Angle adjusting device for carburetor cleaning agent
By designing an angle adjustment device for carburetor cleaner, and using a two-way screw and an electric telescopic cylinder to adjust the spray angle, the problems of time-consuming and labor-intensive traditional carburetor cleaning and cleaning dead angles are solved, achieving all-round cleaning and efficient cleaning effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional carburetor cleaning methods are time-consuming and labor-intensive, and the fixed spray angle of the cleaning agent makes it difficult to thoroughly clean the complex and varied structure of the carburetor, resulting in carbon deposits and oil residue.
An angle adjustment device for carburetor cleaner was designed. The nozzle is driven by a bidirectional screw and an electric telescopic cylinder to adjust the spray angle. Combined with an electric slide rail, it can achieve all-round fixation and cleaning of the carburetor and is suitable for different models and structures of carburetors.
It achieves all-around cleaning of the carburetor, improving cleaning efficiency and quality, avoiding cleaning dead spots, and is suitable for various carburetor models.
Smart Images

Figure CN224072802U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automotive carburetor cleaning technology, and in particular to an angle adjustment device for carburetor cleaning agents. Background Technology
[0002] The carburetor, as an indispensable key component in internal combustion engines, especially automobile engines, directly affects the engine's operating efficiency, fuel economy, and the quality of exhaust emissions. It is not only a key measure to extend engine life and improve vehicle performance, but also an effective way to reduce harmful gas emissions and protect the atmospheric environment.
[0003] However, traditional carburetor cleaning methods mostly rely on manual operation, which is not only time-consuming and labor-intensive, but also has many limitations. For example, during manual cleaning, the cleaning agent is often applied to the carburetor surface at a fixed spray angle. This single and fixed cleaning mode is difficult to fully adapt to the diverse cleaning needs of carburetors with different structures on the market. Different brands and models of carburetors have complex and varied internal structures, and the positions and shapes of key components such as fuel injectors, throttle valves, and float chambers may differ. Since the spray angle of the cleaning agent cannot be flexibly adjusted, traditional methods often fail to reach some hidden corners and small gaps inside the carburetor. These areas are easily turned into cleaning dead zones, resulting in the residue of contaminants such as carbon deposits and grease. Utility Model Content
[0004] This invention proposes an angle adjustment device for carburetor cleaner, which solves the existing problems.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: an angle adjustment device for carburetor cleaner, comprising a base plate, a roller moving structure connected below the base plate, a fixing mechanism disposed inside the upper part of the base plate, the fixing mechanism being a bidirectional screw rotating structure, the fixing mechanism being used to rotate and move in opposite directions to push and fix the carburetor, and adjustment mechanisms disposed at both ends above the base plate, the adjustment mechanisms being a back-and-forth moving structure, a nozzle being connected to one side of the upper end of the adjustment mechanism, the adjustment mechanism and the nozzle being detachably connected.
[0006] Preferably, the bottom plate has four square frames connected to its four corners, with a foot connected to one end of each square frame and a roller connected to the other end of each square frame. Multiple columns are symmetrically arranged above the square frames, and an upper plate is connected to the top of each column.
[0007] Preferably, the upper plate has a hollow groove inside, the hollow groove has a sliding groove inside, the sliding groove is in contact with the fixing mechanism, and a storage frame is correspondingly provided below the hollow groove.
[0008] Preferably, the fixing mechanism includes a first bidirectional screw and a second bidirectional screw, which are arranged in an alternating vertical arrangement. A first motor is connected to one end of each of the first and second bidirectional screws. Moving rings are connected to the outer ends of the first and second bidirectional screws. A push rod is connected to the upper end of the moving ring, and a push plate is connected to one side of the push rod. A sealing plate is provided on the outside of the push rod, and drainage holes are opened on the outer periphery of the sealing plate.
[0009] Preferably, the adjustment mechanism includes two first electric slide rails. A movable plate is connected above the two first electric slide rails via a slider. A vertical plate is connected above the movable plate, and a rotating plate is connected to one side of the vertical plate.
[0010] Preferably, a round rod is connected to the lower end of the rotating plate, and a second motor is connected to one end of the round rod. A second electric slide rail is connected to one side of the rotating plate, and an electric telescopic cylinder is connected to one side of the second electric slide rail via a slider. The electric telescopic cylinder is connected to a nozzle via screws for telescopic movement.
