Integrated air guide ring

By designing the square plate, air guide ring body, bellows and other structures, combined with the design of trapezoidal blocks and mounting straps, the problem of cumbersome angle adjustment of the air guide ring is solved, tool-free and quick adjustment is achieved, and operational efficiency is improved.

CN223330848UActive Publication Date: 2025-09-12KUNSHAN CHOSHENG MASCH TECH CO LTD
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Patent Information

Application Number
CN202422990753.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-09-12
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Frequent adjustment of the angle of the existing air guide ring requires the use of tools, which is cumbersome to operate, resulting in increased workload and time, and low efficiency.

Method used

An integrated air guide ring is designed, which adopts a square plate, air guide ring body, bellows, mounting frame, mounting belt, trapezoidal block and plastic block. By pulling the mounting belt and trapezoidal block, the angle of the air guide ring can be quickly adjusted without tools.

Benefits of technology

The angle of the air guide ring can be adjusted quickly and conveniently without the need for additional tools, thus improving operating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated air guide ring, which relates to the technical field of air guide rings and comprises a square opening plate, an air guide ring body and a corrugated pipe which is arranged between the square opening plate and the air guide ring body and can bend the air guide ring body in any direction. The air guide ring body is arranged at the top of the corrugated pipe and plays a role in guiding air; the mounting frames are fixedly mounted at the top of the square opening plate, and the number of the mounting frames is four; according to the utility model, if the air guide ring body needs to be adjusted to the left side, a user pulls the lower side of the left side mounting belt forcibly to enable the inclined surfaces of the first trapezoidal block and the second trapezoidal block to abut against each other, pulls the plastic block to enable the contact surface of the two to be smaller, and slips the inclined surfaces under the pulling force; when the number of the first trapezoidal blocks pulled to the bottom is larger, the inclination angle of the air guide ring body is adjusted to an ideal angle, then pulling of the bottom of the mounting belt is stopped, at the moment, the left side of the corrugated pipe is compressed and bent, the air guide ring body inclines leftwards, and the adjusting mode is convenient and rapid and does not need extra tools.
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Description

Technical Field

[0001] The utility model relates to the technical field of air guide rings, in particular to an integrated air guide ring. Background Art

[0002] An integrated air guide is a device used to guide airflow. It is a single-piece structure with few or no joints. It is typically ring-shaped and is placed around fans, vents, or other airflow-generating devices to optimize the airflow path.

[0003] The air guide ring is hinged to the mounting bracket. To adjust the angle, loosen or tighten the fixing bolts, manually rotate the air guide ring to the desired angle, and then retighten the bolts to secure it. Operators can use a wrench or other tool to loosen the nuts on the air guide ring body, rotate the air guide ring as needed, and tighten the nuts again to secure the air guide ring at the new angle.

[0004] However, the above operation process is relatively cumbersome, and each time the angle is adjusted, a tool (such as a wrench) needs to be used to loosen and tighten the bolts. This will increase the operator's workload and operation time when the angle of the air guide ring needs to be adjusted frequently. For example, in a test site where ventilation requirements often change, the angle of the air guide ring needs to be adjusted multiple times according to the requirements of different experiments. This operation method will appear inefficient. Utility Model Content

[0005] The purpose of the present invention is to provide an integrated air guide ring to solve the problems raised in the above background technology.

[0006] In order to solve the above technical problems, the utility model provides an integrated air guide ring, including a square mouth plate, an air guide ring body, and a bellows, which is arranged between the square mouth plate and the air guide ring body, so that the air guide ring body can be bent in any direction; the air guide ring body is arranged on the top of the bellows and has a guiding effect on the wind; the mounting frame is fixedly installed on the top of the square mouth plate, and the number is set to four; the mounting belt is fixedly installed on the edge position of the air guide ring body in a cross shape with the center of the circle of the air guide ring body as the center position; the first trapezoidal block is equidistantly linearly installed on one side of the mounting belt; the plastic block is fixedly installed on the mounting frame; the second trapezoidal block is fixedly installed on the side opposite to the first trapezoidal block.

[0007] Furthermore, a pull block is fixedly installed on the back-facing side of the plastic block, and the cross section of the pull block is fixedly set to a T-shaped structure.

[0008] Furthermore, the cross sections of the first trapezoidal block and the second trapezoidal block are both trapezoidal structures, and the inclined surface of the first trapezoidal block corresponds to the inclined surface of the second trapezoidal block.

[0009] Furthermore, a through opening is provided on the installation frame, and a side of the installation belt away from the air guide ring body extends to the outside of the installation frame through the through opening.

