Automatic feeding machine with adjustable for clothing fabric roll material
Patent Information
- Application Number
- CN202522207886.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-20
- Publication Date
- 2026-10-09
- Estimated Expiration
- 2035-10-20
AI Technical Summary
[0004]针对上述技术问题,本申请解决服装布料卷料上料过程中,上料机难以适应不同规格卷料,且支撑组件调节不方便、不稳定的问题
[0013]1.本申请通过设置固定式支撑组件和移动式支撑组件,实现了依据卷料重力自动调节两组支撑组件之间的距离,解决了难以适应不同规格卷料的问题,提高了上料机对各类规格卷料的适应能力,保证卷料放置的稳定性。
Smart Images

Figure CN224831391U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of garment fabric lifting technology, specifically to an automatic feeder for garment fabric rolls that is easy to adjust. Background Technology
[0002] In the garment fabric processing, the feeding of roll fabric is crucial. Traditional garment fabric roll feeding machines have several shortcomings. On the one hand, feeding machines often struggle to adapt flexibly to roll fabrics of different specifications, leading to unstable roll placement and affecting subsequent processing. On the other hand, adjusting the support components is usually complex, and the adjusted position is prone to deviation, failing to guarantee reliable support for the roll fabric. For example, when dealing with roll fabrics that are too wide or too narrow, traditional feeding machines may not be able to effectively adjust the support spacing, causing the roll fabric to shake, shift, or even fall during placement or transport, not only reducing feeding efficiency but also potentially damaging the fabric.
[0003] Therefore, in order to improve the feeding quality and efficiency of garment fabric rolls, there is an urgent need for an automatic feeding machine that can be easily adjusted and adapted to rolls of different specifications. Summary of the Invention
[0004] In response to the above-mentioned technical problems, this application solves the problem that during the feeding process of garment fabric rolls, the feeding machine is difficult to adapt to rolls of different specifications, and the support components are inconvenient to adjust and unstable.
[0005] To achieve the above objectives, the technical solution adopted in this application is: an automatic feeding machine for garment fabric rolls that is easy to adjust, comprising a body assembly, a support assembly, and an adjustment assembly, wherein the body assembly includes a lifting machine and a lifting frame fixedly installed on the lifting machine.
[0006] The support assembly consists of two sets: a fixed support assembly and a movable support assembly. The fixed support assembly is fixedly installed on the lifting frame, while the movable support assembly is slidably installed on the slide groove of the lifting frame. This allows for adjustment of the distance between the two sets of support assemblies to accommodate different specifications of rolled materials.
[0007] The adjustment assembly includes a connecting block, a buffer spring, a slide rod, and an adjustment plate. The connecting block is rotatably mounted on a movable support assembly. Two slide rods are fixedly mounted on the connecting block, and a buffer spring is sleeved on each of the two slide rods. The adjustment plate is simultaneously sleeved on the ends of the two slide rods away from the connecting block, so that the buffer spring is located between the adjustment plate and the connecting block. The adjustment plate is used to support the buffer spring when the connecting block compresses it.
[0008] Preferably, the support assembly includes a roller, a support shaft, and a support plate. The fixed support assembly and the movable support assembly have the same structure. The support plate in the fixed support assembly is fixedly installed on the lifting frame, and the movable support assembly is slidably installed on the lifting frame. The roller of the support assembly is sleeved on the support shaft, and the support shaft is inserted into the through hole at the top of the support plate.
[0009] Preferably, the adjustment assembly includes a one-way rack, an adjustment rod, a long bolt, and a support spring. The one-way rack is fixedly installed at the bottom end of the lifting frame. The end of the adjustment rod near the adjustment plate is provided with a through hole. The long bolt is inserted into the through hole of the adjustment rod and threadedly connected to the threaded hole at the bottom end of the adjustment plate. The support spring is sleeved on the long bolt to support the horizontal height of the support spring. The adjustment rod is provided with teeth for engaging with the one-way teeth of the one-way rack.
[0010] Preferably, the adjusting assembly includes a limiting rod, the bottom end of which is threadedly connected to a long bolt, a supporting spring is fitted on the long bolt, the long bolt is connected to a through hole at the end of the adjusting rod away from the adjusting plate, and a protrusion is provided on the limiting rod, which is slidably disposed in the groove of the lifting frame to ensure the horizontal state of the adjusting rod.
