Efficient household radiator

By installing a protective part in the household radiator to detect the pH value of water and neutralize the high-temperature water under acidic conditions, the problem of erosion of the heat dissipation pipe section by acidic water is solved, and the service life of the radiator is extended.

CN223361136UActive Publication Date: 2025-09-19ZHEJIANG CEYLON ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422292498.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-09-19
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

The heat dissipation pipe section of the existing household radiator is corroded by the acidic high-temperature water due to the change of the pH value of the high-temperature water, resulting in a shortened service life.

Method used

Use protective parts to detect the pH value of water, and close the protective pipe section through the air valve under acidic conditions, guide high-temperature water into the emergency pipe section for neutralization reaction, and use neutralizing parts to neutralize the acidic water to neutral.

Benefits of technology

Effectively prevent the radiator from being corroded by acidic high-temperature water and extend the life of the radiator.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of radiators, and discloses an efficient household radiator, which comprises two radiating machine covers which are distributed at an interval, and an installation space for installing a radiating structure is formed between the two radiating machine covers. The heat dissipation structure can be installed in a stable environment through the arrangement of the heat dissipation machine cover and the installation space, and an effective heat dissipation process is formed through the arrangement of the heat dissipation fins and the heat dissipation pipe sections. The PH value of the high-temperature water entering the heat dissipation pipe section can be detected by arranging a protection pipe section and a detection element in the protection part, and the protection pipe section is closed by arranging an air valve under the acidic condition, so that the high-temperature water flows through an emergency pipe section and is subjected to a neutralization reaction with a neutralization part to obtain neutral water; therefore, corrosion to the heat dissipation structure is reduced, and the purpose of protecting the heat dissipation device is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field related to radiators, in particular to a high-efficiency household radiator. Background Art

[0002] Household radiators are various heaters and radiators used in homes and similar places, which help humans create a more comfortable living and working environment.

[0003] Most existing household radiators have a direct connection between the heat dissipation pipe section and the pipe section connected to the external hot water. However, since the water quality in the external hot water supply pipe section changes with different time periods, the pH value of the supplied high-temperature water changes to varying degrees. When supplied with acidic high-temperature water, the heat dissipation pipe section will be continuously corroded by the acidic high-temperature water, which greatly reduces the life of the entire radiator. In order to solve this problem, an efficient household radiator is proposed. Utility Model Content

[0004] The utility model provides a high-efficiency household radiator, which solves the problems in the above-mentioned background technology.

[0005] The utility model solves the technical problem by adopting the following technical solutions:

[0006] A high-efficiency household radiator comprises two heat dissipation covers arranged at intervals, an installation space for installing a heat dissipation structure is formed between the two heat dissipation covers, the heat dissipation structure comprises a plurality of heat dissipation fins arranged at intervals from left to right, a heat dissipation pipe section is provided between the plurality of heat dissipation fins, a protective member is provided on one side of a water inlet section of the heat dissipation pipe section, the protective member comprises a protective pipe section arranged on a section of the heat dissipation pipe section, the protective pipe section is provided with a detection element for detecting the pH value of the internal water inlet, the protective pipe section is provided with an air valve for opening or closing the protective pipe section on one side of the detection element, the protective pipe section is provided with an emergency pipe section connected to the protective pipe section at both ends of the air valve, the emergency pipe section is provided with a neutralizing member for neutralizing the high-temperature acidic water in the pipe section.

[0007] Preferably, the neutralizing member comprises a reaction sleeve arranged in the emergency pipe section, wherein a reaction chamber communicating with the interior of the emergency pipe section is provided in the reaction sleeve, and a plurality of alkaline filter plates for neutralizing acidic water are sequentially spaced apart in the reaction chamber.

[0008] Preferably, the diameter of the emergency pipe section is smaller than the diameter of the protection pipe section.

[0009] Preferably, the emergency pipe section is U-shaped and is integrally connected with the protection pipe section.

[0010] Preferably, a fixing frame for fixing the heat dissipating fins is provided between each of the heat dissipating fins.

[0011] Preferably, the back of the heat sink cover is provided with a mounting clip for mounting on a wall.

