Central heating equipment convenient to assemble and disassemble
The design of fastening the heating pipe and the base with screws solves the problem of complicated radiator disassembly, enables convenient loading and unloading and cleaning, and improves the maintenance efficiency and heat dissipation effect of the heating equipment.
Patent Information
- Application Number
- CN202423085789.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing radiators have complex structures and require professionals using professional tools to disassemble, which makes scale cleaning time-consuming and labor-intensive, affecting the heating effect.
The two bases are fastened with screws to connect the heating pipe to the base, which is convenient for loading and unloading and cleaning. The heat dissipation area is increased by the design of screws and heat dissipation blocks, and the cleaning port is sealed by a sealing mechanism to facilitate internal cleaning.
It realizes simple and efficient loading and unloading and cleaning of heating equipment, improves heating efficiency and reduces maintenance difficulty and cost.
Smart Images

Figure CN223484329U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of heating equipment technology, and in particular to a centralized heating equipment that is easy to load and unload. Background Technology
[0002] A radiator mainly consists of radiator fins, inlet pipes, outlet pipes, valves, and supports. The radiator fins are the core component, responsible for transferring heat to the indoor air. The inlet and outlet pipes connect the heat source to the radiator, and the circulation of water transfers heat to the radiator. The valves control the water flow and temperature, thereby regulating the indoor temperature.
[0003] However, during prolonged use, impurities in the water will gradually accumulate inside the water pipes and form scale. The accumulation of scale will reduce the heating effect of the radiator, and failure to clean it in time will lead to damage to the radiator.
[0004] Existing radiators have a complex structure and require professionals to use specialized tools to disassemble them in order to clean the scale inside, which is time-consuming and labor-intensive. Therefore, a centralized heating system that is easy to install and remove is needed. Utility Model Content
[0005] This utility model addresses the shortcomings of existing technologies by providing a centralized heating device that uses screws to fasten two bases, thereby connecting the bases and heating pipes, facilitating the installation and removal of the heating equipment. This device is simple, efficient, safe, reliable, and easy to operate.
[0006] This utility model is achieved through the following technical solution, providing a central heating device that is easy to install and remove, including heating pipes and opposing bases. The bases have a hollow structure, and the two bases are respectively connected to an inlet pipe or an outlet pipe. A water passage hole adapted to the heating pipe is opened on one side of the opposing bases, and the heating pipe is connected to the base through the water passage hole. Several corresponding screw holes are opened on one side of the opposing bases, and the axes of the corresponding screw holes are the same, while the threads A inside the corresponding screw holes are in opposite directions. The corresponding screw holes are connected by a screw rod. The two bases are fastened by the screw rod, thereby fixing the base and the heating pipe together, which facilitates the installation and removal of the heating device and the cleaning of the inside of the heating pipe.
[0007] As an optimization, a heat dissipation block A is provided on the outer casing of the heating pipe, and multiple heat dissipation fins A arranged around the heating pipe are fixed on the heat dissipation block A; the separation of the heating pipe and the heat dissipation block A facilitates the cleaning of the inside of the heating equipment.
[0008] As an optimization, the base has cleaning ports at both ends on the base axis, and the flow section of the base and the projection of the cleaning ports on the base axis overlap; the cleaning ports are sealed by a sealing mechanism; the cleaning ports facilitate cleaning of the inside of the base.
[0009] As an optimization, the sealing mechanism includes bolts and sealing rings fitted on the bolts, and the cleaning port is provided with threads B that are compatible with the bolts; the bolts and sealing rings facilitate sealing of the base.
[0010] As an optimization, the screw has a cylindrical structure and is connected to the base through a screw hole; the screw increases the heat dissipation area of the radiator.
[0011] As an optimization, the screw is provided with heat dissipation blocks B and C arranged opposite to each other, and heat dissipation blocks B and C are connected by snap-fit; the heat dissipation area of the radiator is increased by heat dissipation blocks B and C.
