Internet of things balancing valve
Patent Information
- Application Number
- CN202522337672.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-04
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-11-04
AI Technical Summary
[0003]传统的物联网平衡阀在使用过程中,大多将物联网平衡阀通过螺栓与两侧的连通管进行对接固定,但传统的装置在使用时,仅利用螺栓辅助物联网平衡阀和连通管固定,从而导致物联网平衡阀受损时,需要对螺栓进行反复持续拧动,进而影响物联网平衡阀的拆装效率,且传统物联网平衡阀内部受到流量冲击时,易对物联网平衡阀和连通管对接处产生冲击,从而易造成物联网平衡阀内部泄漏,进而影响装置的稳定使用
1、该物联网平衡阀,通过侧框与定位筒的配合使用,将物联网平衡阀本体与连通管相对接,之后在物联网平衡阀本体与连通管的侧面滑动放置侧框,再将定位筒的外沿滑动套接在物联网平衡阀本体和连通管以及侧框的内壁中,并利用弹簧一在定位筒的内壁中推动卡块移动,从而利用卡块的侧面与侧框的侧面相紧贴,进而辅助物联网平衡阀本体和连通管便捷对接。
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Figure CN224743015U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of balance valve technology, specifically an Internet of Things (IoT) balance valve. Background Technology
[0002] The IoT balancing valve is a smart valve that integrates IoT technology. Its core function is to dynamically monitor and automatically adjust the flow and pressure of the pipeline system to achieve hydraulic balance.
[0003] In traditional IoT balancing valves, the valve is usually fixed to the connecting pipes on both sides using bolts. However, traditional devices only use bolts to fix the valve and connecting pipes, which means that if the valve is damaged, the bolts need to be tightened repeatedly, thus affecting the efficiency of disassembly and assembly. Furthermore, when the valve is subjected to flow surges, the connection between the valve and the connecting pipe is easily impacted, which can cause internal leakage and affect the stable use of the device. Utility Model Content
[0004] In view of the shortcomings of the prior art, this utility model provides an Internet of Things (IoT) balancing valve to solve the problems mentioned in the background art.
[0005] This utility model provides the following technical solution: an IoT balancing valve, including an IoT balancing valve body, a connecting pipe overlapping the side of the IoT balancing valve body, a side frame slidably connected to the outer edge of the connecting pipe, and the inner wall of the side frame slidably connected to the side of the IoT balancing valve body, a positioning cylinder slidably sleeved on the inner wall of the side frame, and the outer edge of the positioning cylinder slidably sleeved with the inner wall of the IoT balancing valve body and the inner wall of the connecting pipe, a fixing ring fixedly sleeved on the outer edge of the IoT balancing valve body, and a side plate connected to the side of the fixing ring by bolts.
[0006] As a preferred embodiment of this utility model, a spring is fixedly connected to the inner wall of the positioning cylinder, and a locking block is fixedly connected to the end of the spring away from the inner wall of the positioning cylinder. The side of the locking block is slidably connected to the inner wall of the positioning cylinder, the side of the locking block is in close contact with the side of the side frame, and an adjusting plate is fixedly mounted on the side of the locking block.
[0007] As a preferred embodiment of this utility model, there are four side frames, which are evenly distributed on the outer edge of the connecting pipe. An auxiliary plate is fixedly mounted on the side of the side frame near both sides, and a sliding rod is fixedly mounted on the side of the auxiliary plate. A sliding cylinder is slidably sleeved on the outer edge of the sliding rod, and the side of the sliding cylinder is fixedly mounted on the side of the side plate.
[0008] As a preferred embodiment of this utility model, a first magnet plate is fixedly mounted on the side of the slide rod, and a second magnet plate is fixedly mounted on the inner wall of the slide cylinder, with the second magnet plate and the adjacent side of the first magnet plate repelling each other.
[0009] As a preferred embodiment of this utility model, a second spring is fixedly connected to the side of the slide cylinder, and the end of the second spring away from the slide cylinder is fixedly connected to the side of the auxiliary plate.
[0010] As a preferred embodiment of this utility model, the number of positioning cylinders is four, and each of the four positioning cylinders has two locking blocks slidably connected to its inner wall. The two locking blocks are arranged facing each other in the inner wall of the positioning cylinder, and the connection structure between the locking blocks and the inner wall of the positioning cylinder is completely identical.
[0011] Compared with the prior art, the present invention has the following beneficial effects: 1. This IoT balance valve uses the cooperation of the side frame and the positioning cylinder to connect the IoT balance valve body and the connecting pipe. Then, the side frame is slidably placed on the side of the IoT balance valve body and the connecting pipe. The outer edge of the positioning cylinder is then slidably fitted into the inner wall of the IoT balance valve body, the connecting pipe and the side frame. A spring pushes the locking block to move in the inner wall of the positioning cylinder, so that the side of the locking block is tightly attached to the side of the side frame, thereby facilitating the easy connection between the IoT balance valve body and the connecting pipe.
