CN210093022U - Integrated driving device with heat dissipation function - Google Patents

Integrated driving device with heat dissipation function Download PDF

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Publication number
CN210093022U
CN210093022U CN201921165831.9U CN201921165831U CN210093022U CN 210093022 U CN210093022 U CN 210093022U CN 201921165831 U CN201921165831 U CN 201921165831U CN 210093022 U CN210093022 U CN 210093022U
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heat dissipation
control box
motor
driving device
fan
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CN201921165831.9U
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Chinese (zh)
Inventor
陈建波
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Ningbo Xingtai Technology Co Ltd
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Ningbo Xingtai Technology Co Ltd
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Priority to CN201921165831.9U priority Critical patent/CN210093022U/en
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Abstract

The utility model provides an integral type drive arrangement with heat dissipation function belongs to power assembly equipment technical field. It has solved the radiating problem can not be stabilized of current power assembly equipment. The utility model relates to an integral type drive arrangement with heat dissipation function includes heat dissipation shell, motor, control box, heating panel, air vent, fan, control panel, support column and temperature sensor. Wherein, the last gas port of control box passes through air vent UNICOM with the lower gas port of casing, promptly, the air of control box passes through air vent UNICOM with the air in the casing for in-process when the fan reduces the temperature of motor, the air in the control box carries out the heat exchange with the air in the motor, makes control box and motor cool down in step.