[0010] Furthermore, the plastic block is made of polyamide.

[0011] Furthermore, a plurality of hexagonal bolts are threadedly connected to the square plate, and the hexagonal bolts are evenly distributed at the four corners of the square plate.

[0012] Furthermore, the four edges of the square plate are all provided with bent edges.

[0013] Furthermore, two symmetrical limiting blocks are fixedly mounted on the inner wall of the installation frame, and one side of the limiting blocks abuts against a side of the plastic block close to the first trapezoidal block.

[0014] Compared with the prior art, the beneficial effects of the present invention are:

[0015] 1. In this utility model, to adjust the air guide ring body to the left, the user pulls hard on the lower side of the left mounting strap, causing the first trapezoidal block to abut against the inclined surface of the second trapezoidal block. Pulling the plastic block reduces the contact area between the two. Under the pulling force, the inclined surfaces of the two slide, causing the first trapezoidal block to slide to the bottom of the second trapezoidal block. The greater the adjustment angle, the more first trapezoidal blocks are pulled to the bottom. After adjusting the inclination angle of the air guide ring body to the ideal angle, stop pulling the bottom of the mounting strap. At this time, the left side of the bellows is compressed and bent, and the air guide ring body tilts to the left. This adjustment method is convenient and quick, and does not require additional tools.

[0016] 2. In the present invention, the setting of the pull block provides a convenient fulcrum for operating the integrated air guide ring. Since its cross-section is a T-shaped structure, the user can more accurately control the position of the second trapezoidal block by pulling the T-shaped pull block. Pulling the T-shaped pull block outward can disengage the first trapezoidal block from the second trapezoidal block, and the bellows can be better reset. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 It is a top view of the overall structure of the utility model;

[0019] Figure 3 This is a schematic diagram of the connection structure between the mounting belt and the first trapezoidal block in the present invention;

[0020] Figure 4 This is a schematic diagram of the connection structure between the plastic block and the limiting block in the present utility model;

[0021] Figure 5 for Figure 1 A magnified view of the structure at point A.

[0022] In the figure: 1. Square plate; 2. Bellows; 3. Air guide ring body; 4. Mounting frame; 5. Mounting belt; 6. First trapezoidal block; 7. Plastic block; 8. Second trapezoidal block; 9. Pull block; 10. Hexagonal bolt; 11. Bending edge; 12. Through port; 13. Limit block. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figure 1-Figure 5 , the utility model provides a technical solution:

[0025] See Figure 1-Figure 5 As shown, an integrated air guide ring includes a square plate 1, an air guide ring body 3, and a bellows 2, which is arranged between the square plate 1 and the air guide ring body 3, so that the air guide ring body 3 can be bent in any direction; the air guide ring body 3 is arranged on the top of the bellows 2 and has a guiding effect on the wind; the mounting frame 4 is fixedly mounted on the top of the square plate 1, and the number is set to four; the mounting belt 5 is fixedly mounted on the edge position of the air guide ring body 3 in a cross shape with the center of the circle of the air guide ring body 3 as the center position; the first trapezoidal block 6 is equidistantly linearly mounted on one side of the mounting belt 5; the plastic block 7 is fixedly mounted on the mounting frame 4; the second trapezoidal block 8 is fixedly mounted on the side opposite to the first trapezoidal block 6.

[0026] It should be noted that the air guide ring body 3 is fixedly mounted on the square plate 1 through the bellows 2 and the whole is integrated.

[0027] If you want to adjust the air guide ring body 3 to the left, the user needs to pull the lower side of the left mounting belt 5 with a certain force, so that the inclined surface of the first trapezoidal block 6 abuts against the inclined surface of the second trapezoidal block 8, and pull the plastic block 7 outward, so that the contact surface between the first trapezoidal block 6 and the second trapezoidal block 8 becomes smaller. Under the pulling force of the lower side of the mounting belt 5, the inclined surface of the first trapezoidal block 6 and the inclined surface of the second trapezoidal block 8 slip, and the first trapezoidal block 6 slides to the bottom of the second trapezoidal block 8. If the inclination needs to be adjusted larger, the more first trapezoidal blocks 6 are pulled to the bottom of the second trapezoidal block 8. According to the need to adjust the inclination angle of the air guide ring body 3 to the ideal angle, you can stop pulling the bottom of the mounting belt 5. At this time, the left side of the bellows 2 is compressed and bent, and the air guide ring body 3 tilts to the left. The above method of adjusting the air guide ring body 3 is relatively convenient and quick, and the air guide ring body 3 can be adjusted to the ideal angle direction without the use of additional tools.