[0012] The advantages and positive effects of the present invention are: the purpose of installing the heat dissipation structure in a stable environment can be achieved through the arrangement of the heat dissipation cover and the installation space, and an effective heat dissipation process can be formed through the arrangement of a plurality of heat dissipation fins and heat dissipation pipe sections, and the pH of the high-temperature water entering the heat dissipation pipe section can be detected through the arrangement of the protective pipe section and the detection element in the protective part, and in the event of acidity, the protective pipe section can be closed through the arrangement of the air valve, so that the high-temperature water flows through the emergency pipe section and the neutralization part to react with neutral water, thereby reducing the erosion of the heat dissipation structure and achieving the purpose of protecting the radiator. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0014] Figure 1 It is a structural diagram of the utility model;

[0015] Figure 2 yes Figure 1 Schematic diagram of the enlarged structure of A;

[0016] The symbols in the accompanying drawings are described as follows:

[0017] 1. Heat sink cover; 11. Mounting clip; 12. Mounting space; 121. Heat sink fins; 1211. Fixing bracket; 122. Heat sink pipe section; 1221. Protective pipe section; 13. Detection element;

[0018] 2. Neutralizing component; 21. Air valve; 22. Emergency pipe section; 23. Reaction sleeve; 231. Reaction chamber; 232. Alkaline filter plate. DETAILED DESCRIPTION

[0019] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.

[0020] The following is a further description of the embodiments of the present invention with reference to the accompanying drawings:

[0021] Reference Figure 1 and Figure 2As shown, household radiators are various types of heaters and radiators used in homes and similar places, creating a more comfortable living and working environment for humans. Most existing household radiators have a direct connection between the heat dissipation pipe section 122 and the pipe section connected to the external hot water. However, since the water quality in the external hot water supply pipe section changes with different time periods, the pH value of the supplied high-temperature water changes to varying degrees. Under the supply of acidic high-temperature water, the heat dissipation pipe section 122 will be continuously corroded by the acidic high-temperature water, resulting in a significant reduction in the life of the entire radiator. In order to solve this problem, To solve the above problems, an efficient household radiator is proposed, comprising two heat dissipation covers 1 spaced apart from each other, an installation space 12 for installing a heat dissipation structure is formed between the two heat dissipation covers 1, the heat dissipation structure comprises a plurality of heat dissipation fins 121 spaced apart from each other from left to right, a heat dissipation pipe section 122 is provided between the plurality of heat dissipation fins 121, a protective member is provided on one side of the water inlet section of the heat dissipation pipe section 122, the protective member comprises a protective pipe section 1221 provided on a section of the heat dissipation pipe section 122, and a protective member is provided on the protective pipe section 1221 for The detection element 13 is used to detect the pH value of the internal water. The protective pipe section 1221 is provided with an air valve 21 for opening or closing the protective pipe section 1221 on one side of the detection element 13. The protective pipe sections 1221 at both ends of the air valve 21 are provided with emergency pipe sections 22 connected to the protective pipe sections 1221. The emergency pipe sections 22 are provided with a neutralizing member 2 for neutralizing the high-temperature acidic water in the pipe section. The arrangement of the heat dissipation cover 1 and the installation space 12 can achieve the purpose of installing the heat dissipation structure in a stable environment. And through the arrangement of a number of heat dissipation fins 121 and heat dissipation pipe sections 122, an effective heat dissipation process is formed, and through the arrangement of the protective pipe section 1221 and the detection element 13 in the protective part, the pH of the high-temperature water entering the heat dissipation pipe section 122 can be detected, and in the case of acidity, the protective pipe section 1221 can be closed by the arrangement of the air valve 21, so that the high-temperature water flows through the emergency pipe section 22 and is neutralized by the neutralization part 2 to react into neutral water, thereby reducing the erosion of the heat dissipation structure and achieving the purpose of protecting the radiator.

[0022] It should be noted that the opening and closing process of the above-mentioned air valve 21 is reacted by the detection result of the detection element 13. Specifically, when the pH value in the detection element 13 is not acidic, the air valve 21 is operated to close the protective pipe section 1221. At this time, the high-temperature water supplied can only enter through the emergency pipe section 22 and then undergo a neutralization reaction with the neutralizing component 2; in other states except the acidic state, the air valve 21 is in an open state.

[0023] Furthermore, the detection element 13 is a pH detector for detecting the pH value of water, and is electrically connected to the air valve 21 .

[0024] It should be explained that the above-mentioned neutralization reaction refers to the neutralization treatment of acidic high-temperature water, which is relatively mature in the existing technology.

[0025] In addition, when the above-mentioned gas valve 21 is in the open state, high-temperature water will flow along the protective pipe section 1221. In order to prevent some high-temperature water from entering the emergency pipe section 22, in this embodiment, the diameter of the emergency pipe section 22 is smaller than the diameter of the protective pipe section 1221; by setting the pipe diameter size, it can be achieved that high-temperature water will flow through the protective pipe section 1221 during normal flow.

