Novel rotary nozzle cleaning structure
By incorporating an adjustable tilt mounting base and a top nozzle on the rotating nozzle, the cleaning range of the rotating nozzle is enhanced, eliminating cleaning blind spots in the middle area of irregularly shaped surfaces and achieving better cleaning results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TENGZU TECHNOLOGY (SUZHOU) CO LTD
- Filing Date
- 2025-06-18
- Publication Date
- 2026-05-19
AI Technical Summary
Existing rotary nozzles have problems with insufficient cleaning ability in the middle area or cleaning blind spots when cleaning irregularly shaped surfaces.
A novel rotary nozzle cleaning structure was designed. By setting an adjustable tilting mounting base and a top nozzle on the nozzle body, high-pressure gas is used to increase the cleaning range during rotation, especially the cleaning effect of the middle area.
It effectively solves the problem of cleaning blind spots in the middle area of irregularly shaped surfaces by rotating nozzles, improves cleaning ability and applicability, and can adapt to parts with different shapes to be cleaned.
Smart Images

Figure CN224253712U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mechanical technology, specifically a novel rotary nozzle cleaning structure. Background Technology
[0002] The Typhoon Cleaning System, also known as the Tornado Electrostatic Dust Removal System, is a non-contact surface cleaning method suitable for cleaning flat products. It employs a three-step approach combining static electricity removal, air blowing, and air extraction: an ion generator neutralizes the static electricity in the dust, rotating air blowers pick up the dust, and air extraction removes the dust particles, achieving a surface cleaning effect.
[0003] In actual use, the structure of my original patent 202223230651.9 forms a circular cleaning area as the airflow column rotates. For parts with different shapes, the cleaning ability in the middle area may be weak, or there may be blind spots in cleaning.
[0004] For example, if the product being cleaned has deep holes, pillars, or other irregular shapes, the rotary nozzle may not be able to clean it completely. In order to enhance the cleaning effect of the rotary nozzle on different products with different shapes;
[0005] To address these issues, we propose a novel rotating nozzle cleaning structure. Utility Model Content
[0006] In view of the shortcomings of the prior art, this utility model provides a novel rotary nozzle cleaning structure to solve the problems mentioned in the background art.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a novel rotary nozzle cleaning structure, comprising:
[0008] A rotating nozzle body is used to rotate and eject high-pressure gas; the rotating nozzle body is an existing structure.
[0009] The nozzle body is used to support and connect the structure, and the nozzle body is mounted on the rotating nozzle body;
[0010] Mounting base for connecting structure, the mounting base is located at the top of the nozzle body;
[0011] An inclined surface is positioned at the top of the mounting base:
[0012] The groove is used for connecting the structure. The groove is formed at the center of the top of the nozzle body and is circular in shape.
[0013] A boss, used for fitting and positioning, is provided at the bottom end of the mounting base;
[0014] Two fastening bolts are used to secure the mounting base to the outside of the nozzle body, and the two fastening bolts are disposed through the inside of the mounting base;
[0015] Two threaded holes and two top nozzles are provided for securing the top nozzles. The two threaded holes are located at the top of the mounting base, and the two threaded holes and the two top nozzles are threaded together.
[0016] The air guide hole is used to guide the high-pressure airflow, and the air guide hole is opened at the center of the nozzle body.
[0017] Preferably, the inclined surface can be set to different angles from 0° to 45°, each corresponding to a different cleaning range.
[0018] Preferably, the boss and the groove are arranged in a corresponding manner, and the mounting base has a connecting hole inside, which is connected to the two threaded holes.
[0019] Preferred options also include:
[0020] The angle between the inclined surface on the first mounting base and the horizontal plane is 0°.
[0021] The inclined surface on the second mounting base is inclined to the lower left relative to the horizontal surface, with an included angle of 0° to 45°.
[0022] The inclined surface on the third mounting base is inclined to the lower right relative to the horizontal surface, with an included angle of 0° to 45°.
[0023] The fourth mounting base has two inclined surfaces. The left inclined surface is inclined to the lower left relative to the horizontal surface at an angle of 0° to 45°, and the right inclined surface is inclined to the lower right relative to the horizontal surface at an angle of 0° to 45°. The angles of the two inclined surfaces may not be the same.
[0024] Compared with the prior art, the beneficial effects of this utility model are:
[0025] 1. This novel rotary nozzle cleaning structure allows high-pressure gas to enter the air guide hole and then the mounting base during operation. The gas is then ejected through the top nozzle. As the rotary nozzle rotates during operation, the mounting base and the top nozzle also rotate, increasing the cleaning range of the top of the mounting base and achieving a cleaning effect on the central area. This solves the problem that the original patent may have weak cleaning ability in the central area or blind spots.
