Intelligent rubber band positioning cutting machine

The intelligent rubber band positioning and cutting machine uses infrared head scanning and a transmission motor to drive the cutting blade for automated cutting, solving the problems of time-consuming, labor-intensive, and uneven cross-sections in traditional rubber band cutting, and achieving efficient and precise rubber band cutting.

CN223617830UActive Publication Date: 2025-12-02TAIAN SINCERITY SMART HOME CO LTD
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Patent Information

Application Number
CN202520008364.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-12-02
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Traditional rubber band cutting process is time-consuming, labor-intensive, and results in uneven cross-sections.

Method used

The intelligent rubber band positioning and cutting machine uses an infrared head to scan and measure the length of the rubber band, and then uses a transmission motor and a cutting cylinder to drive the cutting blade for automated cutting.

Benefits of technology

It achieves highly efficient automation and neat cross-sections in rubber band cutting, improving processing efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223617830U_ABST
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Abstract

The utility model discloses an intelligent rubber band location cutting machine relates to rubber band processing field, including processing box body, the bottom surface of processing box body is evenly threaded fixed connection with the bottom cushion block, one side of processing box body is fixedly clamped with the control panel, the two sides of processing box body are symmetrically provided with the side through hole, the side through hole is equipped with the bottom cushion block, and the side through hole is equipped with the bottom cushion block. A matching side block is horizontally and fixedly arranged on one side edge of the treatment box body, a top fixing box is horizontally and fixedly arranged on the top surface of the treatment box body, an adjusting air cylinder is fixedly arranged on one side edge of the treatment box body, and a cutting air cylinder is vertically and upwards fixedly arranged on the top surface of the treatment box body; matching inner wheels are symmetrically connected to the inner side edges of the matching side blocks in a clamped mode, a scanning body is fixedly arranged on the inner side edge of the top fixing box, the input end of the scanning body is connected with an infrared head, and an integrated control structure is adopted so that cutting treatment can be more efficient; meanwhile, due to an adjusting and measuring structure, the operation is more intelligent and comprehensive.
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Description

Technical Field

[0001] This utility model relates to the field of rubber band processing technology, specifically to an intelligent rubber band positioning and cutting machine. Background Technology

[0002] Rubber bands are a type of rubber product. Their scientific name is latex ring or latex tape. They are made from latex using an impregnation method. They are characterized by high elongation, good resilience, low price, and ease of use. The manufacturing process includes impregnation, vulcanization, demolding, and cutting into rings (strips). They are mainly used for bundling items.

[0003] When processing elastic bands, they need to be cut. Traditional elastic band cutting involves external measurement, clamping the measured position to the cutting position, and then rotating the cutting tool to complete the process. This makes the processing time-consuming and labor-intensive, and the cross-section is not neat enough. Utility Model Content

[0004] The purpose of this invention is to provide an intelligent rubber band positioning and cutting machine to solve the problem mentioned in the background art that the processing of rubber bands requires cutting. Traditional rubber band cutting involves external measurement, clamping the measured position at the cutting position, and then completing the cutting operation by rotation. This process is time-consuming and labor-intensive, and the cross-section is not neat enough.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] An intelligent rubber band positioning and cutting machine includes a processing box. A bottom pad is uniformly threaded and fixedly connected to the bottom surface of the processing box. A control panel is fixedly snapped onto one side of the processing box. Side through holes are symmetrically opened on both sides of the processing box. A mating side block is horizontally fixedly mounted on one side of the processing box. A top fixing box is horizontally fixedly mounted on the top surface of the processing box. An adjusting cylinder is fixedly mounted on one side of the processing box. A cutting cylinder is vertically fixedly mounted on the top surface of the processing box. Maturing inner wheels are symmetrically snapped onto the inner sides of the mating side blocks. A scanning body is fixedly mounted on the inner side of the top fixing box. An infrared head is connected to the input end of the scanning body. The processing box has a drive wheel horizontally engaged on its inner side. A transmission wheel is mounted on the bottom surface of the drive wheel. A transmission belt is horizontally sleeved on the outer side of the transmission wheel. A transmission motor is fixedly engaged on the inner wall of the processing box. A fixed inner block is fixedly engaged on the inner side of the processing box away from the mating side block. A side channel is horizontally opened on the inner side of the processing box. A movable inner plate is horizontally engaged on the inner side of the side channel. Mating wheels are evenly engaged on one side of the movable inner plate. A guide hole is opened on the side of the fixed inner block. A vertical channel is vertically opened on the top surface of the inner side of the guide hole. A cutting blade is vertically engaged on the inner side of the vertical channel.