[0012] The beneficial effects of this utility model are as follows: the two bases are fastened together by screws, thereby fixing the bases and heating pipes together, which facilitates the installation and removal of the heating equipment and the cleaning of the inside of the heating pipes; the separation of the heating pipes and radiator A facilitates the cleaning of the inside of the heating equipment; the cleaning port is sealed by a sealing mechanism; the cleaning port facilitates the cleaning of the inside of the base; the screws increase the heat dissipation area of the radiator; the radiator B and radiator C increase the heat dissipation area of the radiator. Attached Figure Description
[0013] Figure 1 This is a cross-sectional view of the present invention;
[0014] Figure 2 for Figure 1 A schematic diagram of the structure at point A;
[0015] Figure 3 This is a schematic diagram of the internal structure of the utility model;
[0016] Figure 4 This is a schematic diagram of the structure of heat sink A of this utility model;
[0017] Figure 5 This is a schematic diagram of the structure of heat sink B and heat sink C of this utility model;
[0018] As shown in the figure:
[0019] 1. Base, 2. Heating pipe, 3. Screw, 4. Heat sink A, 5. Sealing mechanism, 6. Heat sink B, 7. Heat sink C, 8. Clip, 9. Inlet pipe, 10. Outlet pipe, 11. Sealing sleeve A, 12. Sealing sleeve B, 401. Heat sink A, 501. Bolt, 502. Sealing ring, 601. Heat sink B, 701. Heat sink C. Detailed Implementation
[0020] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to explain the solution.
[0021] like Figure 1 The present invention discloses a conveniently assembled and disassembled centralized heating device, comprising a heating pipe 2 and opposing bases 1. The bases 1 are hollow structures, and the two bases 1 are respectively connected to an inlet pipe 9 or an outlet pipe 10. A water passage hole adapted to the heating pipe 2 is opened on the opposing side of the two bases 1, and the heating pipe 2 is connected to the base 1 through the water passage hole. A plurality of corresponding screw holes are opened on the opposing side of the two bases 1, and the axes of the corresponding screw holes are the same, and the threads A in the corresponding screw holes are opposite in direction. The corresponding screw holes are connected by a screw rod 3.
[0022] The base 1 is a cylindrical structure and extends horizontally; the heating pipe 2 extends vertically; a sealing sleeve A11 is provided between the heating pipe 2 and the water inlet, and the sealing sleeve A11 is fitted onto the end of the heating pipe 2.
[0023] The two ends of the heating pipe 2 are respectively set in the water passage holes of the two bases 1, and the two ends of the screw 3 are respectively set in the screw holes of the two bases 1; when the screw 3 is rotated, the two bases 1 move towards each other, and the screw 3 fixes the base 1 and the heating pipe 2 together.
[0024] Rotate screw 3 in the opposite direction, and the two bases 1 move in opposite directions, causing the heating pipe 2 to detach from the base 1, and the inside of the heating pipe 2 to be cleaned.
[0025] like Figure 1 , 3 As shown in Figure 4, a heat dissipation block A4 is provided on the outer sleeve of the heating pipe 2, and a plurality of heat dissipation fins A401 arranged around the heating pipe 2 are fixed on the heat dissipation block A4; the heat dissipation fins A401 extend along the axial direction of the heating pipe 2.
[0026] The heat sink A4 is fitted onto the heating pipe 2, and the two ends of the heating pipe 2 are respectively set in the water passage holes of the two bases 1.
[0027] Water flows inside heating pipe 2, and the heat in the water exchanges heat between the inside and outside of the radiator through heating pipe 2, heat dissipation block A4 and heat dissipation fin A401.
[0028] like Figure 1 and 2 The base 1 shown has cleaning ports at both ends on the axis of the base 1, and the flow section of the base 1 and the projection of the cleaning port on the axis of the base 1 overlap; the cleaning ports are sealed and connected by a sealing mechanism 5; the base 1 is a cylindrical structure; the water inlet pipe 9 passes through the sealing mechanism 5 of the lower base 1 and is connected to the lower base 1; the water outlet pipe 10 passes through the sealing mechanism 5 of the upper base 1 and is connected to the upper base 1.
[0029] Open the sealing mechanisms 5 at both ends and clean the scale inside the base 1.
[0030] like Figure 1 and 2The sealing mechanism 5 shown includes a bolt 501 and a sealing ring 502 sleeved on the bolt 501. The cleaning port is provided with a thread B that is compatible with the bolt 501.
[0031] Rotate bolt 501 to open or close sealing mechanism 5.
[0032] like Figure 1 and 2 The screw 3 shown is a cylindrical structure, and the screw 3 is connected to the base 1 through a screw hole; the screw 3 extends in the vertical direction; a sealing sleeve B12 is provided between the screw 3 and the screw hole, and the sealing sleeve B12 is fitted on the end of the screw 3.
[0033] Water flows inside the heating pipe 2, and the heat in the water is exchanged between the inside and outside of the radiator through the screw 3.
[0034] like Figure 1 and 5 The screw 3 shown is provided with heat sinks B6 and C7 arranged opposite to each other, and heat sinks B6 and C7 are connected by snap-fit 8; multiple heat sinks B601 arranged sequentially along the circumference of the screw 3 are fixed on the heat sink B6; multiple heat sinks C701 arranged sequentially along the circumference of the screw 3 are fixed on the heat sink C7.
