Oversleeve dispensing double-station feeding device

By designing a sleeve dispensing double-station loading device, the synchronous movement of the upper and lower loading components is achieved using the synchronous belt mechanism, which solves the problem of low manual loading and unloading efficiency and improves the production efficiency of sunscreen sleeves.

CN223159543UActive Publication Date: 2025-07-29FUJIAN YIHUA TECH CO LTD
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Patent Information

Application Number
CN202421515812.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-29
Publication Date
2025-07-29
Estimated Expiration
2034-06-29

AI Technical Summary

Technical Problem

In the production of existing sunscreen sleeves, manual loading and unloading leads to low dispensing production efficiency, affecting the overall production efficiency.

Method used

The sleeve dispensing double-station loading device is designed, including a loading frame, a vertical loading mounting plate and a driving device. The synchronous motion of the upper and lower loading components is achieved through the synchronous belt mechanism to improve the loading efficiency.

Benefits of technology

It realizes manual operation of lower-wheel sleeve loading during equipment dispensing, improving overall production efficiency and facilitating professional sleeve dispensing production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The oversleeve dispensing double-station feeding device comprises a feeding machine frame, a vertical feeding installation plate is installed on the feeding machine frame, two feeding assemblies are arranged on the feeding installation plate from top to bottom, the two feeding assemblies are horizontally connected to the feeding installation plate in a sliding mode, and the two feeding assemblies are arranged on the feeding installation plate in a sliding mode. A driving device used for driving the feeding assemblies to horizontally slide is installed on the portion, between the two feeding assemblies, of the feeding installation plate, each feeding assembly comprises a vertical feeding plate, a plurality of horizontal feeding shafts are horizontally distributed on the vertical feeding plates at intervals, the horizontal feeding shafts are sleeved with oversleeve tools, and the oversleeve tools are arranged on the vertical feeding plates. And the vertical feeding plate is connected to the feeding mounting plate in a sliding manner. The oversleeve feeding device is reasonable in design, through the upper feeding assembly and the lower feeding assembly, oversleeve feeding of the lower wheel can be synchronously carried out manually when equipment dispensing is carried out, the overall production efficiency is improved, and the professional oversleeve dispensing production process is facilitated.
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Description

Technical Field

[0001] The utility model relates to a sleeve dispensing double-station feeding device. Background Art

[0002] The sunscreen sleeve, also known as a sunscreen arm sleeve, is generally made of all-cotton, chiffon and other high-quality skin-friendly materials. The sunscreen sleeve is light, thin and transparent in texture, soft and elastic in hand feeling, has good air permeability, can effectively prevent ultraviolet rays, and prevent the skin from being sunburned and tanned. At present, the sunscreen sleeve has become an essential item in summer. When existing sunscreen sleeve production enterprises carry out dispensing production at the end of the sleeve, it is necessary for workers to put the sleeve on the sleeve fixture of the dispensing machine and then carry out dispensing. Since the feeding and unloading are carried out manually, it has a great impact on the overall dispensing production efficiency. Summary of the Invention

[0003] In view of this, the purpose of the utility model is to overcome the deficiencies in the above-mentioned prior art and provide a sleeve dispensing double-station feeding device to solve the problems raised in the above background art.

[0004] The utility model adopts the following scheme: a sleeve dispensing double-station feeding device: including a feeding frame, a vertical feeding mounting plate is installed on the feeding frame, two feeding components are arranged on the feeding mounting plate from top to bottom, both feeding components are horizontally slidably connected to the feeding mounting plate, and a driving device for driving the feeding components to horizontally slide is installed on the feeding mounting plate between the two feeding components.

[0005] Further, the feeding component includes a vertical feeding plate, a plurality of horizontal feeding shafts are horizontally and spacedly distributed on the vertical feeding plate, a sleeve fixture is sleeved on the horizontal feeding shaft, and the vertical feeding plate is slidably connected to the feeding mounting plate.

[0006] Further, a sleeve structure for fixing the horizontal feeding shaft is installed on the vertical feeding plate, the sleeve structure includes a sleeve, one end of the sleeve is provided with a flange for connecting with the vertical feeding plate, and the horizontal feeding shaft is fixedly sleeved inside the other end of the sleeve.

