A heat-dissipating inverter bracket

By setting up a turbulence-inducing mechanism and auxiliary mechanisms on the inverter bracket, the airflow coverage range is expanded, solving the problem of insufficient inverter heat dissipation, achieving efficient heat dissipation of the inverter, and extending the equipment life.

CN223600217UActive Publication Date: 2025-11-25YANGZHOU YINGNENGJI ELECTRIC AUTOMATION CO LTD
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Patent Information

Application Number
CN202423093977.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-25
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

During operation, the air blown by the fan cannot fully cover the inverter, resulting in insufficient heat dissipation, which causes the inverter to overheat and affect the equipment's lifespan.

Method used

A heat-dissipating inverter bracket was designed. By setting a turbulence-dissipating mechanism and an auxiliary mechanism on the bracket, the airflow blown by the fan drives the reciprocating motion of the rotating rod and the turbulence plate, thereby expanding the airflow coverage range and ensuring that the airflow evenly covers the inverter surface.

Benefits of technology

It effectively improves the heat dissipation of the inverter, avoids high temperature conditions, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to inverter technical field, and disclose a heat dissipation's inverter support, this heat dissipation's inverter support, including mounting frame, the inner wall fixed mounting of mounting frame has the mounting panel, the bottom fixed mounting of mounting frame has the support frame, this heat dissipation's inverter support, can reduce the working temperature of inverter through starting fan to inverter and blow can, utilize the air current of fan blowing cooperation wind cup can drive the rotation of the rotating rod in the inner wall of side plate, at the same time cooperation gear, gear ring, rotating drum, cam groove, ball head rod, L pole, through groove can drive the reciprocating rotation of spoiler in the side wall of side plate, through the reciprocating rotation of spoiler can make the air current of fan blowing to the both sides of fan diffusion, thereby can expand the coverage of air current, make the air current of fan blowing to inverter can evenly diffuse on the surface of inverter, thereby can improve the heat dissipation effect to inverter, avoid the high temperature condition of inverter.
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Description

TECHNICAL FIELD

[0001] The utility model relates to inverter technical field, concretely is a heat dissipation's inverter support. BACKGROUND

[0002] The inverter is the converter that DC power (battery, storage battery) is changed into fixed frequency fixed voltage or frequency modulation voltage modulation AC (generally for 220V, 50Hz sine wave).

[0003] The inverter needs to utilize support to support during installation process, in order to solve the problem of heat generation during the operation of the inverter, the fan is usually installed on the inverter support to dissipate heat to the inverter, but some inverters are large in size, and the wind blown by the fan cannot fully cover the inverter, which will cause the inverter to be unable to effectively dissipate heat, and the inverter will produce high temperature for a long time, which will affect the working state of the inverter and reduce the service life of the equipment. UTILITY MODEL CONTENTS

[0004] The utility model discloses a heat dissipation's inverter support to solve the problem in the background art.

[0005] In order to achieve the above object, the utility model provides the following technical scheme: a heat dissipation's inverter support, including mounting frame, the inner wall fixed mounting of mounting frame has the mounting panel, the bottom fixed mounting of mounting frame has the support frame, the lateral wall fixed mounting of support frame has the transverse plate, the lateral wall fixed mounting of transverse plate has the fan, the top fixed mounting of transverse plate has the side plate, the side plate is provided with the turbulence mechanism of improving the heat dissipation effect, through setting up turbulence mechanism can expand the coverage of airflow, the airflow that the fan blows to the inverter can evenly spread on the surface of the inverter, the turbulence mechanism is provided with auxiliary mechanism, through setting up auxiliary mechanism can make the airflow that the fan blows can fully cover the surface of the inverter, further improve the heat dissipation effect of inverter, the turbulence mechanism includes:

[0006] The drum is rotatably connected to the outer wall of the side plate, the drum is provided with a cam groove, and the outer wall of the drum is fixedly installed with a gear ring.

[0007] The rotating rod is rotatably connected to the inner wall of the side plate, the outer wall of the rotating rod is fixedly installed with a wind cup, and the outer wall of the rotating rod is fixedly installed with a pinion.

