CN215864759U - Radiator with one-way choke part - Google Patents

Radiator with one-way choke part Download PDF

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Publication number
CN215864759U
CN215864759U CN202121190417.0U CN202121190417U CN215864759U CN 215864759 U CN215864759 U CN 215864759U CN 202121190417 U CN202121190417 U CN 202121190417U CN 215864759 U CN215864759 U CN 215864759U
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heat
preservation box
heat preservation
box
assembly
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CN202121190417.0U
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Chinese (zh)
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任宏
贾俊秋
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Shenzhen Xinzhongda Heat Dissipation Co ltd
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Shenzhen Xinzhongda Heat Dissipation Co ltd
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Abstract

The utility model discloses a radiator with a one-way flow choking part, which comprises a first heat preservation box, a second heat preservation box, a heat dissipation assembly, a dustproof assembly, a heat injection pipe, a first heat outlet pipe, a one-way assembly and a second heat outlet pipe, wherein the second heat preservation box is arranged on the outer side of the first heat preservation box, the heat dissipation assembly is arranged between the first heat preservation box and the second heat preservation box, one end of the first heat preservation box is respectively connected with and provided with the heat injection pipe and the first heat outlet pipe, the heat injection pipe and the first heat outlet pipe are both connected with the heat dissipation assembly, and one end of the first heat outlet pipe is connected with and provided with the one-way assembly; the radiator with the one-way flow choking part has simple structure and good support stability; when in use, the heat dissipation effect is good; the one-way flow choking effect is achieved, and the condition that a heat source reflows can be effectively avoided; meanwhile, the dust-blocking and dust-removing effect is achieved, and dust is prevented from being accumulated on the surface of the radiating fin, so that the radiating rate is influenced.