[0007] Further, a feeding slide rail is arranged on the feeding mounting plate corresponding to the vertical feeding plate, and a feeding slider matched with the feeding slide rail is installed on the side plate surface of the feeding mounting plate far from the sleeve fixture.

[0008] Further, the driving device includes a synchronous belt mechanism, the synchronous belt mechanism includes symmetrically arranged synchronous belt wheels on the left and right, the synchronous belt wheels are rotatably connected to the feeding mounting plate, the two synchronous belt wheels are connected by a synchronous belt, and a motor for driving one of the synchronous belt wheels to rotate is installed on the feeding mounting plate.

[0009] Further, the synchronous belt is located between the upper and lower feeding components. The vertical feeding plate is connected to the belt body of the synchronous belt on the same side through an L-shaped bracket. The vertical part of the L-shaped bracket is fixedly connected to the edge of the vertical feeding plate, and the horizontal part of the L-shaped bracket is fixedly connected to the belt body of the synchronous belt.

[0010] Further, the feeding slide rail includes a horizontally feeding section and a horizontally conveying and docking section that are butt-jointed with each other. The initial positions of the two vertical feeding plates are respectively located on the horizontally feeding section of the corresponding feeding slide rail and the horizontally conveying and docking section of the corresponding feeding slide rail, and the moving directions of the two feeding components are opposite.

[0011] Further, the sleeve tooling includes a tooling sleeve, and the outer periphery of the tooling sleeve is provided with a multi-stage stepped shape corresponding to the sleeve.

[0012] Compared with the prior art, the utility model has the following beneficial effects: reasonable design, through the upper and lower two feeding components, it can realize that when manual operation is carried out for dispensing on the equipment, the next round of sleeve feeding can be carried out synchronously, improving the overall production efficiency and facilitating the professional sleeve dispensing production process. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a perspective view of an embodiment of the utility model;

[0014] Figure 2 is a front view of an embodiment of the utility model;

[0015] Figure 3 is Figure 1 an enlarged view of part A in

[0016] In the figure: A1 - feeding frame; A2 - feeding mounting plate; A3 - feeding component; A4 - driving device; A5 - vertical feeding plate; A6 - horizontal feeding shaft; A7 - sleeve tooling; A8 - sleeve structure; A9 - feeding slide rail; A10 - feeding slider; A11 - synchronous belt pulley; A12 - synchronous belt; A13 - motor; A14 - horizontally feeding section; A15 - horizontally conveying and docking section; B16 - L-shaped bracket. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] The following further describes the utility model in conjunction with the accompanying drawings and embodiments.

[0018] It should be noted that the following detailed description is exemplary and is intended to provide further explanation of the present application. Unless otherwise specified, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs.

[0019] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should also be understood that when the terms "comprise" and / or "include" are used in this specification, they specify the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0020] As Figures 1-3 shown, a sleeve dispensing double-station loading device includes a loading frame A1. A vertical loading mounting plate A2 is installed on the loading frame. Two loading components A3 are arranged on the loading mounting plate from top to bottom. Both loading components are horizontally slidably connected to the loading mounting plate. A driving device A4 for driving the horizontal sliding of the loading components is installed on the loading mounting plate between the two loading components. During use, the loading mounting plate is divided into left and right two stations. One station is the loading station, and the other station is the conveying and docking station. First, sleeve loading is performed on one of the loading components, and then the driving device drives the loading device to slide into the conveying and docking station. At this time, the other loading component on the conveying and docking station synchronously enters the loading station, and an operator performs loading on this loading component. After the loading is completed and the sleeve processing on the conveying and docking station is completed or the sleeve on the conveying and docking station is removed by the conveying device, the next loading continues. At the same time, the conveying and docking station of the loading mounting plate can be a processing station directly cooperating with the dispensing machine, or a processing station where the sleeve on the conveying and docking station is moved to the dispensing machine through other conveying devices.

