Heat supply regulation and control device
The heating control device driven by the sensing component and the power motor solves the problem of inconvenient heating temperature adjustment, realizes automatic temperature control, and improves the comfort and convenience of heating.
Patent Information
- Application Number
- CN202422518159.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-10-17
AI Technical Summary
Existing heating devices are difficult to adjust the temperature during heating, especially in old buildings where valves need to be adjusted manually multiple times, which makes them inconvenient to use.
A heating control device is designed. The sensing component senses the temperature and drives the power motor to control the deceleration component, ultimately achieving automatic adjustment of the valve component. The device combines the sensing component, the load-bearing component, the fixing component, the deceleration component and the control component to ensure precise temperature control.
It realizes automatic adjustment of heating temperature, reduces the frequency of manual adjustment, and improves the comfort and convenience of heating.
Smart Images

Figure CN223331815U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of control devices, in particular to a heat supply regulating device. Background Art
[0002] With the continuous development of science and technology, people's living standards are also improving. The northern region where people live is cooler than the southern region. When living in the northern region, the temperature in winter will be colder. Therefore, some thermal power plants will be built in recent years. At the same time, floor heating or wall heating equipment will be built in residential buildings, allowing thermal power plants to provide heating for households to achieve the heating effect in winter.
[0003] Existing heating systems usually raise the heat to a higher temperature when providing heating. The higher temperature will cause high indoor temperatures and make people feel uncomfortable. New residential communities are equipped with temperature control devices, but in some old building communities, they need to be controlled separately through valves. However, the stability of the thermal power plant is not inconvenient, resulting in the need for multiple valve adjustments, which leads to inconvenience in use. Utility Model Content
[0004] The disclosed embodiment relates to a heating control device. First, a carrying component is mounted on a valve component of a heating pipeline through a clamping connection of a fixing component, and a sensing component is directly installed at the heating pipeline. The sensing component triggers a signal to a deceleration component, so that the deceleration component of the carrying component controls the control component, and the control component achieves rotational adjustment of the valve component, thereby completing the automatic temperature adjustment of the heating pipeline. The structure of the carrying component and the control component can be installed at the valve component position of any heating pipeline for use.
[0005] According to a first aspect of the present disclosure, a heat supply control device is provided, specifically comprising: a heat supply pipeline; an induction component is installed at the upper end of the heat supply pipeline, a valve component is provided at the bottom of the heat supply pipeline, fixing components are installed at the upper and lower positions of the valve component of the heat supply pipeline, a bearing component is installed at the outer end of the fixing component, a deceleration component is provided at the upper end of the bearing component, a control component is installed on the bearing component so as to rotate with respect to the position of the valve component, a control ring of the control component is configured to consist of two groups of semicircular blocks, the connection of the control ring is fixed by a clamping joint, a magnetic structure is added to the clamping joint, holes are provided on the control ring, and expansion columns are installed on the holes of the control ring.
[0006] In at least some embodiments, the sensing device of the sensing assembly is rotatably installed on the heating pipeline, a sensing needle is provided at the inner end of the installation position of the sensing device, and the sensing needle is arranged as an extended structure. The outer end of the sensing device is connected to a power motor through a wiring harness, and the power motor is installed at the deceleration assembly position.
[0007] In at least some embodiments, the supporting plate of the supporting assembly is configured as a rectangular plate structure, a snap-on strip is provided on the surface of the supporting plate on which the fixing assembly is located, an opening is provided on the supporting plate at a position corresponding to the valve assembly, and the opening is configured as a U-shaped structure facing one side.
[0008] In at least some embodiments, a bottom trough frame is provided at the position of the support plate corresponding to the valve assembly, and three groups of positioning blocks are hingedly mounted on the outer wall of the bottom trough frame, and auxiliary rollers are rotatably mounted on the outer ends of each group of positioning blocks.
