Ecological energy-saving environment-friendly heat supply device
By designing a heating device with a metal protective shell and heat-conducting plate structure, the problems of damage and low heat dissipation efficiency of traditional heating devices in household use have been solved, achieving efficient heat dissipation and convenient drying.
Patent Information
- Application Number
- CN202423293477.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Traditional heating devices are prone to damage in household use, have poor heat dissipation and low heat conduction efficiency, and can easily cause damage and burns when drying clothes.
An eco-friendly, energy-saving, and environmentally friendly heating device was designed, comprising a metal protective shell, a heating mechanism, a perforated mesh, and a heat-conducting plate structure. Through the combination of vents, a fan, and a dustproof mesh, the device achieves heat dissipation through the circulation of hot airflow and utilizes the heat-conducting plate to improve the uniformity of heat transfer.
It improves heat dissipation efficiency, reduces the risk of device damage and burns, provides a convenient drying support position, and improves the needs of home use.
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Figure CN223677861U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to heating device technical field, concretely is an ecological energy -conserving and environment -friendly heating device. BACKGROUND
[0002] Heating is mainly for the warm keeping measure of northern cities. At present, the main measure adopted in China is central heating, that is, in a larger area, using centralized heat source to supply production, life and heating heat to factories and civil buildings in the area. Because it has the advantages of saving fuel and reducing urban pollution, the development speed is very fast.
[0003] In some household heating use scenarios, it is inevitable to place the clothes that are not dried in the heating device for drying, which is easy to cause damage to the heating device, and after long time use of the heating device, dust will accumulate on the outer surface, thereby affecting the heat dissipation effect, and the traditional heating device has the problem of low heat conduction efficiency. In order to solve the use demand of the family, based on this, an ecological energy -conserving and environment -friendly heating device is provided. UTILITY MODEL CONTENT
[0004] The utility model aims at providing an ecological energy -conserving and environment -friendly heating device to solve the problems in the above background art.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: an ecological energy -conserving and environment -friendly heating device, including metal protection shell and heating mechanism, the top of metal protection shell is equipped with a plurality of air holes, the top of metal protection shell is fixedly installed with four installation columns, the top of installation column is movably installed with hollow net, four fastening bolts are movably penetrated in the inside of hollow net, the inside of baffle is fixedly installed in metal protection shell, a plurality of through holes are formed in the inside of baffle, the bottom of both sides of metal protection shell is fixedly installed with air inlet frame, dust screen is movably inserted in the inside of air inlet frame, two fans are movably installed at the bottom of metal protection shell, four foot pads are fixedly installed at the bottom of metal protection shell, the heating mechanism includes column shell, the top and bottom of column shell are fixedly installed with outer heat conduction ring, the inside of front face and back face of column shell is fixedly penetrated and installed with vertical heat conduction plate, the end, away from column shell, of vertical heat conduction plate is fixedly installed with mounting plate, the inside of opposite end of vertical heat conduction plate is equipped with first hollow hole, the both sides of column shell are fixedly penetrated and installed with horizontal heat conduction plate, the inside of opposite end of horizontal heat conduction plate is equipped with second hollow hole, the side of column shell top is communicated with top communication pipe, the side of column shell bottom is communicated with bottom communication pipe, the top of one side of heating mechanism is communicated with inlet connecting pipe, the bottom of one side of heating mechanism is communicated with discharge communication pipe.
[0006] Preferably, the four fastening bolts are movably penetrated through the hollow net and threadedly extended to the inside of the mounting column, and the four mounting columns are evenly distributed in a rectangular shape on the top of the metal protective shell.
[0007] Preferably, the through holes are linearly and evenly distributed in the inside of the partition plate, the positions of the through holes correspond to the positions of the column shells, and the heat supply mechanism is fixed in the inside of the metal protective shell through the mounting plate and the bolts.
[0008] Preferably, the output ends of the two fans are opposite to each other, the air inlet frame is connected with the inside of the metal protective shell, and the air inlet frame and the fan are located at the bottom of the partition plate.
[0009] Preferably, the first hollow hole is located in the inside of the column shell, the second hollow hole is located in the inside of the column shell, the opposite ends of the horizontal heat conduction plate are located on the two sides of the vertical heat conduction plate, and the opposite sides of the horizontal heat conduction plate are fixedly installed.