[0021] In this embodiment, to achieve loading, the loading component includes a vertical loading plate A5. A plurality of horizontal loading shafts A6 are horizontally and spacedly distributed on the vertical loading plate. A sleeve tooling A7 is sleeved on the horizontal loading shaft. The vertical loading plate is slidably connected to the loading mounting plate. During use, first, the sleeve tooling is sleeved on the horizontal loading shaft, and then the sleeve is sleeved on the sleeve tooling to achieve loading.

[0022] In this embodiment, to fix the horizontal loading shaft, a sleeve structure A8 for fixing the horizontal loading shaft is installed on the vertical loading plate. The sleeve structure includes a sleeve. One end of the sleeve is provided with a flange for connecting to the vertical loading plate, that is, the flange is screwed to the vertical loading plate. The horizontal loading shaft is sleeved and fixed inside the other end of the sleeve. It can be that the horizontal loading shaft is screwed inside the end of the sleeve.

[0023] In this embodiment, in order to achieve the sliding of the loading assembly, a loading rail A9 is provided on the loading mounting plate corresponding to the vertical loading plate, and a loading slider A10 that cooperates with the loading rail is installed on the plate surface of the loading mounting plate away from the sleeve tooling. The sliding of the loading assembly is achieved through the cooperation between the loading rail and the loading slider.

[0024] In this embodiment, in order to achieve synchronous movement of the two feeding components, the driving device includes a synchronous belt mechanism, and the synchronous belt mechanism includes a synchronous belt pulley A11 symmetrically arranged on the left and right. The synchronous belt pulley is rotatably connected to the feeding mounting plate, and the two synchronous belt pulleys are connected through a synchronous belt A12. A motor A13 is installed on the feeding mounting plate to drive one of the synchronous belt pulleys to rotate, and the motor drives one of the synchronous belts to move, thereby realizing the rotation of the entire synchronous belt and realizing the synchronous switching of the upper and lower feeding mounting plates. Specifically, the synchronous belt is located between the upper and lower feeding components, and the vertical feeding plate is connected to the synchronous belt body on the same side through an L-shaped bracket B16. The vertical part of the L-shaped bracket is fixedly connected to the edge of the vertical feeding plate, and the horizontal part of the L-shaped bracket is fixedly connected to the synchronous belt body. The connection between the two feeding components and the synchronous belt is realized through the L-shaped bracket, and the motor is an existing forward and reverse motor.

[0025] In this embodiment, in order to facilitate the separation of the loading station and the conveying docking station, the loading slide includes a horizontal loading section A14 and a horizontal conveying docking section A15 that are docked with each other, and the initial positions of the two vertical loading plates are respectively located on the horizontal loading section of the corresponding loading slide and the horizontal conveying docking section of the corresponding loading slide, that is, the initial positions of the two vertical loading plates are staggered. Therefore, under the action of the motor, the movement directions of the two loading components are opposite, thereby realizing the switching between the loading station and the conveying docking station.

[0026] In this embodiment, for the sake of reasonable design, the sleeve tooling includes a tooling sleeve, and the outer circumference of the tooling sleeve is provided with multiple steps corresponding to the sleeve.

[0027] In this embodiment, initially, the initial positions of the two vertical loading plates are respectively located on the horizontal loading section of the corresponding loading slide rail and the horizontal conveying docking section of the corresponding loading slide rail. The loading assembly on the horizontal loading section is first loaded with sleeves, and then the motor drives the synchronous belt to slide the loading device into the conveying docking station. At this time, the other loading assembly located on the conveying docking station enters the loading station synchronously, and the loading assembly can be manually loaded with sleeves, so that the manual loading of sleeves on the lower wheel can be carried out synchronously when the equipment is dispensing, thereby improving the overall production efficiency and facilitating the professional sleeve dispensing production process.

[0028] For any of the technical solutions disclosed by the present utility model, unless otherwise stated, if it discloses a numerical range, the disclosed numerical range is a preferred numerical range. Any person skilled in the art should understand that the preferred numerical range is only the numerical values with obvious technical effects or representativeness among many implementable numerical values. Since there are too many numerical values to enumerate, only some numerical values are disclosed in the present utility model to illustrate the technical solutions of the present utility model. Moreover, the listed numerical values should not constitute a limitation on the protection scope of the present utility model.

