Guide mechanism for cloth conveying
By optimizing the structure of the guiding mechanism, including adjusting wedges, slides, and gear transmission, the problem of insufficient adaptability of existing fabric conveying mechanisms has been solved, enabling precise guidance and stable conveying of different fabrics, thereby improving production efficiency and quality.
Patent Information
- Application Number
- CN202520666208.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-04-10
AI Technical Summary
Existing fabric conveying and guiding mechanisms cannot be flexibly adjusted according to the thickness and material of the fabric, which makes the fabric prone to deviation and wrinkles during the conveying process, affecting processing quality and efficiency.
The guide mechanism design includes a worktable, fixed base, adjusting wedge, slide, pressure roller and adjustment components. Through screw, gear transmission and scale indication, the adjusting wedge and slide can be precisely adjusted to adapt to fabrics of different thicknesses and materials.
It enables flexible adaptation to fabrics of different thicknesses and materials, avoiding shifts and wrinkles, and improving production efficiency and processing quality.
Smart Images

Figure CN223892107U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fabric conveying, and in particular relates to a guiding mechanism for fabric conveying. Background Technology
[0002] In today's highly developed textile and fabric processing industry, the fabric conveying process undoubtedly plays a crucial and fundamental role. To ensure the quality and efficiency of fabric processing, guiding mechanisms are often used to ensure that the fabric maintains a stable and accurate direction during the conveying process.
[0003] However, existing fabric conveying and guiding mechanisms have some shortcomings. Some mechanisms have simple structures and cannot be flexibly adjusted according to the thickness, material, and other characteristics of the fabric, leading to problems such as fabric deviation and wrinkling during conveying, which affects the smooth progress of subsequent processing steps. Other guiding mechanisms have complex adjustment operations, making it difficult to achieve quick and precise adjustments, thus reducing production efficiency. Utility Model Content
[0004] In view of the above problems, the purpose of this utility model is to provide a guiding mechanism for fabric conveying, which aims to solve the problem that the existing guiding mechanisms for fabric conveying have low adaptability and cannot be flexibly adjusted according to the thickness, material and other characteristics of the fabric.
[0005] The present invention adopts the following technical solution:
[0006] The guiding mechanism includes a worktable with a pair of fixed seats on the left and right. A top seat is located above the fixed seats, and an adjusting wedge is slidably mounted below them. A slide is located inside the fixed seats above the adjusting wedge. The top surface of the adjusting wedge is a downward-facing support slope, and the bottom surface of the slide forms an adjusting slope that matches the support slope. The support slope and the adjusting slope are in contact. A pressure wheel and an adjusting wheel are rotatably mounted between the top seats and between the slides, respectively. A compression spring is mounted between the top seat and the slide on the same side. An adjustment assembly is provided on the worktable to simultaneously drive the adjusting wedge to slide.
[0007] Furthermore, the adjusting wedge is inserted into a lead screw, one end of which passes through a fixed seat and is provided with a rotating gear. The adjusting assembly includes a linkage shaft rotatably mounted on two fixed seats. The linkage shaft is provided with a pair of left and right linkage gears, and the linkage gear on the same side meshes with the rotating gear. One of the fixed seats is provided with an adjusting seat, and a rotating shaft is rotatably provided inside the adjusting seat. The rotating shaft is provided with a drive gear, which meshes with the linkage gear on the same side. The rotating shaft passes through the adjusting seat and is provided with a rotating handle.
[0008] Furthermore, the bottom surface of the slide block has a clearance groove corresponding to the lead screw.
[0009] Furthermore, one of the fixed seats has a scale on its side wall, and the slide on the same side has an indicator arrow, which is set towards the scale.
[0010] The beneficial effects of this utility model are:
[0011] 1. The position of the adjusting wedge can be flexibly adjusted by adjusting the components, thereby changing the height of the slide, so that the pressure roller and adjusting roller can adapt to fabrics of different thicknesses and materials, and meet diverse fabric conveying and guiding needs.
[0012] 2. Operators only need to turn the rotary handle to achieve synchronous sliding of the adjusting wedge through a series of gear transmissions. The operation process is simple and quick, reducing labor intensity and improving production efficiency.
[0013] 3. The setting of the scale and indicator arrows allows operators to accurately grasp the height changes of the slide, realize precise adjustment of the fabric guide, effectively avoid the fabric from shifting and wrinkling during the conveying process, and improve the quality of fabric processing. Attached Figure Description
[0014] Figure 1 This utility model provides an overall drawing of a guiding mechanism for conveying fabric.
[0015] Figure 2 This is a schematic diagram of the adjustment component provided by this utility model.
[0016] Figure 3 This utility model provides an installation diagram of the adjusting wedge and the slide block. Detailed Implementation
[0017] To make the purpose, technical solution, and advantages of this utility model patent clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0018] To illustrate the technical solution described in this utility model, specific embodiments are described below.
[0019] For ease of explanation, only the parts relevant to the embodiments of this utility model are shown.
[0020] Combination Figure 1-3As shown, the guiding mechanism includes a worktable 1, on which a pair of left and right fixed seats 2 are provided. Above the fixed seats 2 is a top seat 3, and below it is an adjusting wedge 4 that slides laterally. Inside the fixed seats 2, above the adjusting wedge 4, is a slide seat 5. The top surface of the adjusting wedge 4 is a downward-facing support slope 6. The bottom surface of the slide seat 5 forms an adjusting slope that matches the support slope 6, and the support slope 6 is in contact with the adjusting slope. Between the top seats 3 and between the slide seats 5, pressure rollers 8 and adjusting rollers 9 are respectively rotatably provided. A compression spring 10 is provided between the top seats 3 and the slide seat 5 on the same side. The worktable 1 is provided with an adjustment assembly for simultaneously driving the adjusting wedge 4 to slide.