[0011] Preferably, the adjustment assembly is provided in two sets, and each set of adjustment assemblies is provided with a horizontal connecting rod. The two ends of the horizontal connecting rod are fixedly connected to the adjustment rods on the two lifting frames for synchronizing the two adjustment assemblies.
[0012] The technical solution provided in this application has the following advantages compared with the prior art:
[0013] 1. This application achieves automatic adjustment of the distance between the two sets of support components based on the gravity of the coil material by setting fixed support components and movable support components, which solves the problem of difficulty in adapting to different specifications of coil material, improves the adaptability of the feeder to various specifications of coil material, and ensures the stability of coil material placement.
[0014] 2. This application achieves elastic adjustment and buffering of the spacing between support components by adjusting the connecting block, buffer spring, slide bar and adjusting plate in the component, which solves the problem of the support components being subjected to force impact during the placement and removal of the coil, improves the buffering protection effect of the feeder on the coil, and avoids the coil being damaged due to force impact.
[0015] 3. This application achieves precise and stable adjustment of the position of the adjusting plate by means of the coordinated action of the one-way rack, adjusting rod, long bolt, support spring, limit rod and cross link in the adjusting assembly. It solves the problems of inconvenient adjustment of the support assembly and unstable position after adjustment, improves the convenience and stability of the adjustment of the feeding machine support assembly, and ensures reliable support for the coiled material. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this application;
[0017] Figure 2 This is a schematic diagram showing the installation status of the supporting components of this application;
[0018] Figure 3 for Figure 2 A schematic diagram of the local structure at point A in the middle;
[0019] Figure 4 for Figure 2 Enlarged view of the local structure at point B;
[0020] Figure 5 This is a schematic diagram of the structure of the limiting rod of the adjustment component in this application;
[0021] Figure 6 This is a schematic diagram of the adjusting rod of the adjusting component in this application.
[0022] In the diagram: 101-Elevator; 102-Elevator frame; 201-Roller; 202-Support shaft; 203-Support plate; 301-Connecting block; 302-Buffer spring; 303-Slide rod; 304-Adjusting plate; 305-Adjusting rod; 306-Long bolt; 307-Support spring; 308-Limit rod; 309-One-way rack; 310-Horizontal connecting rod. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0024] Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of the application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0025] like Figures 1 to 6As shown, an automatic feeder for garment fabric rolls that is easy to adjust includes a body assembly, a support assembly, and an adjustment assembly. The body assembly includes a lifting machine 101 and a lifting frame 102 fixedly installed on the lifting machine 101. Specifically, the lifting machine 101 is provided with two lifting frames 102 for installing the support assembly and the adjustment assembly. The inner side, outer side, and bottom of the lifting frame 102 are provided with grooves and slides, which are used for installing the fixed support assembly, moving the movable support assembly, and adjusting the adjustment assembly, respectively.
[0026] The support assembly is provided in two sets: a fixed support assembly and a movable support assembly. The fixed support assembly is fixedly installed on the lifting frame 102, and the movable support assembly is slidably installed on the slide groove of the lifting frame 102. This is used to adjust the distance between the two sets of support assemblies to adapt to different specifications of coiled material.
[0027] Specifically, after the coil is placed on the two support components, the support components are pushed to both sides by the weight of the coil. Since the fixed support components are fixedly connected to the lifting frame 102, the movable support components slide horizontally on the lifting frame 102 due to the weight of the coil, thereby adapting to the specifications and weight of the coil.
[0028] The adjustment assembly includes a connecting block 301, a buffer spring 302, a slide rod 303, and an adjustment plate 304. The connecting block 301 is rotatably mounted on a movable support assembly. Two slide rods 303 are fixedly mounted on the connecting block 301. A buffer spring 302 is sleeved on each of the two slide rods 303. The adjustment plate 304 is simultaneously sleeved on the ends of the two slide rods 303 away from the connecting block 301, so that the buffer spring 302 is located between the adjustment plate 304 and the connecting block 301. The adjustment plate 304 is used to support the buffer spring 302 when the connecting block 301 compresses it.
[0029] Specifically, when the movable support assembly is subjected to a thrust, the movable support assembly pushes the connecting block 301 and the two slide rods 303 on it to move away from the fixed support assembly on the adjusting plate 304, and the connecting block 301 squeezes the buffer spring 302 on the slide rod 303 to store force for subsequent resetting after the coil is removed.
[0030] The length of the buffer spring 302 can be adjusted according to actual needs. By adjusting the position of the adjusting plate 304, the adjusting plate 304 can slide on the slide rod 303, thereby adjusting the buffer spring 302 in advance, compressing it to adapt to smaller rolls, or pulling the buffer spring 302 and the connecting block 301 away from the fixed support assembly, thereby changing the initial distance between the two support assemblies to adapt to larger rolls.
