅助机,以解决现有的胶带分条机收卷时耗材及耗能较大的问题

Benefits of technology

[0009]本实用新型有益效果为通过设置收卷机构和定位机构对切割后的胶条定位收卷,通过同一个动力驱动胶条进行收卷操作,降低能耗,同时收卷筒可单独拆卸,不影响收卷操作,定位机构对收卷过程中的胶条进行定位,提高胶条收卷的稳定性,具体实施方式在以下实施例中进一步说明。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of adhesive tape slitting auxiliary machines, including winding mechanism, and winding mechanism side is provided with positioning mechanism, winding mechanism includes segmented winding shaft, and multiple connected segmented winding shaft outer end is provided with driving motor, and driving motor outside is vertically provided with moving rod, and moving rod bottom between connection is provided with ball screw sliding table, and segmented winding shaft between connection is provided with fixed ring, and fixed ring two sides are provided with fixed buckle in surface, and fixed buckle inner ring is regular polygon structure, and segmented winding shaft two ends are distributed and are provided with fixed column, and segmented winding shaft bottom is provided with electric telescopic rod, and electric telescopic rod bottom is provided with inverted concave rod, and concave rod bottom end is provided with electric slide rail, and segmented winding shaft is fixed between adjacent segmented winding shaft by fixed ring, and it is convenient to set winding adhesive tape to multiple winding drum, and electric telescopic rod and ball screw sliding table control are simultaneously arranged to separate between segmented winding shaft, and it is convenient to disassemble after winding winding drum, satisfy production operation.
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Description

Technical Field

[0001] This utility model belongs to the field of quartz tube production equipment, specifically a tape slitting auxiliary machine. Background Technology

[0002] After the tape is produced, it is cut into different widths by a cutting blade and then needs to be wound up by a winding mechanism. During the winding process, since different widths of tape require different winding drums, multiple winding shafts and multiple motors are needed to drive the winding. During operation, the tapes need to be separated from each other, so the entire winding process occupies a large space. In addition, setting up multiple motors consumes a lot of energy, which is not conducive to production cost control. Therefore, it is necessary to provide a winding auxiliary mechanism during tape slitting to improve the overall efficiency of the tape slitting machine. Utility Model Content

[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a tape slitting auxiliary machine to solve the problem of high material and energy consumption during the winding of existing tape slitting machines.

[0004] To achieve the above objectives, this utility model is implemented through the following technical solution: A tape slitting auxiliary machine includes a winding mechanism, a positioning mechanism on one side of the winding mechanism, the winding mechanism including segmented winding shafts, multiple segmented winding shafts arranged along the same axis, a drive motor at the outer end of the multiple connected segmented winding shafts, a moving rod vertically arranged outside the drive motor, a ball screw slide connected between the bottoms of the moving rods, a slider connected between the bottom end of the moving rod and the ball screw slide, a fixing ring connected between the segmented winding shafts, the fixing ring having an I-shaped structure, fixing buckles provided on both sides of the fixing ring, the inner ring of the fixing buckle having a regular polygonal structure, and fixing... The outer end face of the buckle and the outer end face of the fixing ring are on the same horizontal plane. Fixed posts are distributed at both ends of the segmented winding shaft. An electric telescopic rod is set at the bottom of the segmented winding shaft. An inverted concave rod is set at the bottom of the electric telescopic rod. An electric slide rail is set at the bottom end of the concave rod. The number of electric telescopic rods and concave rods is the same as the number of segmented winding shafts. The segmented winding shafts are fixed to adjacent segmented winding shafts by fixing rings, which facilitates the application of winding strips to multiple winding drums. At the same time, the electric telescopic rod and ball screw slide table are set to control the separation between the segmented winding shafts, which facilitates the disassembly of the winding drums after winding. Only one motor is required and the operating space is saved, which meets the needs of production operation.

[0005] The preferred structure of this solution includes multiple fixing buckles evenly distributed on the side of the fixing ring, the number of fixing posts being the same as the number of fixing buckles, the fixing posts being movably locked inside the fixing buckles, and being movably detachable from the fixing buckles.