[0021] Fabric conveying is a crucial step in the fabric processing process. To ensure both the quality and efficiency of fabric processing, this guiding mechanism can be used to ensure that the fabric maintains a stable and accurate direction during conveying.
[0022] In this structure, the fixed base is provided with a top seat, a slide, and an adjusting wedge from top to bottom. The top seat is fixedly installed, the slide is slidably installed vertically, and the adjusting wedge is slidably installed laterally. The top surface of the adjusting wedge has a downward-facing supporting slope, and the bottom surface of the slide has an adjusting slope, with the supporting slope contacting the adjusting slope. This sloped design allows the adjusting wedge to push the slide up and down when sliding laterally.
[0023] When the two adjusting wedges slide horizontally in sync, the slide block drives the adjusting wheel to move up and down. During the up-and-down movement of the adjusting wheel, the gap between the adjusting wheel and the pressure wheel changes accordingly, thus adapting to different fabric thicknesses and materials. In addition, a compression spring is provided between the top seat and the slide block. During the fabric conveying process, the compression spring provides elastic force, allowing the pressure wheel and adjusting wheel to adaptively adjust the pressure according to the fabric thickness, ensuring stable clamping of the fabric.
[0024] As a preferred structure, such as Figure 2-3 The adjusting wedge 4 is inserted into a lead screw 11. One end of the lead screw 11 passes through the fixed seat 2 and is provided with a rotating gear 12. The adjusting assembly includes a linkage shaft 13 rotatably mounted on two fixed seats 2. The linkage shaft 13 is provided with a pair of left and right linkage gears 14, and the linkage gear 14 on the same side meshes with the rotating gear 12. One of the fixed seats 2 is provided with an adjusting seat 15. A rotating shaft 16 is rotatably provided inside the adjusting seat 15. A drive gear 17 is provided on the rotating shaft 16. The drive gear 17 meshes with the linkage gear 14 on the same side. The rotating shaft 16 passes through the adjusting seat 15 and is provided with a rotating handle 18.
[0025] In the above structure, the rotating gear, linkage gear, and drive gear are all bevel gears. The lead screw and adjusting wedge are connected by a threaded engagement. When the lead screw rotates, it causes the adjusting wedge to slide laterally. When the wedge slides laterally, the operator rotates the handle, causing the rotating shaft to rotate. The drive gear on the rotating shaft meshes with the linkage gear, causing the linkage shaft to rotate. The linkage gear on the linkage shaft then drives the rotating gear on the lead screw, thus rotating both lead screws and achieving the lateral sliding of the adjusting wedge. This design allows for synchronous adjustment of the left and right adjusting wedges, ensuring consistent adjustment of both sides of the fabric by the guide mechanism.
[0026] In this structure, such as Figure 3 The bottom surface of the slide block 5 has a clearance slot 19 corresponding to the lead screw. The clearance slot can prevent the lead screw from interfering with the up and down movement of the slide block, ensuring that the slide block can move up and down smoothly under the push of the adjusting wedge, thus ensuring the normal operation of the mechanism.
[0027] In addition, one of the fixed seats 2 has a scale 20 on its side wall, and the slide 5 on the same side has an indicator arrow 21, which is set towards the scale 20. During the up-and-down movement of the fine-tuning wheel, the indicator arrow moves up and down with the slide. By observing the position of the indicator arrow pointing to the scale, the operator can intuitively understand the height change of the slide, thereby more accurately controlling the sliding amount of the adjusting wedge and further achieving precise adjustment of the fabric guide.
[0028] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A guiding mechanism for fabric conveying, characterized in that: The guiding mechanism includes a worktable with a pair of fixed seats on the left and right. A top seat is located above the fixed seats, and an adjusting wedge is slidably mounted below them. A slide is located inside the fixed seats above the adjusting wedge. The top surface of the adjusting wedge is a downward-facing support slope, and the bottom surface of the slide forms an adjusting slope that matches the support slope. The support slope and the adjusting slope are in contact. A pressure wheel and an adjusting wheel are rotatably mounted between the top seats and between the slides, respectively. A compression spring is mounted between the top seat and the slide on the same side. An adjustment assembly is provided on the worktable to simultaneously drive the adjusting wedge to slide.
2. The guiding mechanism for fabric conveying as described in claim 1, characterized in that: The adjusting wedge is inserted into a lead screw, one end of which passes through a fixed seat and is provided with a rotating gear. The adjusting assembly includes a linkage shaft rotatably mounted on two fixed seats. The linkage shaft is provided with a pair of left and right linkage gears, and the linkage gear on the same side meshes with the rotating gear. One of the fixed seats is provided with an adjusting seat, and a rotating shaft is rotatably provided inside the adjusting seat. The rotating shaft is provided with a drive gear, which meshes with the linkage gear on the same side. The rotating shaft passes through the adjusting seat and is provided with a rotating handle.
3. The guiding mechanism for fabric conveying as described in claim 2, characterized in that: The bottom surface of the slide block has a clearance groove corresponding to the lead screw.
4. The guiding mechanism for fabric conveying as described in claim 3, characterized in that: One of the fixed seats has a scale on its side wall, and the slide on the same side has an indicator arrow, which is set towards the scale.