A radiator that is easy to clean
By installing a curved pipe filter with a filter screen between the radiator inlet pipe and the main body, and using mounting hardware for quick removal, the problem of difficult cleaning of traditional radiator filters is solved, achieving convenient filter cleaning and filter screen protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YONGKANG HUANDI COOKWARE CO LTD
- Filing Date
- 2025-06-20
- Publication Date
- 2026-07-14
AI Technical Summary
Traditional radiator filters are difficult to remove and inconvenient to clean.
A curved pipe filter with a filter screen is installed between the water inlet pipe and the radiator body. It can be quickly removed through the installation parts. The settling chamber of the curved structure reduces the water flow speed, allowing large particles of impurities to settle, protecting the filter screen and making it easy to clean.
It enables quick removal and cleaning of the filter, facilitates the discharge of impurities, extends the service life of the filter screen, and reduces the damage to the filter screen caused by the impact of water flow.
Smart Images

Figure CN224499187U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of radiator technology, specifically to a radiator that is easy to clean. Background Technology
[0002] As a key component of the heating system, radiators transfer heat to the indoor environment through heat conduction and convection mechanisms. Their performance directly affects heating efficiency and equipment lifespan. Filters are installed at the water inlet of radiators for filtration. However, traditional radiator filters are relatively simple, using a single filter screen for filtration. The filters are difficult to remove and not convenient to clean.
[0003] For example, the steel composite column radiator disclosed in the authorized patent document with application number CN202421468288.0 includes a water inlet pipe, an inlet fixedly connected to the outside of the water inlet pipe, a sleeve fixedly connected to the outside of the water inlet pipe, a movable groove opened inside the sleeve, a connecting slider slidably connected to the inner wall of the movable groove, two locking blocks fixedly connected to one end of the connecting slider, a pull rod fixedly connected to the other end of the connecting slider, two springs laid inside the movable groove, and a fixing groove opened on the top of the sleeve.
[0004] The aforementioned patents have the drawbacks of making it difficult to remove and clean the filters. Therefore, we need to provide a radiator that is easy to clean. Utility Model Content
[0005] The purpose of this utility model is to provide a radiator that is easy to clean. By setting a filter between the water inlet pipe and the radiator body, the filter is a curved pipe with a filter screen body. The bottom of the curved structure forms a settling chamber. When the water flows through, the speed is reduced, and large particles of impurities are deposited at the bottom of the curve due to gravity. When high-speed water flows into the filter, the gyratory curved design can disperse the impact force of the water flow, protect the filter screen body, extend its service life, and solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a radiator that is easy to clean, comprising:
[0007] The radiator body, water inlet pipe, mounting hardware, and filter are provided. The filter is installed between the radiator body and the water inlet pipe to filter the water entering the radiator body, which can disperse the impact force of the water flow and promote the sedimentation of large particles of impurities. The mounting hardware is installed between the radiator body and the water inlet pipe to enable quick removal of the filter for cleaning.
[0008] The filter includes a rotary pipe, a filter screen body, and a slag discharge component. One end of the rotary pipe is connected to the water inlet pipe, and the other end is connected to the water inlet end of the radiator body. The slag discharge component is installed at the bottom of the rotary pipe to facilitate the discharge of large particles of impurities.
[0009] Preferably, the rotary pipe is U-shaped, and the filter screen body is fixed to the inner wall of the water outlet end of the rotary pipe. Both ends of the rotary pipe are provided with sealing parts for sealing connection with the water inlet pipe and the radiator body.
[0010] Preferably, the sealing part includes an mounting ring, a sealing ring, and an annular groove. Two mounting rings are fixed at the openings on both sides of the rotating pipe, and the sealing ring is fixed on the surface of the mounting ring. The water inlet end of the radiator body and the water outlet end of the water inlet pipe are both provided with an annular groove, and the sealing ring is used in conjunction with the annular groove.
[0011] Preferably, a positioning plate is fixedly installed on the surface of the rotary pipe, and positioning rods are fixedly installed at the four corners of the bottom of the positioning plate. A box is provided between the radiator body and the water inlet pipe. The bottom of the box is provided with a groove for placing the rotary pipe, and the box is provided with a sliding groove for inserting the positioning rods. When the bottom of the positioning plate is in contact with the bottom of the inner wall of the box, the water inlet end of the rotary pipe is coaxial with the water inlet pipe, and the water outlet end is coaxial with the water inlet of the radiator.
