A coarse-coated cotton sliver can holding and conveying device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2026-08-14
AI Technical Summary
[0002]现有的并粗联条筒输送一般分为不带脚轮输送和带脚轮输送,不带脚轮的条筒输送时摩擦阻力较大,带脚轮的条筒输送时位置难以控制
[0008]本实用新型通过以上结构,通过设置平移输送机构、推筒机构和摆绕机构,平移输送机构用于棉条筒的横向移动;推筒机构用于棉条筒的纵向移动,且推筒机构与平移输送机构连接;摆绕机构能够与棉条筒接触,摆绕机构与平移机构连接;摆绕机构包括能够与棉条筒接触的摆绕板,所述摆绕板连接有改变其工作状态的驱动装置,能够使摆绕板分别处于水平或者竖直状态;所述推筒机构包括推动气缸及能够与棉条筒接触的推板。改变摆绕板的工作状态,从而方便的改变摆绕板相对棉条筒的位置,实现棉条筒的输送。该结构简单稳定,能可控的输送带脚轮条筒,同时将多个动作集成一体,简单实用。
Smart Images

Figure CN224632662U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of textile equipment technology, and in particular relates to a cotton sliver can holding and conveying device for coarse and coarse processing. Background Technology
[0002] Existing parallel coarse bar conveyors are generally divided into those without casters and those with casters. Conveyors without casters experience higher frictional resistance, while those with casters are difficult to position. Therefore, a conveying method with low resistance, low energy consumption, and stable and controllable performance is needed. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a stable sliver can conveying device. By setting a swing plate that can change its working state, the position of the swing plate relative to the sliver can is changed, thereby realizing the function of holding and conveying the sliver can and solving the problem of difficulty in controlling the conveying of sliver cans with casters.
[0004] To solve the above-mentioned technical problems, this utility model provides a sliver can holding and conveying device for parallel and coarse sliver cans, including a translational conveying mechanism, a pusher mechanism, and a swinging mechanism. The translational conveying mechanism is used for the lateral movement of the sliver can; the pusher mechanism is used for the longitudinal movement of the sliver can and is connected to the translational conveying mechanism; the swinging mechanism can contact the sliver can and is connected to the translational mechanism; the swinging mechanism includes a swinging plate that can contact the sliver can, and the swinging plate is connected to a driving device that changes its working state, enabling the swinging plate to be in a horizontal or vertical state; the pusher mechanism includes a pushing cylinder and a pusher plate that can contact the sliver can.
[0005] Furthermore, the pusher mechanism is provided with a holding mechanism, which includes a translation cylinder and a clamping plate that can contact the tampon can, the outline of which is adapted to the outline of the tampon can.
[0006] Furthermore, the outline of the oscillating plate is adapted to the cotton sliver tube.
[0007] Furthermore, the driving device is a swing cylinder, the cylinder body of which is connected to the translational conveying mechanism, and the output end of which is connected to the swing plate.
[0008] This utility model, through the above structure, includes a translational conveying mechanism, a pusher mechanism, and a swinging mechanism. The translational conveying mechanism is used for the lateral movement of the sliver can; the pusher mechanism is used for the longitudinal movement of the sliver can and is connected to the translational conveying mechanism; the swinging mechanism can contact the sliver can and is connected to the translational mechanism; the swinging mechanism includes a swinging plate that can contact the sliver can, and the swinging plate is connected to a drive device that changes its working state, enabling the swinging plate to be in a horizontal or vertical state; the pusher mechanism includes a pusher cylinder and a pusher plate that can contact the sliver can. By changing the working state of the swinging plate, the position of the swinging plate relative to the sliver can is easily changed, realizing the conveying of the sliver can. This structure is simple and stable, can controllably convey sliver cans with casters, and integrates multiple actions into one, making it simple and practical. Attached Figure Description
[0009] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments: Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a structural schematic diagram of one working state of the oscillating plate in this utility model; Figure 3 This is a schematic diagram of another working state of the oscillating plate in this utility model; Figure 4 This is a partial enlarged view of point A in this utility model; In the diagram: 101-swing plate, 102-drive device, 201-translation cylinder, 202-clamping plate, 301-push cylinder, 302-push plate, 4-translation conveying mechanism. Detailed Implementation
[0010] See attached document Figures 1 to 3 This utility model provides a sliver can holding and conveying device for parallel and coarse cotton sliver, including a translational conveying mechanism 4, a pusher mechanism, and a swinging mechanism. The translational conveying mechanism 4 is used for the lateral movement of the sliver can, the pusher mechanism is used for the longitudinal movement of the sliver can, and the pusher mechanism is connected to the translational conveying mechanism 4. The swinging mechanism can contact the sliver can and is connected to the translational mechanism 4. The swinging mechanism includes a swinging plate 101 that can contact the sliver can. The outline of the swinging plate 101 is adapted to the sliver can. The swinging plate 101 is connected to a drive device 102 that changes its working state, so that the swinging plate 101 can be in a horizontal or vertical state. The pusher mechanism includes a pusher cylinder 301 and a pusher plate 302.