[0028] If one wants to adjust the angle of the air guide ring body 3 to the diagonal direction of the mounting frame 4 , one only needs to pull the two adjacent mounting belts 5 on the left and right sides in the diagonal direction to the appropriate position.

[0029] Under normal circumstances, since the contact area between the inclined surface of the first trapezoidal block 6 and the inclined surface of the second trapezoidal block 8 is relatively large, the mounting belt 5 or the air guide ring body 3 is not easily displaced downward when touched by the outside world.

[0030] See Figure 1 A pull block 9 is fixedly installed on the side facing away from the plastic block 7, and the cross section of the pull block 9 is fixedly set to a T-shaped structure.

[0031] The setting of the pull block 9 provides a convenient fulcrum for operating the integrated air guide ring. Since its cross-section is a T-shaped structure, the user can more accurately control the position of the second trapezoidal block 8 by pulling the T-shaped pull block 9. Pulling the T-shaped pull block 9 outward can disengage the first trapezoidal block 6 and the second trapezoidal block 8 from each other, and the bellows 2 can be better reset.

[0032] See Figure 1 The cross sections of the first trapezoidal block 6 and the second trapezoidal block 8 are both trapezoidal structures, and the inclined surface of the first trapezoidal block 6 corresponds to the inclined surface of the second trapezoidal block 8.

[0033] When the mounting belt 5 is pulled, the mounting belt 5 drives the first trapezoidal block 6 to be pulled downward so that the inclined surface of the mounting belt 5 slides downward along the inclined surface of the second trapezoidal block 8. After the mounting belt 5 slides over the second trapezoidal block 8, the plane of the mounting belt 5 is offset against the plane of the second trapezoidal block 8, which can play a limiting role, causing the bellows 2 to bend, and the air guide ring body 3 to tilt in a certain direction, thereby playing a better role in direction angle adjustment.

[0034] See Figure 1A through opening 12 is provided on the mounting frame 4 , and a side of the mounting belt 5 away from the air guide ring body 3 extends to the outside of the mounting frame 4 through the through opening 12 .

[0035] The existence of the through-hole 12 and the ability of the mounting belt 5 to extend to the outside of the mounting frame 4 through the through-hole 12 greatly facilitate the angle adjustment of the air guide ring. The operator can easily pull the mounting belt 5 to a suitable position by grabbing the mounting belt 5 outside the mounting frame 4.

[0036] See Figure 1 , the material of the plastic block 7 is polyamide.

[0037] Polyamide also possesses a certain degree of toughness and elasticity. When the plastic block 7 is subjected to a certain degree of bending or localized pressure, it can undergo a certain degree of elastic deformation and quickly return to its original shape after the pressure is released. Because the plastic block 7 may be subjected to deforming forces during use, its excellent elastic recovery ability can prevent permanent damage caused by a single deformation, thereby extending its service life.

[0038] See Figure 1 A plurality of hexagonal bolts 10 are threadedly connected to the square plate 1 , and the hexagonal bolts 10 are evenly distributed at the four corners of the square plate 1 .

[0039] The hexagonal bolts 10 are evenly distributed at the four corners of the square plate 1, which can provide uniform fixing force for the integrated air guide ring. During the installation process, such evenly distributed bolts can firmly fix the air guide ring to the corresponding equipment or installation position. For example, when the air guide ring is installed at the air outlet of the ventilation duct or heat dissipation equipment, the hexagonal bolts 10 at the four corners can prevent the air guide ring from tilting or shaking when it is subjected to external forces such as air flow impact and equipment vibration, thereby ensuring the stable position of the air guide ring and ensuring its effective guidance of the airflow.

[0040] See Figure 1 The four edges of the square plate 1 are all provided with bent edges 11.

[0041] The bent edges 11 on the four sides of the square plate 1 effectively enhance the structural stability of the edges. During the use of the integrated air guide ring, the edges are often more susceptible to external forces, such as collisions during installation, airflow shock during operation, or shaking caused by equipment vibration. The bent edges 11 act like a reinforcement frame to the edges, changing the shape of the material to enable the edges to withstand greater external forces and reduce the possibility of deformation or damage.

[0042] See Figure 1 Two symmetrical limit blocks 13 are fixedly installed on the inner wall of the mounting frame 4 , and one side of the limit block 13 abuts against the side of the plastic block 7 close to the first trapezoidal block 6 .