[0007] In a preferred embodiment of this utility model, there are four bottom pads, and all four bottom pads are fixedly connected to the bottom surface of the processing box near the four corner screw holes by the corresponding threaded screws on the top surface. The side through holes are symmetrically opened in a through manner at the center of both sides of the processing box, and the inside of the side through holes is connected to the inside of the processing box.

[0008] In a preferred embodiment of this utility model: one end of the mating side block is fixedly connected to the edge of an opening of the side through hole, and the interior of the mating side block is in communication with the interior of the side through hole. The top fixing box is horizontally fixedly installed at the end of the top surface of the processing box near the mating side block. The adjusting cylinder is horizontally fixedly installed at the center of one side of the processing box, and the output end extends horizontally to the inner side of the processing box and is fixedly connected to the center of one side of the moving inner plate.

[0009] In a preferred embodiment of this utility model: the cutting cylinder is vertically fixed at the end away from the top fixed box on the center line of the top surface of the processing box, and the output end of the cutting cylinder extends vertically downward into the interior of the vertical channel. The extension end is fixedly connected to the center position of the top surface of the cutting blade. The scanning body and the infrared head are electrically connected to each other, and the bottom end of the infrared head is located on the top surface of the side through hole.

[0010] In a preferred embodiment of this utility model: the drive wheel is arranged horizontally in a straight line on the bottom inner side of the processing box, the transmission wheels are fixedly sleeved at the bottom of the central shaft of the drive wheel, and the output end of the transmission motor extends vertically upward and is connected to the bottom of the shaft of one of the drive wheels.

[0011] In a preferred embodiment of this utility model, the side channel and the movable inner plate are horizontally arranged on one side away from the active wheel body, and are arranged horizontally and equidistantly in a straight line with the wheel body. One open end of the guide through hole is connected to one open end of the side through hole to maintain communication.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] This invention involves inserting one end of an elastic band into the interior of a mating side block, allowing multiple mating inner wheels to clamp the outer side of the elastic band. Controlling the control panel activates the internal transmission motor. Extending or retracting the output end of the side-mounted adjusting cylinder causes the output end to drive the moving inner plate horizontally within the side channel, creating a specified distance between the mating wheels and the driving wheels. The insertion end of the elastic band is pressed and extended to the position between the mating wheels and the driving wheels for horizontal transmission. The elastic band moves horizontally within the side through-hole. The movement allows the infrared head on the top surface to scan and measure the rubber band below. Once the top scanner reaches the specified length, it stops the transmission motor, allowing the horizontally transmitted rubber band end to be inserted into the guide hole. Then, the output end of the cutting cylinder on the top surface extends downwards, causing the output end to squeeze the cutting blade downwards within the vertical channel, thus cutting the rubber band below. The integrated control structure makes the cutting process more efficient, and the adjustment and measurement structure makes the operation more intelligent and comprehensive. Attached Figure Description

[0014] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0015] Figure 1 A three-dimensional structural diagram of an intelligent rubber band positioning and cutting machine;

[0016] Figure 2 A structural schematic diagram showing the connection details of the processing box of the intelligent rubber band positioning and cutting machine in a frontal cross-section.

[0017] Figure 3 A structural schematic diagram showing the connection details of the side cross-section of the processing box of the intelligent rubber band positioning and cutting machine;

[0018] Figure 4A structural schematic diagram showing the connection details of the fixed inner block of the intelligent rubber band positioning and cutting machine in a frontal cross-section.

