Vehicle-mounted refrigerator and vehicle
By installing a sealing structure between the double doors of the vehicle refrigerator, the gas leakage problem is solved, achieving a sealing effect and efficient space utilization, and ensuring the normal operation of the refrigeration function.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BYD CO LTD
- Filing Date
- 2025-05-27
- Publication Date
- 2026-07-14
AI Technical Summary
In the existing technology, the split design of the car interior armrest and the car refrigerator cannot be effectively sealed, resulting in gas leakage inside the refrigerator, which affects the refrigeration function and sealing performance.
A sealing structure is provided between the first refrigerator door and the second refrigerator door, including a seal, a sealing mating part, and a sealing pusher. Through the cooperation of the elastic part and the guide plate, a sealing fit is achieved between the doors to prevent gas leakage.
It effectively prevents gas leakage inside the refrigerator, ensures the normal use of the refrigeration function, improves space utilization, and is easy to operate.
Smart Images

Figure CN224498870U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vehicle manufacturing technology, and in particular to a vehicle-mounted refrigerator and a vehicle equipped with the vehicle-mounted refrigerator. Background Technology
[0002] With the rapid development of the automotive industry, intelligence, comfort, and multi-functionality have become important trends in modern automotive design. In automotive interior design, armrests are often integrated with in-car refrigerators. However, in related technologies, split-type armrests cannot effectively seal the gap in the middle, allowing internal gases from the refrigerator to leak out, severely affecting cooling function and sealing performance. Utility Model Content
[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a vehicle-mounted refrigerator that effectively prevents gas leakage inside the refrigerator, is easy to operate, and has high space utilization.
[0004] According to an embodiment of the present invention, the vehicle-mounted refrigerator includes: a refrigerator body having a refrigerator opening; a first refrigerator door and a second refrigerator door, the first refrigerator door and the second refrigerator door being installed opposite each other at the refrigerator opening for selectively opening or closing the refrigerator opening; and a sealing structure for sealing between the first refrigerator door and the second refrigerator door.
[0005] According to the embodiment of the present utility model, the vehicle refrigerator has a sealing structure between the first refrigerator door and the second refrigerator door, so that the first refrigerator door and the second refrigerator door can be sealed together through the sealing structure, thereby effectively preventing the gas inside the vehicle refrigerator from leaking to the outside from the joint between the first refrigerator door and the second refrigerator door. In addition, the double-opening refrigerator door design is convenient to operate and has a high space utilization rate.
[0006] According to some embodiments of the present invention, the vehicle refrigerator has a sealing structure including a sealing element and a sealing mating element. The sealing element is installed on the first refrigerator door, and the sealing mating element is installed on the second refrigerator door. When the refrigerator door and the second refrigerator door are closed, the sealing element seals against the sealing mating element.
[0007] According to some embodiments of the present invention, the vehicle refrigerator with sealing structure further includes a sealing pusher, the sealing mating member is retractably installed on the second refrigerator door, and the sealing pusher is used to push the sealing mating member to extend relative to the second refrigerator door to seal and press against the sealing member.
[0008] According to some embodiments of the present invention, in a vehicle refrigerator, the sealing pusher is retractably mounted on the second refrigerator door. The sealing pusher is adapted to press against the refrigerator body when the second refrigerator door closes the refrigerator opening, and to push the sealing mating member to move under the pressure of the refrigerator body.
[0009] The vehicle refrigerator according to some embodiments of the present invention further includes a first elastic member, which is installed between the sealing pusher and the second refrigerator door, and the first elastic member is used to push the sealing pusher to extend toward the refrigerator body.
[0010] According to some embodiments of the present invention, in a vehicle refrigerator, a movable guide plate is provided inside the second refrigerator door, the sealing pusher is movably inserted through the movable guide plate, and the first elastic member is elastically pressed between the movable guide plate and the sealing pusher.
[0011] According to some embodiments of the present invention, in a vehicle refrigerator, the direction of movement of the sealing pusher intersects with the direction of movement of the sealing mating member, one of the sealing pusher and the sealing mating member is provided with a pushing slope, and the sealing pusher is adapted to push the sealing mating member to move at the pushing slope.
[0012] According to some embodiments of the present invention, the sealing fitting is movably disposed on the side wall of the second refrigerator door facing the first refrigerator door, and is movable along the width direction of the second refrigerator door to approach or move away from the first refrigerator door.
[0013] And / or, the sealing pusher is movably disposed through the bottom wall of the second refrigerator door facing the refrigerator body, and is movable along the height direction of the second refrigerator door to move closer to or further away from the refrigerator body.
[0014] The vehicle refrigerator according to some embodiments of the present invention further includes a second elastic member, which is installed between the sealing member and the second refrigerator door, and the second elastic member is used to push the sealing member to retract toward the second refrigerator door.