[0011] The beneficial effects of this utility model are as follows: The device uses a nozzle to connect to a cleaning agent for spray cleaning. By rotating the rotating plate, the electric telescopic cylinder and the nozzle are rotated to adjust the spray angle. The electric telescopic cylinder also drives the nozzle to extend and retract, increasing the cleaning area and achieving comprehensive cleaning of the carburetor, avoiding cleaning dead corners. The all-round cleaning through electric control effectively improves cleaning efficiency and quality. By rotating the first and second bidirectional screws, the moving rings at both ends of the outer end move in opposite directions, pushing the push plate connected above to push and fix the carburetor. It is suitable for cleaning carburetors of different models and structures and has wide applicability. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of this utility model.
[0013] Figure 2 This is a schematic diagram of the base plate of this utility model.
[0014] Figure 3 This is a schematic diagram of the first bidirectional screw of this utility model.
[0015] Figure 4 This is a schematic diagram of the adjustment mechanism of this utility model.
[0016] Numbered in the diagram: 1. Base plate; 101. Frame; 102. Stand; 103. Roller; 104. Column; 105. Top plate; 106. Slide groove; 107. Storage box; 2. Fixing mechanism; 201. First bidirectional screw; 202. Second bidirectional screw; 203. First motor; 204. Moving ring; 205. Push rod; 206. Push plate; 207. Sealing plate; 3. Adjusting mechanism; 301. First electric slide rail; 302. Moving plate; 303. Stand plate; 304. Turning plate; 305. Round rod; 306. Second motor; 307. Second electric slide rail; 308. Electric telescopic cylinder; 4. Nozzle. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0018] Reference Figures 1-4 An angle adjustment device for a carburetor cleaner includes a base plate 1, with a roller moving structure connected to the bottom of the base plate 1. A fixing mechanism 2 is installed inside the top of the base plate 1. The fixing mechanism 2 is a bidirectional screw rotating structure, used to rotate and move in opposite directions to push and fix the carburetor. Adjustment mechanisms 3 are installed at both ends of the top of the base plate 1. The adjustment mechanisms 3 are back-and-forth moving structures. A nozzle 4 is connected to one side of the upper end of the adjustment mechanism 3. The adjustment mechanism 3 and the nozzle 4 are detachably connected. Square frames 101 are connected to the four corners of the bottom of the base plate 1, and a foot 102 is connected to one end of the inside of the square frame 101. The other end of the frame 101 is connected to a roller 103. Multiple columns 104 are symmetrically arranged above the frame 101. A top plate 105 is connected above the columns 104. The top plate 105 has a slot inside. A sliding groove 106 is opened inside the slot. The sliding groove 106 contacts the fixing mechanism 2. A storage frame 107 is set below the slot. The roller 103 is used to move the device to adjust the required working position. Then, the nut is rotated to fix the foot 102 to the ground, so that the device is placed stably. The cleaning agent is collected through the storage frame 107 to prevent the cleaning agent from overflowing after use.
[0019] Reference Figure 3 , Figure 4The fixing mechanism 2 includes a first bidirectional screw 201 and a second bidirectional screw 202, which are arranged in a cross pattern. One end of each of the first bidirectional screws 201 and 202 is connected to a first motor 203. The outer ends of the first bidirectional screws 201 and 202 are connected to moving rings 204. The upper end of the moving rings 204 is connected to a push rod 205, and one side of the push rod 205 is connected to a push plate 206. A sealing plate 207 is provided on the outside of the push rod 205, and a drainage hole is opened on the outer periphery of the sealing plate 207. By rotating the first bidirectional screws 201 and 202, the moving rings 204 at both ends are driven to move towards each other. The movement of the moving rings 204 drives the push rod 205 to move, and the movement of the push rod 205 pushes the push plate 206 to tighten and fix the carburetor.