Description

Integrated driving device with heat dissipation function
Technical Field
The utility model belongs to the technical field of power assembly equipment, a integral type drive arrangement with heat dissipation function is related to.
Background
At present, in order to reduce the space occupied by the power assembly, people often directly install a motor controller on a motor, for example, an integrated structure of a motor, a motor controller and a speed reducing mechanism with the publication number of CN 206389226U, which comprises a driving motor, a speed reducing mechanism and a motor controller; the speed reducing mechanism is fixed at the output end of the drive motor bearing; the motor controller is fixed on one side of the driving motor, although the scheme is that the motor controller is directly installed on the motor to reduce the space occupied by the power assembly, the scheme can only be applied to the motor with smaller power, when the motor is replaced by a high-power motor with 12-30KW, a large amount of heat is generated in the operation process of the high-power motor, the motor controller directly installed on the motor is bound to be influenced by the heat of the motor, meanwhile, a corresponding heat dissipation mechanism is not arranged in the motor control box, and therefore the motor controller cannot normally operate.
Disclosure of Invention
The utility model aims at having the above-mentioned problem to current technique, provided an integral type drive arrangement with heat dissipation function that simple structure, stability are good.
The purpose of the utility model can be realized by the following technical proposal: an integrated driving apparatus having a heat dissipation function, comprising:
the heat dissipation shell is internally provided with a motor;
the control box is positioned and arranged on the heat dissipation shell; the heat dissipation shell is formed by surrounding four heat dissipation plates, and vent holes for communicating the control box and the motor are formed in the heat dissipation plates positioned between the control box and the motor;
the fan is arranged in the heat dissipation shell; the control box is internally provided with a control panel used for driving the fan and the motor to run, a plurality of support columns are arranged between the lower end face of the control panel and the control box, and each support column is provided with a temperature sensor electrically connected with the control panel.
In the integrated driving device with a heat dissipation function, the motor includes a casing, and a lower air port for communicating with the air vent is formed in the casing; and an upper air port for communicating the air vent is formed in one side of the control box, which is close to the heat dissipation plate.
In the integrated driving device with a heat dissipation function, the side surface of the casing is provided with a plurality of third guide grooves, a plurality of contact surfaces and a plurality of limiting grooves in an annular array along the central axis of the casing.
In the above integrated driving device with a heat dissipation function, each heat dissipation plate is provided with a third guide bar corresponding to the third guide groove, a contact bar corresponding to the contact surface, and a limit bar corresponding to the limit groove; every the third conducting bar all activity card is located the third guide slot, every the spacing all activity card of locating is in the spacing inslot that corresponds.
In the integrated driving device with the heat dissipation function, each heat dissipation plate is provided with at least two first guide grooves and two second guide grooves for positioning and installing the control box.
In the integrated driving device with a heat dissipation function, the control box is provided with a first guide bar corresponding to the first guide groove and a second guide bar corresponding to the second guide groove.
In the integrated driving device with the heat dissipation function, two adjacent heat dissipation plates are fixedly connected.
In the above integrated driving device with a heat dissipation function, a mounting rack for movably mounting a fan is arranged in the heat dissipation shell; and the mounting frame is provided with a fan for driving the fan to rotate.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the utility model discloses in, install the motor location in the heat dissipation shell, with control box location installation on the heat dissipation shell, effectively reduced this power assembly's space.
2. The upper air port of the control box is communicated with the lower air port of the casing through the air vent, namely, the air of the control box is communicated with the air in the casing through the air vent, so that the air in the control box exchanges heat with the air in the motor in the process of reducing the temperature of the motor by the fan, the control box and the motor are synchronously cooled, the integrated driving device is suitable for a high-power motor with the power of 12-30KW, and the control box can be maintained in a constant temperature range in the working process of the integrated driving device.
Drawings
Fig. 1 is a schematic structural diagram of a preferred embodiment of the present invention.
Fig. 2 is a side view of the control box.
Fig. 3 is a cross-sectional view at a-a of fig. 2.
Fig. 4 is a bottom view of the control box.
Fig. 5 is a combination view of the heat dissipation case and the motor.
Fig. 6 is an exploded view of the heat sink housing and the fan.
Fig. 7 is a schematic structural view of the cabinet.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
As shown in fig. 1 to 7, the integrated driving apparatus with heat dissipation function of the present invention includes a heat dissipation case 100, a motor 200, a control box 300, a heat dissipation plate 110, an air vent 120, a fan 140, a control board 310, a support column 320, and a temperature sensor 330.
The motor 200 is positioned and installed in the heat dissipation shell 100, the control box 300 is positioned and installed on the heat dissipation shell 100, the heat dissipation shell 100 is formed by enclosing four heat dissipation plates 110, vent holes 120 used for communicating the control box 300 with the motor 200 are formed in the heat dissipation plates 110 positioned between the control box 300 and the motor 200, the motor 200 comprises a machine shell 210, a lower air port 220 used for communicating the vent holes 120 is formed in the machine shell 210, an upper air port 340 used for communicating the vent holes 120 is formed in one side, close to the heat dissipation plates 110, of the control box 300, the control box is installed in the heat dissipation shell 100, a control panel 310 used for driving the fan 140 and the motor 200 to operate is arranged in the control box 300, a plurality of support columns 320 are arranged between the lower end face of the control panel 310 and the control box 300, a temperature sensor 330 electrically connected with the control panel 310 is arranged on each support column 320, and in the process, at the same time, the control board 310 can generate heat during the operation overshoot, and since the control box 300 and the motor 200 are mounted on the heat dissipation case 100, and the heat dissipation case 100 is opened with a vent hole for communicating the upper air port 340 with the lower air port 220, so that the air in the control box 300 is communicated with the air in the motor 200, in the process, the temperature sensor 330 detects the temperature in the control box 300 at any time, and when the temperature value detected by the temperature sensor 330 is greater than the preset value of the temperature sensor 330, the temperature sensor 330 generates an electric signal and transmits the electric signal to the control board 310, so that the control board 310 controls the fan 140 to be turned on, the temperature inside the heat dissipation case 100 is effectively reduced, i.e., effectively reducing the temperature of the motor 200, the motor 200 is communicated with the control box 300 through the vent 120, so that the temperature of the control box 300 is also reduced along with the reduction of the temperature on the motor 200, in this way, the temperature of the motor 200 and the temperature of the control box 300 can be reduced synchronously.
Two adjacent heat dissipation plates 110 are fixedly connected, a plurality of third guide grooves 211, a plurality of contact surfaces 212 and a plurality of limiting grooves 213 are formed in the side surface of the housing 210 along the central axis of the housing in an annular array, each heat dissipation plate 110 is provided with a third guide bar 111 corresponding to the third guide groove 211, a contact bar 112 corresponding to the contact surface 212 and a limiting bar 113 corresponding to the limiting groove 213, each third guide bar 111 is movably clamped in the third guide groove 211, each limiting bar 113 is movably clamped in the corresponding limiting groove 213, when people install the motor 200 in the heat dissipation housing 100, people need to insert the limiting bars 113 on the heat dissipating plate 110 into the corresponding limiting grooves 213, insert the third guide bars 111 into the corresponding third guide grooves 211, and push the contact bars 112 against the corresponding contact surfaces 212, so that the casing 210 can be positioned and installed in the heat dissipation casing 100, and the lower air opening 220 on the casing 210 is communicated with the vent 120.
Each heat dissipation plate 110 is provided with at least two first guide grooves 114 and two second guide grooves 115 for positioning and installing the control box 300, the control box 300 is provided with a first guide bar 350 corresponding to the first guide groove 114 and a second guide bar 360 corresponding to the second guide groove 115, when people install the casing 210 in the heat dissipation shell 100, people need to install the first guide bar 350 on the control box 300 in the corresponding first guide groove 114 movably, and install the second guide bar 360 in the corresponding second guide groove 115 movably, so that the control box 300 can be positioned and installed on the heat dissipation shell 100, and the upper air opening 340 on the control box 300 is communicated with the air vent 120.
Be equipped with the mounting bracket 130 that is used for movable mounting fan 140 in the heat dissipation shell 100, be equipped with on the mounting bracket 130 and be used for driving fan 140 pivoted fan 131, when the temperature in the control box 300 is higher than temperature sensor 330's default, temperature sensor 330 produces the signal of telecommunication and transmits for control panel 310, be connected with control panel 310 electricity because of fan 131, make control panel 310 control fan 131 operate, be connected through the pivot (not marking in the figure) because of fan 131 and fan 140, make fan 131 drive fan 140 through pivot (not marking in the figure) and rotate, thereby make heat dissipation shell 100 and the external air convection that forms, and then reduce the temperature in motor 200 and the temperature in the control box 300 simultaneously.
Each heat dissipation plate is composed of two first heat dissipation plates (not marked in the figure), each first heat dissipation plate is provided with a contact strip, a third guide strip and a limiting strip of the heat dissipation plate, and each first heat dissipation plate is provided with a first guide groove and a second guide groove of the heat dissipation plate.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (8)