[0015] According to some embodiments of the present invention, in a vehicle refrigerator, the side of the first refrigerator door away from the second refrigerator door is rotatably mounted to the refrigerator body via a first rotating shaft;
[0016] The second refrigerator door is rotatably mounted to the refrigerator body on the side away from the first refrigerator door via a second rotating shaft.
[0017] According to some embodiments of the present invention, the vehicle refrigerator door includes a first refrigerator inner panel and a first refrigerator outer panel, one of the first refrigerator inner panel and the first refrigerator outer panel is rotatably connected to the refrigerator body, and a first heat preservation cavity is defined between the first refrigerator inner panel and the first refrigerator outer panel.
[0018] And / or, the second refrigerator door includes a second inner refrigerator panel and a second outer refrigerator panel, one of the second inner refrigerator panel and the second outer refrigerator panel being rotatably connected to the refrigerator body, and a second insulation cavity is defined between the second inner refrigerator panel and the second outer refrigerator panel.
[0019] According to some embodiments of the present invention, the vehicle refrigerator body is provided with a main sealing member surrounding the refrigerator opening, and the first refrigerator door and the second refrigerator door are sealed against the main sealing member when the refrigerator opening is closed.
[0020] According to some embodiments of the present invention, the vehicle refrigerator has a first refrigerator door and / or the second refrigerator door provided with a sealing baffle. The sealing baffle is located at the end of the sealing structure and is sealed against the main sealing member.
[0021] This utility model also proposes a vehicle.
[0022] The vehicle according to the present invention includes the vehicle refrigerator of any of the above embodiments.
[0023] The advantages of the vehicle and the aforementioned in-vehicle refrigerator compared to existing technologies are the same, and will not be repeated here.
[0024] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0025] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0026] Figure 1 This is a schematic diagram of the structure of the vehicle-mounted refrigerator according to an embodiment of the present utility model;
[0027] Figure 2 This is a structural schematic diagram of the vehicle-mounted refrigerator and the main sealing component according to an embodiment of the present utility model;
[0028] Figure 3 This is a schematic diagram of the structure of the second refrigerator door according to an embodiment of the present invention;
[0029] Figure 4This is a cross-sectional view (closed state) of the vehicle refrigerator according to an embodiment of this utility model;
[0030] Figure 5 This is a cross-sectional view (open state) of the vehicle refrigerator according to an embodiment of this utility model;
[0031] Figure 6 This is a schematic diagram of the main sealing element and the second refrigerator door according to an embodiment of the present invention;
[0032] Figure 7 This is a cross-sectional view of the main sealing element and the second refrigerator door according to an embodiment of this utility model.
[0033] Figure label:
[0034] Car refrigerator 100
[0035] Refrigerator body 1, refrigerator opening 11,
[0036] First refrigerator door 2, first rotating shaft 21, first refrigerator inner panel 22, first refrigerator outer panel 23, first insulation cavity 24.
[0037] Second refrigerator door 3, movable guide plate 31, second rotating shaft 32, second refrigerator inner panel 33, second refrigerator outer panel 34, second insulation cavity 35.
[0038] The sealing structure 4, sealing element 41, sealing mating element 42, sealing pushing element 43, first elastic element 44, pushing inclined surface 45, second elastic element 46, and sealing baffle 47.
[0039] Main seal 5, armrest skin 6. Detailed Implementation
[0040] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0041] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," and "circumferential," etc., indicating the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, features defined with "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0042] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0043] The following is for reference. Figures 1-7 According to the embodiment of the present utility model, the vehicle refrigerator 100 has a sealing structure 4 that enables the first refrigerator door 2 and the second refrigerator door 3 to achieve a sealed fit, effectively preventing the gas inside the refrigerator from leaking from the joint between the first refrigerator door 2 and the second refrigerator door 3. It is also easy to operate and has a high space utilization rate.
[0044] like Figure 1 and Figures 3-5 As shown, the vehicle refrigerator 100 according to an embodiment of the present utility model includes: a refrigerator body 1, a first refrigerator door 2, a second refrigerator door 3, and a sealing structure 4.
[0045] The refrigerator body 1 is the core component of the vehicle-mounted refrigerator 100. The refrigerator body 1 can be fixed relative to the vehicle body. For example, the refrigerator body 1 can be detachably connected to the vehicle body via connectors, or it can be fixedly integrated into the vehicle body; the specific installation method is flexible and can be selected. The refrigerator body 1 contains a refrigeration space and has a refrigerator opening 11 that communicates with the refrigeration space, allowing users to place items into or remove items from the refrigeration space through the refrigerator opening 11. The refrigerator body 1 generates a low-temperature airflow to maintain a low temperature in the refrigeration space, thereby achieving the refrigeration effect on the food within.