Description

Radiator with one-way choke part
Technical Field
The utility model relates to the field of radiator equipment, in particular to a radiator with a one-way flow choking part.
Background
The radiator is an important and basic component in a hot water heating system; the hot water is cooled in the radiator to supply heat to the indoor, thereby achieving the purpose of heating; the metal consumption and cost of the radiator are a significant proportion of the heating system.
The traditional radiator has a simple and crude structure, and does not have a one-way flow blocking function when in use, so that a heat source medium is easy to flow backwards, and the normal work of equipment is influenced; meanwhile, the traditional radiator has poor dustproof effect, and the dust accumulated on the surface of the radiating fin can influence the radiating rate of the radiator; therefore, it is necessary to design a heat sink with a unidirectional flow blocking part.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a radiator with a one-way flow resisting part, which has simple structure and good support stability; when in use, the heat dissipation effect is good; the one-way flow choking effect is achieved, and the condition that a heat source reflows can be effectively avoided; meanwhile, the dust-blocking and dust-removing effect is achieved, and dust is prevented from being accumulated on the surface of the radiating fin, so that the radiating rate is influenced.
The purpose of the utility model can be realized by the following technical scheme:
the radiator with the one-way flow choking part comprises a first heat preservation box, a second heat preservation box, a heat dissipation assembly, a dustproof assembly, a heat injection pipe, a first heat outlet pipe, a one-way assembly and a second heat outlet pipe, wherein the second heat preservation box is arranged on the outer side of the first heat preservation box, the heat dissipation assembly is arranged between the first heat preservation box and the second heat preservation box, one end of the first heat preservation box is respectively connected with and provided with the heat injection pipe and the first heat outlet pipe, the heat injection pipe and the first heat outlet pipe are both connected with the heat dissipation assembly, one end of the first heat outlet pipe is connected with and provided with the one-way assembly, one end of the one-way assembly is connected with and provided with the second heat outlet pipe, and the dustproof assembly is arranged above the tops of the first heat preservation box and the second heat preservation box;
the dustproof assembly comprises a dustproof cover plate, a dustproof column, an electric guide rail, a guide rail sliding block, a cross beam plate, a cleaning frame and a cleaning brush, the dustproof cover plate is arranged above the top of the first heat preservation box and the top of the second heat preservation box, the bottom end face of the dustproof cover plate is fixedly provided with the dustproof column all around, one end of the bottom of the dustproof column on one side of the first heat preservation box and the bottom end face of the dustproof column on one side of the second heat preservation box are fixedly connected with the top end face of the first heat preservation box and the top end face of the second heat preservation box, the bottom end face of the dustproof cover plate is fixedly provided with the electric guide rail, the guide rail sliding block is installed in the bottom end face center of the electric guide rail, the cross beam plate is fixedly installed in the bottom end face of the cross beam plate, and the cleaning frame is fixedly provided with the cleaning brush on the inner side face of the cleaning frame.
As a further scheme of the utility model: the heat dissipation assembly comprises a heat exchange tube, heat dissipation fins, heat insulation partition plates and a protection pad, a plurality of heat dissipation fins are arranged between the first heat insulation box and the second heat insulation box, the cleaning brushes are located on the outer sides of the heat dissipation fins, the heat insulation partition plates are fixedly installed in the center of the inner portions of the first heat insulation box and the second heat insulation box respectively, the heat exchange tube is connected between the two heat insulation partition plates, and the two ends of the heat exchange tube penetrate through the heat dissipation fins and are connected with the heat injection tube and the first heat outlet tube on one side of the first heat insulation box respectively.
As a further scheme of the utility model: and the liquid accumulation groove is fixedly arranged on one side of the end faces of the bottoms of the first insulation box and the second insulation box through bolts and is positioned under the bottom of the radiating fin.
As a further scheme of the utility model: the one-way subassembly includes choked flow case, fixed end cover, guiding gutter, upset hinge and breakwater, fixed end cover fixed mounting is in the one end of first play heat pipe, the choked flow case is installed to the one end of fixed end cover, and the second goes out heat pipe fixed mounting and is in the terminal surface opposite side central authorities of choked flow case, the guiding gutter has been seted up to inner wall one side central authorities of choked flow case, top one side fixed mounting of guiding gutter has the upset hinge, the one end fixed mounting of upset hinge has the breakwater, and the breakwater is located one side of guiding gutter.
As a further scheme of the utility model: the sealing plug is fixedly installed in the center of the end face of the water baffle, and the outer wall of one side of the sealing plug is connected with the inner wall of the diversion trench in an attaching mode.
As a further scheme of the utility model: the center of the bottom end faces of the first heat preservation box and the second heat preservation box is fixedly provided with a bearing frame through welding, and the bottom end face of the bearing frame is fixedly provided with an anti-skidding base.