[0031] like Figure 2and Figure 6 As shown, the support assembly includes a roller 201, a support shaft 202, and a support plate 203. The fixed support assembly and the movable support assembly have the same structure. The support plate 203 in the fixed support assembly is fixedly installed on the lifting frame 102, and the movable support assembly is slidably installed on the lifting frame 102. The roller 201 of the support assembly is sleeved on the support shaft 202, and the support shaft 202 is inserted into the through hole at the top of the support plate 203.
[0032] Specifically, each support component has a support shaft 202 and a support plate 203 on each side of the roller 201. The roller 201 is provided with rubber material to buffer the contact with the rolled material. The support shaft 202 passes through both ends of the roller 201 and is installed on the support plate 203. The support plates 203 on both sides are connected to the lifting frame 102 on their respective sides, thereby providing stable support for the roller 201. When the roller 201 is under force, the support plates 203 on both sides slide synchronously on the grooves of their respective lifting frames 102.
[0033] like Figures 3 to 6 As shown, the adjustment assembly includes a one-way rack 309, an adjustment rod 305, a long bolt 306, and a support spring 307. The one-way rack 309 is fixedly installed at the bottom end of the lifting frame 102. The end of the adjustment rod 305 near the adjustment plate 304 is provided with a through hole. The long bolt 306 is inserted into the through hole of the adjustment rod 305 and threadedly connected to the threaded hole at the bottom end of the adjustment plate 304. The support spring 307 is sleeved on the long bolt 306 to support the horizontal height of the support spring 307. The adjustment rod 305 is provided with teeth for engaging with the one-way teeth of the one-way rack 309.
[0034] Specifically, the position of the adjusting plate 304 is adjusted by meshing the teeth on the adjusting rod 305 with the one-way rack 309. Because the teeth on the one-way rack 309 are one-way teeth and are inclined towards the fixed support assembly, when the operator manually controls the adjusting plate 304 to move towards the fixed support assembly, the adjusting plate 304 drives the teeth on the adjusting rod 305 to slide on the teeth of the one-way rack 309 through the long bolt 306. First, it moves towards the fixed support assembly while moving downward and compressing the support spring 307 on the long bolt 306. When the teeth on the adjusting rod 305 move to the lowest point of the one-way teeth on the one-way rack 309, when the adjusting plate 304 is pushed further, the teeth on the adjusting rod 305 lose the obstruction of the current one-way teeth and move upward under the action of the support spring 307, inserting into the gap between the two one-way teeth. This process is repeated to adjust the adjusting plate 304 towards the fixed support assembly on the sliding rod 303.
[0035] When it is necessary to move the adjusting plate 304 away from the fixed support assembly, the control adjusting rod 305 moves downward on the long bolt 306 and compresses the support spring 307 on the long bolt 306. As a result, the teeth on the adjusting rod 305 disengage from the one-way teeth on the one-way rack 309. After the adjusting rod 305 is unrestrained, the adjusting plate 304 is also unrestrained. Under the elastic force of the compressed buffer spring 302, it moves away from the fixed support assembly. Alternatively, the operator can manually pull the adjusting plate 304 to slide on the slide rod 303. After adjusting to the appropriate position, the control of the adjusting rod 305 is released. The adjusting rod 305 is reset under the action of the support spring 307, and the teeth on the adjusting rod 305 re-engage with the one-way teeth of the one-way rack 309, fixing the positions of the adjusting rod 305 and the adjusting plate 304.
[0036] like Figures 3 to 6 As shown, the adjustment assembly includes a limiting rod 308, with a long bolt 306 threadedly connected to the bottom end of the limiting rod 308. A support spring 307 is fitted on the long bolt 306. The long bolt 306 is connected to a through hole at the end of the adjusting rod 305 away from the adjusting plate 304. A protrusion is provided on the limiting rod 308, which is slidably disposed in the groove of the lifting frame 102 to ensure the horizontal state of the adjusting rod 305.
[0037] Specifically, the limiting rod 308 is used to support and limit the end of the adjusting rod 305 away from the adjusting plate 304, so that the entire adjusting rod 305 remains horizontal, thereby making the teeth on the adjusting rod 305 stably mesh with the one-way teeth of the one-way rack 309.
