A new type of steel plate radiator with high heat dissipation performance
By installing sliding rods and push-pull frames on the radiator body, combined with positioning display components, the problem of existing steel plate radiators being unable to quickly adjust the heating effect is solved, realizing precise control and flexible adjustment of the heating function, and improving the practicality of the equipment.
Patent Information
- Application Number
- CN202311229070.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-22
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-09-22
AI Technical Summary
Existing high-heat-dissipation-performance steel plate radiators have a constant heating effect during use and cannot be quickly adjusted according to usage scenarios or needs, which reduces the practicality and flexibility of the equipment.
通过在散热器本体上设置滑动杆、推拉框架和定位显示组件,利用人力调节封堵滑柱在热水通道内滑动,改变热水通道容积大小,从而控制制热效果,并通过定位显示组件固定推拉框架的位置,实现精准控制。
It enables the rapid adjustment of heating effect according to usage scenarios or needs, improving the practicality and flexibility of the equipment and providing ease of operation.
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Figure CN117146613B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of radiators, and specifically relates to a novel steel plate-type radiator with high heat dissipation performance. BACKGROUND
[0002] The steel plate-type radiator is single-plate single-convection, double-plate single-convection, double-plate double-convection and three-plate three-convection, and is a novel high-efficiency energy-saving radiator using high-quality cold-rolled low-carbon steel plates as raw materials. The product has strong decoration and small size to achieve the best heat dissipation effect, does not need to be provided with a heating cover, minimizes the indoor space occupation, and improves the utilization rate of a room.
[0003] The existing novel steel plate-type radiator with high heat dissipation performance has constant heating effect in use, cannot quickly adjust the heating effect according to use scenes or requirements, reduces the practicability and flexibility of the equipment, and causes certain inconvenience to users. Therefore, in view of the above status, it is urgent to develop a novel steel plate-type radiator with high heat dissipation performance to overcome the deficiencies in the prior art. SUMMARY
[0004] The present application aims to provide a novel steel plate-type radiator with high heat dissipation performance to solve the problems in the background.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme.
[0006] A novel steel plate-type radiator with high heat dissipation performance comprises a radiator body, a plurality of hot water channels are arranged on the radiator body, the plurality of hot water channels are connected in communication through connecting channels, and the novel steel plate-type radiator with high heat dissipation performance further comprises:
[0007] a sliding rod, one end of the sliding rod is inserted into the hot water channel and is in sliding connection with the inner wall of the hot water channel through a plugging sliding column, and the other end of the sliding rod penetrates through the radiator body and is in sliding connection with the radiator body;
[0008] a push-pull frame, the push-pull frame is fixedly installed on the other end of the sliding rod; and
[0009] a positioning display assembly, the positioning display assembly is connected with the radiator body and the push-pull frame respectively.
[0010] The push-pull frame and the sliding rod are moved by human power, the plugging sliding column is slid in the hot water channel, the plugging sliding column controls the heating effect of the radiator body by sliding upward or downward and changing the volume of the hot water channel, and the positioning display assembly fixes the position of the adjusted push-pull frame and displays the height.
[0011] As a further scheme of the present application, further comprising: a water receiving pipe connected with the radiator body, and the water receiving pipe is further communicated with the hot water channel and the connecting channel respectively; and
[0012] An exhaust pipe and a residue discharging port are fixedly installed on the radiator body and communicated with the hot water channel.
[0013] As a further scheme of the present application, further comprising: a plurality of mounting seats fixedly connected with the radiator body;
[0014] A ventilation plate is detachably connected with the radiator body; and
[0015] A protective cover is located below the push-pull frame and detachably connected with the radiator body.
[0016] As a further scheme of the present application, the positioning display assembly comprises:
[0017] A slot is arranged on the radiator body;
[0018] A crescent-shaped plate is fixedly connected with the push-pull frame, and the crescent-shaped plate is detachably connected with the positioning indication plate through a fixing seat, and the positioning indication plate is inserted into the slot and detachably connected with the slot; and
[0019] A scale line is arranged on the positioning indication plate.
[0020] As a further scheme of the present application, further comprising: a plurality of pressure detectors fixedly installed on the plurality of sealing slide columns respectively.