[0009] In at least some embodiments, the fixing frame of the fixing assembly is configured as a semicircular structure, the fixing frame is configured as two sets of hingedly mounted structures, reinforcing ribs are installed at the end connection of the fixing frame, an inner groove is provided on the inner wall of the fixing frame, a rubber pad can be installed at the inner groove, and a clamping block is provided at the fixing frame on one side.
[0010] In at least some embodiments, the reduction gear box of the reduction assembly is arranged at the upper end of the bearing assembly, three sets of transmission gears are arranged at the inner end of the reduction gear box, and the outer wall of the bottom transmission gear is in contact with the control assembly.
[0011] In at least some embodiments, the main valve of the valve assembly is installed on the heating pipeline. The main valve is provided with a valve core in the heating pipeline. A guide plate is provided on the valve core. The guide plate is provided as a grid structure. The guide plate is provided in two directions: vertical and horizontal.
[0012] The utility model provides a heat supply control device, which has the following beneficial effects:
[0013] In the utility model, the fixing component is first installed at the upper and lower end positions of the valve component at the heating pipeline, the bearing component is clamped on the outer end of the fixing component, the bearing component is made to correspond to the valve component, and the bearing component is conveniently installed at any valve component position at the heating pipeline, then the positioning block of the bearing component is opened, the control ring is spliced and rotated to be installed on the bearing component, the positioning block is reset to press on the control component, and then the expansion column of the control component is plugged in to make the control component contact with the valve component. After the sensing component is installed in the heating pipeline, it will sense the temperature, and the sensing component will trigger the signal to the power motor, so that the power motor drives the deceleration component, and then the deceleration component will control the control component, so that the control component controls the valve component, and the device automatically controls the valve component, thereby controlling the temperature of the heating pipeline.
[0014] In addition, a snap-on strip is directly provided on the surface of the fixed component corresponding to the carrier plate, so that the snap-on strip of the carrier plate can facilitate the sliding installation of the corresponding fixed component, and an opening is provided at the corresponding valve component of the carrier plate, and the opening is provided in a U-shaped structure opened toward one side, so that the carrier plate can be conveniently installed at the position of the valve component, and a bottom slot frame is provided at the position of the carrier plate corresponding to the valve component, which facilitates the control component to be installed at the position of the bottom slot frame, so that the control component can correspond to the position of the valve component, and the positioning block hingedly installed at the outer end of the bottom slot frame has the function of limiting the installed control component with the auxiliary roller of the positioning block after the positioning block is closed, so that the control component can stably rotate on the carrier component.
[0015] In addition, the fixing frame is set to an installation state of two groups of intersections, so that after the rubber pad is installed at the inner groove of the fixing frame, the fixing frame can be clamped on the heating pipe more stably, and reinforcing ribs are set at the end connection of the fixing frame to increase the overall fixing strength of the fixing component. A clamping block is set at the fixing frame on one side, so that after the fixing component is fixedly installed as a whole, it is convenient for the load-bearing component to be clamped on the fixing component through the clamping block for fixation.
[0016] In addition, the control of the valve assembly requires more precise transmission, so the transmission gears are set to a mutually contacting deceleration state of three groups, so that when the power motor transmits power to the control assembly through the deceleration assembly, a more precise control effect is formed. When in use, the overall control ring will be smaller than the valve wrench of the valve assembly, so the control ring is set to consist of two groups of semicircles connected by a card joint, and a magnetic structure is set at the card joint to make the control ring more stable after splicing through the card joint, and the hole of the control ring is installed with an expansion column so that the expansion column can directly contact the valve assembly handle, so that the valve assembly can be controlled by the expansion column when the control assembly rotates.
[0017] In addition, in order to make the valve assembly's control over the water flow more stable, a guide plate is set on the valve core. The guide plate set as the grid plate is in two states: horizontal and vertical, so that the water flow can pass better from one direction, while the other side will be hindered, making the valve assembly more stable in controlling smaller water flows. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings of the embodiments will be briefly introduced below.
[0019] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.