[0038] like Figures 3 to 6 As shown, the adjustment assembly is provided in two sets, and each set of adjustment assemblies is provided with a horizontal connecting rod 310. The two ends of the horizontal connecting rod 310 are fixedly connected to the adjustment rods 305 on the two lifting frames 102 for synchronizing the two adjustment assemblies.
[0039] Specifically, because the top of the adjusting plate 304 is pushed by the buffer spring 302, the lower end of the adjusting plate 304 tends to move the connection of the adjusting rod 305. The adjusting rod 305 is only limited by the meshing of the teeth on the adjusting rod 305 with the one-way teeth of the one-way rack 309. Therefore, the ends of the two adjusting rods 305 need to be connected by a cross link 310 so that the two adjusting rods 305 form a whole. This restricts the adjusting rod 305 to two positions, preventing the adjusting rod 305 and the adjusting plate 304 from swinging.
[0040] When adjusting the two side adjustment plates 304, the operator needs to simultaneously control the adjustment plates 304 and adjustment rods 305 on both sides. Through the connection of the horizontal connecting rod 310, the adjustment plates 304 and adjustment rods 305 on both sides can be adjusted to the same distance simultaneously, ensuring that the distance between the two support components is stable and avoiding the two support components from being in a non-parallel state after adjustment, which would affect the support of the coil.
[0041] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. An easily adjustable automatic feeding machine for garment fabric rolls, characterized in that, The system includes a body assembly, a support assembly, and an adjustment assembly. The body assembly includes a hoist (101) and a hoisting frame (102) fixedly mounted on the hoist (101). The support assembly consists of two sets: a fixed support assembly and a movable support assembly. The fixed support assembly is fixedly mounted on the hoisting frame (102), and the movable support assembly is slidably mounted on a groove in the hoisting frame (102) to adjust the distance between the two sets of support assemblies to accommodate different specifications of coiled material. The adjustment assembly includes a connecting block (301), a buffer spring (302), a slide rod (303), and an adjustment plate (304). The connecting block (301) is rotatably mounted on a movable support assembly. Two slide rods (303) are fixedly mounted on the connecting block (301). A buffer spring (302) is sleeved on each of the two slide rods (303). The adjustment plate (304) is sleeved on the end of the two slide rods (303) away from the connecting block (301), so that the buffer spring (302) is located between the adjustment plate (304) and the connecting block (301). The adjustment plate (304) is used to support the buffer spring (302) when the connecting block (301) compresses it.
2. The easily adjustable automatic feeding machine for garment fabric rolls according to claim 1, characterized in that, The support assembly includes a roller (201), a support shaft (202), and a support plate (203). The fixed support assembly and the movable support assembly have the same structure. The support plate (203) in the fixed support assembly is fixedly installed on the lifting frame (102). The movable support assembly is slidably installed on the lifting frame (102). The roller (201) of the support assembly is sleeved on the support shaft (202). The support shaft (202) is inserted into the through hole at the top of the support plate (203).
3. The easily adjustable automatic feeding machine for garment fabric rolls according to claim 1, characterized in that, The adjustment assembly includes a one-way rack (309), an adjustment rod (305), a long bolt (306), and a support spring (307). The one-way rack (309) is fixedly installed at the bottom of the lifting frame (102). The end of the adjustment rod (305) near the adjustment plate (304) is provided with a through hole. The long bolt (306) is inserted into the through hole of the adjustment rod (305) and threadedly connected to the threaded hole at the bottom of the adjustment plate (304). The support spring (307) is sleeved on the long bolt (306) to support the horizontal height of the support spring (307). The adjustment rod (305) is provided with teeth for engaging with the one-way teeth of the one-way rack (309).
4. The easily adjustable automatic feeding machine for garment fabric rolls according to claim 1, characterized in that, The adjustment assembly includes a limiting rod (308), the bottom end of which is threaded with a long bolt (306). A support spring (307) is fitted on the long bolt (306). The long bolt (306) is connected to a through hole at the end of the adjusting rod (305) away from the adjusting plate (304). A protrusion is provided on the limiting rod (308), which is slidably disposed in the groove of the lifting frame (102) to ensure the horizontal state of the adjusting rod (305).
5. The easily adjustable automatic feeding machine for garment fabric rolls according to claim 1, characterized in that, The adjustment components are provided in two sets, and each set of adjustment components is provided with a horizontal connecting rod (310). The two ends of the horizontal connecting rod (310) are fixedly connected to the adjustment rods (305) on the two lifting frames (102) for synchronizing the two adjustment components.