[0006] The preferred structure of this solution also includes that the center of the electric telescopic rod and the center of the fixed ring are on the same straight line, and a positioning hole is provided at the bottom of the fixed ring and the same straight line position as the axis of the electric telescopic rod. The top of the electric telescopic rod can be extended into the positioning hole. By driving the electric telescopic rod to extend into the positioning hole, the position of the fixed ring is limited. At the same time, the adjacent segmented winding shafts are separated by the drive of the electric slide rail and the ball screw slide table, which facilitates the disassembly of the wound rubber strip.

[0007] As another preferred structure of this solution, the positioning mechanism includes a support rod inclinedly disposed on one side of the segmented take-up shaft. A second concave rod is disposed at the top of the support rod, and a contact shaft is horizontally rotatably connected inside the second concave rod. A rotary motor is horizontally connected to the bottom of the support rod, and a third concave rod is invertedly disposed at the bottom of the rotary motor. A second rotary motor is disposed inside the third concave rod. By setting the second rotary motor to drive and adjust the left and right angles of the support rod, and by driving the rotary motor to adjust the front and rear angles of the support rod, it is convenient to adjust the tension and levelness of the adhesive strip and improve the flatness of the take-up.

[0008] As another preferred structure of this solution, the number of support rods is the same as the number of segmented winding shafts, which can simultaneously wind up multiple strands of adhesive strips, saving space and reducing energy consumption.

[0009] The beneficial effects of this utility model are that by setting up a winding mechanism and a positioning mechanism to position and wind up the cut adhesive strip, and by using the same power to drive the adhesive strip to perform the winding operation, energy consumption is reduced. At the same time, the winding drum can be disassembled separately without affecting the winding operation. The positioning mechanism positions the adhesive strip during the winding process, improving the stability of the adhesive strip winding. The specific implementation method is further described in the following embodiments. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0011] Figure 2 This is a schematic diagram of one side of the positioning mechanism;

[0012] Figure 3 This is a structural diagram of the segmented take-up shaft and retaining ring;

[0013] In the diagram: 1. Segmented winding shaft, 2. Fixing ring, 2-1. Fixing buckle, 2-2. Fixing column, 3. Moving rod, 4. Drive motor, 5. Ball screw slide, 6. Electric telescopic rod, 7. Concave rod, 8. Electric slide rail, 9. Support rod, 10. Second concave rod, 11. Contact shaft, 12. Rotary motor, 13. Third concave rod, 14. Second rotary motor; Detailed Implementation

[0014] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0015] See Figure 1 A positioning mechanism is provided on one side of the winding mechanism. The winding mechanism includes segmented winding shafts, with multiple segmented winding shafts arranged along the same axis. A drive motor is located at the outer end of each connected segmented winding shaft. A moving rod is vertically mounted outside the drive motor. A ball screw slide is connected between the bottoms of the moving rods. A slider is connected between the bottom of the moving rod and the ball screw slide. A fixing ring is provided between the segmented winding shafts. The fixing ring has an I-shaped structure, and fixing buckles are provided on both sides of the fixing ring. The inner ring of the fixing buckle has a regular polygonal structure, and the outer end face of the fixing buckle is on the same horizontal plane as the outer end face of the fixing ring. The two ends of the segmented winding shafts are... The fabric is equipped with fixed posts, and an electric telescopic rod is installed at the bottom of the segmented take-up shaft. An inverted concave rod is installed at the bottom of the electric telescopic rod, and an electric slide rail is installed at the bottom of the concave rod. The number of electric telescopic rods and concave rods is the same as the number of segmented take-up shafts. Adjacent segmented take-up shafts are fixed together by retaining rings, facilitating the application of take-up strips to multiple take-up drums. The electric telescopic rods and ball screw slides control the separation of the segmented take-up shafts, facilitating the disassembly of the taken-up drums after winding. Only one motor is required, saving operating space and meeting production operation requirements. The fixing buckle is located on the side of the retaining ring. Multiple fixing posts are evenly distributed on the upper part of the device, with the number of fixing posts matching the number of fixing buckles. The fixing posts are movably locked within the fixing buckles and can be detached from them. The center of the electric telescopic rod is collinear with the center of the fixing ring. A positioning hole is located at the bottom of the fixing ring, aligned with the axis of the electric telescopic rod. The top of the electric telescopic rod can extend into the positioning hole, limiting the position of the fixing ring by driving the electric telescopic rod to extend into the positioning hole. Simultaneously, the electric slide rail and ball screw slide table drive the adjacent segmented winding shafts to separate them, facilitating the disassembly of the wound adhesive strip. The positioning mechanism includes an inclined section... A support rod is located on one side of the take-up shaft. A second concave rod is positioned at the top of the support rod, and a contact shaft is horizontally rotatably connected within the second concave rod. A rotary motor is horizontally connected at the bottom of the support rod, and a third concave rod is inverted below the rotary motor. A second rotary motor is housed within the third concave rod. The second rotary motor drives the adjustment of the left-right angle of the support rod, and the rotary motor drives the adjustment of the front-back angle of the support rod. This facilitates adjustment of the tension and levelness of the adhesive strip, improving the flatness of the roll-up. The number of support rods is the same as the number of segmented take-up shafts, allowing for the simultaneous winding of multiple strands of adhesive strip, saving space and reducing energy consumption.