[0021] As a further scheme of the present application, further comprising: a heat transfer fin fixedly installed in the radiator body and arranged opposite to the hot water channel;
[0022] A plurality of connecting plates are evenly distributed on the push-pull frame and located above the heat transfer fin; and
[0023] A heat conduction adjusting mechanism is connected with the connecting plate and the heat transfer fin respectively, wherein the heat conduction adjusting mechanism comprises a supporting and guiding assembly and a heat conduction assembly.
[0024] The supporting and guiding assembly is connected with the heat transfer fin, and the heat conduction assembly is connected with the connecting plate and the supporting and guiding assembly respectively.
[0025] As a further scheme of the present application, the support and guide assembly comprises:
[0026] A partition baffle is fixedly installed on the heat transfer fin and is arranged opposite to the hot water channel, and the partition baffle is further connected with the heat conducting assembly.
[0027] A through hole is formed in the middle of the partition baffle.
[0028] A damping sliding rail is fixedly connected with the inner wall of the heat transfer fin, and the damping sliding rail is further slidingly connected with the heat conducting assembly.
[0029] As a further scheme of the present application, the heat conducting assembly comprises:
[0030] A pull rod is fixedly installed on the connecting plate.
[0031] A plurality of pull tabs are uniformly distributed on the pull rod, and the diameters of the plurality of pull tabs decrease from bottom to top.
[0032] A plurality of heat conducting sliding tabs are sleeved on the pull rod through sliding holes, wherein the diameters of the sliding holes on the plurality of heat conducting sliding tabs decrease from bottom to top, and the plurality of sliding holes are respectively matched with the plurality of pull tabs.
[0033] A reset tab is fixedly installed on the pull rod and is separably connected with the heat conducting sliding tab.
[0034] Compared with the prior art, the present application has the following beneficial effects:
[0035] In the use process of the radiator body, the radiator body can be installed on the specified wall surface or other specified area through the mounting seat, and hot medium can be introduced into the plurality of hot water channels through the water inlet pipe. At this time, the air in the air flow channel arranged on the radiator body can be heated through heat transfer, and the hot air can be discharged from the upper part of the radiator body under the action of air convection, so that the heating function can be realized. The air or impurities in the hot water channel can be discharged outside the radiator body through the exhaust pipe and the residue outlet, and the water inlet pipe, the residue outlet and the residue outlet are all provided with corresponding valve parts. In the heating process of the radiator body, the push-pull frame can be pulled or pushed by manpower to move upward or downward, and when the push-pull frame moves, the sliding rod can be synchronously moved to drive the blocking slide column to move in the hot water channel. Since the blocking slide column moves upward or downward, the volume of the hot water channel can be changed, that is, the height of the hot water in the hot water channel can be changed. The length of the sliding rod is less than the length of the hot water channel, so that a certain amount of hot water can be introduced into the hot water channel when the push-pull frame is in the lowest position, thereby realizing the initial heating capacity of the radiator body. After the position adjustment of the push-pull frame is completed, the position display assembly can be used to fix the position of the push-pull frame to avoid movement of the push-pull frame under the action of water pressure in the hot water channel or other external factors. The height of the push-pull frame at this time can be recorded through the position display assembly, so that the purpose of accurately controlling the heating capacity of the radiator body can be achieved. The operation is simple, the heating effect can be quickly adjusted according to the use scene or demand, the practicability and flexibility of the equipment are improved, convenience is provided for the user, and the equipment is worth promoting. BRIEF DESCRIPTION OF DRAWINGS
[0036] Figure 1 It is a three-dimensional structure schematic diagram of the steel plate radiator in the embodiment of the present application.
[0037] Figure 2 It is a three-dimensional structure schematic diagram of the protective cover part in the embodiment of the present application.
[0038] Figure 3 It is a three-dimensional structure schematic diagram of the push-pull frame part in the embodiment of the present application.
[0039] Figure 4 It is a top view structure schematic diagram of the protective cover part in the embodiment of the present application.
[0040] Figure 5 It is a top view structure schematic diagram of the radiator body part in the embodiment of the present application.
[0041] Figure 6 It is a three-dimensional structure schematic diagram of the blocking slide column part in the embodiment of the present application.
[0042] Figure 7It is a perspective structural schematic view of the heat-conducting sliding piece part in the embodiment of the present application.
[0043] Figure 8 It is a front structural schematic view of the pull rod part in the embodiment of the present application.
[0044] Figure 9 It is a perspective structural schematic view of the partition baffle part in the embodiment of the present application.
