Intelligent water distributor with convenient temperature control

By designing the main pipeline, quick-switching components, and wireless electric auxiliary handle device of the intelligent manifold, the problem of slow speed of motor valve handles during inspection in existing technologies has been solved, realizing synchronous control of multiple valves and rapid operation of bolts, thus improving factory inspection efficiency.

CN116877765BActive Publication Date: 2026-05-01ZHEJIANG MINGSHI XINGXIN HVAC TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ZHEJIANG MINGSHI XINGXIN HVAC TECH
Filing Date
2023-08-01
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing motor valves require power control during factory inspection, which affects the inspection speed and makes it difficult to control the simultaneous opening and closing of multiple valves.

Method used

An intelligent water distribution manifold was designed, comprising a main pipe, a quick-switching assembly, a slide rail, and multiple water distribution components. It is remotely controlled via a wireless electric auxiliary control sleeve and the synchronous operation of multiple valves is achieved through linkage and quick-switching components.

Benefits of technology

It improves factory inspection speed, facilitates simultaneous on/off control of multiple valves and disassembly and installation of fastening bolts, and enhances maintenance and installation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a convenient temperature control intelligent water distributor, which comprises a main pipeline, a quick switch assembly, a slide, a plurality of water distribution assemblies and a wireless electric auxiliary handle sleeve device. The plurality of water distribution assemblies are arranged on the top of the main pipeline, and the slide is vertically arranged on the front of the main pipeline. The quick switch assembly is slidably connected to the slide, the water distribution assembly comprises a valve, a fastening bolt, a tooth ring, a valve handle, a rotating tooth ring and the valve. The wireless electric auxiliary handle sleeve device is connected to the valve, and the output end of the wireless electric auxiliary handle sleeve device is detachably connected to the valve handle. The convenient temperature control intelligent water distributor is matched with the main pipeline, the plurality of water distribution assemblies and the wireless electric auxiliary handle sleeve device. The wireless electric auxiliary handle sleeve device can be used to remotely control the opening and closing of the valve handles of the water distributor, thereby improving the efficiency and facilitating the use of the personnel.
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Description

A smart water manifold with convenient temperature control Technical Field

[0001] This invention relates to the field of water manifold equipment technology, specifically to an intelligent water manifold that allows for convenient temperature control. Background Technology

[0002] With the development of technology, people are increasingly dissatisfied with the manual on / off control of traditional manifold valves. Therefore, an automatic valve-operating glove has emerged on the market. Its principle is that when a power is applied to the glove, an internal motor operates the valve handle, thus achieving automated remote control and convenience for users.

[0003] While existing electric valve handle gloves can meet normal user needs, factories often require pre-inspection of the manifold to ensure the proper functioning of each valve. Traditional inspection methods require personnel to manually operate each valve, and simply placing the electric handle gloves on the switches requires electricity. This significantly slows down the inspection process and makes it inconvenient for personnel. Summary of the Invention

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this invention provides a convenient intelligent water manifold for temperature control.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, the present invention provides the following technical solution: a convenient temperature-controlled intelligent water distribution manifold, comprising a main pipe, a quick-switch assembly, a slide rail, and multiple water distribution components. The multiple water distribution components are disposed at the top of the main pipe, and the slide rail is vertically disposed on the front of the main pipe. The quick-switch assembly is slidably fitted onto the slide rail. Each water distribution component includes a valve, a fastening bolt, a toothed ring, a valve handle, a rotating toothed ring, and a valve. The water distribution pipe communicates with the main pipe, and the valve is disposed within the water distribution pipe. The valve handle is linked to the valve, and the rotating toothed ring is disposed between the valve handle and the valve. The fastening bolt is threaded onto the water distribution pipe, and the toothed ring is fitted onto the fastening bolt. The quick-switch assembly is linked to the rotating toothed ring.

[0008] Preferably, the water distribution assembly further includes a linkage assembly. The linkage assembly includes a gear, a rotating rod, and a linkage gear. The linkage gear is pivotally connected to the main pipeline, one end of the rotating rod is coaxially connected to the linkage gear, and the other end is connected to the gear. The gear meshes with a gear ring.

[0009] Preferably, the quick-switch assembly includes a housing, a connecting plate, three telescopic rods, three rotating wheels, and a sleeve. The housing is slidably fitted onto a slide rail, and the three telescopic rods are evenly spaced on the connecting plate. The rotating wheels are pivotally connected to the telescopic rods, and the sleeve is pivotally connected to the rotating wheels.

[0010] Preferably, the quick-switch assembly further includes a handle and a rotating rod. One end of the rotating rod passes through a sleeve and is connected to a telescopic rod, and the handle is connected to the rotating rod.

[0011] Preferably, the quick-switch assembly further includes a toothed chain, a wedge-shaped slide, and a top plate. The toothed chain is fitted onto two rotating wheels, with the central rotating wheel contacting the inner side of the toothed chain. The wedge-shaped slide is disposed within the housing, and a wedge-shaped groove is formed on the sleeve. The wedge-shaped groove corresponds to the wedge-shaped slide, and the top plate is connected to a connecting plate. The top plate is adapted to the top of the housing, and multiple slots are formed on the top plate, with the valve handle adapted to the slots.