[0035] Heat sink B6 and heat sink are included on screw 3 and are snapped together by snap-fit 8.
[0036] Water flows inside heating pipe 2, and the heat in the water is exchanged between the inside and outside of the radiator through screw 3, heat dissipation block B6 and heat dissipation block C7.
[0037] In actual production, heat sink A4 is fitted onto heating pipe 2, with both ends of heating pipe 2 respectively set in the water passage holes of the two bases 1, and both ends of screw 3 respectively set in the screw holes of the two bases 1; rotating screw 3 causes the two bases 1 to move towards each other, and screw 3 fixes base 1 and heating pipe 2 together; heat sink B6 and heat sink C7 are included on screw 3 and are snapped together by buckle 8; rotating bolt 501 causes sealing mechanism 5 to seal the cleaning port on base 1.
[0038] Hot water is injected into the lower base 1 through the inlet pipe 9. The hot water flows in the lower base 1 and is transferred to the upper base 1 through the heating pipe 2 and the screw 3. The hot water flows in the heating pipe 2, and the heat in the hot water is exchanged between the inside and outside of the radiator through the heating pipe 2, the heat dissipation block A4 and the heat dissipation fin A401. The hot water flows in the heating pipe 2, and the heat in the hot water is exchanged between the inside and outside of the radiator through the screw 3, the heat dissipation block B6 and the heat dissipation block C7. Finally, the hot water is discharged through the outlet pipe 10 connected to the upper base 1.
[0039] When cleaning the inside of the radiator, disconnect the clips 8 that connect the heat sink B6 and heat sink C7, and the heat sink B6 and heat sink C7 will separate from each other; rotate the screw 3 in the opposite direction, and the two bases 1 will move in opposite directions until the screw 3 and the heating pipe 2 are separated from the base 1; remove the heating pipe 2 from the heat sink A4, and then clean the scale inside the screw 3 and the heating pipe 2; rotate the bolt 501 in the opposite direction to open the sealing mechanism 5 on both sides of the base 1 and clean the scale inside the base 1.
[0040] Of course, the above description is not limited to the examples above. Technical features of this utility model not described can be implemented by or using existing technology, and will not be repeated here. The above embodiments and drawings are only used to illustrate the technical solution of this utility model and are not intended to limit this utility model. This utility model has been described in detail with reference to preferred embodiments. Those skilled in the art should understand that any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model do not depart from the spirit of this utility model and should also fall within the protection scope of the claims of this utility model.
Claims
1. A central heating device that is easy to load and unload, comprising heating pipes (2) and opposing bases (1), wherein the bases (1) are hollow structures, and the two bases (1) are respectively connected to an inlet pipe (9) or an outlet pipe (10); characterized in that: The two bases (1) are provided with water passage holes on one side that are opposite to each other, which are adapted to the heating pipe (2), and the heating pipe (2) is connected to the base (1) through the water passage holes; the two bases (1) are provided with several corresponding screw holes on one side that are opposite to each other, and the axis of the corresponding screw holes is the same, and the direction of the thread A in the corresponding screw holes is opposite; the corresponding screw holes are connected by screw rods (3).
2. The conveniently load-and-unloaded centralized heating equipment according to claim 1, characterized in that: The heating pipe (2) is fitted with a heat dissipation block A (4), and multiple heat dissipation fins A (401) arranged around the heating pipe (2) are fixed on the heat dissipation block A (4).
3. The conveniently load-and-unloaded centralized heating equipment according to claim 1, characterized in that: The base (1) has cleaning ports at both ends on the axis of the base (1), and the flow section of the base (1) and the projection of the cleaning port on the axis of the base (1) overlap; the cleaning ports are sealed by a sealing mechanism (5).
4. The conveniently load-bearing and unloadable centralized heating equipment according to claim 3, characterized in that: The sealing mechanism (5) includes a bolt (501) and a sealing ring (502) sleeved on the bolt (501), and the cleaning port is provided with a thread B that is compatible with the bolt (501).
5. The conveniently load-and-unloaded centralized heating equipment according to claim 1, characterized in that: The screw (3) has a cylindrical structure and is connected to the base (1) through a screw hole.
6. The conveniently load-bearing and unloadable centralized heating equipment according to claim 5, characterized in that: The screw (3) is provided with heat sink B (6) and heat sink C (7) arranged opposite to each other, and the heat sink B (6) and heat sink C (7) are snapped together by a buckle (8).