[0045] In the figure: 1-heat radiator body, 2-hot water channel, 3-connection channel, 4-water receiving pipe, 5-protection cover, 6-connection plate, 7-pull frame, 8-crescent plate, 9-fixing seat, 10-positioning indication plate, 11-sliding rod, 12-mounting seat, 13-air permeable plate, 14-exhaust pipe, 15-slag discharge port, 16-air flow channel, 17-heat transfer fin, 18-partition baffle, 19-through hole, 20-damping sliding rail, 21-scale line, 22-blocking slide column, 23-pressure detector, 24-pull rod, 25-reset baffle, 26-heat-conducting sliding piece, 27-pull baffle, 28-sliding hole, 29-slot. Embodiment
[0046] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.
[0047] The specific implementation of the present application will be described in detail below in combination with specific embodiments.
[0048] Please refer to Figures 1-9 The embodiment of the present application provides a novel steel plate type radiator with high heat dissipation performance, which comprises a heat radiator body 1, a plurality of hot water channels 2 are arranged on the heat radiator body 1, the plurality of hot water channels 2 are connected in communication through connection channels 3, and the radiator further comprises:
[0049] A sliding rod 11 is inserted and arranged in one end of the hot water channel 2 and is in sliding connection with the inner wall of the hot water channel 2 through a blocking slide column 22, and the other end of the sliding rod 11 penetrates through the heat radiator body 1 and is in sliding connection with the heat radiator body 1.
[0050] A pull frame 7 is fixedly installed on the other end of the sliding rod 11.
[0051] A positioning display assembly is connected with the heat radiator body 1 and the pull frame 7 respectively.
[0052] The push-pull frame 7 and the sliding rod 11 are moved by manpower, and the blocking slide column 22 is moved in the hot water channel 2, the blocking slide column 22 controls the heating effect of the radiator body 1 by changing the volume of the hot water channel 2 through upward or downward sliding, and the positioning display assembly fixes the position of the adjusted push-pull frame 7 and displays the height.
[0053] Please refer to Figures 1-3 Further comprising: a water receiving pipe 4, the water receiving pipe 4 is connected with the radiator body 1, and the water receiving pipe 4 is also communicated with the hot water channel 2 and the connecting channel 3 respectively; and
[0054] An exhaust pipe 14 and a residue outlet 15, the exhaust pipe 14 and the residue outlet 15 are fixedly installed on the radiator body 1, and are communicated with the hot water channel 2.
[0055] Please refer to Figures 1-3 Further comprising: a mounting seat 12, the number of the mounting seat 12 is multiple, and multiple mounting seats 12 are fixedly connected with the radiator body 1;
[0056] A ventilation plate 13, the ventilation plate 13 is detachably connected with the radiator body 1; and
[0057] A protective cover 5, the protective cover 5 is located below the push-pull frame 7, and is detachably connected with the radiator body 1.
[0058] In the use of the radiator body 1, the radiator body 1 can be installed on the designated wall surface or other designated area through the mounting seat 12, and the hot medium can be introduced into the plurality of hot water channels 2 through the water inlet pipe 4, at this time, the air in the air flow channel 16 arranged on the radiator body 1 can be heated through the heat transfer effect, and under the action of air convection, the hot air can be discharged from the upper part of the radiator body 1, so that the heating function can be realized, and the air or impurities in the hot water channel 2 can be discharged outside the radiator body 1 through the exhaust pipe 14 and the slag discharge port 15, and the water inlet pipe 4, the slag discharge port 15 and the slag discharge port 15 are all provided with corresponding valve parts, in the process of heating of the radiator body 1, the push-pull frame 7 is pulled or pushed upward or downward by manpower, when the push-pull frame 7 moves, the sliding rod 11 can be synchronously moved, so that the blocking slide column 22 can be moved in the hot water channel 2, because the blocking slide column 22 moves upward or downward, the volume of the hot water channel 2 can be changed, that is, the height of the hot water in the hot water channel 2 can be changed, wherein the length of the sliding rod 11 is less than the length of the hot water channel 2, so that when the push-pull frame 7 is in the lowest position, a certain amount of hot water can still be introduced into the hot water channel 2, so that the initial heating capacity of the radiator body 1 is realized, after the position adjustment of the push-pull frame 7 is completed, the position of the push-pull frame 7 can be fixed through the positioning display assembly, so that the push-pull frame 7 cannot move under the action of water pressure in the hot water channel 2 or other external factors, and the height of the push-pull frame 7 at this time can be recorded through the positioning display assembly, that is, the purpose of accurately controlling the heating capacity of the radiator body 1 can be realized, the operation is simple, the heating effect can be quickly adjusted according to the use scene or demand, the practicability and flexibility of the equipment are improved, convenience is provided for the user, and the equipment is worthy of promotion.