[0026] 2. This new type of rotating nozzle cleaning structure, by setting different mounting bases, can correspond to different cleaning ranges, which can increase the practicality of the device. Attached Figure Description
[0027] Figure 1This is a three-dimensional structural schematic diagram of the present utility model;
[0028] Figure 2 This is a schematic diagram of the second installation method of the present utility model;
[0029] Figure 3 This is a schematic diagram of the third installation method of the present utility model;
[0030] Figure 4 This is a schematic diagram of the fourth installation method of the present utility model;
[0031] Figure 5 This is a frontal sectional view of the structure of this utility model.
[0032] In the diagram: 1. Rotating nozzle body; 2. Nozzle body; 3. Mounting base; 4. Fastening bolts; 5. Top nozzle; 6. Inclined surface; 7. Air guide hole. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] Example:
[0035] Please refer to Figures 1-5.
[0036] A novel rotary nozzle cleaning structure includes:
[0037] The rotating nozzle body 1 is used to rotate and spray high-pressure gas. The rotating nozzle body 1 is an existing structure.
[0038] The nozzle body 2 is used to support and connect the structure, and the nozzle body 2 is mounted on the rotating nozzle body 1.
[0039] Mounting base 3 is used for connecting the structure and is set at the top of the nozzle body 2;
[0040] Inclined surface 6 is located at the top of mounting base 3:
[0041] The groove is used for connecting the structure. The groove is opened at the center of the top of the nozzle body 2 and is circular in shape.
[0042] The boss is used for fitting and positioning, and is located at the bottom of the mounting base 3;
[0043] Two fastening bolts 4 are used to fix the mounting base 3 on the outside of the nozzle body, and the two fastening bolts 4 are installed through the inside of the mounting base 3;
[0044] Two threaded holes and two top nozzles 5 are used to fix the top nozzles 5. The two threaded holes are opened at the top of the mounting base 3, and the two threaded holes and the two top nozzles 5 are threaded together.
[0045] Air guide hole 7 is used to guide high-pressure airflow. Air guide hole 7 is located at the center of nozzle body 2.
[0046] Specifically, in use, this device adds a top cleaning structure to the existing patent to clean the middle area of the parts, reducing cleaning blind spots. When the rotating nozzle body 1 is in operation, high-pressure gas will enter the air guide hole 7, then enter the mounting base 3, and finally be sprayed out through the top nozzle 5. Since the rotating nozzle body 1 rotates during operation, the mounting base 3 and the top nozzle 5 will also rotate with it, thereby increasing the cleaning range of the top of the mounting base 3, so as to achieve the effect of cleaning the middle area, solving the problem that the original patent may have weak cleaning ability in the middle area or cleaning blind spots.
[0047] In the embodiment: the inclined surface 6 can be set to different angles from 0° to 45°, each corresponding to a different cleaning range;
[0048] Specifically, the inclined surface 6 can be set at different angles to correspond to different cleaning ranges and can achieve the cleaning effect on parts of different shapes. Users can choose different mounting bases 3 according to the shape of the outer surface of the parts to achieve better cleaning results.
[0049] In the embodiment: the boss and the groove are arranged in a corresponding manner, and the mounting base 3 has a connecting hole inside, which is connected to two threaded holes.
[0050] Specifically, the boss and the groove are set in a corresponding manner to facilitate the splicing of the mounting base 3 and the nozzle body 2. The connecting hole inside the mounting base 3 is used to supply air and guide the airflow. The connecting hole is connected to two threaded holes and can conduct airflow.
[0051] In the embodiment, it also includes:
[0052] The angle between the inclined surface 6 on the first mounting base 3 and the horizontal plane is 0°.
[0053] The inclined surface 6 on the second mounting base 3 is inclined to the lower left relative to the horizontal surface, with an included angle of 0° to 45°.
[0054] The inclined surface 6 on the third mounting base 3 is inclined to the lower right relative to the horizontal surface, with an included angle of 0° to 45°.
[0055] The fourth mounting base 3 is provided with two inclined surfaces 6. The left inclined surface 6 is inclined to the lower left relative to the horizontal surface at an angle of 0° to 45°, and the right inclined surface 6 is inclined to the lower right relative to the horizontal surface at an angle of 0° to 45°. The angles of the two inclined surfaces 6 may not be the same.
[0056] Specifically:
[0057] like Figure 1 As shown, the inclined surface 6 on the mounting base 3 is horizontally aligned with its horizontal plane, and two top nozzles 5 are positioned at the top of the mounting base 3. Figure 1 For example, the top nozzle 5 on the left is installed on the outer side of the top of the mounting base 3, and the top nozzle 5 on the right is installed on the right side of the center of the top of the mounting base 3. This can clean the surface of mechanical parts, reduce blind spots, and increase the range of lateral cleaning.
