Self-adjusting temperature control radiator
By introducing multiple temperature sensors and adjustment components into the temperature-controlled radiator, combined with condenser tubes and heat dissipation fins, automatic airflow adjustment based on temperature differences is achieved, solving the problem of poor cooling effect of temperature-controlled radiators in different areas and improving the flexibility and efficiency of the radiator.
Patent Information
- Application Number
- CN202520330703.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Existing temperature-controlled radiators are difficult to adapt to temperature differences in different areas, resulting in poor cooling performance in high-temperature areas and reduced flexibility in use.
It employs multiple temperature sensors and controllers in conjunction with adjustment components, and achieves automatic adjustment of airflow in different areas through airflow adjustment components. It utilizes condenser tubes and heat dissipation fins to improve heat dissipation, and combines drive components and rotation components to adjust the porosity of air ducts to achieve targeted cooling.
It achieves automatic airflow adjustment based on temperature differences, improving the targeted cooling effect in high-temperature areas, enhancing the utilization rate of cooling fan airflow, and increasing the flexibility of temperature-controlled radiators.
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Figure CN223798558U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to temperature control radiator technical field, concretely is a kind of self-regulating temperature control radiator. BACKGROUND
[0002] Temperature control radiator is a kind of equipment that can automatically adjust heat dissipation power according to temperature, utilizes built-in temperature sensor, and the temperature change of surrounding environment or the object to be cooled is monitored in real time, when temperature changes, the resistance value of thermistor will change accordingly, to convert temperature signal into electric signal.
[0003] In actual use environment, the temperature environment of equipment or space to be cooled in different areas is different, and the temperature detection using temperature sensor is difficult to adapt to the temperature difference of equipment or space to be cooled in different areas, and then it is difficult to carry out targeted cooling in high-temperature area, thereby the use flexibility of temperature control radiator is reduced.
[0004] Therefore, a self-regulating temperature control radiator is needed to solve the above problems. INVENTION CONTENTS
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a kind of self-regulating temperature control radiator, including heat dissipation base and the multiple heat dissipation fans of being set to one side of heat dissipation base, still including the multiple power lines of being set to the periphery of heat dissipation base, one end of each power line is connected with temperature sensor, each power line is electrically connected with controller, the heat dissipation base is equipped with the adjusting assembly for the temperature difference of equipment to be cooled in different areas is adjusted to the air volume of the adjusting assembly.
[0006] The heat dissipation base is spirally wound with condenser pipe, the water inlet end and the water outlet end of the condenser pipe are arranged through the heat dissipation base, a plurality of heat dissipation fins are equidistantly arranged in the heat dissipation base, and the condenser pipe is arranged through each heat dissipation fin.
[0007] The adjusting assembly includes a wind deflector arranged on one side of the heat dissipation base close to each heat dissipation fan, the wind deflector is connected to the air outlet end of each heat dissipation fan, a plurality of air guide pipes are fixedly connected to one side of the wind deflector away from the heat dissipation base, one end of each air guide pipe away from the wind deflector is fixedly connected to a first adjusting plate, a plurality of first adjusting holes are formed in each first adjusting plate, a second adjusting plate is connected to the inner wall of each air guide pipe through a rotating assembly, each second adjusting plate is arranged in abutment with the first adjusting plate, a plurality of second adjusting holes are formed in each second adjusting plate, each second adjusting hole is arranged in matching with the first adjusting hole, and each air guide pipe is provided with a driving assembly for driving the second adjusting plate.
[0008] The rotating assembly comprises an annular groove formed in the inner wall of the air guide pipe, and the annular groove is rotationally connected with a rotating ring, and the rotating ring is connected with the second adjusting plate.
[0009] The driving assembly comprises a motor arranged in the side wall of the air guide pipe, the output end of the motor is provided with a gear, the side wall of the rotating ring is provided with a plurality of gear grooves, the side wall of the air guide pipe is provided with a through hole, the gear is rotationally connected with the through hole and is arranged in meshing relationship with each gear groove.
[0010] The height of the through hole is less than the height of the annular groove.
[0011] Compared with the prior art, the beneficial effects of the utility model are:
[0012] The adjusting assembly is arranged, the automatic adjustment of the air volume can be realized according to the temperature difference of the equipment to be cooled at different regions, the targeted cooling of the high-temperature region is realized, and the effective utilization of the air volume of the cooling fan and the use flexibility of the temperature control radiator are improved. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the whole structure schematic diagram of the utility model;
[0014] Figure 2 It is the condenser pipe structure schematic diagram of the utility model;
[0015] Figure 3 It is the adjusting assembly structure schematic diagram of the utility model;
[0016] Figure 4 It is the driving assembly structure schematic diagram of the utility model;
[0017] Figure 5 It is the rotating assembly structure schematic diagram of the utility model.
