A webbing processing system and method

By installing flexible connecting pieces on both sides of the webbing, the problem of insufficient bending toughness of the webbing in the storage field is solved, and the stable suspension of the webbing on the luggage or cloth bag is achieved.

CN116476395BActive Publication Date: 2026-04-17HUNAN XIANGTONG IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HUNAN XIANGTONG IND CO LTD
Filing Date
2023-04-26
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

When used in storage applications, webbing lacks lateral and vertical bending toughness, leading to large-area bending and deformation.

Method used

Flexible connecting pieces are installed on both sides of the webbing. The connecting pieces are installed using a support device and a patching device. The connecting pieces are made of engineering plastic or copper sheet material, and a stable bond between the connecting pieces and the webbing is ensured through multiple steps.

Benefits of technology

The increased lateral and vertical bending toughness of the webbing makes it less prone to large-area bending and deformation when hanging items on bags or sacks, making it suitable for storage applications.

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Abstract

The application relates to the technical field of weaving tape processing, in particular to a weaving tape processing system and a processing method; the system comprises a supporting device for supporting the weaving tape and a patching device for mounting a flexible connecting sheet on both sides of the weaving tape; the method comprises the following steps: step one, straightening the weaving tape; step two, pressing the straightened weaving tape; step three, inserting the flexible connecting sheet into a notch and adding glue on one side of the flexible connecting sheet; and step four, pressing the flexible connecting sheet towards the weaving tape; the two flexible connecting sheets are mounted on both sides of the weaving tape, the bending resistance of the weaving tape in the horizontal and vertical directions is increased, the weaving tape can be used to hang articles after the weaving tape is sewn on a bag or a cloth bag, and the large-area bending and deformation of the weaving tape is avoided.
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Description

Technical Field

[0001] This invention relates to the field of ribbon processing technology, and more specifically, to a ribbon processing system and processing method. Background Technology

[0002] Based on the material of the webbing, webbing can be divided into nylon, polyester, PP polypropylene, acrylic, cotton, polyester, glitter, spandex, bright yarn and rayon, etc.

[0003] Based on their intended use, webbing can be categorized into clothing webbing, footwear webbing, bag webbing, security webbing, and other special-purpose webbing. Based on their inherent characteristics, webbing can be divided into elastic webbing and rigid webbing. However, rigid webbing refers to webbing that lacks elasticity and does not possess superior lateral and vertical bending resistance, thus limiting its use in storage applications. Summary of the Invention

[0004] To increase the lateral and vertical bending toughness of the webbing, enabling the webbing products to be used in storage applications, this invention adopts the following technical solution:

[0005] The purpose of this invention is to provide a solution in which two flexible connecting pieces are installed on both sides of the webbing, thereby increasing the lateral and vertical bending toughness of the webbing. This allows items to be hung on the webbing after it is sewn onto a bag or cloth bag without causing large-area bending or deformation of the webbing.

[0006] To achieve the above objectives, the present invention provides a webbing processing system, including a lifting device for supporting the webbing and a patching device for installing flexible connecting pieces on both sides of the webbing.

[0007] The main body of the support equipment is a placement frame. The webbing is placed inside the placement frame. The placement frame is fixedly installed on the workshop table by the supports on both sides. The placement frame is provided with slots for accommodating the flexible connecting pieces.

[0008] The two connectors of the main body of the chip placement equipment are slidably mounted on the placement rack.

[0009] The method for processing webbing using the above system includes the following steps:

[0010] Step 1: Straighten the webbing;

[0011] Step 2: Press the straightened webbing tight;

[0012] Step 3: Insert the flexible connecting piece into the groove and apply glue to one side of the flexible connecting piece;

[0013] Step 4: Press the flexible connecting piece towards the direction of the webbing.