[0058] like Figure 2 As shown, the mounting base 3 has an inclined surface 6, and the angle between the inclined surface 6 and the horizontal plane ranges from 0° to 45°. Figure 2 For example, the top nozzle 5 on the left is installed on the inclined surface 6, which can blow out a high-pressure airflow that is inclined outward, increasing the outward tilt angle of the airflow. The top nozzle 5 on the right is installed at a position slightly to the right of the top center of the mounting base 3, which can increase the cleaning range of the outward tilt angle, so as to clean the dust particles of mechanical parts within this range.
[0059] like Figure 3 As shown, the mounting base 3 has an inclined surface 6, the angle between the inclined surface 6 and the horizontal plane ranges from 0° to 45°. Figure 3 For example, the top nozzle 5 on the left is installed on the inclined surface 6, which can blow an inward inclined airflow towards the center of the mounting base 3. The top nozzle 5 on the right is installed slightly to the right of the top center of the mounting base 3, which can blow a vertical airflow. The two airflows are staggered, which increases the cleaning range of the inward angle and can better clean dust particles from the outer surface of mechanical parts.
[0060] like Figure 4 As shown, there are two inclined surfaces 6 on the mounting base 3. The angle between the inclined surfaces 6 and the horizontal plane is between 0° and 45°. The two inclined surfaces 6 are arranged on both sides of the center of the mounting base 3. The inclination angles of the left inclined surface 6 and the right inclined surface 6 can be different. This allows the two top nozzles 5 mounted on the inclined surfaces 6 to spray high-pressure airflows at different inclination angles, which can change the cleaning range and thus achieve a better cleaning range for mechanical parts.
[0061] Users can choose one to install according to their needs to achieve the effect of cleaning dust particles from the surface of different mechanical parts.
[0062] In this embodiment: the rotating nozzle body 1 is based on existing patent CN202223230651.9, which was applied for by me. This utility model is an improvement on it, so the structure of the rotating nozzle body 1 will not be explained in detail.
[0063] Working principle: When the rotating nozzle body 1 is in operation, high-pressure gas will enter the air guide hole 7 and the mounting base 3. The high-pressure gas will be sprayed out through the top nozzle 5. The rotating nozzle body 1 will rotate during operation, and the mounting base 3 and the top nozzle 5 will also rotate with it to increase the cleaning range of the top of the mounting base 3, so as to achieve the cleaning effect of the middle area. This solves the problem that the original patent may have weak cleaning ability in the middle area or have cleaning blind spots.
[0064] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A novel rotary nozzle cleaning structure, characterized in that, include: A rotating nozzle body (1) is used to rotate and spray high-pressure gas. The rotating nozzle body (1) is an existing structure. The nozzle body (2) is used to support and connect the structure, and the nozzle body (2) is disposed on the rotating nozzle body (1); Mounting base (3) is used for connecting structure, and the mounting base (3) is set at the top of the nozzle body (2); An inclined surface (6) is set at the top of the mounting base (3); The groove is used for connecting the structure. The groove is opened at the center of the top of the nozzle body (2) and is circular. A boss is used for fitting and positioning, and the boss is set at the bottom end of the mounting base (3); Two fastening bolts (4) are used to fix the mounting base (3) on the outside of the nozzle body, and the two fastening bolts (4) are disposed through the inside of the mounting base (3); Two threaded holes and two top nozzles (5) are provided for fixing the top nozzles (5). The two threaded holes are provided at the top of the mounting base (3) and the two threaded holes and the two top nozzles (5) are threaded together. The air guide hole (7) is used to guide the high-pressure airflow. The air guide hole (7) is located at the center of the nozzle body (2).
2. The novel rotary nozzle cleaning structure according to claim 1, characterized in that: The inclined surface (6) can be set to different angles from 0° to 45°, corresponding to different cleaning ranges.
3. The novel rotary nozzle cleaning structure according to claim 1, characterized in that: The boss and the groove are arranged in a corresponding manner. The mounting base (3) has a connecting hole inside, and the connecting hole is connected to the two threaded holes.
4. The novel rotary nozzle cleaning structure according to claim 2, characterized in that: Also includes: The angle between the inclined surface (6) on the first mounting base (3) and the horizontal plane is 0°; The inclined surface (6) on the second mounting base (3) is inclined to the lower left relative to the horizontal surface, with an included angle of 0° to 45°; The inclined surface (6) on the third mounting base (3) is inclined to the lower right relative to the horizontal surface, with an included angle of 0° to 45°; The fourth mounting base (3) is provided with two inclined surfaces (6). The left inclined surface (6) is inclined to the lower left relative to the horizontal surface with an angle of 0° to 45°. The right inclined surface (6) is inclined to the lower right relative to the horizontal surface with an angle of 0° to 45°. The angles of the two inclined surfaces (6) may be different.