Cloth inspecting machine for processing baby sleeping bag fabric

By setting up alignment and positioning components in the fabric inspection machine, the problems of wrinkles and unevenness caused by lateral displacement of the fabric during the winding process are solved, realizing flat winding and convenient bundling of the fabric, improving fabric quality and operational efficiency.

CN224312896UActive Publication Date: 2026-06-02JIANGXI BETAS MATERNAL & CHILD PRODUCTS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI BETAS MATERNAL & CHILD PRODUCTS CO LTD
Filing Date
2025-05-06
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing fabric inspection machines for baby sleeping bag processing suffer from uneven tension on both sides of the winding roller during the winding process, causing lateral shifts in the fabric, resulting in wrinkles or unevenness, which affects the quality of the fabric.

Method used

The fabric inspection machine is equipped with a positioning component, including a guide rail, a two-way threaded rod, a collar, a sleeve plate, and a reinforcing plate. The two-way threaded rod is driven by a motor to rotate, which drives the collar and sleeve plate to limit the fabric. The friction is reduced by the needle roller and the bevel. The positioning component is used with an electric telescopic rod and rubber strips for fixation, ensuring that the fabric is rolled up flat.

Benefits of technology

It effectively reduces wrinkles and unevenness in the fabric during the winding process, improves the winding quality and bundling convenience of the fabric, and reduces wear and slippage risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a fabric inspection machine for processing baby sleeping bag fabric, belonging to the technical field of fabric inspection machines. The utility model includes a machine body placed on the ground to transfer and inspect fabric; an LED white light placed between the machine body and the fabric to illuminate the passing fabric; a feeding roller mounted on the machine body to carry and release the fabric roll; a take-up roller mounted on the machine body to take up and pull the fabric released by the feeding roller, wherein the take-up roller is driven by a motor; and a positioning component mounted on the machine body. This utility model, by setting the positioning component, can forcibly limit the fabric's position, quickly correcting any deviations in the fabric, reducing wrinkles or unevenness during the rolling process, preventing folds and wrinkles that affect fabric quality, and improving the rolling effect.
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Description

Technical Field

[0001] This utility model relates to the field of fabric inspection machine technology, and in particular to a fabric inspection machine for processing baby sleeping bag fabric. Background Technology

[0002] Baby sleeping bags are sleep products designed specifically for infants and young children. They adopt a wrap-around structure (such as envelope-shaped or one-piece) and are secured by zippers or buttons. They replace traditional blankets to prevent babies from kicking off the covers and getting cold. During the production process of baby sleeping bags, fabric inspection machines are used to inspect the fabric of the sleeping bag to check whether the fabric meets the standards.

[0003] Existing fabric inspection machines for baby sleeping bag processing involve placing the fabric roll on the unloading roller, then smoothly unfolding the fabric and passing it through the machine body. The other end is then wrapped around the take-up roller. Driven by a motor, the take-up roller rotates and winds up the fabric, allowing it to move smoothly along the inside of the machine. Simultaneously, LED white lights illuminate the fabric to enhance the contrast of defects. Then, in conjunction with the photoelectric sensor (Omron E3ZG series) inside the machine, the surface condition of the fabric is detected through reflected light, thereby detecting fabric defects. Once a defect is found, the machine sprays ink or affixes a label to the fabric surface for subsequent manual re-inspection or cutting and removal.

[0004] However, during the winding process, the fabric may shift laterally due to uneven tension on both sides of the winding roller, causing wrinkles or unevenness in the fabric, resulting in folds and wrinkles that affect the quality of the fabric. Utility Model Content

[0005] The technical problem this invention aims to solve is that during the winding process, the fabric may shift laterally due to inconsistent tension on both sides of the winding roller, resulting in wrinkles or unevenness in the fabric, causing folds and wrinkles, which affects the quality of the fabric.

[0006] The technical solution adopted by this utility model to solve its technical problem is: a fabric inspection machine for processing baby sleeping bag fabric, comprising: a machine body, which is placed on the ground to transfer and inspect the fabric; an LED white light, which is placed between the machine body and the fabric to illuminate the passing fabric; a feeding roller, which is set on the machine body to carry the fabric roll and feed it out; a take-up roller, which is set on the machine body to take up and pull the fabric fed out by the feeding roller, wherein the take-up roller is driven by a motor; and a positioning component, which is set on the machine body and is sleeved on both sides of the take-up roller to limit the position of the fabric during the take-up process.