[0019] In the diagram: 1. Processing box; 2. Bottom pad; 3. Control panel; 4. Side through hole; 5. Mating side block; 6. Top fixing box; 7. Adjusting cylinder; 8. Cutting cylinder; 9. Mating inner wheel; 10. Scanning body; 11. Infrared head; 12. Drive wheel; 13. Transmission wheel; 14. Transmission belt; 15. Transmission motor; 16. Fixed inner block; 17. Side channel; 18. Moving inner plate; 19. Mating wheel; 20. Guide through hole; 21. Vertical channel; 22. Cutting blade. Detailed Implementation

[0020] Please see Figure 1 In this embodiment of the present invention, the intelligent rubber band positioning and cutting machine includes a processing box 1. A bottom pad 2 is uniformly threadedly fixed to the bottom surface of the processing box 1. A control panel 3 is fixedly snapped onto one side of the processing box 1. Side through holes 4 are symmetrically opened on both sides of the processing box 1. There are four bottom pads 2, and each of the four bottom pads 2 is fixedly connected to the bottom surface of the processing box 1 near the four corner screw holes via screws on the top surface. The side through holes 4 are symmetrically opened at the center of both sides of the processing box 1, and the interior of the side through holes 4 is connected to the interior of the processing box 1. A mating side is horizontally fixed on one side of the processing box 1. Block 5, a top fixing box 6 is horizontally fixed on the top surface of the processing box 1, an adjusting cylinder 7 is fixedly fixed on one side of the processing box 1, one end of the mating side block 5 is fixedly connected to the edge of an opening end of the side through hole 4, and the interior of the mating side block 5 is connected to the interior of the side through hole 4, the top fixing box 6 is horizontally fixed on the center line of the top surface of the processing box 1 near the mating side block 5, the adjusting cylinder 7 is horizontally fixed at the center of one side of the processing box 1, and the output end extends horizontally to the inside of the processing box 1 and is fixedly connected to the center of one side of the moving inner plate 18, and a cutting cylinder 8 is vertically fixed on the top surface of the processing box 1.

[0021] Please see Figure 2-4In this embodiment of the utility model, the intelligent rubber band positioning and cutting machine includes a mating inner wheel 9 symmetrically engaged with the inner side of the mating side block 5; a scanning body 10 fixedly mounted on the inner side of the top fixing box 6; an infrared head 11 connected to the input end of the scanning body 10; a cutting cylinder 8 vertically fixedly mounted at the end away from the top fixing box 6 on the top centerline of the processing box 1; and the output end of the cutting cylinder 8 extending vertically downward into the interior of the vertical channel 21, with the extension end fixedly connected to the center of the top surface of the cutting blade 22. The scanning body 10 and the infrared head 11 are electrically connected to each other, and the bottom end of the infrared head 11 is located on the top surface of the side through hole 4. A drive wheel 12 is horizontally engaged with the inner side of the processing box 1; a transmission wheel 13 is mounted on the bottom surface of the drive wheel 12; a transmission belt 14 is horizontally sleeved on the outer side of the transmission wheel 13; a transmission motor 15 is fixedly engaged with the inner wall of the processing box 1; and the drive wheels 12 are horizontally arranged in a straight line on the processing box. On the inner bottom surface of the processing box 1, the transmission wheels 13 are all fixedly sleeved at the bottom end of the central shaft of the drive wheel body 12. The output end of the transmission motor 15 extends vertically upward and is connected to the bottom end of the shaft of the drive wheel body 12. A fixed inner block 16 is fixedly snapped onto the inner side of the processing box 1 away from the mating side block 5. A side channel 17 is horizontally opened on the inner side of the processing box 1. A movable inner plate 18 is horizontally snapped onto the inner side of the side channel 17. One side of the movable inner plate 18 is evenly spaced... The inner block 16 is fixed with a guide hole 20 on its side. The side channel 17 and the movable inner plate 18 are horizontally arranged on the side away from the drive wheel 12. The mating wheel 19 is arranged horizontally and equidistantly in a straight line. One open end of the guide hole 20 is connected to one open end of the side channel 4. A vertical channel 21 is vertically opened on the inner top surface of the guide hole 20. A cutting blade 22 is vertically engaged on the inner side of the vertical channel 21.

[0022] The working principle of this utility model is as follows:

[0023] One end of the elastic band is inserted into the interior of the mating side block 5, allowing multiple mating inner wheels 9 to clamp the outer side of the elastic band. After operating the control panel 3, the internal transmission motor 15 is rotated. After the output end of the side adjusting cylinder 7 is extended and retracted, the output end drives the moving inner plate 18 to move horizontally within the side channel 17, so that the mating wheel 19 and the driving wheel 12 form a specified distance between each other. The insertion end of the elastic band is pressed to extend to the mating wheel 19 and the driving wheel 12. The rubber band moves horizontally within the side through hole 4, allowing the infrared head 11 on the top surface to scan and measure the rubber band below. After the top scanning body 10 scans to the specified length, the transmission motor 15 stops rotating, allowing the horizontally transmitted rubber band end to be inserted into the guide through hole 20. Then, after the output end of the cutting cylinder 8 on the top surface extends downward, the output end squeezes the cutting blade 22 downward within the vertical channel 21, thus cutting off the rubber band below.

