Drip irrigation belt recycling machine

By designing a small drip irrigation tape recycling machine, which adopts a structure of vertical plate, slide rail, slider and support rod, the automatic winding and convenient unloading of drip irrigation tape is realized, which solves the problems of large size, complex structure and difficult unloading in the existing technology, improves the operating efficiency and reduces the cost.

CN121247559APending Publication Date: 2026-01-02HEILONGJIANG INST OF PASTURAGE MECHANISATION
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Patent Information

Application Number
CN202511608337.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

Existing drip irrigation tape recycling machines are large in size and complex in structure, difficult to bundle and unload, and labor-intensive, making traditional methods inefficient.

Method used

A small drip irrigation tape recycling machine was designed, which adopts a structure of vertical plate, slide rail, slider and support rod. The slider and spiral groove cooperate to achieve uniform winding of drip irrigation tape, and the support rod is formed into a tapered cylinder to facilitate unloading. Combined with the tractor power transmission system, automatic picking and unloading are realized.

Benefits of technology

It achieves uniform winding and convenient unloading of drip irrigation tape, reduces labor intensity, improves operating efficiency, and has a simple structure and low cost.

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Abstract

A drip irrigation tape recycling machine is composed of a universal joint transmission shaft, a belt pulley I, a bearing seat I, a speed reducer, a belt pulley II, a triangular adhesive tape, a belt pulley III, a shaft I, a vertical plate, a machine frame, a bearing seat II, a sliding block, a sliding way, a sliding mechanism, a side plate I welding part, a nut, a shaft II and a side plate II. The whole machine is hung behind a tractor, power of the tractor is transmitted to a belt pulley I through a universal joint transmission shaft and a speed reducer to drive a shaft I and a shaft II to rotate, the machine is provided with a sliding mechanism to evenly wind drip irrigation belts on a supporting rod, and a welding structure of a side plate I is convenient for winding the drip irrigation belts into bundles and unloading the bundles.
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Description

Technical Field

[0001] This invention relates to a device for winding ropes or flexible tubular materials into bundles. It is particularly suitable for agricultural production, such as winding straw ropes or old drip irrigation tape in farmland. Background Technology

[0002] Currently, in agricultural production, it is often necessary to wind straw ropes, waste drip irrigation tape from farmland, or other soft tubular materials into cylindrical bundles and tie them up for easy storage, transportation, or use. The traditional method is to pick up the drip irrigation tape manually or by machine. The manual method is labor-intensive and inconvenient for winding the drip irrigation tape into bundles. The existing machines used for picking up the tape have disadvantages such as large size, complex structure, and difficulty in unloading the drip irrigation tape bundles. Therefore, it is necessary to design a new type of drip irrigation tape recycling machine that can facilitate bundling, make it easy to unload the drip irrigation tape bundles, and has a small size and simple structure. Summary of the Invention

[0003] To overcome the shortcomings of existing drip irrigation tape recycling machines, this invention provides a novel drip irrigation tape recycling machine. This machine is small in size, simple in structure, and low in manufacturing cost. The drip irrigation tape bundles are wound evenly, and the wound tape bundles are easy to unload from the machine. Moreover, during the unloading process, the tape bundles are not easily loosened, thus maintaining the original shape of the tape bundles to the greatest extent, creating extremely convenient conditions for future use.

[0004] The technical solution adopted by this invention to solve its technical problem is as follows: the upright plate is welded to the frame, the slide rail is fixed to the upper end of the upright plate, the sliding mechanism is installed on the slide rail, the slider is fixed to the bottom of the sliding mechanism, and a spiral groove is machined on a certain distance of shaft I. The groove cooperates with the slider, so that the slider moves left and right as shaft I rotates; six support rods form a tapered cylindrical shape. One end of the support rod is welded to side plate I, and the other end is inserted into the round hole on side plate II. Side plate II is welded to shaft II. Side plate I is welded to the shoulder on shaft II and the nut at one end of shaft II to achieve axial positioning and fix it to shaft II. Because the tapered cylindrical shape formed by the support rods and the cylindrical shape formed by the six support rods have a certain axial elasticity, the drip irrigation tape bundle wrapped on the support rods is easy to unload and is not easy to scatter.

[0005] The beneficial effects of this invention are: a spiral groove is machined along a certain distance of shaft I, and the slider at the bottom of the sliding mechanism cooperates with the spiral groove. As shaft I rotates, the slider moves left and right, achieving a swinging effect. This cooperation mechanism is small in size and simple in structure. Six support rods are welded to the side plate I in a tapered cylindrical shape, which makes it easy to unload the drip irrigation tape bundle and prevents the drip irrigation tape bundle from scattering. Attached Figure Description

[0006] The embodiments of the present invention will be further described below with reference to the accompanying drawings.