[0012] Preferably, the mounting component includes a push block, a rotating bracket, a buckle, and fasteners. Push blocks are fixedly installed on both sides of the water inlet pipe, and a rotating bracket is rotatably installed on the surface of the push block. The rotating bracket is engaged with the buckle. Fasteners for driving the buckle adjustment are provided inside the box to fix the rotating pipe between the water inlet pipe and the radiator body.
[0013] Preferably, the fastener includes a screw and a groove, the box body has a groove for snap-fit movement, and the screw is rotatably installed in the groove, and the snap-fit is threadedly installed with the screw.
[0014] Preferably, the push block is slidably installed inside the screw surface, and one end of the screw is provided with an adjustment part.
[0015] Preferably, the water inlet pipe is provided with a corrugated pipe.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] This utility model involves installing a filter and mounting hardware between the water inlet pipe and the radiator body. The filter is a curved pipe with a filter screen. The bottom of the curved structure forms a settling chamber, which reduces the speed of water flow. Large particles of impurities are deposited at the bottom of the curve due to gravity. The swivel and bending design can disperse the impact force of the water flow and protect the filter screen. The mounting hardware allows the filter to be quickly removed from between the water inlet pipe and the radiator body, facilitating cleaning of the filter. Attached Figure Description
[0018] Figure 1 This is a three-dimensional sectional view of the box body of this utility model;
[0019] Figure 2 This is a three-dimensional structural schematic diagram of the present invention;
[0020] Figure 3 This is a perspective view of the fastener of this utility model;
[0021] Figure 4 This is an exploded perspective view of the sealing part of this utility model;
[0022] Figure 5 This is a perspective view of the filter of this utility model.
[0023] In the diagram: 1. Radiator body; 2. Inlet pipe; 3. Mounting component; 31. Push block; 32. Rotating frame; 33. Buckle; 34. Fastener; 341. Screw; 342. Tank; 4. Filter; 41. Rotary pipe; 42. Filter screen body; 43. Slag discharge component; 5. Sealing part; 51. Mounting ring; 52. Sealing ring; 53. Annular groove; 6. Positioning plate; 7. Positioning rod; 8. Box body; 9. Slide groove; 10. Corrugated pipe. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figure 1-5 This utility model provides a technical solution: a radiator that is easy to clean, comprising: a radiator body 1, a water inlet pipe 2, a mounting component 3 and a filter 4. The filter 4 is provided between the radiator body 1 and the water inlet pipe 2 to filter the water entering the radiator body 1, which can disperse the impact force of the water flow and promote the sedimentation of large particles of impurities. The mounting component 3 is provided between the radiator body 1 and the water inlet pipe 2 so that the filter 4 can be installed between the radiator body 1 and the water inlet pipe 2.
[0026] The filter 4 includes a rotary pipe 41, a filter screen body 42, and a slag discharge component 43. One end of the rotary pipe 41 is connected to the water inlet pipe 2, and the other end is connected to the water inlet end of the radiator body 1. The slag discharge component 43 is installed at the bottom of the rotary pipe 41 to facilitate the discharge of large particles of impurities.
[0027] This utility model provides a filter 4 between the water inlet pipe 2 and the radiator body 1. The filter 4 is a curved pipe with a filter screen body 42. The bottom of the curved structure forms a settling chamber, which reduces the speed of water flow. Large particles of impurities are deposited at the bottom of the curve due to gravity. When high-speed water flows into the filter 4, the gyratory bending design can disperse the impact force of the water flow, protect the filter screen body 42, and extend its service life. The mounting part 3 can fix the filter 4 between the radiator body 1 and the water inlet pipe 2, and it is also easy to disassemble.
[0028] Specifically, the rotary pipe 41 is U-shaped, and the filter screen body 42 is fixed to the inner wall of the outlet end of the rotary pipe 41. Both ends of the rotary pipe 41 are equipped with sealing parts 5 for sealing connection with the inlet pipe 2 and the radiator body 1. In the above design, the bottom of the U-shaped pipe forms a natural settling chamber, the water flow speed decreases when passing through, and large particles of impurities are deposited at the bottom of the U-shape due to gravity, reducing the total amount of impurities entering the filter screen. The bend design of the U-shape can disperse the impact force of the water flow and avoid the high-speed water flow directly impacting the filter screen. A certain amount of water is always retained at the bottom of the U-shaped pipe, forming a water seal structure similar to the water trap in a toilet. When the system stops heating or the water flow direction changes, the water seal can prevent the impurities intercepted by the filter screen from flowing back into the inlet pipe 2 due to negative pressure.
