CN212047060U - Vehicle-mounted folding low-temperature storage box - Google Patents

Vehicle-mounted folding low-temperature storage box Download PDF

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Publication number
CN212047060U
CN212047060U CN202020324556.7U CN202020324556U CN212047060U CN 212047060 U CN212047060 U CN 212047060U CN 202020324556 U CN202020324556 U CN 202020324556U CN 212047060 U CN212047060 U CN 212047060U
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bearing shell
bearing
vehicle
ring
temperature
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CN202020324556.7U
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范国亮
李东民
刘盼
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Henan Linggou Electronic Technology Co ltd
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Henan Linggou Electronic Technology Co ltd
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Abstract

The utility model relates to an on-vehicle foldable low temperature storage box, including bearing the shell, the carrier ring, the guide ring, end cover, flexible curb plate, lift actuating mechanism, the mechanism adjusts the temperature, temperature sensor and drive circuit, bearing the shell and personally submitting the trough-shaped structure of "" font for the cross section, the carrier ring, the guide ring is and bears the closed annular structure of shell coaxial distribution, the carrier ring up end is connected with end cover, the terminal surface is connected with bearing the shell bottom through two at least lift actuating mechanism in addition under the carrier ring, between the guide ring and the guide ring with bear shell bottom and carrier ring up end between be connected through flexible curb plate, the mechanism that adjusts the temperature inlays in the storing intracavity, drive circuit inlays in bearing the shell. The novel vehicle can effectively meet the requirement of matching operation with various vehicle structures on one hand, and can realize effective temperature adjustment and cooling storage of articles; on the other hand, during operation, the volume can be flexibly adjusted according to the use requirement, and the device has good bearing capacity and adjusting capacity.