[0008] The spoiler is hinged to the side wall of the side plate, a through slot is formed in the spoiler, a ball head rod is slidably connected to the inner wall of the side plate, the outer wall of the ball head rod is attached to the inner wall of the cam groove, an L-shaped rod is fixedly installed on the top of the ball head rod, and the outer wall of the L-shaped rod is attached to the inner wall of the through slot.

[0009] Preferably, the auxiliary mechanism comprises a rotating shaft, which is rotatably connected to the inner wall of the spoiler and penetrates the spoiler.

[0010] Preferably, the side wall of the rotating shaft is fixedly installed with a swing plate.

[0011] Preferably, the outer wall of the rotating shaft is fixedly installed with a toothed disc.

[0012] Preferably, the end of the L-shaped rod, which is away from the ball head rod, is rotatably connected with a gear rack, the gear rack is engaged with the toothed disc, and the gear rack can drive the rotating shaft to rotate on the inner wall of the spoiler by cooperating with the toothed disc.

[0013] Preferably, the gear rack is slidably connected to the inner wall of the through slot.

[0014] Compared with the prior art, the inverter support provided by the utility model has the following beneficial effects:

[0015] 1. The inverter support can reduce the working temperature of the inverter by starting the fan to blow air to the inverter, and can drive the rotating rod to rotate on the inner wall of the side plate by using the airflow blown by the fan to cooperate with the air cup, at the same time, can drive the spoiler to reciprocatingly rotate on the side wall of the side plate by cooperating with the gear, the gear ring, the rotating cylinder, the cam groove, the ball head rod, the L-shaped rod and the through slot, can diffuse the airflow blown by the fan to the two sides of the fan by the reciprocating rotation of the spoiler, thereby can expand the coverage range of the airflow, can diffuse the airflow blown by the fan on the surface of the inverter uniformly, thereby can improve the heat dissipation effect of the inverter and avoid the high temperature of the inverter.

[0016] 2. The inverter support can drive the swing plate to reciprocatingly swing by the reciprocating sliding of the ball head rod cooperating with the L-shaped rod, the gear rack, the toothed disc and the rotating shaft, can guide the airflow blown by the fan to the two sides of the spoiler by the reciprocating swing of the swing plate, thereby can further expand the diffusion range of the airflow, can fully cover the airflow blown by the fan on the surface of the inverter, and further improve the heat dissipation effect of the inverter. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the overall structure schematic view of the utility model;

[0018] Figure 2 It is the overall structure schematic view of the side plate of the utility model;

[0019] Figure 3 It is the cross section structure schematic view of the spoiler of the utility model;

[0020] Figure 4 It is the A place enlarged structure schematic view of the utility model Figure 1 .

[0021] In the figure: 1, mounting frame;2, mounting plate;3, support frame;4, cross plate;5, fan;6, side plate;7, spoiler mechanism;71, rotating drum;72, rotating rod;73, spoiler;74, cam groove;75, gear ring;76, wind cup;77, gear;78, through slot;79, ball head rod;710, L rod;8, auxiliary mechanism;81, rotating shaft;82, swing plate;83, toothed disc;84, rack. Specific implementation

[0022] As Figures 1-4 shown, the utility model provides a kind of technical scheme: a heat dissipation inverter support, including mounting frame 1, the inner wall of mounting frame 1 is fixedly installed with mounting plate 2, the bottom of mounting frame 1 is fixedly installed with support frame 3, the side wall of support frame 3 is fixedly installed with cross plate 4, the side wall of cross plate 4 is fixedly installed with fan 5, inverter is installed on mounting plate 2 using bolt, then start fan 5 and blow to inverter to reduce the working temperature of inverter, the top of cross plate 4 is fixedly installed with side plate 6, side plate 6 is provided with the spoiler mechanism 7 of improving heat dissipation effect, by setting spoiler mechanism 7, the coverage of airflow can be expanded, the airflow that fan 5 blows to inverter can evenly spread on the surface of inverter, to improve the heat dissipation effect of inverter, auxiliary mechanism 8 is provided on spoiler mechanism 7, by setting auxiliary mechanism 8, the airflow that fan 5 blows can be fully covered on the surface of inverter, to further improve the heat dissipation effect of inverter.