[0007] Preferably, the positioning assembly includes: a guide rail, which is fixedly connected to the side of the machine body near the take-up roller, wherein the guide rail is provided with a motor and a bidirectional threaded rod, wherein the bidirectional threaded rod is driven to rotate by the motor; two collars, each collar having a positioning assembly on one side, the two collars being symmetrically sleeved on the take-up roller, wherein both collars are connected to the guide rail through threaded rods, wherein both threaded rods are threadedly connected to the bidirectional threaded rod inside the guide rail; and two sleeve plates, wherein both sleeve plates are rotatably mounted on the two collars through annular plates, wherein the two annular plates are respectively fixedly connected to the two collars.

[0008] The effect achieved by the above components is as follows: By setting the alignment component, the motor is first started, which drives the bidirectional threaded rod inside the guide rail to rotate. The bidirectional threaded rod drives the two screw hole rods to move in opposite directions, which in turn drives the two collars to move in opposite directions. The two collars then drive the two annular plates and two sleeve plates to move. When both sleeve plates move to a position that is close to or in contact with the edge of the fabric, the two sleeve plates forcibly limit the winding of the fabric, allowing the fabric to be quickly aligned. At the same time, the two sleeve plates can rotate with the fabric, reducing wear between the edge of the fabric and the sleeve plates. This achieves the limiting treatment of the fabric, reducing the occurrence of wrinkles or unevenness in the fabric during the winding process, which can cause folds or wrinkles in the fabric and affect the quality of the fabric, thus improving the winding effect of the fabric.

[0009] Preferably, the alignment component further includes a reinforcing plate, wherein the reinforcing plate is uniformly fixed between the collar and the annular plate, and wherein the surface of the reinforcing plate is trapezoidal.

[0010] The effect achieved by the above components is that the connection between the collar and the ring plate can be reinforced by setting the reinforcing plate, while supporting the ring plate and reducing the possibility of the ring plate tilting.

[0011] Preferably, the alignment assembly further includes: a needle roller, wherein the needle roller is rotatably mounted on the annular plate via a bearing, wherein the needle roller is positioned between the annular plate and the sleeve plate, and the friction between the sleeve plate and the annular plate is reduced by rotation.

[0012] The effect achieved by the above components is that by setting the needle rollers, the needle rollers can reduce the contact friction between the annular plate and the sleeve plate through their own rotation, thereby reducing the large wear between the two when the sleeve plate rotates along the surface of the annular plate.

[0013] Preferably, one side of each of the two sleeve plates is provided with an angle.

[0014] The effect achieved by the above components is as follows: by opening an angle on the surface of the sleeve plate, the angle can increase the entrance area between the two sleeve plates. At the same time, in combination with the slope of the angle, the fabric can enter between the two sleeve plates more smoothly, reducing the contact friction between the fabric and the surface of the sleeve plate, and further improving the limiting effect on the fabric.

[0015] Preferably, the positioning component includes: a rectangular tube fixedly connected to a collar; an L-shaped rod with bolts threaded to its inner wall, wherein the L-shaped rod is placed inside the rectangular tube and fixed by bolts; and a pressure plate fixedly mounted on the L-shaped rod by an electric telescopic rod, wherein the electric telescopic rod drives the pressure plate to move up and down to squeeze the fabric.

[0016] The effect achieved by the above components is as follows: By setting the positioning component, the L-shaped rod is first manually inserted into the rectangular tube. At this time, the bolt is manually rotated so that the bolt is turned into the position inside the rectangular tube and the L-shaped rod to fix the L-shaped rod, thereby achieving the assembly and fixation between the L-shaped rod and the collar, so that the pressure plate is placed above the sleeve plate. After the fabric is wound up by the winding roller, the electric telescopic rod is activated, which drives the pressure plate to move closer to the fabric. When the pressure plate moves to the position of squeezing the surface of the fabric, the pressure plate holds and fixes the wound fabric, making it convenient for personnel to tie the wound fabric, achieving auxiliary fixation of the fabric, reducing the possibility of the fabric rotating and loosening after winding, which would cause wrinkles or folds when personnel tie the fabric, thus improving the convenience of personnel tying the fabric.

[0017] Preferably, the positioning component further includes a rubber strip, wherein the rubber strip is uniformly fixed to the pressure plate, and the surface of the rubber strip is provided with a plurality of protrusions.