[0016] During implementation, when loading the take-up drum, the electric telescopic rod extends into the positioning hole of the fixed ring, simultaneously driving the electric slide rail and the ball screw slide table. This controls the movement of the moving rod and the concave rod on the ball screw slide table and the electric slide rail. The moving rod moves outwards, and the concave rods on the electric slide rail move in opposite directions from the concave rods on both sides of the center, thus separating the segmented take-up shafts. After separation, the take-up drum is loaded, the segmented take-up shafts are reset, and the electric telescopic rod is reset. When adjusting the rubber strip, the second rotating machine and the rotating machine adjust the rubber strip winding angle and tension. The drive motor is then started to wind the rubber strip. The overall operation is simple, providing auxiliary operation for the rubber strip slitting and winding process, improving overall winding efficiency, and reducing energy consumption.

Claims

1. A tape slitting auxiliary machine, characterized in that: The system includes a winding mechanism, with a positioning mechanism on one side. The winding mechanism includes segmented winding shafts (1), multiple segmented winding shafts arranged along the same axis, and drive motors (4) arranged at the outer ends of the multiple connected segmented winding shafts. Moving rods (3) are vertically arranged on the outer side of the drive motors and the outer ends of the segmented winding shafts. Ball screw slides (5) are connected between the bottoms of the moving rods, and sliders (15) are connected between the bottom ends of the moving rods and the ball screw slides. Fixing rings (2) are connected between the segmented winding shafts. The fixing ring is an I-shaped structure, and fixing buckles (2-1) are provided on both sides of the fixing ring. The inner ring of the fixing buckle is a regular polygonal structure. The outer end face of the fixing buckle is on the same horizontal plane as the outer end face of the fixing ring. Fixing posts (2-2) are distributed at both ends of the segmented winding shaft. An electric telescopic rod (6) is provided at the bottom of the segmented winding shaft. An inverted concave rod (7) is provided at the bottom of the electric telescopic rod. An electric slide rail (8) is provided at the bottom end of the concave rod. The number of electric telescopic rods and concave rods is the same as the number of segmented winding shafts.

2. The tape slitting auxiliary machine according to claim 1, characterized in that: Multiple fixing buckles (2-1) are evenly distributed on the side of the fixing ring (2), and the number of fixing posts (2-2) is the same as the number of fixing buckles.

3. The tape slitting auxiliary machine according to claim 1, characterized in that: The center of the electric telescopic rod (6) and the center of the fixed ring (2) are on the same straight line. The bottom of the fixed ring is provided with a positioning hole at the same straight line position as the axis of the electric telescopic rod. The top of the electric telescopic rod can be extended and set in the positioning hole.

4. The tape slitting auxiliary machine according to claim 1, characterized in that: The positioning mechanism includes a support rod (9) inclinedly arranged on one side of the segmented winding shaft (1), a second concave rod (10) is provided at the top of the support rod, a contact shaft (11) is horizontally rotatably connected inside the second concave rod, a rotating motor (12) is horizontally connected at the bottom of the support rod, a third concave rod (13) is inverted at the bottom of the rotating motor, and a second rotating motor (14) is provided inside the third concave rod.

5. A tape slitting auxiliary machine according to claim 4, characterized in that: The number of support rods (9) is the same as the number of segmented winding shafts (1).