The utility model has the beneficial effects that: according to the radiator with the one-way flow choking part, the first heat preservation box and the second heat preservation box can be supported through the bearing frame and the anti-skidding base, so that the first heat preservation box and the second heat preservation box have stable supporting structures, the structure is simple, and the supporting stability is good; in the process of heat dissipation, the heat source medium is connected with the heat injection pipe, so that the heat source medium is injected into the heat dissipation assembly through the heat injection pipe, heat dissipation is performed through the heat dissipation assembly, and a good heat dissipation effect can be achieved; the unidirectional flow can be blocked through the unidirectional assembly and the second heat outlet pipe, so that the heat source medium is prevented from reflowing; moreover, water drops generated in heat dissipation can be collected through the liquid accumulation groove, so that water flow transverse flow sputtering is avoided; simultaneously, have dirt-proof function through dustproof subassembly to clean the fin, thereby have the effect that keeps off the dirt and remove dust, avoid the dust to pile up on the surface of fin, and then influence radiating rate.
Drawings
In order to facilitate understanding for those skilled in the art, the present invention will be further described with reference to the accompanying drawings.
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an overall cross-sectional view of the present invention;
FIG. 3 is an overall side view of the present invention;
FIG. 4 is a cross-sectional view of a unidirectional assembly of the present invention;
in the figure: 1. a first heat preservation box; 2. a second incubator; 3. a heat dissipating component; 4. a dust-proof assembly; 5. injecting a heat pipe; 6. a first heat outlet pipe; 7. a unidirectional component; 8. a second heat outlet pipe; 9. a liquid accumulation tank; 10. an anti-slip base; 31. a heat exchange pipe; 32. a heat sink; 33. a heat-insulating partition plate; 34. a protective pad; 41. a dust-proof cover plate; 42. a dust-proof column; 43. an electric rail; 44. a guide rail slider; 45. a beam plate; 46. a cleaning frame; 47. a cleaning brush; 71. a flow blocking tank; 72. fixing an end cover; 73. a diversion trench; 74. turning over the hinge; 75. a water baffle; 76. and (4) sealing the plug.
Detailed Description
The technical solutions of the present invention will be described clearly and completely with reference to the following embodiments, and it should be understood that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1-4, the heat sink with a unidirectional flow blocking part includes a first heat preservation box 1, a second heat preservation box 2, a heat dissipation assembly 3, a dustproof assembly 4, a heat injection pipe 5, a first heat output pipe 6, a unidirectional assembly 7 and a second heat output pipe 8, the second heat preservation box 2 is arranged outside the first heat preservation box 1, the heat dissipation assembly 3 is arranged between the first heat preservation box 1 and the second heat preservation box 2, one end of the first heat preservation box 1 is respectively connected with and mounted with the heat injection pipe 5 and the first heat output pipe 6, the heat injection pipe 5 and the first heat output pipe 6 are both connected with the heat dissipation assembly 3, one end of the first heat output pipe 6 is connected with and mounted with the unidirectional assembly 7, one end of the unidirectional assembly 7 is connected with and mounted with the second heat output pipe 8, and the dustproof assembly 4 is arranged above the tops of the first heat preservation box 1 and the second heat preservation box 2;
dustproof assembly 4 includes dustproof cover plate 41, dustproof post 42, electronic guide rail 43, rail block 44, crossbeam board 45, clean frame 46 and cleaning brush 47, dustproof cover plate 41 sets up the top at first insulation can 1 and second insulation can 2, equal fixed mounting has dustproof post 42 all around the bottom terminal surface of dustproof cover plate 41, and the bottom one end of the dustproof post 42 of first insulation can 1 and second insulation can 2 one side and the top terminal surface fixed connection of first insulation can 1 and second insulation can 2, the bottom terminal surface central authorities fixed mounting of dustproof cover plate 41 has electronic guide rail 43, rail block 44 is installed to the bottom terminal surface central authorities of electronic guide rail 43, rail block 44's bottom terminal surface central authorities fixed mounting has crossbeam board 45, clean frame 46 is all installed to the bottom terminal surface both sides of crossbeam board 45, the medial surface fixed mounting of clean frame 46 has cleaning brush 47.
As an embodiment of the utility model, the heat dissipation assembly 3 comprises heat exchange tubes 31, heat dissipation fins 32, heat preservation partition plates 33 and a protection pad 34, a plurality of heat dissipation fins 32 are arranged between the first heat preservation box 1 and the second heat preservation box 2, the cleaning brush 47 is positioned at the outer side of the heat dissipation fins 32, the two heat preservation partition plates 33 are respectively and fixedly installed at the centers inside the first heat preservation box 1 and the second heat preservation box 2, the heat exchange tubes 31 are connected between the two heat preservation partition plates 33, and two ends of each heat exchange tube 31 penetrate through the heat dissipation fins 32 and are respectively connected with the heat injection tubes 5 and the first heat outlet tubes 6 on one side of the first heat preservation box 1; the heat source medium is conveyed to the inside of the heat exchange pipe 31 through the heat injection pipe 5, the heat source medium circularly flows in the heat exchange pipe 31, the heat of the heat source medium can be dissipated through heat exchange through the radiating fins 32, and the heat source medium can have a good heat insulation effect through the heat insulation partition plate 33 and the protective pad 34 in the circulating flowing process, so that the utilization rate of the heat is effectively improved.
In one embodiment of the present invention, the liquid accumulation groove 9 is fixedly mounted on the bottom end face side of the first heat preservation box 1 and the second heat preservation box 2 by bolts, and the liquid accumulation groove 9 is positioned right below the bottom of the heat dissipation fin 32, so that water droplets generated during heat dissipation can be collected by the liquid accumulation groove 9, and water current can be prevented from being splashed transversely.