[0018] In the drawing: 101, heat dissipation base;102, cooling fan;2, power cord;3, temperature sensor;4, controller;6, condenser pipe;501, air guide cover;502, air guide pipe;503, first adjusting plate;504, first adjusting hole;505, second adjusting plate;506, second adjusting hole;701, annular groove;702, rotating ring;801, motor;802, gear;803, gear groove;804, through hole. DETAILED DESCRIPTION
[0019] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0020] Embodiment 1
[0021] Please refer to Figures 1-5 , the self-adjusting temperature control radiator shown in the figure comprises a heat dissipation base 101 and a plurality of heat dissipation fans 102 arranged on one side of the heat dissipation base 101, and further comprises a plurality of power lines 2 arranged on the periphery of the heat dissipation base 101, one end of each power line 2 is connected with a temperature sensor 3, each power line 2 is electrically connected with a controller 4, and the heat dissipation base 101 is provided with an adjusting assembly for adjusting the air volume according to the temperature difference of the equipment to be cooled at different regions.
[0022] It should be noted here that the temperature sensed by the temperature sensor 3 is adjusted in correspondence with the rotating speed of the heat dissipation fan 102 under the control of the controller 4, thereby accelerating the flow speed of the equipment in contact with the air, so as to accelerate the heat exchange speed of the equipment and keep the equipment temperature at the normal working temperature.
[0023] It should be noted that the temperature sensor 3 is an infrared temperature sensor, and the specific model is MLX90614, which is prior art, and its specific structure and working principle are mastered by those skilled in the art, and will not be described in detail here.
[0024] Please refer to Figure 2 , the heat dissipation base 101 in the figure is spirally wound with a condenser pipe 6, the water inlet end and the water outlet end of the condenser pipe 6 penetrate through the heat dissipation base 101, and a plurality of heat dissipation fins are arranged equidistantly in the heat dissipation base 101, and the condenser pipe 6 penetrates through each heat dissipation fin.
[0025] It should be noted here that the condenser pipe 6 and the heat dissipation fin are arranged to cool the air outlet of the heat dissipation fan 102, thereby improving the cooling effect.
[0026] Please refer to Figures 3-5The adjusting assembly in the drawing includes a wind guide cover 501 arranged on one side of the heat dissipation base 101 close to each heat dissipation fan 102, the wind guide cover 501 is connected with the air outlet end of each heat dissipation fan 102, a plurality of wind guide pipes 502 are fixedly connected to the side of the wind guide cover 501 away from the heat dissipation base 101, the end of each wind guide pipe 502 away from the wind guide cover 501 is fixedly connected with a first adjusting plate 503, a plurality of first adjusting holes 504 are formed in each first adjusting plate 503, a second adjusting plate 505 is connected to the inner wall of each wind guide pipe 502 through a rotating assembly, each second adjusting plate 505 is arranged in abutment with the first adjusting plate 503, a plurality of second adjusting holes 506 are formed in each second adjusting plate 505, each second adjusting hole 506 is arranged in matching with the first adjusting hole 504, and each wind guide pipe 502 is provided with a driving assembly for driving the second adjusting plate 505;
[0027] It should be noted that: through the setting of the adjusting assembly, the automatic adjustment of the air volume can be realized according to the temperature difference of the equipment to be cooled at different positions, so that the targeted cooling of the high-temperature area is realized, and the effective use of the air volume of the heat dissipation fan 102 and the use flexibility of the temperature control radiator are improved.
[0028] Please refer to Figure 4 and Figure 5 The rotating assembly in the drawing includes an annular groove 701 formed in the inner wall of the wind guide pipe 502, and the annular groove 701 is rotatably connected with a rotating ring 702, and the rotating ring 702 is connected with the second adjusting plate 505.
[0029] It should be noted that: through the setting of the rotating assembly, the second adjusting plate 505 is provided with a guide and limiting action.
[0030] Working principle: when the self-adjusting temperature control radiator is used, first, it is installed on one side of the equipment to be cooled, then the temperature sensor 3 at one end of each power line 2 around the heat dissipation base 101 is installed at different positions of the equipment, when the temperature sensor 3 detects that the temperature of the equipment is too high, the heat dissipation fan 102 can be driven to work under the control of the controller 4, and the rotating speed of the heat dissipation fan 102 is adjusted corresponding to the temperature sensed by the temperature sensor 3, so that the flow speed of the equipment and air contact can be accelerated, thereby the heat exchange speed of the equipment is accelerated, and the temperature of the equipment is kept at a normal working temperature.