Description

Vehicle-mounted folding low-temperature storage box
Technical Field
The utility model relates to an on-vehicle storing device, what definite is an on-vehicle foldable low temperature storage box.
Background
At present, in vehicle use, in order to meet the requirement of low-temperature storage of articles such as beverages, devices such as vehicle refrigerators have wide application, and in application, it is found that current vehicle refrigerator devices are always of a prism cavity structure with a fixed structure, and although the requirements of temperature adjustment and storage use of the articles can be met, when the vehicle refrigerator devices are installed and positioned with the vehicle, a large vehicle space is required, and the articles cannot be flexibly adjusted according to use requirements when stored, so that the use flexibility is greatly influenced, particularly when the vehicle refrigerator devices are used for small devices, the defect is particularly prominent, and for the problem, effective means and ways for solving the problem are not available at present.
Therefore, there is an urgent need to develop a new vehicle storage device to meet the actual use requirement.
Disclosure of Invention
The utility model aims to overcome the defects and provide an on-vehicle storage device. The novel structure is simple, the use is flexible and convenient, on one hand, the requirement of matching operation with various vehicle structures can be effectively met, and the temperature adjustment and cooling storage of articles can be effectively realized; on the other hand, in operation, the volume can be flexibly adjusted according to use requirements, and the device has good bearing capacity and adjusting capacity, so that the flexibility and convenience in use are greatly improved, and meanwhile, the reliability of bearing and temperature adjustment of articles is effectively improved.
In order to achieve the above purpose, the utility model discloses a realize through following technical scheme:
a vehicle-mounted folding type low-temperature storage box comprises a bearing shell, bearing rings, guide rings, a sealing end cover, flexible side plates, a lifting driving mechanism, a temperature adjusting mechanism, a temperature sensor and a driving circuit, wherein the bearing shell is of a groove-shaped structure with a cross section shaped like a Chinese character 'ji', the bearing rings and the guide rings are closed annular structures which are coaxially distributed with the bearing shell, the outer diameter of each guide ring is 1-5 mm smaller than that of the bearing shell, the outer diameter of each bearing ring is 5 mm smaller than that of the bearing shell, the upper end face of each bearing shell abuts against the lower end face of each bearing ring, the upper end face of each bearing ring is connected with the sealing end cover, the lower end face of each bearing ring is further connected with the bottom of the bearing shell through at least two lifting driving mechanisms, the lifting driving mechanisms are uniformly distributed around the axis of the bearing shell, the guide rings and the guide rings are connected with the bottom of the bearing, The outer side of the guide ring is embedded in the bearing shell, and the guide ring, the bearing shell, the guide ring and the sealing end cover together form a storage cavity of a closed cavity structure; the drive circuit is embedded in the bearing shell and is respectively electrically connected with the lifting drive mechanism, the temperature adjusting mechanism and the temperature sensor.
Furthermore, the temperature adjusting mechanism comprises a semiconductor refrigerating mechanism, a heat exchanger, a drainage fan, a cold air pipe, a return air pipe, a diversion branch pipe, an air supply outlet, a return air inlet and a gas pipeline joint, the air supply outlet and the return air inlet are multiple, the inner side surface of each guide ring is provided with at least one air supply outlet and at least one return air inlet, each air supply outlet is respectively connected with the heat exchanger through the cold air pipe and the return air inlet through the return air pipe, the cold air pipe and the return air pipe are respectively communicated with the drainage fan and the diversion branch pipe through a three-way valve, the diversion branch pipe is also communicated with the gas pipeline joint, at least one semiconductor refrigerating mechanism is provided with a refrigerating end which is mutually connected with the heat exchanger, the heat exchanger is provided with at least one temperature sensor, the semiconductor refrigerating mechanism, the heat exchanger, the drainage fan and the three-way valve are all embedded in, the semiconductor refrigerating mechanism, the drainage fan, the gas pipeline joint and the three-way valve are electrically connected with the driving circuit.
Furthermore, the cold air pipe and the return air pipe are uniformly distributed in a spiral shape around the axis of the storage cavity and are connected with the guide ring and the inner side surface of the flexible side plate; the bottom of the bearing shell corresponding to the semiconductor refrigerating mechanism, the heat exchanger, the drainage fan and the three-way valve is provided with a control cavity, and the driving circuit is embedded in the control cavity.
Furthermore, the total height of the guide rings is 50% -100% of the depth of the bearing shell, and when the guide rings are all located in the bearing shell and located at the lowest position, the distance between every two adjacent guide rings is 5-20 mm.
Furthermore, the flexible side plate is any one of an organ shield structure and a corrugated pipe structure; the lifting driving mechanism is any one of at least two stages of electric telescopic rods and telescopic hinges.
Furthermore, at least two connecting sliding grooves are uniformly distributed on the outer side surface of the bearing shell, and the connecting sliding grooves are hinged with the outer side surface of the bearing shell through a ratchet mechanism and form an included angle of 0-90 degrees with the axis of the bearing shell.
Furthermore, the driving circuit is a circuit system based on an industrial single chip microcomputer, and the driving circuit is additionally provided with a data communication terminal, a display and a control key, wherein the data communication terminal, the display and the control key are all embedded in the side surface of the bearing shell.
The novel temperature-regulating device is simple in structure and flexible and convenient to use, can effectively meet the requirement of running matched with various vehicle structures on one hand, and can effectively regulate and cool the temperature of articles; on the other hand, in operation, the volume can be flexibly adjusted according to use requirements, and the device has good bearing capacity and adjusting capacity, so that the flexibility and convenience in use are greatly improved, and meanwhile, the reliability of bearing and temperature adjustment of articles is effectively improved.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