[0010] Preferably, the column shells are linearly and evenly distributed, the top communication pipe and the bottom communication pipe are linearly and evenly distributed in the inside of the heat supply mechanism, and the bottom communication pipe and the top communication pipe are located in a staggered manner and connected with the opposite sides of the column shells.
[0011] Compared with the prior art, the heat supply device has the advantages that: when the heat supply device is used, the inlet connecting pipe and the outlet communication pipe are connected with the circulating pipeline of the heat supply pipe network, hot water flows through the heat supply mechanism to radiate and dissipate heat, at the same time, the fan is started, air flows into the air inlet frame, is filtered through the interception of the dustproof net, flows along the bottom of the partition plate, is guided through the through holes to contact the column shells, and the hot air flow is guided out through the air permeable holes and the hollow net, so that heat dissipation circulation is formed, the heat dissipation efficiency is improved, and when the water flow flows in the column shells, the heat is transferred through the horizontal heat conduction plate, the vertical heat conduction plate and the outer heat conduction ring, the first hollow hole and the contact surface of the vertical heat conduction plate and the horizontal heat conduction plate with the hot water flow are convenient, the heat conduction efficiency is further improved, the heat is uniformly guided out, the heat radiation efficiency on the environment is improved through the heat dissipation of the metal protective shell, and the heat dissipation efficiency is improved.
[0012] The hollow net and the mounting column are arranged, in the use environment of a family, a user can dry articles through the heat supply device, the hollow net provides a suspended supporting and air permeation effect, a drying placement position is provided, damage caused by direct contact of a traditional drying device with wet articles is reduced, scalding of the user when drying articles is avoided, a drying supporting position is provided, convenience is improved, and use demand is improved. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a front perspective view of the appearance structure of the utility model.
[0014] Figure 2The front view is a schematic view of a sectional structure.
[0015] Figure 3 The right view is a schematic view of a sectional structure.
[0016] Figure 4 The schematic view is a three-dimensional appearance structure of the heat supply mechanism.
[0017] In the figure: 1, metal protective shell; 2, air inlet frame; 3, dust screen; 4, air hole; 5, mounting column; 6, hollow screen; 7, fastening bolt; 8, fan; 9, through hole; 10, partition; 11, foot pad; 12, heat supply mechanism; 1201, column shell; 1202, vertical heat conduction plate; 1203, outer heat conduction ring; 1204, horizontal heat conduction plate; 1205, bottom communication pipe; 1206, top communication pipe; 1207, first hollow hole; 1208, second hollow hole; 13, inlet connecting pipe; 14, discharge communication pipe; 15, mounting plate. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0019] Please refer to Figures 1-4The utility model provides a kind of technical scheme: an ecological energy-saving and environment-friendly heat supply device, including metal protective shell 1 and heat supply mechanism 12, the top of metal protective shell 1 is equipped with several air holes 4, the top of metal protective shell 1 is fixedly installed with four installation columns 5, the top of installation column 5 is movably installed with openwork net 6, four fastening bolts 7 are movably penetrated in the inside of openwork net 6, the inside of baffle 10 is fixedly installed in metal protective shell 1, baffle 10 is equipped with several through holes 9, the bottom of the both sides of metal protective shell 1 is fixedly installed with air inlet frame 2, dust screen 3 is movably inserted in the inside of air inlet frame 2, the bottom of the inside chamber of metal protective shell 1 is movably installed with two fans 8, the bottom of metal protective shell 1 is fixedly installed with four foot pads 11, heat supply mechanism 12 includes column shell 1201, the top and bottom of column shell 1201 are fixedly installed with outer heat conduction ring 1203, the inside of the front and back of column shell 1201 is fixedly penetrated and installed with vertical heat conduction plate 1202, the end away from column shell 1201 of vertical heat conduction plate 1202 is fixedly installed with mounting plate 15, the inside of opposite end of vertical heat conduction plate 1202 is equipped with first openwork hole 1207, the both sides of column shell 1201 are fixedly penetrated and installed with horizontal heat conduction plate 1204, the inside of opposite end of horizontal heat conduction plate 1204 is equipped with second openwork hole 1208, one side of the top of column shell 1201 is communicated with top communication pipe 1206, one side of the bottom of column shell 1201 is communicated with bottom communication pipe 1205, the top of one side of heat supply mechanism 12 is communicated with into connecting pipe 13, the bottom of one side of heat supply mechanism 12 is communicated with discharge communication pipe 14.