As an embodiment of the present invention, the unidirectional assembly 7 includes a flow blocking box 71, a fixed end cover 72, a diversion trench 73, a turning hinge 74 and a water baffle 75, the fixed end cover 72 is fixedly installed at one end of the first heat outlet pipe 6, one end of the fixed end cover 72 is installed with the flow blocking box 71, and the second heat outlet pipe 8 is fixedly installed at the center of the other side of the end surface of the flow blocking box 71, the diversion trench 73 is opened at the center of one side of the inner wall of the flow blocking box 71, the turning hinge 74 is fixedly installed at one side of the top of the diversion trench 73, one end of the turning hinge 74 is fixedly installed with the water baffle 75, and the water baffle 75 is located at one side of the diversion trench 73; when heat source medium is conveyed to the flow blocking box 71 on one side of the fixed end cover 72 through the first heat outlet pipe 6, the heat source medium can have a pushing effect on the water baffle 75 through the flow guide groove 73, the water baffle 75 is made to rotate through the turnover hinge 74 and the flow guide groove 73, the heat source medium is made to be conveyed to the second heat outlet pipe 8 through the flow guide groove 73, the heat source medium is conveyed to the outside through the second heat outlet pipe 8, when the heat source medium is conveyed to the inside of the flow blocking box 71 through the second heat outlet pipe 8, the heat source medium can push and press the water baffle 75 and the sealing plug 76, the water baffle 75 cannot be turned over, the heat source medium cannot be conveyed to the inside of the first heat outlet pipe 6 through the flow guide groove 73, and the one-way flow blocking effect is achieved.
As an embodiment of the present invention, a sealing plug 76 is fixedly installed at the center of the end surface of the water baffle 75, and the outer wall of one side of the sealing plug 76 is attached to the inner wall of the guiding groove 73, so as to improve the sealing effect.
As an embodiment of the utility model, the center of the bottom end face of the first insulation box 1 and the center of the bottom end face of the second insulation box 2 are fixedly provided with a bearing frame by welding, and the bottom end face of the bearing frame is fixedly provided with an anti-skid base 10; the bearing frame and the antiskid base 10 at the bottoms of the first heat preservation box 1 and the second heat preservation box 2 can support the first heat preservation box 1 and the second heat preservation box 2, so that the first heat preservation box 1 and the second heat preservation box 2 have stable supporting structures.
The working principle of the utility model is as follows: when the heat preservation box is used, the first heat preservation box 1 and the second heat preservation box 2 can be supported through the bearing frames and the anti-skid bases 10 at the bottoms of the first heat preservation box 1 and the second heat preservation box 2, so that the first heat preservation box 1 and the second heat preservation box 2 have stable supporting structures; connecting a heat source medium with the heat injection pipe 5 on one side of the first heat preservation box 1, so that the heat source medium is injected into the heat dissipation assembly 3 through the heat injection pipe 5, is dissipated through the heat dissipation assembly 3, and is discharged through the first heat discharge pipe 6, and in the discharging process, the one-way assembly 7 and the second heat discharge pipe 8 can have a one-way flow choking effect, so that the situation that the heat source medium reflows is avoided; in the process of heat dissipation, the dustproof assembly 4 can have a dustproof function, the heat dissipation fins 32 can be cleaned, water drops generated in the process of heat dissipation can be collected through the liquid accumulation groove 9, and water flow cross flow sputtering is avoided; a heat source medium is conveyed to the inside of the heat exchange tube 31 through the heat injection tube 5, the heat source medium circularly flows in the heat exchange tube 31, heat of the heat source medium can be dissipated through heat exchange through the radiating fins 32, and the heat source medium can have a good heat insulation effect through the heat insulation partition plate 33 and the protective pad 34 in the circulating flowing process, so that the utilization rate of heat is effectively improved; when a heat source medium is conveyed into the flow resisting box 71 on one side of the fixed end cover 72 through the first heat outlet pipe 6, the heat source medium can push the sealing plug 76 and the water baffle 75 through the guide groove 73, so that the water baffle 75 and the guide groove 73 rotate through the turnover hinge 74, the heat source medium is conveyed to the second heat outlet pipe 8 through the guide groove 73 and conveyed to the outside through the second heat outlet pipe 8, when the heat source medium is conveyed into the flow resisting box 71 through the second heat outlet pipe 8, the heat source medium can push the water baffle 75 and the sealing plug 76, the water baffle 75 and the sealing plug 76 cannot be turned over, and the heat source medium cannot be conveyed into the first heat outlet pipe 6 through the guide groove 73, so that a one-way flow resisting effect is achieved; the dustproof cover plate 41 at the top of the dustproof column 42 can well shield the radiating fins 32 and achieve a dustproof effect, the electric guide rail 43 works, the guide rail sliding blocks 44 move outside the electric guide rail 43, the guide rail sliding blocks 44 drive the two cleaning frames 46 to move through the cross beam plate 45, the cleaning frames 46 can scrape the edge positions of the radiating fins 32 through the cleaning brushes 47 in the moving process, and therefore the dust removal effect is achieved.
The preferred embodiments of the utility model disclosed above are intended to be illustrative only. The preferred embodiments are not intended to be exhaustive or to limit the utility model to the precise embodiments disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the utility model and the practical application, to thereby enable others skilled in the art to best utilize the utility model. The utility model is limited only by the claims and their full scope and equivalents.