[0043] The limiting block 13 can limit and prevent the plastic block 7 from bending toward the first trapezoidal block 6, resulting in the second trapezoidal block 8 limiting the first trapezoidal block 6 to be unstable.

[0044] Working principle: If the air guide ring body 3 is to be adjusted to the left direction, the user needs to pull the lower side of the left mounting belt 5 with a certain force, and the inclined surface of the first trapezoidal block 6 abuts against the inclined surface of the second trapezoidal block 8, pulling the plastic block 7 outward, so that the contact area between the first trapezoidal block 6 and the second trapezoidal block 8 becomes smaller. Under the pulling force of the lower side of the mounting belt 5, the inclined surface of the first trapezoidal block 6 and the inclined surface of the second trapezoidal block 8 slip, and the first trapezoidal block 6 slides to the bottom of the second trapezoidal block 8. If the greater the inclination adjustment needs to be, the more the first trapezoidal block 6 is pulled to the bottom of the second trapezoidal block 8, and the pulling of the bottom of the mounting belt 5 can be stopped according to the need to adjust the inclination angle of the air guide ring body 3 to the ideal angle. At this time, the left side of the bellows 2 is compressed and bent, and the air guide ring body 3 tilts to the left. The above method of adjusting the air guide ring body 3 is relatively convenient and quick, and the air guide ring body 3 can be adjusted to the ideal angle direction without the use of additional tools.

[0045] If one wants to adjust the angle of the air guide ring body 3 to the diagonal direction of the mounting frame 4 , one only needs to pull the two adjacent mounting belts 5 on the left and right sides in the diagonal direction to the appropriate position.

[0046] Under normal circumstances, since the contact area between the inclined surface of the first trapezoidal block 6 and the inclined surface of the second trapezoidal block 8 is relatively large, the mounting belt 5 or the air guide ring body 3 is not easily displaced downward when touched by the outside world.

[0047] The setting of the pull block 9 provides a convenient fulcrum for operating the integrated air guide ring. Since its cross-section is a T-shaped structure, the user can more accurately control the position of the second trapezoidal block 8 by pulling the T-shaped pull block 9. Pulling the T-shaped pull block 9 outward can disengage the first trapezoidal block 6 and the second trapezoidal block 8 from offsetting each other, and the bellows 2 can be better reset.

Claims

1. An integrated air guide ring, comprising a square plate (1) and an air guide ring body (3), characterized in that: The bellows (2) is arranged between the square plate (1) and the air guide ring body (3), and can enable the air guide ring body (3) to be bent in any direction; The air guide ring body (3) is arranged on the top of the corrugated pipe (2) and has a guiding effect on the wind; The mounting frame (4) is fixedly mounted on the top of the square plate (1), and the number is set to four; The mounting belt (5) is fixedly mounted on the edge of the air guide ring body (3) in a cross shape with the center of the air guide ring body (3) as the center position; A first trapezoidal block (6) is linearly mounted at equal distances on one side of the mounting belt (5); A plastic block (7) is fixedly mounted on the mounting frame (4); The second trapezoidal block (8) is fixedly mounted on a side opposite to the first trapezoidal block (6).

2. The integrated air guide ring according to claim 1, characterized in that: A pull block (9) is fixedly mounted on the back-facing side of the plastic block (7), and the cross section of the pull block (9) is fixedly arranged in a T-shaped structure.

3. The integrated air guide ring according to claim 2, characterized in that: The cross sections of the first trapezoidal block (6) and the second trapezoidal block (8) are both trapezoidal structures, and the inclined surface of the first trapezoidal block (6) corresponds to the inclined surface of the second trapezoidal block (8).

4. The integrated air guide ring according to claim 3, characterized in that: The installation frame (4) is provided with a through opening (12), and the side of the installation belt (5) away from the air guide ring body (3) extends to the outside of the installation frame (4) through the through opening (12).

5. The integrated air guide ring according to claim 4, characterized in that: The material of the plastic block (7) is polyamide.

6. The integrated air guide ring according to claim 1, characterized in that: A plurality of hexagonal bolts (10) are threadedly connected to the square plate (1), and the hexagonal bolts (10) are evenly distributed at the four corners of the square plate (1).

7. The integrated air guide ring according to claim 6, characterized in that: The four edges of the square plate (1) are all provided with bent edges (11).

8. The integrated air guide ring according to claim 7, characterized in that: Two symmetrical limiting blocks (13) are fixedly mounted on the inner wall of the installation frame (4), and one side of the limiting blocks (13) abuts against a side of the plastic block (7) close to the first trapezoidal block (6).