[0026] It should also be noted that in order to make the above-mentioned emergency pipe section 22 more stable, in this embodiment, the emergency pipe section 22 is U-shaped and is connected to the protective pipe section 1221 as a whole; the U-shaped setting can ensure that the flow direction of high-temperature water is controllable and orderly.

[0027] Furthermore, the specific structure of the above-mentioned neutralizing component 2 is as follows: the neutralizing component 2 includes a reaction sleeve 23 arranged in the emergency pipe section 22, and a reaction chamber 231 connected to the interior of the emergency pipe section 22 is opened in the reaction sleeve 23, and a plurality of alkaline filter plates 232 for neutralizing the acidic water are distributed in sequence at intervals in the reaction chamber 231; through the arrangement of the above-mentioned reaction sleeve 23, the reaction chamber 231 and the alkaline filter plate 232 in the reaction chamber 231, the acidic characteristics of the high-temperature water passing through the reaction chamber 231 can be neutralized after passing through the alkaline filter plate 232, thereby achieving the purpose of neutralization, avoiding corrosion of the heat dissipation pipe section 122 due to the acidic state, thereby greatly reducing the life of the entire heat dissipation structure.

[0028] It is worth mentioning that in order to maintain the stability between the several heat dissipating fins 121, in this embodiment, a fixing frame 1211 for fixing the heat dissipating fins 121 is provided between the several heat dissipating fins 121; through the setting of the fixing frame 1211, the stability between the several heat dissipating fins 121 can be guaranteed.

[0029] In addition, the above-mentioned heat sink cover 1 is provided to protect the entire heat dissipation structure, and generally indoor radiators are installed on the wall. In order to make it more specific and better installed, in this embodiment, the back of the heat sink cover 1 is provided with a mounting clip 11 for mounting on the wall; by setting the mounting clip 11, the heat sink cover 1 can be installed on the wall in an orderly manner.

[0030] It should be emphasized that the embodiments described in the present invention are illustrative rather than restrictive. Therefore, the present invention is not limited to the embodiments described in the specific implementation methods. Any other implementation methods derived by those skilled in the art based on the technical solution of the present invention also fall within the scope of protection of the present invention.

Claims

1. An efficient household radiator, comprising two heat dissipation covers (1) spaced apart and arranged in a spaced manner, characterized in that: An installation space (12) for installing a heat dissipation structure is formed between the two heat dissipation covers (1), the heat dissipation structure comprises a plurality of heat dissipation fins (121) spaced and arranged from left to right, a heat dissipation pipe section (122) is provided between the plurality of heat dissipation fins (121), a protective member is provided on one side of the water inlet section of the heat dissipation pipe section (122), the protective member comprises a protective pipe section (1221) provided on a section of the heat dissipation pipe section (122), and a protective member is provided on the protective pipe section (1221). A detection element (13) is provided for detecting the pH value of internal influent water; a protective pipe section (1221) is provided on one side of the detection element (13) with an air valve (21) for opening or closing the protective pipe section (1221); emergency pipe sections (22) connected to the protective pipe section (1221) are provided on the protective pipe sections (1221) at both ends of the air valve (21); and a neutralizing element (2) is provided in the emergency pipe section (22) for performing a neutralization reaction on high-temperature acidic water in the pipe section.

2. A high-efficiency household radiator according to claim 1, characterized in that: The neutralizing element (2) comprises a reaction sleeve (23) arranged in the emergency pipe section (22); a reaction chamber (231) communicating with the interior of the emergency pipe section (22) is provided in the reaction sleeve (23); a plurality of alkaline filter plates (232) for neutralizing acidic water are sequentially spaced in the reaction chamber (231).

3. A high-efficiency household radiator according to claim 2, characterized in that: The diameter of the emergency pipe section (22) is smaller than the diameter of the protection pipe section (1221).

4. A high-efficiency household radiator according to claim 2, characterized in that: The emergency pipe section (22) is U-shaped and is integrally connected to the protection pipe section (1221).

5. The high-efficiency household radiator according to claim 1, characterized in that: A fixing frame (1211) for fixing the heat dissipation fins (121) is provided between each of the heat dissipation fins (121).

6. The high-efficiency household radiator according to claim 1, characterized in that: The back of the heat dissipation cover (1) is provided with a mounting buckle (11) for mounting on a wall.