[0031] In the process that the temperature sensor 3 detects the temperature of the equipment, when the temperature difference exists in the temperature detected by the temperature sensor 3 at different positions, the area with high temperature will be increased in air volume under the control of the controller 4, and the area with low temperature will be reduced in air volume. In the process of adjusting the air volume, the driving assembly and the rotating assembly drive the second adjusting plate 505 to rotate, so as to realize the adjustment of the second adjusting hole 506 of the second adjusting plate 505 and the first adjusting hole 504 of the first adjusting plate 503. When the amount of deviation between the second adjusting hole 506 and the first adjusting hole 504 is large, the air volume of the heat dissipation fan 102 is increased, and vice versa. Therefore, by adjusting the amount of deviation between the first adjusting hole 504 and the second adjusting hole 506, the air volume of different areas is adjusted, so as to automatically adjust the air volume according to the temperature difference of the equipment to be cooled in different areas, so as to realize the targeted cooling of the high-temperature area, and improve the effective use of the air volume of the heat dissipation fan 102 and the use flexibility of the temperature control radiator.
[0032] Embodiment 2
[0033] Please refer to Figure 4 , the driving assembly in the drawing includes a motor 801 arranged on the side wall of the air guide pipe 502. The output end of the motor 801 is provided with a gear 802. A plurality of gear grooves 803 are arranged on the side wall of the rotating ring 702. A through hole 804 is arranged on the side wall of the air guide pipe 502. The gear 802 is rotatably connected to the through hole 804 and is arranged in meshing with each gear groove 803.
[0034] It should be noted that: through the arrangement of the driving assembly, the gear 802 will be driven to rotate under the rotating action of the motor 801, and then the rotating ring 702 will be driven to rotate under the meshing transmission action of the gear 802 and the gear groove 803, thereby realizing the rotation of the second adjusting plate 505.
[0035] It should be noted that: the model of the motor 801 is RS-750. As prior art, its specific structure and working principle are mastered by those skilled in the art, and will not be described here.
[0036] Please refer to Figure 4 , the height of the through hole 804 in the drawing is less than the height of the annular groove 701.
[0037] It should be noted that: by setting the height of the through hole 804 to be less than the height of the annular groove 701, the overflow of the heat dissipation fan through hole 804 can be avoided.
[0038] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.
Claims
1. A self-regulating temperature-controlled radiator, comprising: A heat sink base (101) and a plurality of cooling fans (102) disposed on one side of the heat sink base (101); Its characteristic is that it further includes: Multiple power cords (2) are arranged around the heat dissipation base (101). One end of each power cord (2) is connected to a temperature sensor (3). Each power cord (2) is electrically connected to a controller (4). The heat dissipation base (101) is provided with an adjustment component for adjusting the airflow according to the temperature difference of the equipment to be cooled in different areas.
2. The self-regulating temperature-controlled radiator according to claim 1, characterized in that: The heat dissipation base (101) is spirally wound with a condenser tube (6). The inlet and outlet ends of the condenser tube (6) are arranged through the heat dissipation base (101). Multiple heat dissipation fins are arranged equidistantly inside the heat dissipation base (101), and the condenser tube (6) passes through each heat dissipation fin.
3. The self-regulating temperature-controlled radiator according to claim 1, characterized in that: The adjustment assembly includes an air guide shroud (501) disposed on the side of the heat sink base (101) near each heat sink fan (102). The air guide shroud (501) is connected to the air outlet of each heat sink fan (102). A plurality of air guide pipes (502) are fixedly connected to the side of the air guide shroud (501) away from the heat sink base (101). A first adjustment plate (503) is fixedly connected to the end of each air guide pipe (502) away from the air guide shroud (501). Each first adjustment plate (503) has multiple openings. Each of the first adjustment holes (504) has a second adjustment plate (505) connected to the inner wall of each of the air guide pipes (502) via a rotating assembly. Each of the second adjustment plates (505) is abutted against the first adjustment plate (503). Each of the second adjustment plates (505) has a plurality of second adjustment holes (506). Each of the second adjustment holes (506) is matched with the first adjustment hole (504). Each of the air guide pipes (502) is provided with a drive assembly for driving the second adjustment plate (505).
4. A self-regulating temperature-controlled radiator according to claim 3, characterized in that: The rotating assembly includes an annular groove (701) formed on the inner wall of the air duct (502), and a rotating ring (702) is rotatably connected to the annular groove (701). The rotating ring (702) is connected to the second adjusting plate (505).
5. A self-regulating temperature-controlled radiator according to claim 4, characterized in that: The drive assembly includes a motor (801) disposed on the side wall of the air duct (502). The output end of the motor (801) is provided with a gear (802). The side wall of the rotating ring (702) is provided with a plurality of tooth grooves (803). The side wall of the air duct (502) is provided with a through hole (804). The gear (802) is rotatably connected to the through hole (804) and meshes with each tooth groove (803).
6. A self-regulating temperature-controlled radiator according to claim 5, characterized in that: The height of the through hole (804) is less than the height of the annular groove (701).