1. An integrated driving device with a heat dissipation function, comprising:
the heat dissipation shell is internally provided with a motor;
the control box is positioned and arranged on the heat dissipation shell; the heat dissipation shell is formed by surrounding four heat dissipation plates, and vent holes for communicating the control box and the motor are formed in the heat dissipation plates positioned between the control box and the motor;
the fan is arranged in the heat dissipation shell; the control box is internally provided with a control panel used for driving the fan and the motor to run, a plurality of support columns are arranged between the lower end face of the control panel and the control box, and each support column is provided with a temperature sensor electrically connected with the control panel.
2. The integrated driving device with the heat dissipation function as recited in claim 1, wherein the motor comprises a housing, and a lower air port for communicating with the air vent is formed in the housing; and an upper air port for communicating the air vent is formed in one side of the control box, which is close to the heat dissipation plate.
3. The integrated driving device with the heat dissipation function as recited in claim 2, wherein the side surface of the housing is provided with a plurality of third guide grooves, a plurality of contact surfaces and a plurality of limiting grooves in an annular array along a central axis thereof.
4. The integrated driving device with the heat dissipation function as recited in claim 3, wherein each of the heat dissipation plates is provided with a third conducting bar corresponding to the third guiding groove, a contact bar corresponding to the contact surface, and a limiting bar corresponding to the limiting groove; every the third conducting bar all activity card is located the third guide slot, every the spacing all activity card of locating is in the spacing inslot that corresponds.
5. The integrated driving device with the heat dissipation function as claimed in claim 1, wherein each heat dissipation plate is provided with at least two first guide grooves and two second guide grooves for positioning and installing the control box.
6. The integrated driving device with the heat dissipation function as recited in claim 5, wherein the control box is provided with a first guide bar corresponding to the first guide groove and a second guide bar corresponding to the second guide groove.
7. The integrated driving device with heat dissipation function as defined in claim 1, wherein two adjacent heat dissipation plates are fixedly connected.
8. The integrated driving device with the heat dissipation function as recited in claim 1, wherein a mounting rack for movably mounting the fan is provided in the heat dissipation case; and the mounting frame is provided with a fan for driving the fan to rotate.
CN201921165831.9U 2019-07-23 2019-07-23 Integrated driving device with heat dissipation function Active CN210093022U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921165831.9U CN210093022U (en) 2019-07-23 2019-07-23 Integrated driving device with heat dissipation function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921165831.9U CN210093022U (en) 2019-07-23 2019-07-23 Integrated driving device with heat dissipation function

Publications (1)

Publication Number Publication Date
CN210093022U true CN210093022U (en) 2020-02-18

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921165831.9U Active CN210093022U (en) 2019-07-23 2019-07-23 Integrated driving device with heat dissipation function

Country Status (1)

Country Link
CN (1) CN210093022U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110299788A (en) * 2019-07-23 2019-10-01 宁波兴泰科技有限公司 A kind of integrated driving device with heat sinking function

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110299788A (en) * 2019-07-23 2019-10-01 宁波兴泰科技有限公司 A kind of integrated driving device with heat sinking function
CN110299788B (en) * 2019-07-23 2024-07-16 宁波兴泰科技有限公司 Integrated driving device with heat dissipation function

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