[0012] 2. This IoT balancing valve, through the cooperation of the slide rod and the slide cylinder, when the IoT balancing valve body and the connecting pipe are in operation, the outer edge of the slide rod slides in the inner wall of the slide cylinder, thereby using the slide rod to drive the adjacent sides of magnet plate one and magnet plate two to move closer together, and then using magnet plate one and magnet plate two to repel each other, thereby assisting the stable installation of the IoT balancing valve body and the connecting pipe. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic cross-sectional view of the connecting pipe of this utility model; Figure 3 This utility model Figure 2 Enlarged structural diagram at point A in the middle; Figure 4 This is a side sectional view of the slide bar structure of this utility model; Figure 5 This utility model Figure 4 Enlarged structural diagram at point B; Figure 6 This is a partial disassembly diagram of the present invention; Figure 7 This is a schematic diagram of the card block structure of this utility model.
[0014] In the diagram: 1. IoT balance valve body; 2. Connecting pipe; 3. Side frame; 4. Positioning cylinder; 5. Locking block; 6. Spring 1; 7. Adjusting plate; 8. Auxiliary plate; 9. Slide rod; 10. Slide cylinder; 11. Magnet plate 1; 12. Magnet plate 2; 13. Spring 2; 14. Side plate; 15. Fixing ring. Detailed Implementation
[0015] 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.
[0016] Please see Figures 1-7 An IoT balancing valve includes an IoT balancing valve body 1, a connecting pipe 2 attached to the side of the IoT balancing valve body 1, a side frame 3 slidably connected to the outer edge of the connecting pipe 2, and the inner wall of the side frame 3 slidably connected to the side of the IoT balancing valve body 1. A positioning cylinder 4 is slidably sleeved on the inner wall of the side frame 3, and the outer edge of the positioning cylinder 4 is slidably sleeved on the inner wall of the IoT balancing valve body 1 and the inner wall of the connecting pipe 2. A fixing ring 15 is fixedly sleeved on the outer edge of the IoT balancing valve body 1, and a side plate 14 is bolted to the side of the fixing ring 15. By using the cooperation of the positioning cylinder 4 and the side frame 3, the side frame 3 is slidably placed on the side of the IoT balancing valve body 1 and the connecting pipe 2. Then, the outer edge of the positioning cylinder 4 is slidably sleeved on the inner wall of the side frame 3, thereby using the side of the positioning cylinder 4 and the locking block 5 to assist in the stable connection and erection of the IoT balancing valve body 1 and the connecting pipe 2.
[0017] In a preferred embodiment, a spring 6 is fixedly connected to the inner wall of the positioning cylinder 4, and a locking block 5 is fixedly connected to the end of the spring 6 away from the inner wall of the positioning cylinder 4. The side of the locking block 5 is slidably connected to the inner wall of the positioning cylinder 4, and the side of the locking block 5 is in close contact with the side of the side frame 3. An adjusting plate 7 is fixedly mounted on the side of the locking block 5. Through the cooperation of the spring 6 and the locking block 5, the spring 6 pushes the locking block 5 to move in the inner wall of the positioning cylinder 4, and then the side of the locking block 5 is in close contact with the side of the side frame 3, thereby further ensuring the stable connection and erection of the IoT balance valve body 1 and the connecting pipe 2.
[0018] In a preferred embodiment, there are four side frames 3, which are evenly distributed on the outer edge of the connecting pipe 2. The side frames 3 near the two sides are fixedly fitted with auxiliary plates 8, and the side of the auxiliary plates 8 is fixedly fitted with slide rods 9. The outer edge of the slide rods 9 is slidably sleeved with a slide cylinder 10. The side of the slide cylinder 10 is fixedly fitted with the side of the side plate 14. Through the cooperation of the slide rods 9 and the slide cylinder 10, the outer edge of the slide rods 9 slides in the inner wall of the slide cylinder 10, thereby further assisting in limiting the shock absorption path of the device.
[0019] In a preferred embodiment, a first magnet plate 11 is fixedly mounted on the side of the slide rod 9, and a second magnet plate 12 is fixedly mounted on the inner wall of the slide cylinder 10. The second magnet plate 12 and the adjacent sides of the first magnet plate 11 repel each other. Through the cooperation of the first magnet plate 11 and the second magnet plate 12, the outer edge of the slide rod 9 slides in the inner wall of the slide cylinder 10, thereby using the slide rod 9 to drive the adjacent sides of the first magnet plate 11 and the second magnet plate 12 to move closer together, and then using the adjacent sides of the first magnet plate 11 and the second magnet plate 12 to repel each other, thereby assisting in shock absorption.