[0059] In one embodiment of the present application, please refer to Figures 1-6 The positioning display assembly comprises:
[0060] The slot 29 is arranged on the radiator body 1.
[0061] The crescent plate 8 is fixedly connected with the push-pull frame 7, and the crescent plate 8 is detachably connected with the positioning indication plate 10 through the fixing seat 9, and the positioning indication plate 10 is inserted into the slot 29 and is detachably connected with the slot 29.
[0062] The scale line 21 is arranged on the positioning indication plate 10.
[0063] Please refer to Figures 1-6 Further comprising: a plurality of pressure detectors 23, and the plurality of pressure detectors 23 are fixedly installed on the plurality of blocking slide columns 22.
[0064] Through the pressure detector 23 arranged, wherein the pressure detector 23 can adopt the form of a sensor, the water pressure in each hot water channel 2 can be detected, when the water pressure fluctuates or is too high or too low, it indicates that the device has a leakage problem, etc., which can remind the user to check and repair in time, in addition, during the upward or downward movement of the push-pull frame 7, the positioning indicator plate 10 will slide in the slot 29, wherein the positioning indicator plate 10 is provided with a positioning hole, and the slot 29 is provided with a threaded hole, the position of the positioning indicator plate 10 can be positioned by bolt fixing, so as to fix the position of the push-pull frame 7, and through the scale line 21 arranged, the position of the upward or downward movement of the positioning indicator plate 10 can be displayed, so as to facilitate the user to check.
[0065] In an embodiment of the present application, please refer to Figures 1-9 Further comprising: heat transfer fins 17, the heat transfer fins 17 are fixedly installed in the radiator body 1 and are arranged opposite to the hot water channel 2;
[0066] The connecting plate 6, the number of the connecting plate 6 is multiple, and the multiple connecting plates 6 are uniformly distributed on the push-pull frame 7 and located above the heat transfer fins 17; and
[0067] The heat conduction adjusting mechanism is connected with the connecting plate 6 and the heat transfer fin 17 respectively, wherein the heat conduction adjusting mechanism comprises a support guide assembly and a heat conduction assembly.
[0068] The support guide assembly is connected with the heat transfer fin 17, and the heat conduction assembly is connected with the connecting plate 6 and the support guide assembly respectively.
[0069] When hot water is introduced into the hot water channel 2, the heat transfer fins 17 are arranged, wherein the heat transfer fins 17 can adopt a pulse wave structure, the heat in the hot water channel 2 can be transferred to the air flow channel 16, and with the upward or downward movement of the push-pull frame 7, the connecting plate 6 can be driven to move synchronously, so that the heat conduction adjusting mechanism works, for example, when the heating capacity of the radiator body 1 needs to be increased, the push-pull frame 7 can be pulled upward by manpower, the hot water amount in the hot water channel 2 is increased at the same time, the heat conduction assembly is driven to work through the connecting plate 6, and the heat conduction efficiency of the heat transfer fins 17 can be improved, on the one hand, the heat conduction efficiency of the hot water can be improved, so that the hot water can be uniformly and fully utilized, on the other hand, the heat of the air in the air flow channel 16 can be improved, so that the heating effect of the radiator body 1 is improved.
[0070] In an embodiment of the present application, please refer to Figures 5-9 The support guide assembly comprises:
[0071] A partition baffle 18 is fixedly installed on the heat transfer fin 17 and is arranged opposite to the hot water channel 2, and the partition baffle 18 is connected with the heat conduction assembly;
[0072] A through hole 19 is arranged in the middle of the partition baffle 18; and
[0073] A damping sliding rail 20 is fixedly connected with the inner wall of the heat transfer fin 17, and the damping sliding rail 20 is also slidingly connected with the heat conduction assembly.