[0020] The working principle of the above technical solution is as follows: in use, first, connect the into connecting pipe 13 and the discharge communication pipe 14 to the circulating pipeline of the heat supply pipe network, and the hot water flow radiates heat through the heat supply mechanism 12, while the fan 8 is started, the airflow enters through the air inlet frame 2 and is filtered by the dust screen 3, then the airflow flows along the bottom of the baffle 10, is guided by the through holes 9 and contacts the column shell 1201, and the hot airflow is guided out through the air holes 4 and the openwork net 6, which facilitates the formation of a heat dissipation cycle and improves the efficiency of heat dissipation. Moreover, when the water flow flows in the column shell 1201, it is guided by the horizontal heat conduction plate 1204 and the vertical heat conduction plate 1202 and the outer heat conduction ring 1203, and the first openwork hole 1207 and the second openwork hole 1208 facilitate the contact between the vertical heat conduction plate 1202 and the horizontal heat conduction plate 1204 and the hot water flow, which further improves the efficiency of heat conduction and uniformly guides out the heat, and cooperates with the heat dissipation of the metal protective shell 1 to improve the efficiency of environmental radiation heat.
[0021] In another embodiment, as shown in Figures 1-3 the four fastening bolts 7 movably penetrate the openwork net 6 and threadedly extend into the inside of the installation column 5, and the four installation columns 5 are evenly distributed in a rectangular shape on the top of the metal protective shell 1.
[0022] Through the hollow net 6 and the mounting column 5, in the use environment of the family, the user can dry the articles through the heating device, the hollow net 6 provides a suspended support and ventilation effect, which facilitates to provide a drying placement position, reduces the damage caused by the direct contact of the traditional drying device with the wet articles, and avoids the scalding of the user when drying the articles, thereby providing a drying support position, increasing the convenience, and improving the use demand.
[0023] In another embodiment, as shown in Figures 2-4 The through holes 9 are linearly and uniformly distributed in the inside of the partition plate 10, the positions of the through holes 9 correspond to the positions of the column shell 1201, and the heating mechanism 12 is fixed in the inside of the metal protective shell 1 through the mounting plate 15 and the bolts.
[0024] The through holes 9 guide the airflow to the outside of the column shell 1201, so that the radiant heat of the column shell 1201 can circulate the air, thereby increasing the heat dissipation effect on the air, facilitating the circulation heat dissipation, and the mounting plate 15 can provide a mounting position for the heating mechanism 12 in other positions, can be fixed in the inside of the metal protective shell 1, and can also provide a mounting point for fixing in the required position.
[0025] In another embodiment, as shown in Figures 1-3 The output ends of the two fans 8 are opposite to each other, the air inlet frame 2 is connected to the inside of the metal protective shell 1, and the air inlet frame 2 and the fan 8 are located at the bottom of the partition plate 10.
[0026] The fan 8 blows the airflow filtered by the air inlet frame 2 and the dust screen 3 to the middle, so that the airflow can be lifted by the through holes 9 and contacted with the column shell 1201, thereby increasing the heat dissipation effect of the airflow, and the fan 8 has low power and low power consumption, thereby improving the heat dissipation efficiency without increasing the energy consumption, facilitating to provide the initial heat convection effect, and facilitating to increase the environmental protection heat dissipation effect.
[0027] In another embodiment, as shown in Figures 2-4 The first hollow hole 1207 is located in the inside of the column shell 1201, the second hollow hole 1208 is located in the inside of the column shell 1201, the opposite ends of the horizontal heat conduction plate 1204 are located on both sides of the vertical heat conduction plate 1202, and the opposite sides of the horizontal heat conduction plate 1204 are fixedly installed.
[0028] When the water flow flows in the inside of the column shell 1201, the horizontal heat conduction plate 1204 and the vertical heat conduction plate 1202 and the outer heat conduction ring 1203 have the heat conduction transmission effect, and the first hollow hole 1207 and the second hollow hole 1208 facilitate the contact surface of the vertical heat conduction plate 1202 and the horizontal heat conduction plate 1204 with the hot water flow, thereby improving the heat conduction efficiency.
[0029] In another embodiment, as shown in Figures 2-4As shown, the column shells 1201 are linearly and uniformly distributed, the top communication pipes 1206 and the bottom communication pipes 1205 are linearly and uniformly distributed in the interior of the heat supply mechanism 12, and the bottom communication pipes 1205 and the top communication pipes 1206 are in staggered positions and are communicated at opposite sides of the column shells 1201, respectively.