[0020] Reference Figure 4 The adjustment mechanism 3 includes a first electric slide rail 301, of which two first electric slide rails 301 are provided. A movable plate 302 is connected above the two first electric slide rails 301 via a slider. A vertical plate 303 is connected above the movable plate 302, and a rotating plate 304 is connected to one side of the vertical plate 303. A round rod 305 is connected to the lower end of the rotating plate 304, and a second motor 306 is connected to one end of the round rod 305. A second electric slide rail 307 is connected to one side of the rotating plate 304, and an electric telescopic cylinder 308 is connected to one side of the second electric slide rail 307 via a slider. The electric telescopic cylinder 308 is connected to a nozzle 4 via a screw for extension and retraction. By rotating the rotating plate 304, the electric telescopic cylinder 308 and the nozzle 4 connected to the front end are rotated at an angle to spray and clean the carburetor.
[0021] Working principle: First, when cleaning the carburetor, place the carburetor above the sealing plate 207. Start the first motor 203 to rotate the first bidirectional screw 201 and the second bidirectional screw 202. The rotation of the first bidirectional screw 201 and the second bidirectional screw 202 drives the moving rings 204 at both ends to move towards each other. The movement of the moving rings 204 drives the push rod 205 to move. The movement of the push rod 205 pushes the push plate 206. The two push plates 206 move towards each other to push and fix the carburetor. According to the structure of the carburetor and the cleaning requirements, start the second motor 306 to rotate the rotating plate 304. The rotation of the rotating plate 304 drives the electric telescopic cylinder 308 and the nozzle 4 to rotate and adjust the spray angle. The telescopic electric telescopic cylinder 308 drives the nozzle 4 to move to increase the cleaning direction and clean the carburetor.
[0022] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. An angle adjustment device for carburetor cleaner, comprising a base plate (1), characterized in that, A roller moving structure is connected below the base plate (1), and a fixing mechanism (2) is provided inside the upper part of the base plate (1). The fixing mechanism (2) is a two-way screw rotating structure. The fixing mechanism (2) is used to rotate and move in opposite directions to push and fix the carburetor. An adjustment mechanism (3) is provided at both ends above the base plate (1). The adjustment mechanism (3) is a forward and backward moving structure. A nozzle (4) is connected to one side of the upper end of the adjustment mechanism (3). The adjustment mechanism (3) and the nozzle (4) are detachably connected. The adjustment mechanism (3) includes a first electric slide rail (301), which has two parts. A movable plate (302) is connected above the two first electric slide rails (301) via a slider. A vertical plate (303) is connected above the movable plate (302), and a rotating plate (304) is connected to one side of the vertical plate (303). A round rod (305) is connected inside the lower end of the rotating plate (304), and a second motor (306) is connected to one end of the round rod (305). A second electric slide rail (307) is connected to one side of the rotating plate (304), and an electric telescopic cylinder (308) is connected to one side of the second electric slide rail (307) via a slider. The electric telescopic cylinder (308) extends and retracts via a nozzle (4) connected by a screw.
2. The angle adjustment device for carburetor cleaner according to claim 1, characterized in that, The bottom plate (1) is connected to four corners of a square frame (101), and one end of the square frame (101) is connected to a foot (102), and the other end of the square frame (101) is connected to a roller (103). Multiple columns (104) are symmetrically arranged above the square frame (101), and an upper plate (105) is connected above the multiple columns (104).
3. The angle adjustment device for carburetor cleaner according to claim 2, characterized in that, The upper plate (105) has a hollow groove inside, and a sliding groove (106) is provided inside the hollow groove. The sliding groove (106) is in contact with the fixing mechanism (2), and a storage frame (107) is provided below the hollow groove.
4. The angle adjustment device for carburetor cleaner according to claim 1, characterized in that, The fixing mechanism (2) includes a first bidirectional screw (201) and a second bidirectional screw (202), and the first bidirectional screw (201) and the second bidirectional screw (202) are arranged in an alternating pattern. A first motor (203) is connected to one end of each of the first bidirectional screw (201) and the second bidirectional screw (202). A moving ring (204) is connected to both ends of the first bidirectional screw (201) and the second bidirectional screw (202). A push rod (205) is connected to the upper end of the moving ring (204), and a push plate (206) is connected to one side of the push rod (205). A sealing plate (207) is provided on the outside of the push rod (205), and a drainage hole is opened on the outer periphery of the sealing plate (207).