Power transfer assembly
By designing the connection structure between the main power board and the auxiliary power board, the problem of the inability to install secondary rotation output in traditional power connectors is solved, achieving flexible position adjustment and efficient operation, which is suitable for the fourth generation of energy-saving and efficient stubble mulching and ridging machines.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 黄立春
- Filing Date
- 2025-05-11
- Publication Date
- 2026-05-29
AI Technical Summary
Traditional power connectors are not suitable for the installation of the secondary rotation output shaft of the fourth-generation energy-saving and efficient stubble-removing and ridging machine, resulting in inconvenient installation and difficulty in position adjustment.
A power adapter assembly was designed, including a main power board and a power auxiliary board, which are connected by connecting bolts. It is equipped with horizontal and vertical adjustment structures to achieve flexible installation and position adjustment of the secondary rotation output borrow shaft.
The power connection component achieves structural rationality and flexibility, and can adapt to the secondary rotation output requirements of the fourth-generation energy-saving and efficient stubble mulching and ridging machine, ensuring that the stubble mulching and loosening machine can complete the operation of one ridge in one forward movement.
Smart Images

Figure CN224290660U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a power connection component, and more particularly to a power transfer assembly for an energy-saving and efficient stubble-removing and ridging machine. Background Technology
[0002] Chinese Patent Publication No. CN 202153829.U discloses an energy-saving and efficient stubble-forming and ridging machine, which is a first-generation product that requires one round trip to form a ridge. With technological advancements, energy-saving and efficient stubble-forming and ridging machines have evolved to the fourth-generation product, which only requires one forward movement to form a ridge and has a high germination rate. The traditional power connection plate used by the tractor to drive the first-generation energy-saving and efficient stubble-forming and ridging machine is completely unsuitable for the installation requirements of the fourth-generation machine's connection structure. The fourth-generation machine incorporates a newly structured secondary rotation output borrowed shaft, rendering the traditional power connection components of the first-generation machine unsuitable for installing this shaft. Utility Model Content
[0003] The purpose of this utility model is to overcome the shortcomings of existing technologies and provide a power transfer assembly for stubble tamping and soil loosening machines that is structurally reasonable, applicable, has a flexible and convenient secondary rotation output borrow shaft installation, and allows for arbitrary adjustment of the secondary rotation output borrow shaft installation position.
[0004] The objective of this utility model can be achieved. This utility model's power adapter assembly includes a power mainboard, a double-ear connecting plate on the power mainboard for connecting to a tractor, a connecting ear plate for connecting to the single-furrow plow shaft, and adjusting screws. The characteristic of this utility model's power adapter assembly for a stubble pruning and soil loosening machine is that the power adapter assembly is formed by the power mainboard being flatly connected to a power auxiliary plate via connecting bolts. The power mainboard has a power auxiliary plate connecting hole on each side of the reinforcing rib of the plow shaft connecting ear plate, symmetrically arranged along the same horizontal axis. The connecting holes are elongated slots, and the two elongated slots and the connecting bolts constitute the horizontal adjustment structure of the power auxiliary plate.
[0005] This utility model relates to a power adapter assembly, wherein a reinforcing rib clearance groove is formed at the center of the upper part of the power auxiliary plate, and a vertical strip-shaped hole is provided on each side of the clearance groove. The two vertical strip-shaped holes are symmetrically positioned and parallel to the center line. The two vertical strip-shaped holes and the connecting bolts constitute the vertical adjustment structure of the power auxiliary plate. A circular bushing is symmetrically welded below each of the two vertical strip-shaped holes. The two circular bushings share the same horizontal axis. A fastening screw for a secondary rotation output borrow shaft is horizontally provided on the bushing. The power auxiliary plate, the two bushings, and the fastening screw constitute the installation structure of the secondary rotation output borrow shaft.
[0006] The present invention relates to a power adapter assembly, wherein the power auxiliary plate has both a horizontal movement trajectory and a vertical movement trajectory on the power main plate, and the two movement trajectories constitute an all-round installation and adjustment structure for the power auxiliary plate.
[0007] This utility model's power adapter assembly differs from existing technologies in that it consists of a main power plate and a power auxiliary plate, which are fitted together and connected by bolts. Two horizontal strip-shaped connecting holes on the main power plate and the connecting bolts constitute the horizontal adjustment structure of the power auxiliary plate. Two vertical strip-shaped elongated holes on the power auxiliary plate and the connecting bolts constitute the vertical adjustment structure of the power auxiliary plate. Symmetrically welded circular bushings are placed below each of the two vertical strip-shaped elongated holes, forming the mounting structure for the secondary rotation output borrow shaft. Through the horizontal and vertical adjustment structures, the power auxiliary plate has both a horizontal and a vertical movement trajectory on the main power plate. These two movement trajectories constitute the omnidirectional installation and adjustment structure of the power auxiliary plate. This stubble mulching and soil loosening machine power adapter assembly has a reasonable structure, simple shape, and light weight. It accomplishes the installation task of connecting the secondary rotation output borrow shaft, which traditional power connectors cannot achieve, thus enabling the energy-saving and efficient stubble mulching and ridging machine to create a ridge in a single forward movement.
[0008] The power transfer assembly for the stubble mulching and soil loosening machine of this utility model will be further described below with reference to the accompanying drawings. The accompanying drawings are only schematic illustrations of the basic structure of this utility model, and therefore only show the structures relevant to this utility model. Attached Figure Description
[0009] Figure 1 This is a schematic diagram of the main structure of the power transfer assembly of the stubble mulching and soil loosening machine of this utility model.