[0074] Please refer to Figures 5-9 The heat conduction assembly comprises:
[0075] A pull rod 24 is fixedly installed on the connecting plate 6;
[0076] A plurality of pull baffle pieces 27 are uniformly distributed on the pull rod 24, and the diameters of the plurality of pull baffle pieces 27 gradually decrease from bottom to top;
[0077] A plurality of heat conduction sliding pieces 26 are sleeved on the pull rod 24 through sliding holes 28, wherein the diameters of the sliding holes 28 on the plurality of heat conduction sliding pieces 26 gradually decrease from bottom to top, and the plurality of sliding holes 28 are respectively matched with the plurality of pull baffle pieces 27; and
[0078] A reset baffle piece 25 is fixedly installed on the pull rod 24 and is disconnectably connected with the heat conduction sliding piece 26.
[0079] In the process of moving up the connecting plate 6, the pull rod 24 can be driven to move up synchronously. When the reset baffle 25 on the pull rod 24 is separated from the topmost heat-conducting slide 26, the lifting baffle 27 on the pull rod 24 continues to move up, which can make the uppermost lifting baffle 27 pass through the sliding hole 28 arranged on the heat-conducting slide 26 and contact the topmost heat-conducting slide 26. Since the sliding hole 28 arranged on the topmost heat-conducting slide 26 is smaller than the diameter of the lifting baffle 27, the topmost heat-conducting slide 26 can be moved up under the pushing action of the lifting baffle 27. Since the diameters of the multiple lifting baffles 27 decrease from bottom to top, and the diameters of the sliding holes 28 on the multiple heat-conducting slides 26 decrease from bottom to top, the multiple heat-conducting slides 26 can be moved up in sequence as the height of the connecting plate 6 increases, and are evenly distributed on the heat-conducting fins 17, thereby increasing the heat transfer efficiency and making the corresponding hot water in the hot water channel 2 be evenly utilized. In the process of moving up the heat-conducting slide 26, the heat-conducting slide 26 can slide on the damping slide rail 20. Since the heat-conducting slide 26 and the damping slide rail 20 adopt a damping sliding mode (which can adopt an interference fit form), on the one hand, the heat-conducting slide 26 can be prevented from shaking during movement, and on the other hand, gaps can be avoided to ensure the heat transfer efficiency of the heat-conducting slide 26. When the radiator body 1 has a small heating capacity, the multiple heat-conducting slides 26 can be closely placed on the partition baffle 18 under the limiting action of the reset baffle 25, thereby avoiding movement.
[0080] In summary, during use of the radiator body 1, the radiator body 1 can be installed on a designated wall surface or other designated area through the mounting seat 12, and hot medium can be introduced into the plurality of hot water channels 2 through the water inlet pipe 4, at this time, through the heat transfer effect, the air in the air flow channel 16 arranged on the radiator body 1 can be heated, and under the action of air convection, hot air can be discharged from the upper part of the radiator body 1, so that the heating function can be realized, and through the arranged air outlet pipe 14 and the residue outlet 15, the air or impurities in the hot water channel 2 can be discharged outside the radiator body 1, and the water inlet pipe 4, the residue outlet 15 and the residue outlet 15 are all provided with corresponding valve parts, during the heating process of the radiator body 1, through the arranged push-pull frame 7, the push-pull frame 7 can be pulled or pushed to move upward or downward, when the push-pull frame 7 moves, the sliding rod 11 can be synchronously moved, so that the blocking slide column 22 can be moved in the hot water channel 2, because the blocking slide column 22 moves upward or downward, the volume of the hot water channel 2 can be changed, that is, the height of the hot water in the hot water channel 2 can be changed, wherein the length of the sliding rod 11 is less than the length of the hot water channel 2, so that when the push-pull frame 7 is in the lowest position, a certain amount of hot water can still be introduced into the hot water channel 2, so that the initial heating capacity of the radiator body 1 is realized, after the position adjustment of the push-pull frame 7 is completed, through the arranged positioning display assembly, the position of the push-pull frame 7 can be fixed, so that the push-pull frame 7 cannot move under the action of water pressure in the hot water channel 2 or other external factors, and the height of the push-pull frame 7 at this time can be recorded through the positioning display assembly, that is, the purpose of accurately controlling the heating capacity of the radiator body 1 can be realized, the operation is simple, the heating effect can be quickly adjusted according to the use scene or demand, the practicability and flexibility of the equipment are improved, and convenience is provided for the user.