[0014] The resilient connecting piece in this application can be made of engineering plastic or copper sheet. Attached Figure Description

[0015] The following figures are intended only to illustrate and explain the present invention, wherein:

[0016] Figure 1 This is a flowchart of the webbing processing steps of the present invention;

[0017] Figure 2 This is a schematic diagram of the structure of the webbing and the toughening connecting piece of the present invention;

[0018] Figure 3 This is a schematic diagram of the support and placement frame of the present invention;

[0019] Figure 4 This is a schematic diagram of the structure of the rotating roller, groove arm, slide plate and clamping plate of the present invention;

[0020] Figure 5 This is a schematic diagram of the docking device and the moving wheel of the present invention;

[0021] Figure 6 This is a schematic diagram of the wheel frame and pressure roller shaft of the present invention;

[0022] Figure 7 This is a schematic diagram of the structure of the docking device, the moving wheel, the wheel frame, and the arc panel of the present invention;

[0023] Figure 8 This is a schematic diagram of the structure of the tablet pressing wheel and the belt pressing wheel shaft of the present invention;

[0024] Figure 9 This is a schematic diagram of the wheel frame and glue injection tube of the present invention;

[0025] Figure 10 This is a schematic diagram of the structure of the slide, the flattening arm, and the second telescopic actuator of the present invention.

[0026] In the figure: webbing 1; flexible connecting piece 1.1; support 11; placement frame 12; slot 121; rotating roller 13; slot arm 14; slide plate 15; clamping plate 16; first telescopic actuator 17; docking device 21; moving wheel 22; wheel frame 23; arc panel 24; glue injection tube 25; pressing wheel 31; pressing wheel shaft 32; winding device 4; slide block 51; flattening arm 52; second telescopic actuator 53. Detailed Implementation

[0027] In order to increase the lateral and vertical bending toughness of the webbing and enable the webbing products to be used in the storage field, the present invention provides a webbing processing system, including a lifting device and a patching device. The lifting device is used to lift the webbing 1, and the patching device is used to install toughness connecting pieces 1.1 on both sides of the webbing 1.

[0028] The resilient connecting piece 1.1 in this application may be made of engineering plastic or copper sheet.

[0029] The patching device can slide on the placement device to slide the rolled-up flexible connecting piece 1.1 onto the surface of the webbing 1 on the placement device.

[0030] The following describes specific embodiments of the present invention.

[0031] Reference Figure 2-3 and Figure 5 The diagram illustrates the specific structure of the support device and the patching device in the webbing processing system provided by this invention:

[0032] The main body of the holding device in this application is a placement rack 12, which is fixedly installed on the workshop table by the supports 11 on both sides; the webbing 1 is placed inside the placement rack 12.

[0033] Two docking devices 21 of the main body of the patch assembly are symmetrically slidably mounted on the placement frame 12. The side of the docking device 21 is rotatably mounted with a moving wheel 22. The side of the moving wheel 22 is connected to the side of the placement frame 12 through a transmission. A geared motor I is mounted on the docking device 21 to drive the moving wheel 22 to rotate. When the geared motor I is started, the docking device 21 is driven to slide on the placement frame 12.

[0034] The placement rack 12 is provided with a slot 121 for accommodating the flexible connecting piece 1.1;

[0035] A winding device 4 is rotatably mounted on the patching equipment. One end of the flexible connecting piece 1.1 is wound onto the winding device 4, and the other end of the flexible connecting piece 1.1 extends toward the surface of the webbing 1.

[0036] Reference Figure 3-4 As shown, this invention provides an embodiment of the stretching and pressing operation of the entire webbing 1 during webbing processing using a webbing processing system:

[0037] Two rotating rollers 13 are rotatably mounted on the support 11 of this application. The webbing 1 is inserted between the two rotating rollers 13. A geared motor II for driving the rotating rollers 13 to rotate is mounted on the support 11. When the geared motor II is started, the webbing 1 is conveyed.

[0038] Two slotted arms 14 are symmetrically fixedly connected to the support 11. A sliding plate 15 is slidably installed between the two slotted arms 14. A clamping plate 16 is vertically slidably installed at the bottom of the sliding plate 15.

[0039] The support 11 is equipped with a first telescopic actuator 17, and the fixed end and the movable end of the first telescopic actuator 17 are rotatably connected to the support 11 and the clamping plate 16, respectively.