[0023] The turbulence mechanism 7 comprises a rotating drum 71, a rotating rod 72, a turbulence plate 73, a cam groove 74, a gear ring 75, a wind cup 76, a pinion 77, a through groove 78, a ball head rod 79, and an L-shaped rod 710. The rotating drum 71 is rotationally connected to the outer wall of the side plate 6. The rotating drum 71 is provided with the cam groove 74. The outer wall of the rotating drum 71 is fixedly provided with the gear ring 75. The rotating rod 72 is rotationally connected to the inner wall of the side plate 6. The outer wall of the rotating rod 72 is fixedly provided with the wind cup 76. The airflow blown by the fan 5 to the inverter will impact the wind cup 76, so that the wind cup 76 drives the rotating rod 72 to rotate on the inner wall of the side plate 6. The outer wall of the rotating rod 72 is fixedly provided with the pinion 77. The pinion 77 is engaged with the gear ring 75. The rotating rod 72 rotates synchronously with the gear ring 75. The rotation of the gear ring 75 in cooperation with the pinion 77 engaged therewith can drive the rotating drum 71 to rotate on the outer wall of the side plate 6. The turbulence plate 73 is hingedly connected to the side wall of the side plate 6. The reciprocating rotation of the turbulence plate 73 can guide the airflow blown by the fan 5 to the inverter, so that the airflow can be diffused to both sides of the fan 5, thereby expanding the coverage range of the airflow. The airflow blown by the fan 5 to the inverter can be uniformly diffused on the surface of the inverter, thereby improving the heat dissipation effect of the inverter. The turbulence plate 73 is provided with the through groove 78. The inner wall of the side plate 6 is slidingly connected with the ball head rod 79. The outer wall of the ball head rod 79 is attached to the inner wall of the cam groove 74. The cam groove 74 reciprocally presses the ball head rod 79 while the rotating drum 71 rotates, so that the ball head rod 79 reciprocally slides on the inner wall of the side plate 6. The top of the ball head rod 79 is fixedly provided with the L-shaped rod 710. The outer wall of the L-shaped rod 710 is attached to the inner wall of the through groove 78. The ball head rod 79 reciprocally slides on the inner wall of the side plate 6 while the L-shaped rod 710 reciprocally moves up and down on the inner wall of the through groove 78. At the same time, the L-shaped rod 710 reciprocally pushes and pulls the turbulence plate 73, so that the turbulence plate 73 reciprocally rotates on the side wall of the side plate 6.

[0024] The auxiliary mechanism 8 comprises a rotating shaft 81, a swing plate 82, a toothed disc 83, and a rack 84. The rotating shaft 81 is rotationally connected to the inner wall of the turbulence plate 73 and penetrates the turbulence plate 73. The side wall of the rotating shaft 81 is fixedly provided with the swing plate 82. The rotating shaft 81 reciprocally rotates while driving the swing plates 82 at both ends to reciprocally swing. The reciprocating swing of the swing plates 82 can guide the airflow blown by the fan 5 to the inverter to both sides of the turbulence plate 73, thereby further expanding the diffusion range of the airflow. The outer wall of the rotating shaft 81 is fixedly provided with the toothed disc 83. The rack 84 is rotationally connected to the end of the L-shaped rod 710 away from the ball head rod 79. The rack 84 is slidingly connected to the inner wall of the through groove 78. The L-shaped rod 710 reciprocally moves up and down on the inner wall of the through groove 78 while driving the rack 84 to reciprocally slide up and down on the inner wall of the through groove 78. The rack 84 is engaged with the toothed disc 83. The rack 84 reciprocally slides while cooperating with the toothed disc 83 engaged therewith, thereby driving the rotating shaft 81 to reciprocally rotate on the inner wall of the turbulence plate 73.

[0025] Working principle: the inverter is installed on the mounting plate 2 by bolts, and then the fan 5 is started to blow air to the inverter to reduce the working temperature of the inverter, at the same time, the airflow blown by the fan 5 to the inverter will impact the wind cup 76, so that the wind cup 76 drives the rotating rod 72 to rotate on the inner wall of the side plate 6, the rotating rod 72 rotates at the same time to drive the gear 77 to rotate synchronously, the gear 77 rotates at the same time to drive the rotating drum 71 to rotate on the outer wall of the side plate 6 in cooperation with the gear ring 75 engaged with it, the cam groove 74 reciprocatingly extrudes the ball head rod 79 at the same time, so that the ball head rod 79 reciprocatingly slides on the inner wall of the side plate 6, at the same time, the ball head rod 79 drives the L-shaped rod 710 to reciprocatingly move up and down on the inner wall of the through groove 78, and the L-shaped rod 710 reciprocatingly pushes and pulls the spoiler 73, so that the spoiler 73 reciprocatingly rotates on the side wall of the side plate 6, the reciprocating rotation of the spoiler 73 can guide the airflow blown by the fan 5 to the inverter, so that the airflow can be diffused to both sides of the fan 5, thereby the coverage range of the airflow can be expanded, and the airflow blown by the fan 5 to the inverter can be uniformly diffused on the surface of the inverter, thereby the heat dissipation effect of the inverter can be improved, and the high temperature of the inverter can be avoided.