[0018] The effect achieved by the above components is that by setting rubber strips, the friction between the pressure plate and the fabric surface can be increased, reducing the possibility of the fabric slipping.

[0019] Preferably, the positioning component further includes a screw block, wherein the screw block is fixed to the nut position of the bolt, and the surface of the screw block is provided with a plurality of anti-slip strips.

[0020] The effect achieved by the above components is that by setting the screw-in block, the contact area of ​​the bolt can be increased, improving the convenience of manually turning the bolt.

[0021] The beneficial effects of this utility model are:

[0022] By setting the alignment component, the fabric can be forcibly limited, allowing the fabric that has shifted to a new position to be quickly aligned. This reduces the occurrence of wrinkles or unevenness in the fabric during the winding process, which can cause folds or wrinkles that affect the fabric quality and improve the winding effect of the fabric. Attached Figure Description

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0025] Figure 2 This is a partial sectional view of the sleeve plate of this utility model;

[0026] Figure 3 This is a partial cross-sectional view of the guide rail of this utility model;

[0027] Figure 4 This is a three-dimensional structural diagram of the L-shaped rod of this utility model.

[0028] Legend: 1. Machine body; 2. LED white light; 3. Fabric feeding roller; 4. Rewinding roller; 5. Alignment assembly; 51. Guide rail; 52. Screw rod; 53. Collar; 54. Annular plate; 55. Reinforcing plate; 56. Needle roller; 57. Sleeve plate; 58. Angled; 6. Positioning assembly; 61. Rectangular cylinder; 62. L-shaped rod; 63. Bolt; 64. Tightening block; 65. Electric telescopic rod; 66. Pressure plate; 67. Rubber strip. Detailed Implementation

[0029] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the present invention, and therefore only show the components relevant to the present invention.

[0030] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0031] Figure 1-4 The invention relates to a fabric inspection machine for processing baby sleeping bag fabric, comprising: a machine body 1, which is placed on the ground to transfer and inspect the fabric; an LED white light 2, which is placed between the machine body 1 and the fabric to illuminate the passing fabric; a feed roller 3, which is mounted on the machine body 1 to carry the fabric roll and feed it out; a take-up roller 4, which is mounted on the machine body 1 to take up and pull the fabric fed out by the feed roller 3, wherein the take-up roller 4 is driven by a motor; and a positioning component 5, which is mounted on the machine body 1 and is fitted on both sides of the take-up roller 4 to limit the movement of the fabric during the take-up process.

[0032] Figure 2 and Figure 3 The positioning assembly 5 shown includes: a guide rail 51, which is fixedly connected to the side of the machine body 1 near the take-up roller 4. The guide rail 51 is equipped with a motor and a bidirectional threaded rod, which is driven to rotate by the motor; two collars 53, each with a positioning assembly 6 on one side, symmetrically fitted onto the take-up roller 4. Both collars 53 are connected to the guide rail 51 via threaded rods 52, which are threadedly connected to the bidirectional threaded rod inside the guide rail 51; and two sleeve plates 57, which are rotatably mounted on the two collars 53 via annular plates 54, which are fixedly connected to the two collars 53 respectively. By setting the positioning assembly 5, the motor is first started, causing the motor to drive... The rotation of the bidirectional threaded rod inside the guide rail 51 causes the two threaded rods 52 to move in opposite directions, which in turn causes the two threaded rods 52 to move in opposite directions, which in turn causes the two collars 53 to move, which in turn causes the two collars 53 to move the two annular plates 54 and the two sleeve plates 57. When the two sleeve plates 57 move to a position that is close to or in contact with the edge of the fabric, the two sleeve plates 57 forcefully limit the winding of the fabric, allowing the fabric to be quickly aligned. At the same time, the two sleeve plates 57 can rotate with the fabric, reducing wear between the edge of the fabric and the sleeve plates 57, thereby achieving the limiting treatment of the fabric. This reduces the occurrence of wrinkles or unevenness in the fabric during the winding process, preventing folds and wrinkles that could affect the fabric quality and improving the winding effect of the fabric.