[0081] It should be noted that in the present application, unless otherwise specified and limited, the terms "sliding", "rotating", "fixing", "provided with" and the like should be understood in a broad sense, for example, can be welded connection, can also be bolted connection, or integrated; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium; can be the communication between two elements or the interaction relationship between two elements, unless otherwise specified. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0082] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A novel steel plate-type radiator with high heat dissipation performance, comprising a radiator body, a plurality of hot water passages are arranged on the radiator body, and the plurality of hot water passages are communicated through connecting passages, characterized in that, Further comprising: a sliding rod, one end of the sliding rod is inserted into the hot water channel and is in sliding connection with the inner wall of the hot water channel through a blocking slide column, the other end of the sliding rod penetrates through the radiator body and is in sliding connection with the radiator body; a push-pull frame, the push-pull frame is fixedly installed on the other end of the sliding rod; and a positioning display assembly, the positioning display assembly is connected with the radiator body and the push-pull frame respectively; wherein the push-pull frame and the sliding rod are moved by human power, and the blocking slide column is slid in the hot water channel, the blocking slide column controls the heating effect of the radiator body by sliding upward or downward and changing the volume of the hot water channel, and the positioning display assembly fixes the position of the adjusted push-pull frame and displays the height.
2. A new type of steel panel radiator with high heat dissipation performance according to claim 1, characterized in that, Further comprising: a water receiving pipe, the water receiving pipe is connected with the radiator body, and the water receiving pipe is also in communication with the hot water channel and the connecting channel respectively; and an exhaust pipe and a residue discharging port, the exhaust pipe and the residue discharging port are both fixedly installed on the radiator body and are both in communication with the hot water channel.
3. A new type of steel panel radiator with high heat dissipation performance according to claim 2, characterized in that, Further comprising: a plurality of mounting seats, the mounting seats are fixedly connected with the radiator body; a ventilation plate, the ventilation plate is detachably connected with the radiator body; and a protective cover, the protective cover is located below the push-pull frame and is detachably connected with the radiator body. The positioning display assembly 4. A new type of steel panel radiator with high heat dissipation performance according to any one of claims 1-3, characterized in that, comprises: a slot, the slot is arranged on the radiator body; a crescent plate, the crescent plate is fixedly connected with the push-pull frame, the crescent plate is detachably connected with a positioning indicator plate through a fixing seat, the positioning indicator plate is inserted into the slot and is detachably connected with the slot; and a scale line, the scale line is located on the positioning indicator plate. Further comprising:
5. A new type of steel panel radiator with high heat dissipation performance according to claim 4, characterized in that, a plurality of pressure detectors, the pressure detectors are fixedly installed on the blocking slide columns respectively. Further comprising:
6. A new type of steel panel radiator with high heat dissipation performance according to claim 1 or 3, characterized in that, a heat transfer fin, the heat transfer fin is fixedly installed in the radiator body and is arranged opposite to the hot water channel; a plurality of connecting plates, the connecting plates are evenly distributed on the push-pull frame and are located directly above the heat transfer fin; and a heat conduction adjusting mechanism, the heat conduction adjusting mechanism is connected with the connecting plates and the heat transfer fin respectively, wherein the heat conduction adjusting mechanism comprises a support guide assembly and a heat conduction assembly; the support guide assembly is connected with the heat transfer fin, and the heat conduction assembly is connected with the connecting plates and the support guide assembly respectively. The support guide assembly comprises: a partition baffle, the partition baffle is fixedly installed on the heat transfer fin and is arranged opposite to the hot water channel, and the partition baffle is also connected with the heat conduction assembly; 7. A new type of steel panel radiator with high heat dissipation performance according to claim 6, characterized in that, a through hole, the through hole is arranged in the middle of the partition baffle; and a damping slide rail, the damping slide rail is fixedly connected with the inner wall of the heat transfer fin, and the damping slide rail is also in sliding connection with the heat conduction assembly. The heat conduction assembly comprises: a pull rod, the pull rod is fixedly installed on the connecting plate; 8. A new type of steel panel radiator with high heat dissipation performance according to claim 7, characterized in that, A plurality of pull-off blocks are evenly distributed on the pull rod, and the diameters of the plurality of pull-off blocks decrease from bottom to top; A plurality of heat-conducting sliding blocks are sleeved on the pull rod through sliding holes, wherein the diameters of the sliding holes on the plurality of heat-conducting sliding blocks decrease from bottom to top, and the plurality of sliding holes are respectively matched with the plurality of pull-off blocks; and A reset block is fixedly installed on the pull rod and is detachably connected with the heat-conducting sliding block.
Citation Information
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