As shown in figure 1, a vehicle-mounted folding low-temperature storage box comprises a bearing shell 1, a bearing ring 2, a guide ring 3, a sealing end cover 4, a flexible side plate 5, a lifting driving mechanism 6, a temperature adjusting mechanism 7, a temperature sensor 8 and a driving circuit 9, wherein the bearing shell 1 is of a groove-shaped structure with a cross section in a shape like the Chinese character 'ji', the bearing ring 2 and the guide ring 3 are both of closed annular structures which are coaxially distributed with the bearing shell 1, the outer diameter of the guide ring 3 is 1-5 mm smaller than that of the bearing shell 2, the outer diameter of the bearing ring 2 is 5 mm larger than that of the bearing shell 1, the upper end surface of the bearing shell 1 is abutted against the lower end surface of the bearing ring 2, the upper end surface of the bearing ring 2 is connected with the sealing end cover 4, the lower end surface of the bearing ring 2 is further connected with the bottom of the bearing shell 1 through at least two lifting driving mechanisms 6, the lifting driving mechanisms 6 are uniformly distributed around the axis of the bearing shell 1, the guide rings 3 are, the flexible side plate 5 covers the outer sides of the bearing ring 2 and the guide ring 3 and is embedded in the bearing shell 1, the bearing ring 2, the guide ring 3 and the sealing end cover 4 jointly form a storage cavity 10 of a closed cavity structure, the temperature adjusting mechanism 7 is embedded in the storage cavity 10 and is respectively connected with the bearing shell 1 and the guide ring 3, at least two temperature sensors 8 are arranged, at least one temperature adjusting mechanism 7 is arranged in the storage cavity 10; the driving circuit 9 is embedded in the bearing shell 1 and is respectively electrically connected with the lifting driving mechanism 6, the temperature adjusting mechanism 7 and the temperature sensor 8.
It is important to point out that the temperature adjusting mechanism 7 includes a semiconductor refrigerating mechanism 71, a heat exchanger 72, a flow guiding fan 73, a cold air pipe 74, an air return pipe 75, a diversion branch pipe 76, a plurality of air supply ports 77, a plurality of air return ports 78, at least one air supply port 77 and at least one air return port 78 on the inner side surface of each guide ring 3, each air supply port 77 is connected with the heat exchanger 72 through the cold air pipe 74 and the air return port 75 through the air return pipe 75, the cold air pipe 74 and the air return pipe 75 are respectively communicated with the flow guiding fan 73 and the diversion branch pipe 76 through a three-way valve 70, the diversion branch pipe 76 is further communicated with the air pipe joint 79, at least one cooling end of the semiconductor refrigerating mechanism 71 is connected with the heat exchanger 72, at least one temperature sensor 8 is arranged on the heat exchanger 72, and the semiconductor refrigerating mechanism 71 is connected with the cold end of the heat exchanger, Heat exchanger 72, drainage fan 73 and three-way valve 70 all inlay in bearing the bottom of shell 1, gas pipeline connects 79 inlays in bearing the side surface of shell 1, semiconductor refrigeration mechanism 71, drainage fan 73, gas pipeline connects 79 and three-way valve 70 all with drive circuit 9 electrical connection.
Meanwhile, the cold air pipe 74 and the return air pipe 75 are uniformly distributed in a spiral shape around the axis of the storage cavity 10 and are connected with the guide ring 3 and the inner side surface of the flexible side plate 5; the bottom of the bearing shell 1 corresponding to the semiconductor refrigerating mechanism 71, the heat exchanger 72, the drainage fan 73 and the three-way valve 70 is provided with a control cavity 11, and the driving circuit 9 is embedded in the control cavity 11.
Preferably, the total height of the guide rings 3 is 50% -100% of the depth of the bearing shell 1, and when the guide rings 3 are all located in the bearing shell 1 and at the lowest position, the distance between two adjacent guide rings 3 is 5-20 mm.
In addition, the flexible side plate 5 is any one of an organ shield structure and a corrugated pipe structure; the lifting driving mechanism 6 is any one of at least two stages of electric telescopic rods and telescopic hinges.
Meanwhile, at least two connecting chutes 12 are uniformly distributed on the outer side surface of the bearing shell 1, and the connecting chutes 12 are hinged with the outer side surface of the bearing shell 1 through ratchet mechanisms 13 and form an included angle of 0-90 degrees with the axis of the bearing shell 1.
In this embodiment, the driving circuit 9 is a circuit system based on an industrial single chip microcomputer, and the driving circuit 9 is further provided with a data communication terminal 91, a display 92 and an operation key 93, and the data communication terminal 91, the display 92 and the operation key 93 are all embedded in the side surface of the bearing shell 1.
This is novel in the concrete implementation, at first assembles this neotype bearing shell, bearing ring, guide ring, end cover, flexible curb plate, lift actuating mechanism, temperature adjustment mechanism, temperature sensor and drive circuit that constitute, then will assemble this neotype connection spout and vehicle assigned position through the bearing shell outside to be connected drive circuit in vehicle driving computer circuit, can accomplish this novel assembly with temperature adjustment mechanism water conservancy diversion branch pipe and vehicle air conditioning system intercommunication simultaneously.
This novel completion back, at first drive thermoregulation mechanism's semiconductor refrigeration mechanism, the drainage fan operation, at first drive drainage fan equipment operation, through the supply-air outlet that is located the storing intracavity, return air inlet and drainage fan at first drive storing intracavity air current circulation pass through the heat exchanger, then one of them or two move simultaneously in drive semiconductor refrigeration mechanism and the drainage fan, carry out the heat exchange through the heat exchanger and the storing chamber air current through the heat exchanger by semiconductor refrigeration mechanism and vehicle air conditioning system low temperature air current, thereby reach the purpose of carrying out the cooling that circulates to the storing chamber.
When the cooling operation is carried out, the bearing ring can be driven by the lifting driving mechanism to be adjusted up and down along the axis of the bearing shell, the purpose of adjusting the volume and the whole volume can be achieved by adjusting the distance between the bearing ring and the guide ring, and the use flexibility is improved.
In addition, this novel accessible carries out the operation that adjusts the temperature with the help of on-vehicle air conditioning system to the operation energy consumption of the operation that also effectually reduces adjusting the temperature.
The novel temperature-regulating device is simple in structure and flexible and convenient to use, can effectively meet the requirement of running matched with various vehicle structures on one hand, and can effectively regulate and cool the temperature of articles; on the other hand, in operation, the volume can be flexibly adjusted according to use requirements, and the device has good bearing capacity and adjusting capacity, so that the flexibility and convenience in use are greatly improved, and meanwhile, the reliability of bearing and temperature adjustment of articles is effectively improved.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (7)