[0020] In the attached figure:
[0021] Figure 1 Shows a schematic diagram of the overall structure of this application;
[0022] Figure 2 A schematic diagram showing the structure of the sensing component of the present application is shown;
[0023] Figure 3 A schematic diagram showing the bearing assembly and valve core structure of the present application is shown;
[0024] Figure 4 A schematic diagram showing the structure of the deceleration assembly of the present application is shown;
[0025] Figure 5 A schematic diagram showing the structure of the fixing assembly of the present application is shown;
[0026] Figure 6 A schematic diagram showing the control component structure of the present application;
[0027] Reference Signs List
[0028] 1. Heating pipeline;
[0029] 2. Sensing assembly; 201. Sensing device; 202. Power motor; 203. Sensing needle;
[0030] 3. Carrying assembly; 301. Carrying plate; 302. Bottom trough frame; 303. Positioning block; 304. Auxiliary roller;
[0031] 4. Fixing assembly; 401. Clamping block; 402. Fixing bracket; 403. Inner groove;
[0032] 5. Speed reduction assembly; 501. Speed reduction box; 502. Transmission gear;
[0033] 6. Control assembly; 601. Control ring; 602. Extension column; 603. Card connector;
[0034] 7. Valve assembly; 701. Main valve; 702. Valve core; 703. Guide plate. DETAILED DESCRIPTION
[0035] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0036] Example 1: Please refer to Figures 1 to 6 :
[0037] The utility model proposes a heating control device, comprising: a heating pipeline 1; a sensing component 2 is installed at the upper end position of the heating pipeline 1, a valve component 7 is provided at the bottom position of the heating pipeline 1, a fixing component 4 is installed at the upper and lower positions of the valve component 7 of the heating pipeline 1, a bearing component 3 is installed at the outer end position of the fixing component 4, a deceleration component 5 is provided at the upper end position of the bearing component 3, a control component 6 is rotatably installed on the bearing component 3 corresponding to the position of the valve component 7, a control ring 601 of the control component 6 is configured to be composed of two groups of semicircular blocks, the connection of the control ring 601 is fixed by a clamping joint 603, and the clamping joint 603 is fixed at the upper and lower positions of the valve component 7. A magnetic structure is added, and a hole is provided on the control ring 601. An expansion column 602 is installed on the hole of the control ring 601. When in use, the overall control ring 601 will be smaller than the valve wrench of the valve assembly 7, so that the control ring 601 is set to be composed of two semicircular groups connected by the clamping joint 603, and a magnetic structure is set at the clamping joint 603, so that the control ring 601 is more stable after being spliced through the clamping joint 603, and the expansion column 602 is installed in the hole of the control ring 601, so that the expansion column 602 can directly contact the handle of the valve assembly 7, so that the valve assembly 7 can be controlled to rotate through the expansion column 602 when the control assembly 6 rotates.
[0038] In the embodiment of the present disclosure, Figure 2 As shown, the sensing device 201 of the sensing component 2 is rotatably installed on the heating pipeline 1, and a sensing needle 203 is provided at the inner end of the installation position of the sensing device 201. The sensing needle 203 is set to an extended structure, and the outer end of the sensing device 201 is connected to the power motor 202 through a cable. The power motor 202 is installed at the position of the reduction component 5. The sensing device 201 is set as a main temperature sensing device, so that the sensing needle 203 is set to an extended structure, so that the sensing area of the sensing needle 203 can be increased, and the power motor 202 of the sensing device 201 is installed at the reduction component 5, so that the sensing device 201 can quickly transmit the signal to the power motor 202, thereby realizing the stable transmission control effect of the power motor 202 on the reduction component 5.
[0039] In the embodiment of the present disclosure, Figure 3 As shown, the supporting plate 301 of the supporting component 3 is configured as a rectangular plate structure, and a snap-fit strip is provided on the surface of the supporting plate 301 on the fixed component 4. The supporting plate 301 has an opening at the position corresponding to the valve component 7, and the opening is configured as a U-shaped structure facing one side. The snap-fit strip is directly provided on the surface of the fixed component 4 corresponding to the supporting plate 301, so that the snap-fit strip of the supporting plate 301 can be conveniently slidably installed in the corresponding fixed component 4, and an opening is provided at the corresponding valve component 7 of the supporting plate 301, and the opening is configured as a U-shaped structure opening toward one side, so that the supporting plate 301 can be conveniently installed in the position of the valve component 7.