[0011] The drive device 102 can be a swing cylinder, the cylinder body of which is connected to the translational conveying mechanism 4, and the output end of the swing cylinder is connected to the swing plate 101.
[0012] This invention, through the above structure, uses a drive device to rotate the swing plate 101, raising it to a vertical position. The translational conveying mechanism 4 then moves the swing mechanism and the pusher mechanism to the left, positioning the swing plate 101 to the left of the sliver can. At this point, the swing plate 101 changes its working state to a horizontal position, placing the sliver can between the swing plate 101 and the pusher cylinder 301. Simultaneously, the translational conveying mechanism 4 moves left and right, simultaneously moving the sliver can for conveying. Once the sliver reaches the designated position, the pusher cylinder 301 operates, driving the pusher plate 302 to longitudinally push the sliver can, disengaging it from the conveying device. This structure is simple, stable, and provides controllable conveying of sliver cans with casters, integrating multiple actions into one unit, making it simple and practical.
[0013] Preferred, see Figure 4 The pusher mechanism is equipped with a holding mechanism, which includes a translation cylinder 201 and a clamping plate 202 that can contact the cotton sliver can. The outline of the clamping plate 202 is adapted to the outline of the cotton sliver can. When the swinging plate 101 is in a horizontal state, the translation cylinder 201 drives the clamping plate 202 to extend. The clamping plate 202 and the swinging plate 101 work together to fix the cotton sliver can, so that the cotton sliver can move with the swinging mechanism.
[0014] This utility model, through the above structure, includes a translational conveying mechanism, a pusher mechanism, and a swinging mechanism. The translational conveying mechanism is used for the lateral movement of the sliver can; the pusher mechanism is used for the longitudinal movement of the sliver can and is connected to the translational conveying mechanism; the swinging mechanism can contact the sliver can and is connected to the translational mechanism; the swinging mechanism includes a swinging plate that can contact the sliver can, and the swinging plate is connected to a drive device that changes its working state, enabling the swinging plate to be in a horizontal or vertical state; the pusher mechanism includes a pusher cylinder and a pusher plate that can contact the sliver can. By changing the working state of the swinging plate, the position of the swinging plate relative to the sliver can is easily changed, realizing the conveying of the sliver can. This structure is simple and stable, can controllably convey sliver cans with casters, and integrates multiple actions into one, making it simple and practical.
[0015] Of course, the above description is not intended to limit the present utility model, and the present utility model is not limited to the examples given above. Any changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present utility model should also fall within the protection scope of the present utility model.
Claims
1. A combined doubling and bale holder type conveying device for bales, comprising a translational conveying mechanism, a bale pushing mechanism and a swing-around mechanism, characterized in that The translational conveying mechanism is used for the lateral movement of the sliver can; the pusher mechanism is used for the longitudinal movement of the sliver can, and the pusher mechanism is connected to the translational conveying mechanism; the swing winding mechanism can contact the sliver can, and the swing winding mechanism is connected to the translational conveying mechanism; the swing winding mechanism includes a swing winding plate that can contact the sliver can, and the swing winding plate is connected to a driving device that changes its working state, enabling the swing winding plate to be in a horizontal or vertical state; the pusher mechanism includes a pushing cylinder and a pusher plate that can contact the sliver can.
2. A combined doubling and bale holder conveyor for bale carriers as claimed in claim 1, characterized in that The pusher mechanism is equipped with a holding mechanism, which includes a translation cylinder and a clamping plate that can contact the swab can. The outline of the clamping plate is adapted to the outline of the swab can.
3. A combined doubling and bale holder conveyor for bale carriers as defined in claim 1, characterized in that The outline of the oscillating plate is adapted to the cotton sliver tube.
4. A combined doubling and bale holder conveyor for bale carriers as defined in claim 1, wherein, The driving device is a swing cylinder, the cylinder body of which is connected to the translational conveying mechanism, and the output end of which is connected to the swing plate.