[0012] Preferably, the quick-switch assembly further includes a limiting rod. The limiting rod is disposed inside the main pipe and corresponds to the rotating wheel.

[0013] (III) Beneficial Effects

[0014] This invention provides a convenient temperature-controlled intelligent water manifold. It offers the following advantages:

[0015] 1. This convenient temperature-controlled intelligent water manifold works in conjunction with a main pipeline, multiple water distribution components, and a wireless electric auxiliary control device. This allows personnel to remotely control the operation of each valve handle via the wireless electric auxiliary control device, effectively improving efficiency and greatly simplifying operation.

[0016] 2. This convenient temperature-controlled intelligent water manifold, through the coordinated operation of a main pipe, quick-switching assembly, slide rails, and multiple water distribution components, allows personnel to simultaneously control the opening and closing of multiple water distribution valves during spot checks. It also allows for simultaneous disassembly and installation of fastening bolts on each water distribution pipe, significantly improving maintenance and installation speed and enhancing ease of use. Attached Figure Description

[0017] Figure 1 is a first perspective view of the present invention;

[0018] Figure 2 is a second perspective view of the present invention;

[0019] Figure 3 is a third perspective view of the present invention;

[0020] Figure 4 is a fourth perspective view of the present invention;

[0021] Figure 5 is a fifth perspective view of the present invention;

[0022] Figure 6 is a perspective view of the first partial component of the present invention;

[0023] Figure 7 is a perspective view of the second partial component of the present invention;

[0024] Figure 8 is a perspective view of the third partial component of the present invention.

[0025] In the diagram: 1 Main pipe, 2 Linkage assembly, 3 Branch pipe, 4 Branch assembly, 5 Fastening bolt, 6 Gear ring, 7 Gear, 8 Rotating rod, 9 Linkage gear, 10 Housing, 11 Quick switch assembly, 12 Handle, 13 Opening, 14 Valve handle, 15 Rotating gear ring, 16 Valve, 17 Slide, 18 Slot, 19 Rotating rod, 20 Sleeve, 21 Connecting plate, 22 Rotating wheel, 23 Wedge groove, 24 Telescopic rod, 25 Top plate, 26 Gear chain, 27 Wedge slide, 28 Limiting rod, 29 Wireless electric auxiliary grip device. Detailed Implementation

[0026] This invention provides a convenient temperature-controlled intelligent water distribution manifold, as shown in Figures 1-8, comprising a main pipe 1, a quick-switch assembly 11, a slide rail 17, and multiple water distribution components 4. The multiple water distribution components 4 are disposed at the top of the main pipe 1, and the slide rail 17 is vertically disposed on the front of the main pipe 1. The quick-switch assembly 11 is slidably fitted onto the slide rail 17. Each water distribution component 4 includes a valve 16, a fastening bolt 5, a toothed ring 6, a valve handle 14, a rotating toothed ring 15, and the valve 16. The water distribution pipe 3 communicates with the main pipe 1, and the valve 16 is disposed within the water distribution pipe 3. The valve handle 14 is linked to the valve 16, and the rotating toothed ring 15 is disposed between the valve handle 14 and the valve 16. The fastening bolt 5 is threaded onto the water distribution pipe 3, and the toothed ring 6 is sleeved onto the fastening bolt 5. The quick-switch assembly 11 is linked to the rotating toothed ring 15.

[0027] The water distribution assembly 4 also includes a linkage assembly 2. The linkage assembly 2 includes a gear 7, a rotating rod 8, and a linkage gear 9. The linkage gear 9 is pivotally connected to the main pipe 1. One end of the rotating rod 8 is coaxially connected to the linkage gear 9, and the other end is connected to the gear 7. The gear 7 meshes with the gear ring 6.

[0028] The quick-switch assembly 11 includes a housing 10, a connecting plate 21, three telescopic rods 24, three rotating wheels 22, and a sleeve 20. The housing 10 is slidably fitted onto a slide rail 17, and the three telescopic rods 24 are equally spaced on the connecting plate 21. The rotating wheels 22 are pivotally connected to the telescopic rods 24, and the sleeve 20 is pivotally connected to the rotating wheels 22.

[0029] The quick-switch assembly 11 also includes a handle 12 and a rotating rod 19. One end of the rotating rod 19 passes through the sleeve 20 and is connected to the telescopic rod 24, and the handle 12 is connected to the rotating rod 19.

[0030] The quick-switch assembly 11 also includes a toothed chain 26, a wedge-shaped slide 27, and a top plate 25. The toothed chain 26 is fitted onto two rotating wheels 22, with the central rotating wheel 22 contacting the inner side of the toothed chain 26. The wedge-shaped slide 27 is disposed inside the housing 10, and a wedge-shaped groove 23 is formed on the sleeve 20. The wedge-shaped groove 23 corresponds to the wedge-shaped slide 27, and the top plate 25 is connected to the connecting plate 21. The top plate 25 is adapted to the top of the housing 10, and multiple slots 18 are formed on the top plate 25, with the valve handle 14 adapted to the slots 18.