[0040] In the embodiment of the present disclosure, Figure 4 As shown, a bottom slot frame 302 is provided at the position of the supporting plate 301 corresponding to the valve assembly 7, and three groups of positioning blocks 303 are hingedly installed on the outer wall of the bottom slot frame 302. The outer end of each group of positioning blocks 303 is rotatably installed with an auxiliary roller 304. The bottom slot frame 302 is provided at the position of the supporting plate 301 corresponding to the valve assembly 7, which facilitates the control assembly 6 to be installed at the position of the bottom slot frame 302 so that the control assembly 6 can correspond to the position of the valve assembly 7. The positioning block 303 hingedly installed at the outer end of the bottom slot frame 302 has the function of limiting the installed control assembly 6 with the auxiliary roller 304 of the positioning block 303 after the positioning block 303 is closed, so that the control assembly 6 can rotate stably on the supporting assembly 3.
[0041] In the embodiment of the present disclosure, Figure 5 As shown, the fixing frame 402 of the fixing component 4 is set to a semicircular structure, and the fixing frame 402 is set to two groups of hinged installation structures. The end connection of the fixing frame 402 is equipped with a reinforcing rib, and the inner wall of the fixing frame 402 is provided with an inner groove 403, and a rubber pad can be installed at the inner groove 403. A clamping block 401 is provided at the fixing frame 402 at one side. The fixing frame 402 is set to an installation state of two groups of intersections, so that after the rubber pad is installed at the inner groove 403 of the fixing frame 402, the fixing frame 402 can be clamped on the heating pipe 1 more stably, and the reinforcing rib is provided at the end connection of the fixing frame 402 to increase the overall fixing strength of the fixing component 4, and a clamping block 401 is provided at the fixing frame 402 at one side, so that after the fixing component 4 is fixedly installed as a whole, it is convenient for the bearing component 3 to be clamped on the fixing component 4 through the clamping block 401 for fixation.
[0042] In the embodiment of the present disclosure, Figure 4 As shown, the reduction box 501 of the reduction assembly 5 is arranged at the upper end of the bearing assembly 3, and three groups of transmission gears 502 are arranged at the inner end of the reduction box 501. The outer wall of the bottom transmission gear 502 is in contact with the control assembly 6. The control of the valve assembly 7 requires more precise transmission, so the transmission gears 502 are set to a mutual contact deceleration state of three groups, so that when the power motor 202 transmits power to the control assembly 6 through the reduction assembly 5, a more precise control effect is formed.
[0043] In the embodiment of the present disclosure, Figure 3As shown, the main valve 701 of the valve assembly 7 is installed on the heating pipeline 1. The main valve 701 is provided with a valve core 702 in the heating pipeline 1. A guide plate 703 is provided on the valve core 702. The guide plate 703 is set to a grid structure. The guide plate 703 is set to two states, vertical and horizontal. In order to make the valve assembly 7 control the water flow more stably, a guide plate 703 is set on the valve core 702. The guide plate 703 set as a grid is in two states, horizontal and vertical, so that the water flow can pass better from one direction, while the other side will be hindered, so that the valve assembly 7 can control smaller water flows more stably.