[0020] In a preferred embodiment, a second spring 13 is fixedly connected to the side of the slide cylinder 10, and the end of the second spring 13 away from the slide cylinder 10 is fixedly connected to the side of the auxiliary plate 8. Through the cooperation of the second spring 13 and the slide cylinder 10, the second spring 13 pushes the auxiliary plate 8 on the side of the slide cylinder 10, thereby facilitating the slide cylinder 10 to reset after shock absorption.
[0021] In a preferred embodiment, there are four positioning cylinders 4, and each of the four positioning cylinders 4 has two locking blocks 5 slidably connected to its inner wall. The two locking blocks 5 are arranged facing each other in the inner wall of the positioning cylinder 4, and the connection structure between the locking blocks 5 and the inner wall of the positioning cylinder 4 is completely consistent. By adding four positioning cylinders 4, the stability of the connection between the IoT balance valve body 1 and the connecting pipe 2 is further ensured, and the two locking blocks 5 on the inner wall of each positioning cylinder 4 are used to stabilize the device.
[0022] Working principle: When the device is in use, the side frame 3 is slidably placed on the side of the IoT balance valve body 1 and the connecting pipe 2. Then, the outer edge of the positioning cylinder 4 is slidably sleeved in the inner wall of the side frame 3. The side of the positioning cylinder 4 and the locking block 5 are used to assist the IoT balance valve body 1 and the connecting pipe 2 in a stable connection and erection. The spring 6 pushes the locking block 5 to move in the inner wall of the positioning cylinder 4, so that the side of the locking block 5 is in close contact with the side of the side frame 3. When the device is in use, the outer edge of the slide rod 9 slides in the inner wall of the slide cylinder 10. The slide rod 9 drives the adjacent sides of the magnet plate 11 and the magnet plate 2 to move closer together. The adjacent sides of the magnet plate 11 and the magnet plate 2 to repel each other, thereby assisting in shock absorption and facilitating the disassembly of the side plate 14 and the fixing ring 15 by rotating the bolt in the opposite direction.
[0023] 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. An Internet of Things (IoT) balancing valve, comprising an IoT balancing valve body (1), characterized in that: The side of the IoT balance valve body (1) is connected to a connecting pipe (2), and the outer edge of the connecting pipe (2) is slidably connected to a side frame (3). The inner wall of the side frame (3) is slidably connected to the side of the IoT balance valve body (1). The inner wall of the side frame (3) is slidably sleeved with a positioning cylinder (4), and the outer edge of the positioning cylinder (4) is slidably sleeved with the inner wall of the IoT balance valve body (1) and the inner wall of the connecting pipe (2). The outer edge of the IoT balance valve body (1) is fixedly sleeved with a fixing ring (15), and the side of the fixing ring (15) is connected to a side plate (14) by bolts.
2. The IoT balancing valve according to claim 1, characterized in that: A spring (6) is fixedly connected to the inner wall of the positioning cylinder (4), and a locking block (5) is fixedly connected to one end of the spring (6) away from the inner wall of the positioning cylinder (4). The side of the locking block (5) is slidably connected to the inner wall of the positioning cylinder (4). The side of the locking block (5) is in close contact with the side of the side frame (3). An adjusting plate (7) is fixedly mounted on the side of the locking block (5).
3. The IoT balancing valve according to claim 1, characterized in that: The number of side frames (3) is four, and the four side frames (3) are evenly distributed on the outer edge of the connecting pipe (2). The side of the side frame (3) near the two sides is fixedly equipped with an auxiliary plate (8). The side of the auxiliary plate (8) is fixedly equipped with a slide rod (9). The outer edge of the slide rod (9) is slidably sleeved with a slide cylinder (10). The side of the slide cylinder (10) is fixedly assembled with the side of the side plate (14).
4. The IoT balancing valve according to claim 3, characterized in that: The slide bar (9) is fixedly fitted with a first magnet plate (11), and the inner wall of the slide cylinder (10) is fixedly fitted with a second magnet plate (12), and the second magnet plate (12) and the adjacent sides of the first magnet plate (11) are mutually exclusive.
5. The IoT balancing valve according to claim 4, characterized in that: A second spring (13) is fixedly connected to the side of the slide cylinder (10), and the end of the second spring (13) away from the slide cylinder (10) is fixedly connected to the side of the auxiliary plate (8).
6. The IoT balancing valve according to claim 1, characterized in that: The number of positioning cylinders (4) is four, and the inner walls of the four positioning cylinders (4) are slidably connected with two locking blocks (5). The two locking blocks (5) are arranged facing each other in the inner wall of the positioning cylinder (4), and the connection structure between the locking blocks (5) and the inner wall of the positioning cylinder (4) is completely consistent.