[0024] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. An intelligent rubber band positioning and cutting machine, comprising a processing box (1), characterized in that, The bottom surface of the processing box (1) is uniformly threaded and fixedly connected to a bottom pad (2). A control panel (3) is fixedly snapped onto one side of the processing box (1). Side through holes (4) are symmetrically opened on both sides of the processing box (1). A mating side block (5) is horizontally fixedly installed on one side of the processing box (1). A top fixing box (6) is horizontally fixedly installed on the top surface of the processing box (1). An adjusting cylinder (7) is fixedly installed on one side of the processing box (1). A cutting cylinder (8) is vertically fixedly installed on the top surface of the processing box (1). A mating inner wheel (9) is symmetrically snapped onto the inner side of the mating side block (5). A scanning body (10) is fixedly installed on the inner side of the top fixing box (6). An infrared head (11) is connected to the input end of the scanning body (10). An active [unclear] is horizontally snapped onto the inner side of the processing box (1). The wheel body (12) has a transmission wheel (13) on its bottom surface. A transmission belt (14) is horizontally sleeved on the outer side of the transmission wheel (13). A transmission motor (15) is fixedly clamped to the inner wall of the processing box (1). A fixed inner block (16) is fixedly clamped to the inner side of the processing box (1) away from the mating side block (5). A side channel (17) is horizontally opened on the inner side of the processing box (1). A movable inner plate (18) is horizontally clamped to the inner side of the side channel (17). A mating wheel body (19) is evenly clamped to one side of the movable inner plate (18). A guide through hole (20) is opened on the side of the fixed inner block (16). A vertical channel (21) is vertically opened on the inner top surface of the guide through hole (20). A cutting blade (22) is vertically clamped to the inner side of the vertical channel (21).

2. The intelligent rubber band positioning and cutting machine according to claim 1, characterized in that, The number of the bottom pads (2) is four, and the four bottom pads (2) are all fixedly connected to the bottom surface of the processing box (1) near the four corner screw holes by the screws on the top surface. The side through holes (4) are symmetrically opened in a through manner at the center of the two sides of the processing box (1), and the inside of the side through holes (4) is connected to the inside of the processing box (1).

3. The intelligent rubber band positioning and cutting machine according to claim 1, characterized in that, One end of the mating side block (5) is fixedly connected to the edge of an opening of the side through hole (4), and the interior of the mating side block (5) is connected to the interior of the side through hole (4). The top fixing box (6) is horizontally fixedly set at the center of the top surface of the processing box (1) near the mating side block (5). The adjusting cylinder (7) is horizontally fixedly set at the center of one side of the processing box (1), and the output end extends horizontally to the inside of the processing box (1) and is fixedly connected to the center of one side of the moving inner plate (18).

4. The intelligent rubber band positioning and cutting machine according to claim 1, characterized in that, The cutting cylinder (8) is vertically fixed at the end of the top surface of the processing box (1) away from the top fixed box (6), and the output end of the cutting cylinder (8) extends vertically downward to the interior of the vertical channel (21). The extension end is fixedly connected to the center of the top surface of the cutting blade (22). The scanning body (10) and the infrared head (11) are electrically connected to each other, and the bottom end of the infrared head (11) is located on the top surface of the side through hole (4).

5. The intelligent rubber band positioning and cutting machine according to claim 1, characterized in that, The active wheel (12) is arranged horizontally in a straight line on the bottom inner side of the processing box (1). The transmission wheels (13) are all fixedly sleeved at the bottom of the central shaft of the active wheel (12). The output end of the transmission motor (15) extends vertically upward and is connected to the bottom of the shaft of the active wheel (12).

6. The intelligent rubber band positioning and cutting machine according to claim 1, characterized in that, The side channel (17) and the movable inner plate (18) are horizontally positioned away from the active wheel (12) and are arranged horizontally and equidistantly in a straight line with the wheel (19). One open end of the guide through hole (20) is connected to one open end of the side through hole (4).