[0031] The quick-switch assembly 11 also includes a limit rod 28. The limit rod 28 is disposed inside the main pipe 1 and corresponds to the rotary wheel 22.

[0032] Working principle: When using, firstly, when multiple water distribution valves need to be controlled simultaneously, the quick switch assembly 11 is moved upward, so that the toothed chain 26 inside the housing 10 meshes with the rotating toothed ring 15 on the valve handle 14. Then, the operator controls the handle 12, causing the wheel 22 to rotate, which drives the toothed chain 26 to move, thereby causing the rotating toothed ring 15 to rotate, which drives the valve handle 14 to close the valve 16. At the same time, the valve handle 14 will rotate and extend into the slot 18. When the operator needs to control each valve 16 individually, the housing 10 can be pulled down directly, which makes it convenient for the operator to control the opening and closing of each valve handle 14.

[0033] When it is necessary to tighten or loosen the fastening bolt 5 at the same time, you can first pull the handle 12 outward. At this time, the wedge groove 23 on the sleeve 20 contacts the wedge slide 27, controlling the connecting plate 21 to move upward. At this time, the handle 12 also moves upward in the opening 13, while the top plate 25 moves laterally, allowing the toothed chain 26 to mesh with the linkage gear 9. Then, turn the handle 12 to drive the linkage gear 9 to rotate, allowing the toothed ring 6 to rotate with the gear 7, thereby enabling the fastening bolt 5 to achieve the function of automatic rotation.

[0034] In summary, this convenient temperature-controlled intelligent water distribution manifold, through the coordinated arrangement of the main pipe 1, quick-switching assembly 11, slide rail 17, and multiple water distribution components 4, allows personnel to simultaneously control the opening and closing of multiple water distribution valves during spot checks. It also allows for the simultaneous disassembly and installation of fastening bolts on each water distribution pipe, significantly improving maintenance and installation speed and simplifying user operation.

Claims

1. A convenient temperature-controlled intelligent water manifold, characterized in that: The system includes a main pipe (1), a quick-switch assembly (11), a slide rail (17), multiple wireless electric auxiliary grip devices (29), and multiple water distribution assemblies (4). The multiple water distribution assemblies (4) are located at the top of the main pipe (1). The slide rail (17) is vertically located on the front of the main pipe (1). The quick-switch assembly (11) is slidably fitted onto the slide rail (17). The water distribution assembly (4) includes a valve (16), a fastening bolt (5), a toothed ring (6), a valve handle (14), a rotating toothed ring (15), and a valve (16). The water distribution pipe (3) is connected to the main pipe (1). The valve... (16) is installed inside the water distribution pipe (3), the valve handle (14) is linked to the valve (16), the rotating gear ring (15) is installed between the valve handle (14) and the valve (16), the fastening bolt (5) is threaded onto the water distribution pipe (3), the gear ring (6) is sleeved on the fastening bolt (5), the quick switch assembly (11) is linked to the rotating gear ring (15), the wireless electric auxiliary handle sleeve device (29) is snapped onto the valve (16), and the output end of the wireless electric auxiliary handle sleeve device (29) is detachably snapped onto the valve handle (14); the water distribution group Component (4) also includes a linkage assembly (2), which includes a gear (7), a rotating rod (8), and a linkage gear (9). The linkage gear (9) is pivotally connected to the main pipe (1). One end of the rotating rod (8) is coaxially connected to the linkage gear (9), and the other end is connected to the gear (7). The gear (7) meshes with a gear ring (6). The quick-switch assembly (11) includes a housing (10), a connecting plate (21), three telescopic rods (24), three rotating wheels (22), and a sleeve (20). The quick-switch assembly (11) also includes a gear chain (26) and a wedge-shaped slide (2). 7) and top plate (25), the toothed chain (26) is sleeved on two rotating wheels (22), the rotating wheel (22) located in the center is in contact with the inner side of the toothed chain (26), the wedge-shaped slide (27) is set in the box (10), the sleeve (20) is provided with a wedge-shaped groove (23), the wedge-shaped groove (23) corresponds to the wedge-shaped slide (27), the top plate (25) is connected to the connecting plate (21), the top plate (25) is adapted to the top of the box (10), the top plate (25) is provided with multiple slots (18), the valve handle (14) is adapted to the slots (18).

2. The intelligent water manifold with convenient temperature control according to claim 1, characterized in that: The housing (10) is slidably fitted on the slide rail (17), and three telescopic rods (24) are equally spaced on the connecting plate (21). The rotating wheel (22) is pivotally connected to the telescopic rod (24), and the sleeve (20) is pivotally connected to the rotating wheel (22).

3. The intelligent water manifold with convenient temperature control according to claim 2, characterized in that: The quick-switch assembly (11) also includes a handle (12) and a rotating rod (19), one end of which passes through a sleeve (20) and is connected to a telescopic rod (24), and the handle (12) is connected to the rotating rod (19).

4. The intelligent water manifold with convenient temperature control according to claim 3, characterized in that: The quick-switch assembly (11) also includes a limiting rod (28), which is disposed inside the main pipe (1) and corresponds to the rotating wheel (22).

Citation Information

Patent Citations

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