1. The utility model provides a vehicle-mounted foldable low temperature storage box which characterized in that: the vehicle-mounted folding type low-temperature storage box comprises a bearing shell, bearing rings, guide rings, a sealing end cover, flexible side plates, a lifting driving mechanism, a temperature adjusting mechanism, a temperature sensor and a driving circuit, wherein the bearing shell is of a groove-shaped structure with a cross section shaped like a Chinese character 'ji', the bearing rings and the guide rings are closed annular structures which are coaxially distributed with the bearing shell, the outer diameter of each guide ring is 1-5 mm smaller than that of the bearing shell, the outer diameter of each bearing ring is at least 5 mm larger than that of the bearing shell, the upper end face of each bearing shell abuts against the lower end face of each bearing ring, the upper end face of each bearing ring is connected with the sealing end cover, the lower end face of each bearing ring is connected with the bottom of the bearing shell through at least two lifting driving mechanisms, the lifting driving mechanisms are uniformly distributed around the axis of the bearing shell, the guide rings and the guide rings are connected with the bottom of, the flexible side plates are coated on the outer sides of the bearing ring and the guide ring and embedded in the bearing shell, the flexible side plates, the bearing shell, the bearing ring, the guide ring and the sealing end cover jointly form a storage cavity of a closed cavity structure, the temperature regulating mechanism is embedded in the storage cavity and is respectively connected with the bearing shell and the guide ring, at least two temperature sensors are arranged, at least one temperature regulating mechanism is arranged in the storage cavity; the drive circuit is embedded in the bearing shell and is respectively electrically connected with the lifting drive mechanism, the temperature adjusting mechanism and the temperature sensor.
2. The vehicle-mounted folding cryogenic storage box of claim 1, characterized in that: the temperature adjusting mechanism comprises a semiconductor refrigerating mechanism, a heat exchanger, a drainage fan, a cold air pipe, a return air pipe, a flow guide branch pipe, an air supply outlet, a return air inlet and a gas pipeline joint, the air supply outlet and the return air inlet are multiple, the inner side surface of each guide ring is provided with at least one air supply outlet and at least one return air inlet, each air supply outlet is respectively connected with the heat exchanger through the cold air pipe and the return air inlet through the return air pipe, the cold air pipe and the return air pipe are respectively communicated with the drainage fan and the flow guide branch pipe through a three-way valve, the flow guide branch pipe is also communicated with the gas pipeline joint, at least one semiconductor refrigerating mechanism is provided with a refrigerating end connected with the heat exchanger, the heat exchanger is provided with at least one temperature sensor, the semiconductor refrigerating mechanism, the heat exchanger, the drainage fan and the three-way valve are all, the semiconductor refrigerating mechanism, the drainage fan, the gas pipeline joint and the three-way valve are electrically connected with the driving circuit.
3. The vehicle-mounted folding cryogenic storage box of claim 2, characterized in that: the cold air pipe and the return air pipe are uniformly distributed in a spiral shape around the axis of the storage cavity and are connected with the guide ring and the inner side surface of the flexible side plate; the bottom of the bearing shell corresponding to the semiconductor refrigerating mechanism, the heat exchanger, the drainage fan and the three-way valve is provided with a control cavity, and the driving circuit is embedded in the control cavity.
4. The vehicle-mounted folding cryogenic storage box of claim 1, characterized in that: the total height of the guide rings is 50% -100% of the depth of the bearing shell, and when the guide rings are all located in the bearing shell and located at the lowest position, the distance between every two adjacent guide rings is 5-20 mm.
5. The vehicle-mounted folding cryogenic storage box of claim 1, characterized in that: the flexible side plate is in any one of an organ shield structure and a corrugated pipe structure; the lifting driving mechanism is any one of at least two stages of electric telescopic rods and telescopic hinges.
6. The vehicle-mounted folding cryogenic storage box of claim 1, characterized in that: the outer side surface of the bearing shell is uniformly provided with at least two connecting sliding grooves, and the connecting sliding grooves are hinged with the outer side surface of the bearing shell through a ratchet mechanism and form an included angle of 0-90 degrees with the axis of the bearing shell.
7. The vehicle-mounted folding cryogenic storage box of claim 1, characterized in that: the driving circuit is a circuit system based on an industrial single chip microcomputer, a data communication terminal, a display and a control key are additionally arranged on the driving circuit, and the data communication terminal, the display and the control key are all embedded in the side surface of the bearing shell.
CN202020324556.7U 2020-03-16 2020-03-16 Vehicle-mounted folding low-temperature storage box Active CN212047060U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020324556.7U CN212047060U (en) 2020-03-16 2020-03-16 Vehicle-mounted folding low-temperature storage box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020324556.7U CN212047060U (en) 2020-03-16 2020-03-16 Vehicle-mounted folding low-temperature storage box

Publications (1)

Publication Number Publication Date
CN212047060U true CN212047060U (en) 2020-12-01

Family

ID=73531206

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020324556.7U Active CN212047060U (en) 2020-03-16 2020-03-16 Vehicle-mounted folding low-temperature storage box

Country Status (1)

Country Link
CN (1) CN212047060U (en)

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