[0010] Figure 2 This is a side view of the power transfer assembly of the stubble mulching and soil loosening machine of this utility model.
[0011] Figure 3 This is a schematic diagram of the main power board in the power transfer assembly of a stubble tamping and soil loosening machine.
[0012] Figure 4 This is a side view of the main power board in the power transfer assembly of a stubble tamping and soil loosening machine.
[0013] Figure 5 This is a rear view schematic diagram of the power mainboard in the power transfer assembly of a stubble tamping and soil loosening machine.
[0014] Figure 6 This is a schematic diagram of the power auxiliary plate in the power transfer assembly of a stubble pruning and soil loosening machine.
[0015] In the diagram: 1 Power main board, 1.1 Double ear connecting plate, 1.2 Plowshare connecting ear plate, 1.3 Adjusting top screw, 1.4 Connecting hole, 1.5 Reinforcing rib, 2 Power auxiliary plate, 2.1 Clearance groove, 2.2 Vertical strip-shaped long hole, 3 Connecting bolt, 4 Shaft sleeve, 5 Fastening top screw. Detailed Implementation
[0016] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 As shown, the power adapter assembly of this utility model includes a power mainboard 1, a double-ear connecting plate 1.1 for connecting to the tractor, a connecting ear plate 1.2 for connecting to the plowshare of a single-furrow plow, and an adjusting screw 1.3. The power adapter assembly is formed by the power mainboard 1 being flatly connected to the power auxiliary plate 2 via connecting bolts 3. The power mainboard 1 has a connecting hole 1.4 for the power auxiliary plate 2 on each side of the reinforcing rib 1.5 of the plowshare connecting ear plate 1.2, symmetrically arranged along the same horizontal axis. The connecting hole 1.4 is a long, narrow hole, and the two long, narrow holes and the connecting bolts 3 constitute the horizontal adjustment structure of the power auxiliary plate 2.
[0017] like Figure 6 As shown, a reinforcing rib 1.5 and a clearance groove 2.1 are formed at the center of the upper part of the power auxiliary plate 2. A vertical strip-shaped hole 2.2 is provided on each side of the clearance groove 2.1. The two vertical strip-shaped holes 2.2 are symmetrically positioned and parallel to the center line. The two vertical strip-shaped holes 2.2 and the connecting bolt 3 constitute the vertical adjustment structure of the power auxiliary plate 2. A circular bushing 4 is symmetrically welded below each of the two vertical strip-shaped holes 2.2. The two circular bushings 4 share the same horizontal axis. A fastening screw 5 for a secondary rotation output borrow shaft is horizontally provided on the bushing 4. The power auxiliary plate 2, the two bushings 4, and the fastening screw 5 constitute the mounting structure for the secondary rotation output borrow shaft.
[0018] In this utility model of a power transfer assembly for a stubble mulching and soil loosening machine, the power auxiliary plate 2 has both a horizontal and a vertical movement trajectory on the main power plate 1. These two movement trajectories constitute the omnidirectional installation and adjustment structure of the power auxiliary plate 2.
[0019] This utility model's power adapter assembly for a stubble pruning and soil loosening machine functions as both a tractor and a single-furrow plow shaft, and a secondary rotation output shaft. The secondary rotation output shaft's position can be adjusted arbitrarily via the power auxiliary plate 2. This secondary rotation output shaft widens the stubble pruning and soil loosening machine, thus achieving the goal of creating a single ridge in a single forward pass.
[0020] The above-described embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Any modifications and improvements made by those skilled in the art to the technical solutions of the present utility model without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.
Claims
1. A power adapter assembly, comprising a power mainboard (1), a double-ear connecting plate (1.1) connected to a tractor on the power mainboard (1), a connecting ear plate (1.2) connected to a single-furrow plowshare, and an adjusting screw (1.3), characterized in that: The power transfer assembly consists of a power main board (1) connected to a power auxiliary plate (2) by connecting bolts (3). The power main board (1) has a power auxiliary plate (2) connection hole (1.4) on each side of the reinforcing rib (1.5) of the plowshare connecting ear plate (1.2) on the same horizontal axis and symmetrically. The connection hole (1.4) is a strip-shaped elongated hole. The two strip-shaped elongated holes and the connecting bolts (3) constitute the horizontal adjustment structure of the power auxiliary plate (2).
2. The power adapter assembly according to claim 1, characterized in that: A reinforcing rib (1.5) clearance groove (2.1) is provided at the upper center of the power auxiliary plate (2). A vertical strip-shaped hole (2.2) is provided on each side of the clearance groove (2.1). The two vertical strip-shaped holes (2.2) are symmetrically positioned and parallel to the center line. The two vertical strip-shaped holes (2.2) and the connecting bolt (3) constitute the vertical adjustment structure of the power auxiliary plate (2). A circular bushing (4) is symmetrically welded below each of the two vertical strip-shaped holes (2.2). The two circular bushings (4) share the same horizontal axis. A fastening screw (5) for a secondary rotation output borrow shaft is horizontally provided on the bushing (4). The power auxiliary plate (2), the two bushings (4) and the fastening screw (5) constitute the installation structure of the secondary rotation output borrow shaft.
3. The power adapter assembly according to claim 1 or 2, characterized in that: The power auxiliary plate (2) has both a horizontal movement trajectory and a vertical movement trajectory on the power main plate (1), and the two movement trajectories constitute the all-round installation and adjustment structure of the power auxiliary plate (2).