[0029] Specifically, the sealing part 5 includes an mounting ring 51, a sealing ring 52, and an annular groove 53. Two mounting rings 51 are fixed to the openings on both sides of the rotary pipe 41, and the sealing ring 52 is fixed to the surface of the mounting rings 51. Annular grooves 53 are provided at both the water inlet end of the radiator body 1 and the water outlet end of the water inlet pipe 2. The sealing ring 52 cooperates with the annular groove 53. In this design, when installing the rotary pipe 41, the sealing ring 52 at the water outlet end of the rotary pipe 41 is inserted into the annular groove 53 on one side of the radiator body 1. Moving the water inlet pipe 2 causes one end of the annular groove 53 to abut against the sealing ring 52 at the water inlet end of the rotary pipe 41. The sealing ring 52, a rubber ring, is fixed to the mounting ring 51 and inserted into the annular groove 53. Under pressure, the sealing ring 52 deforms and fills the annular groove 53, thus providing a seal. The pressure comes from the mounting component 3.
[0030] Specifically, a positioning plate 6 is fixedly installed on the surface of the rotary pipe 41, and positioning rods 7 are fixedly installed at the four corners of the bottom of the positioning plate 6. A box 8 is provided between the radiator body 1 and the water inlet pipe 2. The bottom of the box 8 has a groove for placing the rotary pipe 41, and the box 8 has a sliding groove 9 for inserting the positioning rods 7. When the bottom of the positioning plate 6 is in contact with the bottom of the inner wall of the box 8, the water inlet end of the rotary pipe 41 is coaxial with the water inlet pipe 2, and the water outlet end is coaxial with the radiator inlet. With the above design, the positioning plate 6 on the surface of the rotary pipe 41 is placed into the bottom of the box 8, and the four positioning rods 7 at the bottom of the positioning plate 6 are respectively inserted into the four sliding grooves 9. The positioning plate 6 can only move towards or away from the water inlet pipe 2. When the bottom of the positioning plate 6 is in contact with the bottom of the inner wall of the box 8, the water inlet end of the rotary pipe 41 is coaxial with the water inlet pipe 2, and the water outlet end is coaxial with the radiator inlet. No additional calibration is required when positioning and fitting, and it can be quickly reset after disassembly and reassembly, reducing installation and debugging time.
[0031] Specifically, the mounting component 3 includes a push block 31, a rotating bracket 32, a buckle 33, and a fastener 34. Push blocks 31 are fixedly installed on both sides of the water inlet pipe 2. The rotating bracket 32 is rotatably installed on the surface of the push block 31, and the rotating bracket 32 is engaged with the buckle 33. The box body 8 is provided with a fastener 34 for driving the buckle 33 to adjust, so as to fix the rotating pipe 41 between the water inlet pipe 2 and the radiator body 1. In the above design, when the water inlet pipe 2 moves, it drives two push blocks 31 to slide inside the box 8. A rotating frame 32 is rotatably mounted on the surface of the push blocks 31, positioning the rotary pipe 41 between the water inlet pipe 2 and the radiator body 1. The water inlet pipe 2 is moved to press the rotary pipe 41 into contact with the radiator body 1. The rotating frame 32 is rotated so that one side of the rotating frame 32 is rotated to the slot on one side of the buckle 33. The fastener 34 is adjusted to move the buckle 33. The buckle 33 presses the rotating frame 32 and always drags the rotating frame 32, so that the water inlet pipe 2 keeps pressing the rotary pipe 41. The other end of the rotary pipe 41 keeps pressing the water inlet end of the radiator body 1, thus realizing the installation of the rotary pipe 41.
[0032] Specifically, the fastener 34 includes a screw 341 and a groove 342. The box 8 has a groove 342 for the movement of the latch 33, and the screw 341 is rotatably mounted within the groove 342. The latch 33 is threadedly installed within the screw 341. In this design, the screw 341 and latch 33 are threadedly installed. As the screw 341 rotates, it drives the latch 33 to move within the groove 342, thus adjusting the latch 33 and pulling the rotating frame 32. The screw 341 has a threaded coating to prevent dust adhesion and has a self-locking function. It can still be used even when a small amount of dust is attached to its surface, and a protective cover is provided on the top of the screw 341.
[0033] Specifically, the push block 31 is slidably mounted on the surface of the screw 341, and one end of the screw 341 is provided with an adjustment part. This design allows for convenient adjustment of the rotation of the screw 341.
[0034] Specifically, a corrugated pipe 10 is installed inside the water inlet pipe 2. In the above design, the corrugated pipe 10 enables the movement and adjustment of one end of the water inlet pipe 2, and the corrugated pipe 10 is a high-temperature resistant pipe.