[0026] The L-shaped rod 710 reciprocatingly moves up and down on the inner wall of the through groove 78 to drive the rack 84 to reciprocatingly slide on the inner wall of the through groove 78, the rack 84 reciprocatingly slides at the same time to drive the rotating shaft 81 to reciprocatingly rotate on the inner wall of the spoiler 73 in cooperation with the tooth disc 83 engaged with it, the rotating shaft 81 reciprocatingly rotates at the same time to drive the swing plates 82 at both ends to reciprocatingly swing, the reciprocating swing of the swing plates 82 can guide the airflow blown by the fan 5 to the inverter to both sides of the spoiler 73, thereby the diffusion range of the airflow can be further improved, and the airflow blown by the fan 5 can be fully covered on the surface of the inverter, thereby the heat dissipation effect of the inverter can be further improved.

[0027] The above general description of the present application is made in detail, but some modifications or improvements can be made on the basis of the present application, which is obvious to those skilled in the art. Therefore, the modifications or improvements without departing from the spirit of the present application are within the scope of the present application.

Claims

1. A heat-dissipating inverter bracket comprising a mounting rack (1), characterized in that: The inner wall of the mounting frame (1) is fixedly installed with a mounting plate (2), the bottom of the mounting frame (1) is fixedly installed with a support frame (3), the side wall of the support frame (3) is fixedly installed with a horizontal plate (4), the side wall of the horizontal plate (4) is fixedly installed with a fan (5), the top of the horizontal plate (4) is fixedly installed with a side plate (6), the side plate (6) is provided with a turbulence mechanism (7) for improving the heat dissipation effect, the turbulence mechanism (7) is provided with an auxiliary mechanism (8), and the turbulence mechanism (7) comprises: A rotating drum (71) is rotatably connected to the outer wall of the side plate (6), the rotating drum (71) is provided with a cam groove (74), and the outer wall of the rotating drum (71) is fixedly installed with a gear ring (75); A rotating rod (72) is rotatably connected to the inner wall of the side plate (6), the outer wall of the rotating rod (72) is fixedly installed with a wind cup (76), the outer wall of the rotating rod (72) is fixedly installed with a pinion (77), and the pinion (77) is engaged with the gear ring (75); A turbulence plate (73) is hingedly connected to the side wall of the side plate (6), the turbulence plate (73) is provided with a through groove (78), the inner wall of the side plate (6) is slidably connected with a ball head rod (79), the outer wall of the ball head rod (79) is attached to the inner wall of the cam groove (74), the top of the ball head rod (79) is fixedly installed with an L-shaped rod (710), and the outer wall of the L-shaped rod (710) is attached to the inner wall of the through groove (78).

2. The heat dissipating inverter mount of claim 1, wherein: The auxiliary mechanism (8) comprises a rotating shaft (81), the rotating shaft (81) is rotatably connected to the inner wall of the turbulence plate (73), and the rotating shaft (81) penetrates the turbulence plate (73).

3. A heat dissipating inverter mount according to claim 2, wherein: The side wall of the rotating shaft (81) is fixedly installed with a swing plate (82).

4. The heat dissipating inverter mount of claim 2, wherein: The outer wall of the rotating shaft (81) is fixedly installed with a toothed disc (83).

5. The heat dissipating inverter mount of claim 1, wherein: One end of the L-shaped rod (710) away from the ball head rod (79) is rotatably connected with a rack (84), and the rack (84) is engaged with the toothed disc (83).

6. A heat dissipating inverter mount according to claim 5, wherein: The rack (84) is slidably connected to the inner wall of the through groove (78).