[0044] The working principle of this embodiment: during installation, first add a rubber ring to the gap of the fixing component 4, clamp the fixing component 4 at the upper and lower end positions of the valve component 7, then clamp the bearing component 3 against the position of the deceleration component 5 and install it, so that the bearing component 3 is in the position of the valve component 7, then open the positioning block 303 of the bearing component 3, and splice and install the control component 6 against the position of the valve component 7, then rotate the control component 6 and install it on the bearing component 3, then close the positioning block 303, and let the control component 6 rotate stably on the bearing component 3, and the control component 6 is in contact with the deceleration component 5 at the same time, then plug the expansion column 602 of the control component 6, and finally install the induction component 2 on the heating pipeline 1, and install the power motor 202 of the induction component 2 at the deceleration component 5 to complete the overall installation;
[0045] When in use, the sensing component 2 installed in the heating pipeline 1 will preferentially sense the water temperature for triggering, allowing the sensing component 2 to transmit the signal to the power motor 202, allowing the power motor 202 to transmit the deceleration component 5, and the deceleration component 5 finally controls the control component 6 after deceleration, allowing the control component 6 to rotate through the expansion column 602 to control the rotation of the valve component 7, thereby adjusting the temperature control function of the valve component 7 of the heating pipeline 1.
[0046] In this article, there are several points to note:
[0047] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0048] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0049] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. A heating control device, comprising: A heating pipeline (1); an induction component (2) is installed at the upper end of the heating pipeline (1), characterized in that a valve component (7) is provided at the bottom of the heating pipeline (1), a fixing component (4) is installed at the upper and lower positions of the valve component (7) of the heating pipeline (1), a bearing component (3) is installed at the outer end of the fixing component (4), a deceleration component (5) is provided at the upper end of the bearing component (3), a control component (6) is rotatably installed on the bearing component (3) corresponding to the position of the valve component (7), a control ring (601) of the control component (6) is configured to consist of two groups of semicircular blocks, the connection of the control ring (601) is fixed by a clamping joint (603), a magnetic structure is added to the clamping joint (603), a hole is provided on the control ring (601), and an expansion column (602) is installed on the hole of the control ring (601).
2. A heating control device according to claim 1, characterized in that: The sensing device (201) of the sensing assembly (2) is rotatably mounted on the heating pipeline (1); a sensing needle (203) is provided at the inner end of the mounting position of the sensing device (201); the sensing needle (203) is configured as an extended structure; the outer end of the sensing device (201) is connected to a power motor (202) via a cable; the power motor (202) is mounted at the position of the deceleration assembly (5).
3. A heating control device according to claim 1, characterized in that: The bearing plate (301) of the bearing assembly (3) is configured as a rectangular plate structure. A clamping strip is provided on the surface of the bearing plate (301) located on the fixed assembly (4). An opening is provided on the bearing plate (301) at a position corresponding to the valve assembly (7). The opening is configured as a U-shaped structure facing one side.
4. A heating control device according to claim 3, characterized in that: A bottom trough frame (302) is provided at a position of the bearing plate (301) corresponding to the valve assembly (7), and three groups of positioning blocks (303) are hingedly mounted on the outer wall of the bottom trough frame (302), and an auxiliary roller (304) is rotatably mounted on the outer end of each group of positioning blocks (303).
5. A heating control device according to claim 1, characterized in that: The fixing frame (402) of the fixing assembly (4) is configured as a semicircular structure. The fixing frame (402) is configured as two sets of hingedly mounted structures. A reinforcing rib is installed at the end connection of the fixing frame (402). An inner groove (403) is provided on the inner wall of the fixing frame (402). A rubber pad can be installed at the inner groove (403). A clamping block (401) is provided at one side of the fixing frame (402).
6. A heating control device according to claim 1, characterized in that: The reduction box (501) of the reduction assembly (5) is arranged at the upper end of the bearing assembly (3), and three sets of transmission gears (502) are arranged at the inner end of the reduction box (501), and the outer wall of the bottom transmission gear (502) is in contact with the control assembly (6).
7. A heating control device according to claim 1, characterized in that: The main valve (701) of the valve assembly (7) is installed on the heating pipeline (1). The main valve (701) is provided with a valve core (702) in the heating pipeline (1). A guide plate (703) is provided on the valve core (702). The guide plate (703) is provided in a grid plate structure. The guide plate (703) is provided in two types: vertical and horizontal.