[0040] The telescopic actuator of this application can be an electric telescopic rod or a hydraulic cylinder. When the first telescopic actuator 17 at both ends is activated, the clamping plate 16 slides upward at the bottom of the slide plate 15, while the slide plate 15 slides between the groove arms 14 on both sides, so as to realize the overall stretching and pressing operation of the webbing 1, keep the webbing 1 taut, and increase the toughness of the connecting piece 1.1 installed on the webbing 1.

[0041] Reference Figure 5-9 As shown, this invention provides an embodiment of the extrusion operation between the webbing 1 and the flexible connecting piece 1.1 during webbing processing using a webbing processing system:

[0042] The placement frame 12 of this application has a break in the middle, and the two connectors 21 are connected by multiple pressure roller shafts 32. The two ends of the pressure roller shafts 32 are respectively locked between two roller frames 23.

[0043] The pressure roller shaft 32 is rotatably connected to the wheel frame 23 on the two docking devices 21, and the pressure roller shaft 32 is provided with an edge wheel and two center wheels;

[0044] The edge wheel and the center wheel are respectively housed in the groove 121 and the break, and the side end faces of the edge wheel and the center wheel are respectively abutted and connected to the sides of the webbing 1 and the flexible connecting piece 1.1.

[0045] Multiple tablet pressing wheels 31 are rotatably mounted on the wheel frame 23. The lower end of the tablet pressing wheel 31 is inserted into the slot 121, and the side of the tablet pressing wheel 31 abuts against the side of the flexible connecting piece 1.1.

[0046] The winding device 4 is rotatably mounted on the wheel frame 23, and the other end of the toughening connecting piece 1.1 extends toward the bottom of the edge wheel and the pressing wheel 31 that rotate within the same wheel frame 23.

[0047] The wheel frame 23 is equipped with geared motors III, IV and V for driving the tablet pressing wheel 31, the belt pressing wheel shaft 32 and the winding device 4 to rotate;

[0048] Start the geared motor V to stably export the flexible connecting piece 1.1.

[0049] During the sliding process of the docking device 21 on the placement frame 12, the reduction motors III, IV and V are activated to keep the relative positions of the webbing 1 and the multiple flexible connecting pieces 1.1 stable, and then a squeezing operation is performed between the webbing 1 and the flexible connecting pieces 1.1.

[0050] Reference Figure 8-9 As shown, this invention provides an embodiment in which a flexible connecting piece 1.1 is bonded and mounted on the surface of a webbing 1 during webbing processing using a webbing processing system:

[0051] The wheel frame 23 of this application is fixedly connected to an arc panel 24 for guiding the flexible connecting piece 1.1. After passing through the arc panel 24, the flexible connecting piece 1.1 extends to the bottom of the edge wheel that rotates within the same wheel frame 23.

[0052] A groove is provided in the middle of the arc panel 24, and a sealing piece is installed on the upper side of the arc panel 24. The edge of the sealing piece abuts against the flexible connecting piece 1.1. An injection tube 25 is provided on the outer side of the arc panel 24, and the injection tube 25 is connected to the groove.

[0053] The other end of the glue injection tube 25 is connected to the glue pump through a pipe. The glue pump is started to fill the groove with glue, so that the glue adheres to one side of the flexible connecting piece 1.1. Under the action of the edge wheel and the pressure wheel 31, the flexible connecting piece 1.1 is bonded and installed on the surface of the webbing 1.

[0054] Reference Figure 10 As shown, this invention provides an embodiment in which a flexible connecting piece 1.1 is pressed against the webbing 1 during webbing processing using a webbing processing system, and an adhesive penetration treatment is performed:

[0055] The wheel frame 23 of this application is fixedly connected to a slide block 51, and a flattening arm 52 is vertically slidably mounted on the slide block 51. The bottom of the flattening arm 52 is abutted and connected to one side of the flexible connecting piece 1.1.

[0056] A second telescopic actuator 53 for driving the flattening arm 52 to slide vertically is installed on the slide block 51;

[0057] The second telescopic driver 53 is activated to reciprocate and extend, driving the flattening arm 52 to squeeze the flexible connecting piece 1.1, thereby increasing the adhesion between the flexible connecting piece 1.1 and the webbing 1, and penetrating the adhesive through collision and vibration.