[0029] If terms such as "first" and "second" are used in this article to limit components, those skilled in the art should be aware that the use of "first" and "second" is only for the convenience of differentiating components in description. Unless otherwise stated, the above terms have no special meaning.

[0030] If the present utility model discloses or involves components or structural parts that are fixedly connected to each other, then, unless otherwise stated, the fixed connection can be understood as: a detachable fixed connection (for example, connected by bolts or screws), or can also be understood as: a non-detachable fixed connection (for example, riveting, welding). Of course, the mutually fixed connection can also be replaced by an integral structure (for example, manufactured by integral forming using casting technology) (except when it is obvious that integral forming technology cannot be used).

[0031] In addition, for the positional relationships represented by terms used in any of the technical solutions disclosed by the present utility model, such as "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing this patent, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be understood as a limitation on this patent. Moreover, for the terms used to represent shapes in any of the technical solutions disclosed by the present utility model, unless otherwise stated, their meanings include shapes that are approximate, similar or close to them.

[0032] Any component provided by the present utility model can either be assembled from multiple separate components or be a single component manufactured by integral forming technology.

[0033] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present utility model and not to limit them; although the present utility model has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that it is still possible to modify the specific implementation manners of the present utility model or perform equivalent replacements on some technical features; without departing from the spirit of the technical solutions of the present utility model, they should all be covered within the scope of the technical solutions claimed by the present utility model.

Claims

1. A sleeve dispensing double-station loading device, characterized in that: It includes a feeding frame, on which a vertical feeding mounting plate is installed. Two feeding components are arranged on the feeding mounting plate from top to bottom. Both feeding components are horizontally slidably connected to the feeding mounting plate. A driving device for driving the feeding components to slide horizontally is installed between the two feeding components on the feeding mounting plate.

2. The cuff dispensing double-station loading device according to claim 1, characterized in that; The feeding assembly includes a vertical feeding plate, on which a number of horizontal feeding shafts are horizontally spaced apart, and a sleeve tooling is provided on the horizontal feeding shaft. The vertical feeding plate is slidably connected to the feeding mounting plate.

3. The sleeve dispensing double-station feeding device according to claim 2, wherein; A sleeve structure for fixing a horizontal feeding shaft is installed on the vertical feeding plate. The sleeve structure includes a sleeve. One end of the sleeve is provided with a flange for connecting with the vertical feeding plate, and the horizontal feeding shaft is fixed in the other end of the sleeve.

4. The sleeve dispensing double-station loading device according to claim 2, characterized in that; A loading slide rail is provided on the loading installation plate corresponding to the vertical loading plate, and a loading slider that cooperates with the loading slide rail is installed on the plate surface of the loading installation plate away from the sleeve tooling.

5. The cuff dispensing double-station loading device according to claim 4, characterized in that; The driving device includes a synchronous belt mechanism, which includes synchronous pulleys arranged symmetrically on the left and right. The synchronous pulleys are rotatably connected to the feeding mounting plate. The two synchronous pulleys are connected through a synchronous belt transmission. A motor for driving one of the synchronous pulleys to rotate is installed on the feeding mounting plate.

6. The sleeve dispensing double-station feeding device according to claim 5, characterized in that; The synchronous belt is located between the upper and lower feeding assemblies, and the vertical feeding plate is connected to the synchronous belt body on the same side through an L-shaped bracket. The vertical part of the L-shaped bracket is fixedly connected to the edge of the vertical feeding plate, and the horizontal part of the L-shaped bracket is fixedly connected to the synchronous belt body.

7. The cuff dispensing double-station feeding device according to claim 6, characterized in that; The loading slide rail includes a horizontal loading section and a horizontal conveying docking section that are docked with each other. The initial positions of the two vertical loading plates are respectively located on the horizontal loading section of the corresponding loading slide rail and the horizontal conveying docking section of the corresponding loading slide rail. The movement directions of the two loading components are opposite.

8. The cuff dispensing double-station loading device according to claim 2, wherein; The sleeve tooling comprises a tooling sleeve, and the outer circumference of the tooling sleeve is provided with multiple steps corresponding to the sleeve.