[0033] Figure 2 and Figure 3 The alignment assembly 5 also includes a reinforcing plate 55, which is uniformly fixed between the collar 53 and the annular plate 54. The surface of the reinforcing plate 55 is trapezoidal. By setting the reinforcing plate 55, the connection between the collar 53 and the annular plate 54 can be reinforced, and the annular plate 54 can be supported to reduce the tilting of the annular plate 54. The alignment assembly 5 also includes a needle roller 56, which is rotatably mounted on the annular plate 54 through a bearing. The needle roller 56 is placed between the annular plate 54 and the sleeve plate 57. By rotating, the friction between the sleeve plate 57 and the annular plate 54 is reduced. By setting the needle roller 56, the needle roller 56 can reduce the contact friction between the annular plate 54 and the sleeve plate 57 through its own rotation, thereby reducing the large wear between the two when the sleeve plate 57 rotates along the surface of the annular plate 54.

[0034] Figure 2 and Figure 3The two sleeve plates 57 shown are provided with an angle 58 on one side. By providing an angle 58 on the surface of the sleeve plate 57, the angle 58 can increase the entrance area between the two sleeve plates 57. At the same time, in combination with the slope of the angle 58, the fabric can enter the space between the two sleeve plates 57 more smoothly, reducing the contact friction between the fabric and the surface of the sleeve plate 57, and further improving the limiting effect on the fabric.

[0035] Figure 3 and Figure 4 The positioning component 6 shown includes: a rectangular tube 61, which is fixedly connected to the collar 53; an L-shaped rod 62, the inner wall of which is threaded with a bolt 63, wherein the L-shaped rod 62 is placed inside the rectangular tube 61 and fixed by the bolt 63; and a pressure plate 66, which is fixedly installed on the L-shaped rod 62 by an electric telescopic rod 65, wherein the electric telescopic rod 65 drives the pressure plate 66 to move up and down to squeeze the fabric. By setting the positioning component 6, the L-shaped rod 62 is first manually inserted into the rectangular tube 61. At this time, the bolt 63 is manually rotated so that the bolt 63 is rotated into the rectangular tube 61 and the L-shaped rod 62, and the L-shaped rod 62 is aligned with the position of the L-shaped rod 62. 2. Fixing is performed to achieve assembly and fixation between the L-shaped rod 62 and the collar 53, so that the pressure plate 66 is positioned above the sleeve plate 57. After the fabric is wound up by the winding roller 4, the electric telescopic rod 65 is activated, which drives the pressure plate 66 to move closer to the fabric. When the pressure plate 66 moves to the position of squeezing the fabric surface, it presses and fixes the wound fabric, making it convenient for personnel to tie the wound fabric. This achieves auxiliary fixation of the fabric, reduces the possibility of the fabric rotating and loosening after winding, and prevents wrinkles or folds when personnel tie the fabric, thus improving the convenience of personnel tying the fabric.

[0036] Figure 3 and Figure 4 The positioning component 6 shown also includes: a rubber strip 67, wherein the rubber strip 67 is uniformly fixed to the pressure plate 66, and the surface of the rubber strip 67 is provided with multiple protrusions. By setting the rubber strip 67, the friction between the pressure plate 66 and the fabric surface can be increased, reducing the slippage of the fabric. The positioning component 6 also includes: a screw block 64, wherein the screw block 64 is fixed to the nut position of the bolt 63, and the surface of the screw block 64 is provided with multiple anti-slip strips. By setting the screw block 64, the contact area of ​​the bolt 63 can be increased, improving the convenience of manually turning the bolt 63.

[0037] Working principle: When in use, the fabric roll is placed on the unloading roller 3, and then the fabric is smoothly unfolded and passed through the inside of the machine body 1. The other end is wrapped around the take-up roller 4. Then, driven by the motor, the take-up roller 4 rotates and takes up the fabric, so that the fabric moves smoothly along the inside of the machine body 1. At the same time, the LED white light 2 illuminates the fabric to enhance the contrast of defects. Then, in conjunction with the photoelectric sensor (model Omron E3ZG series) inside the machine body 1, the surface condition of the fabric is detected by reflected light, thereby detecting fabric defects. After the defects are found, the machine body 1 sprays ink to mark or labels the fabric surface, which is convenient for subsequent manual re-inspection or cutting and rejection.