Claims (6)

1. The radiator with the one-way flow choking part is characterized by comprising a first heat preservation box (1), a second heat preservation box (2), a heat dissipation assembly (3), a dustproof assembly (4), a heat injection pipe (5), a first heat outlet pipe (6), a one-way assembly (7) and a second heat outlet pipe (8), wherein the second heat preservation box (2) is arranged on the outer side of the first heat preservation box (1), the heat dissipation assembly (3) is arranged between the first heat preservation box (1) and the second heat preservation box (2), one end of the first heat preservation box (1) is respectively connected with the heat injection pipe (5) and the first heat outlet pipe (6), the heat injection pipe (5) and the first heat outlet pipe (6) are both connected with the heat dissipation assembly (3), one end of the first heat outlet pipe (6) is connected with the one-way assembly (7), one end of the one-way assembly (7) is connected with the second heat outlet pipe (8), a dustproof assembly (4) is arranged above the tops of the first heat-preservation box (1) and the second heat-preservation box (2);
the dustproof assembly (4) comprises a dustproof cover plate (41), a dustproof column (42), an electric guide rail (43), a guide rail sliding block (44), a cross beam plate (45), a cleaning frame (46) and a cleaning brush (47), wherein the dustproof cover plate (41) is arranged above the tops of a first insulation box (1) and a second insulation box (2), the dustproof column (42) is fixedly arranged on the periphery of the bottom end surface of the dustproof cover plate (41), one end of the bottom of the dustproof column (42) on one side of the first insulation box (1) and one end of the bottom of the second insulation box (2) are fixedly connected with the top end surfaces of the first insulation box (1) and the second insulation box (2), the electric guide rail (43) is fixedly arranged in the center of the bottom end surface of the dustproof cover plate (41), the guide rail sliding block (44) is arranged in the center of the bottom end surface of the electric guide rail (43), the cross beam plate (45) is fixedly arranged in the center of the bottom end surface of the guide rail sliding block (44), cleaning frames (46) are installed on two sides of the end face of the bottom of the cross beam plate (45), and cleaning brushes (47) are fixedly installed on the end faces of the inner sides of the cleaning frames (46).
2. The radiator with the one-way flow choking part according to claim 1, wherein the heat dissipation assembly (3) comprises heat exchange tubes (31), heat dissipation fins (32), heat preservation partitions (33) and a protection pad (34), a plurality of heat dissipation fins (32) are arranged between the first heat preservation box (1) and the second heat preservation box (2), cleaning brushes (47) are located on the outer sides of the heat dissipation fins (32), the two heat preservation partitions (33) are fixedly installed in the centers of the interiors of the first heat preservation box (1) and the second heat preservation box (2) respectively, the heat exchange tubes (31) are connected between the two heat preservation partitions (33), and two ends of each heat exchange tube (31) penetrate through the heat dissipation fins (32) and are connected with the heat injection tubes (5) and the first heat outlet tubes (6) on one side of the first heat preservation box (1) respectively.
3. The radiator with the unidirectional flow blocking parts according to claim 2, wherein a liquid accumulation groove (9) is fixedly installed on one side of the bottom end face of the first heat preservation box (1) and the second heat preservation box (2) through bolts, and the liquid accumulation groove (9) is located right below the bottom of the cooling fin (32).
4. The radiator with the unidirectional flow blocking parts according to claim 1, wherein the unidirectional assembly (7) comprises a flow blocking box (71), a fixed end cover (72), a flow guide groove (73), a turnover hinge (74) and a water baffle (75), the fixed end cover (72) is fixedly installed at one end of the first heat outlet pipe (6), the flow blocking box (71) is installed at one end of the fixed end cover (72), the second heat outlet pipe (8) is fixedly installed at the center of the other side of the end face of the flow blocking box (71), the flow guide groove (73) is formed in the center of one side of the inner wall of the flow blocking box (71), the turnover hinge (74) is fixedly installed on one side of the top of the flow guide groove (73), the water baffle (75) is fixedly installed at one end of the turnover hinge (74), and the water baffle (75) is located on one side of the flow guide groove (73).
5. The radiator with the one-way flow blocking parts according to claim 4, wherein a sealing plug (76) is fixedly installed in the center of the end face of the water baffle (75), and the outer wall of one side of the sealing plug (76) is in fit connection with the inner wall of the diversion trench (73).
6. The radiator with the unidirectional flow blocking parts according to claim 1, wherein the centers of the bottom end faces of the first heat preservation box (1) and the second heat preservation box (2) are fixedly provided with a bearing frame through welding, and the bottom end face of the bearing frame is fixedly provided with an anti-skidding base (10).
CN202121190417.0U 2021-05-28 2021-05-28 Radiator with one-way choke part Active CN215864759U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121190417.0U CN215864759U (en) 2021-05-28 2021-05-28 Radiator with one-way choke part

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121190417.0U CN215864759U (en) 2021-05-28 2021-05-28 Radiator with one-way choke part

Publications (1)

Publication Number Publication Date
CN215864759U true CN215864759U (en) 2022-02-18

Family

ID=80313457

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121190417.0U Active CN215864759U (en) 2021-05-28 2021-05-28 Radiator with one-way choke part

Country Status (1)

Country Link
CN (1) CN215864759U (en)

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