[0058] The method for processing webbing using the above system includes the following steps:

[0059] Step 1: Drive the two sets of rotating rollers 13 to straighten the webbing 1;

[0060] Step 2: Use two sets of sliding plates 15 and clamps 16 to press the straightened webbing 1 tightly;

[0061] Step 3: Insert the flexible connecting piece 1.1 into the slot 121, and apply glue to one side of the flexible connecting piece 1.1;

[0062] Step 4: Press the flexible connecting piece 1.1 towards the direction of the webbing 1;

[0063] Step 5: Drill holes in the flexible connecting piece 1.1 as needed, and use fasteners such as screws to pass through the webbing 1 and the two flexible connecting pieces 1.1 for fastening.

Claims

1. A webbing processing system, comprising a lifting device for lifting a webbing (1) and a patching device for mounting flexible connecting pieces (1.1) on both sides of the webbing (1); characterized in that The main body of the placement device is a placement frame (12), the webbing (1) is placed in the placement frame (12), the placement frame (12) is fixedly installed on the workshop table by the supports (11) on both sides, the placement frame (12) is provided with a slot (121) for accommodating the flexible connecting piece (1.1), and the two connectors (21) of the main body of the patching device are slidably installed on the placement frame (12); The placement frame (12) has a break in the middle. Two connectors (21) are connected by multiple pressure roller shafts (32). The pressure roller shafts (32) are rotatably connected to the wheel frames (23) on the two connectors (21). The edge wheel and the center wheel on the pressure roller shaft (32) are respectively accommodated in the groove (121) and the break. The side end faces of the edge wheel and the center wheel are respectively abutted and connected to the side of the webbing (1) and the tough connecting piece (1.1).

2. The webbing processing system according to claim 1, characterized by: Two rollers (13) are rotatably mounted on the support (11), and the webbing (1) is inserted between the two rollers (13).

3. The ribbon processing system according to claim 2, characterized in that: Two slotted arms (14) are symmetrically fixedly connected to the support (11), and a sliding plate (15) is slidably installed between the two slotted arms (14). A clamping plate (16) is vertically slidably installed at the bottom of the sliding plate (15).

4. The ribbon processing system according to claim 1, characterized in that: A winding device (4) is rotatably mounted on the wheel frame (23). One end of the flexible connecting piece (1.1) is wound onto the winding device (4), and the other end of the flexible connecting piece (1.1) extends toward the bottom of the edge wheel that rotates within the same wheel frame (23).

5. The ribbon processing system according to claim 4, characterized in that: An arc panel (24) is fixedly connected to the wheel frame (23). After the flexible connecting piece (1.1) passes through the arc panel (24), it extends to the bottom of the edge wheel that rotates within the same wheel frame (23).

6. The ribbon processing system according to claim 5, characterized in that: The arc panel (24) has a groove in the middle, and a sealing piece is installed on the upper side of the arc panel (24). The edge of the sealing piece abuts against the flexible connecting piece (1.1). An injection tube (25) is connected to the outer side of the arc panel (24), and the injection tube (25) is connected to the groove.

7. The ribbon processing system according to claim 1, characterized in that: Multiple pressing wheels (31) are rotatably mounted on the wheel frame (23). The lower end of the pressing wheel (31) is inserted into the slot (121), and the side of the pressing wheel (31) abuts against the side of the flexible connecting piece (1.1).

8. The ribbon processing system according to claim 1, characterized in that: The docking device (21) is rotatably mounted with a movable wheel (22) on its side, and the side of the movable wheel (22) is connected to the side of the placement frame (12) via a transmission.

9. A method for processing ribbon using the ribbon processing system according to claim 3, characterized in that, Includes the following steps: Step 1: Drive the two sets of rotating rollers (13) to rotate and straighten the webbing (1); Step 2: Use two sets of sliding plates (15) and clamps (16) to press the straightened webbing (1) tight; Step 3: Insert the flexible connecting piece (1.1) into the slot (121) and add glue to one side of the flexible connecting piece (1.1); Step 4: Press the flexible connecting piece (1.1) towards the direction of the webbing (1) to tighten it.

Citation Information

Patent Citations

  • Elastic braid with nylon edge and production process of elastic braid

    CN115012129A