[0038] First, start the motor, which drives the bidirectional threaded rod inside the guide rail 51 to rotate. This causes the bidirectional threaded rod to move the two threaded rods 52 in opposite directions, which in turn causes the two collars 53 to move in opposite directions. The two collars 53 then move the two annular plates 54 and the two sleeve plates 57. When both sleeve plates 57 move to a position that is close to or in contact with the edge of the fabric, they force the rolled-up fabric to be positioned, allowing the fabric to be quickly aligned. At the same time, the two sleeve plates 57 can rotate with the fabric, reducing wear between the edge of the fabric and the sleeve plates 57, thereby achieving the desired positioning of the fabric.

[0039] First, manually insert the L-shaped rod 62 into the rectangular tube 61. Then, manually rotate the bolt 63 to fix the L-shaped rod 62 inside the rectangular tube 61 and the L-shaped rod 62, thus achieving the assembly and fixation between the L-shaped rod 62 and the collar 53. This places the pressure plate 66 above the sleeve plate 57. After the fabric is wound up by the winding roller 4, activate the electric telescopic rod 65. The electric telescopic rod 65 drives the pressure plate 66 to move closer to the fabric. When the pressure plate 66 moves to the position of pressing the fabric surface, it presses and fixes the wound fabric, making it easier for personnel to bundle the wound fabric and achieving auxiliary fixation of the fabric.

[0040] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A fabric inspection machine for processing baby sleeping bag fabric, characterized in that it includes: The machine body (1) is placed on the ground to transfer and detect the fabric; LED white light (2), the LED white light (2) is placed between the machine body (1) and the fabric to irradiate the fabric that passes through; The fabric release roller (3) is mounted on the machine body (1) and is used to carry the fabric roll and release it. The take-up roller (4) is mounted on the machine body (1) and is used to take up and pull the fabric released by the feed roller (3). The take-up roller (4) is driven by a motor. Alignment component (5), the alignment component (5) is set on the machine body (1), wherein the alignment component (5) is sleeved on both sides of the take-up roller (4) to limit the fabric during the take-up process; the alignment component (5) includes: guide rail (51), the guide rail (51) is fixed to the side of the machine body (1) near the take-up roller (4), wherein the guide rail (51) is provided with a motor and a bidirectional threaded rod, wherein the bidirectional threaded rod is driven to rotate by the motor; Two collars (53), each collar (53) is provided with a positioning component (6) on one side, the two collars (53) are symmetrically sleeved on the take-up roller (4), and both collars (53) are connected to the guide rail (51) through screw rods (52), and both screw rods (52) are threadedly connected to the bidirectional threaded rod inside the guide rail (51); Two sleeve plates (57) are rotatably mounted on two collars (53) via annular plates (54), wherein the two annular plates (54) are respectively fixedly connected to the two collars (53); the alignment assembly (5) further includes: a reinforcing plate (55), wherein the reinforcing plate (55) is uniformly fixed between the collars (53) and the annular plates (54), wherein the surface of the reinforcing plate (55) is trapezoidal; the alignment assembly (5) further includes: a needle roller (56), wherein the needle roller (56) is rotatably mounted on the annular plates (54) via bearings, wherein the needle roller (56) is placed between the annular plates (54) and the sleeve plates (57), and the friction between the sleeve plates (57) and the annular plates (54) is reduced by rotation.

2. The fabric inspection machine for processing baby sleeping bag fabric according to claim 1, characterized in that: Both of the aforementioned sleeve plates (57) have beveled angles (58) on one side.

3. The fabric inspection machine for processing baby sleeping bag fabric according to claim 2, characterized in that: The positioning component (6) includes: a rectangular tube (61), which is fixedly connected to the collar (53); L-shaped rod (62), the inner wall of which is threaded with bolts (63), wherein the L-shaped rod (62) is placed inside the rectangular tube (61) and fixed by bolts (63); A pressure plate (66) is fixedly installed on an L-shaped rod (62) by an electric telescopic rod (65), wherein the electric telescopic rod (65) drives the pressure plate (66) to move up and down to squeeze the fabric.

4. The fabric inspection machine for processing baby sleeping bag fabric according to claim 3, characterized in that: The positioning component (6) further includes a rubber strip (67), wherein the rubber strip (67) is uniformly fixed on the pressure plate (66), and the surface of the rubber strip (67) is provided with multiple protrusions.

5. A fabric inspection machine for processing baby sleeping bag fabric according to claim 4, characterized in that: The positioning component (6) further includes a screw block (64), wherein the screw block (64) is fixed to the nut position of the bolt (63), and the surface of the screw block (64) is provided with multiple anti-slip strips.