[0007] Appendix Figure 1 A schematic diagram of the entire device of the present invention is shown.

[0008] Appendix Figure 2 A schematic diagram of the welding of side plate I of the present invention is shown.

[0009] Appendix Figure 3 A schematic diagram of side plate II of the present invention is shown.

[0010] Appendix Figure 4 A schematic diagram of the slider of the present invention is shown.

[0011] Appendix Figure 5 A schematic diagram of shaft I of the present invention is shown. In the diagram: 1. Universal joint drive shaft, 2. Pulley I, 3. Bearing housing I, 4. Reducer, 5. Pulley II, 6. V-belt, 7. Pulley III, 8. Shaft I, 9. Vertical plate, 10. Frame, 11. Drip irrigation tape, 12. Bearing housing II, 13. Slider, 14. Slide rail, 15. Sliding mechanism, 16. Welded side plate I, 17. Nut, 18. Shaft II, 19. Side plate II, 20. Support rod, 21. Side plate I, 22. Handle. Detailed Implementation

[0012] The purpose of this invention is achieved as follows: A drip irrigation tape recycling machine, comprising a universal joint drive shaft, pulley I, bearing seat I, reducer, pulley II, V-belt, pulley III, shaft I, upright plate, frame, bearing seat II, slider, slide rail, sliding mechanism, welded side plate I, nut, shaft II, and side plate II; the entire machine is suspended behind a tractor, the tractor's power take-off shaft is connected to the universal joint drive shaft, and the tractor's power is transmitted to pulley I via the reducer, thereby driving shaft I and shaft II to rotate; a spiral groove is machined on a section of shaft I, and the slider is fixed to the bottom of the sliding mechanism, the slider engaging with the spiral groove on shaft I, and the slider moves left and right as shaft I rotates. The slider moves, causing the sliding mechanism to swing left and right. The sliding mechanism drives the drip irrigation tape, so that the drip irrigation tape can be evenly wrapped around the support rod. Side plate II is welded to shaft II. Side plate II has six round holes. The six support rods form a tapered cylinder. One end of the support rod is welded to side plate I, and the other end of the support rod is inserted into the hole on side plate II. Side plate I is welded to the shaft II and fixed to the shaft II by the shoulder on the shaft II and the nut at one end of the shaft II. After the drip irrigation tape is wrapped into a bundle by the support rod, the nut on the shaft II is unscrewed, the handle is held, and side plate I and the drip irrigation tape bundle are removed from the shaft II together. After placing it on the ground, the handle is pulled to separate side plate I from the drip irrigation tape bundle. This realizes the functions of picking up, bundling and unloading drip irrigation tape.

Claims

1. A drip irrigation tape recycling machine, comprising a universal joint drive shaft, pulley I, bearing seat I, reducer, pulley II, V-belt, pulley III, shaft I, upright plate, frame, bearing seat II, slider, slide rail, sliding mechanism, welded side plate I, nut, shaft II, and side plate II; characterized in that the whole machine is suspended behind a tractor, the tractor's power is transmitted to pulley I through the universal joint drive shaft and reducer, driving shaft I and shaft II to rotate, the machine is provided with a sliding mechanism to evenly wind the drip irrigation tape onto the support rod; the winding device formed by the welded combination of side plate II, support rod, and side plate I facilitates winding the drip irrigation tape into bundles and unloading the bundles.

2. The drip irrigation tape recycling machine according to claim 1, characterized in that: The sliding mechanism has a spiral groove machined at a certain distance on the shaft I. The slider at the bottom of the sliding mechanism cooperates with the spiral groove on the shaft I. The slider moves left and right as the shaft I rotates, thereby driving the sliding mechanism to swing left and right, so that the drip irrigation tape is evenly wrapped around the support rod.

3. The drip irrigation tape recycling machine according to claim 1, characterized in that: The side plate I is welded together, and the side plate II is welded onto the shaft II. The side plate II has six round holes, and six support rods form a tapered cylindrical shape. One end of the support rod is welded to the side plate I, and the other end of the support rod is inserted into the hole on the side plate II. The side plate I is welded together and fixed to the shaft II by the shoulder on the shaft II and the nut at one end of the shaft II. Because the cylindrical shape formed by the six support rods has a tapered shape and a certain degree of elasticity in the axial direction, the drip irrigation tape bundle can be easily unloaded from the side plate I.