[0030] When the water flow enters the interior of the heat supply mechanism 12, the water flow enters through the top of the first column shell 1201, flows to the bottom of the column shell 1201, and then enters the interior of the second column shell 1201 through the flow guide of the bottom communication pipe 1205, at this time, the water flow flows upward in the interior of the column shell 1201, and then enters the interior of the third column shell 1201 through the top communication pipe 1206 at the top of the column shell 1201, and the circulation is formed in this way, and finally, the water flow is guided out through the discharge communication pipe 14.
[0031] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An ecological, energy-saving and environment-friendly heating device, comprising a metal protective shell (1) and a heating mechanism (12), characterized in that: The top of the metal protection shell (1) is provided with a plurality of air holes (4), the top of the metal protection shell (1) is fixedly installed with four mounting columns (5), the top of the mounting column (5) is movably installed with a hollow net (6), the inside of the hollow net (6) movably penetrates four fastening bolts (7), the inside of the metal protection shell (1) is fixedly installed with a partition plate (10), a plurality of through holes (9) are formed in the inside of the partition plate (10), the bottom of the metal protection shell (1) is fixedly installed with an air inlet frame (2) on both sides, the inside of the air inlet frame (2) movably inserts a dustproof net (3), the bottom of the inner cavity of the metal protection shell (1) movably installs two fans (8), the bottom of the metal protection shell (1) is fixedly installed with four foot pads (11), the heat supply mechanism (12) comprises a column shell (1201), the top and bottom of the column shell (1201) are fixedly installed with outer heat conduction rings (1203), the inside of the front and back of the column shell (1201) is fixedly penetrated and installed with vertical heat conduction plates (1202), the end, away from the column shell (1201), of the vertical heat conduction plate (1202) is fixedly installed with a mounting plate (15), the inside of the opposite end of the vertical heat conduction plate (1202) is formed with a first hollow hole (1207), the two sides of the column shell (1201) are fixedly penetrated and installed with horizontal heat conduction plates (1204), the inside of the opposite ends of the horizontal heat conduction plate (1204) is formed with a second hollow hole (1208), one side of the top end of the column shell (1201) is communicated with a top communication pipe (1206), one side of the bottom end of the column shell (1201) is communicated with a bottom communication pipe (1205), the top of one side of the heat supply mechanism (12) is communicated with an inlet connecting pipe (13), the bottom of one side of the heat supply mechanism (12) is communicated with an exhaust communication pipe (14).
2. The ecological, energy-saving, and environment-friendly heating device according to claim 1, characterized in that: The four fastening bolts (7) movably penetrate the hollow net (6) and are threadedly extended into the inside of the mounting column (5), and the four mounting columns (5) are evenly distributed in a rectangular shape on the top of the metal protection shell (1).
3. The ecological, energy-saving, and environment-friendly heating device according to claim 1, characterized in that: The through holes (9) are linearly and evenly distributed in the inside of the partition plate (10), the positions of the through holes (9) correspond to the positions of the column shell (1201), and the heat supply mechanism (12) is fixedly installed in the inside of the metal protection shell (1) through the mounting plate (15) and the bolt.
4. The ecological, energy-saving, and environment-friendly heating device according to claim 1, characterized in that: The output ends of the two fans (8) are opposite to each other, the inside of the air inlet frame (2) is communicated with the inside of the metal protection shell (1), and the air inlet frame (2) and the fan (8) are located at the bottom of the partition plate (10).
5. The ecological, energy-saving, and environment-friendly heating device according to claim 1, characterized in that: The first hollow hole (1207) is located in the inside of the column shell (1201), the second hollow hole (1208) is located in the inside of the column shell (1201), the opposite ends of the horizontal heat conduction plate (1204) are located on the two sides of the vertical heat conduction plate (1202), and the opposite sides of the horizontal heat conduction plate (1204) are fixedly installed.
6. The ecological, energy-saving, and environment-friendly heating device according to claim 1, characterized in that: The column shell (1201) is linearly and uniformly distributed, the top communication pipe (1206) and the bottom communication pipe (1205) are linearly and uniformly distributed in the inside of the heat supply mechanism (12), and the bottom communication pipe (1205) and the top communication pipe (1206) are staggered and communicated on opposite sides of the column shell (1201).