[0035] Specifically, the slag discharge component 43 includes a sleeve that communicates with the bottom of the rotary pipe 41, and a sealing cap with a sealing layer is threaded onto the bottom of the sleeve. This design facilitates the removal of debris from the bottom of the rotary pipe.
[0036] Working principle: When the rotating pipe 41 is installed, the inlet pipe 2 moves, causing the two push blocks 31 to slide inside the box 8. The rotating frame 32 is rotatably mounted on the surface of the push blocks 31, positioning the rotating pipe 41 between the inlet pipe 2 and the radiator body 1. Moving the inlet pipe 2 squeezes the rotating pipe 41 to fit against the radiator body 1, and rotating the rotating frame 32, rotating one side of the rotating frame 32 to the slot on one side of the buckle 33, and adjusting the fastener 34 to move the buckle 33, the buckle 33 squeezes the rotating frame 32, and always drags it. The rotating frame 32 causes the inlet pipe 2 to continuously press against the rotating pipe 41, and the other end of the rotating pipe 41 to continuously press against the inlet end of the radiator body 1, thus enabling the installation of the rotating pipe 41. The rotating pipe 41 can be removed by moving in the direction of the upward process. The rotating pipe 41 is designed as a U-shape, forming a natural settling chamber at the bottom. When the water flows through it, the speed is reduced, and large particles of impurities are deposited at the bottom of the U-shape due to gravity, reducing the total amount of impurities entering the filter screen. The U-shaped bend design can disperse the impact force of the water flow and prevent high-speed water flow from directly impacting the filter screen.
[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A radiator facilitating cleaning, characterized in that include: The radiator body, water inlet pipe, mounting components, and filter are provided. The filter is provided between the radiator body and the water inlet pipe to filter the water entering the radiator body, which can disperse the impact force of the water flow and promote the sedimentation of large particles of impurities. The mounting components are provided between the radiator body and the water inlet pipe. The filter includes a rotary pipe, a filter screen body, and a slag discharge component. One end of the rotary pipe is connected to the water inlet pipe, and the other end is connected to the water inlet end of the radiator body. The slag discharge component is installed at the bottom of the rotary pipe to facilitate the discharge of large particles of impurities.
2. A radiator for facilitating cleaning according to claim 1, characterized in that: The rotary pipe is U-shaped, and the filter screen body is fixed to the inner wall of the water outlet end of the rotary pipe. Both ends of the rotary pipe are provided with sealing parts for sealing connection with the water inlet pipe and the radiator body.
3. A radiator for facilitating cleaning according to claim 2, wherein: The sealing part includes an installation ring, a sealing ring, and an annular groove. Two installation rings are fixed at the openings on both sides of the rotating pipe, and the sealing ring is fixed on the surface of the installation ring. The water inlet end of the radiator body and the water outlet end of the water inlet pipe are both provided with an annular groove, and the sealing ring is used in conjunction with the annular groove.
4. The easily cleanable heat sink of claim 1, wherein: A positioning plate is fixedly installed on the surface of the rotary pipe, and positioning rods are fixedly installed at the four corners of the bottom of the positioning plate. A box is provided between the radiator body and the water inlet pipe. The bottom of the box is provided with a groove for placing the rotary pipe, and the box is provided with a sliding groove for inserting the positioning rods. When the bottom of the positioning plate is in contact with the bottom of the inner wall of the box, the water inlet end of the rotary pipe is coaxial with the water inlet pipe, and the water outlet end is coaxial with the water inlet of the radiator.
5. A radiator for facilitating cleaning according to claim 4, wherein: The mounting components include push blocks, rotating brackets, buckles, and fasteners. Push blocks are fixedly installed on both sides of the water inlet pipe. A rotating bracket is rotatably installed on the surface of the push block, and the rotating bracket is engaged with the buckle. The box is equipped with fasteners for driving the buckle adjustment, so as to fix the rotating pipe between the water inlet pipe and the radiator body.
6. A radiator for facilitating cleaning according to claim 5, wherein: The fastener includes a screw and a groove. The box has a groove for snap-fit movement, and the screw is rotatably installed in the groove. The snap-fit is threadedly installed with the screw.
7. A radiator for facilitating cleaning according to claim 6, wherein: The push block is slidably installed inside the screw surface, and one end of the screw is provided with an adjustment part.
8. The easily cleanable heat sink of claim 1, wherein: The water inlet pipe is equipped with a corrugated pipe.
Citation Information
Patent Citations
CN222912442U