[0046] Furthermore, the first refrigerator door 2 and the second refrigerator door 3 are installed side-by-side at the refrigerator opening 11, allowing for selective opening or closing of the opening 11. In other words, the first refrigerator door 2 and the second refrigerator door 3 together cover the refrigerator opening 11, preventing cold air from escaping from the refrigerator body 1 and ensuring the normal operation of the vehicle refrigerator 100's cooling function. Since the first refrigerator door 2 and the second refrigerator door 3 are designed to open side-by-side, in actual use, the first refrigerator door 2 can be opened individually, the second refrigerator door 3 can be opened individually, or both can be opened simultaneously. This provides flexible options for opening the vehicle refrigerator 100, and opening individual refrigerator doors is convenient and quick. Compared to a single, integrated refrigerator door, this design offers more opening options, better meeting user needs in different usage scenarios. Additionally, the side-by-side vehicle refrigerator 100 has higher space utilization.
[0047] The sealing structure 4 is used to create a sealing fit between the first refrigerator door 2 and the second refrigerator door 3. In other words, the sealing structure 4 seals the gap between the first refrigerator door 2 and the second refrigerator door 3, thereby achieving a sealed fit between them. The first refrigerator door 2 and the second refrigerator door 3 can be laid flat on the top of the refrigerator body 1, such as being distributed horizontally at the refrigerator opening 11, or horizontally at the refrigerator opening 11, or in other angles or directions for a split-opening design; the arrangement is flexible and selectable.
[0048] In practical use, the first refrigerator door 2 and the second refrigerator door 3 are closed to seal the refrigerator opening 11. The sealing structure 4 can be located at the edge where the first refrigerator door 2 and the second refrigerator door 3 contact each other, thereby sealing the gap at the edge where the refrigerator doors contact each other, thus forming a sealed fit between the first refrigerator door 2 and the second refrigerator door 3. Thus, the first refrigerator door 2, the second refrigerator door 3, and the sealing structure 4 together seal the refrigerator opening 11, preventing the low-temperature airflow inside the refrigerator body 1 from flowing out to the outside through the refrigerator opening 11 and the gap between the two refrigerator doors. This ensures the temperature inside the refrigerator body 1, maintains the normal operation of the vehicle refrigerator 100's refrigeration function, reduces the loss of cold air in the refrigerated space, reduces the power consumption of the refrigerator body 1, lowers power consumption, and saves on the operating costs of the vehicle refrigerator 100.
[0049] According to the embodiment of the present utility model, the vehicle refrigerator 100 forms a sealed fit by disposing the sealing structure 4 between the first refrigerator door 2 and the second refrigerator door 3, thereby effectively preventing the low-temperature airflow inside the vehicle refrigerator 100 from flowing out of the joint between the first refrigerator door 2 and the second refrigerator door 3 into the external environment, ensuring the normal use of the refrigeration function of the vehicle refrigerator 100. At the same time, the first refrigerator door 2 and the second refrigerator door 3 are installed in a double-door configuration, which makes the operation convenient and quick, and the space utilization rate is higher.
[0050] In some embodiments, the sealing structure 4 includes a seal 41 and a sealing mating member 42. The seal 41 is installed on the first refrigerator door 2, and the sealing mating member 42 is installed on the second refrigerator door 3. At least one of the seal 41 and the sealing mating member 42 may be constructed as an elastomer, such as by constructing the seal 41 as a sealing strip and the sealing mating member 42 as a sealing plate, with the sealing plate pressing against the sealing strip to form an elastic pressure, thereby enabling the seal 41 and the sealing mating member 42 to form a sealing fit between the first refrigerator door 2 and the second refrigerator door 3.
[0051] Therefore, after the sealing element 41 and the sealing mating element 42 are sealed together, the low-temperature airflow inside the refrigerator body 1 cannot flow out from the gap between the first refrigerator door 2 and the second refrigerator door 3. In other words, when the refrigerator opening 11 is closed by the first refrigerator door 2 and the second refrigerator door 3, the sealing element 41 presses against the sealing mating element 42, that is, the sealing element 41 presses against the sealing mating element 42 at the gap between the two refrigerator doors, so that the first refrigerator door 2 and the second refrigerator door 3 together block the refrigerator opening 11 through the cooperation of the sealing structure 4, thereby sealing the gap between the first refrigerator door 2 and the second refrigerator door 3, so that the low-temperature airflow inside the refrigerator body 1 cannot flow out to the outside from the gap, that is, the low-temperature airflow is retained inside the refrigerator body 1 to maintain a low-temperature environment, thereby ensuring the normal use of the vehicle refrigerator 100.
[0052] When closing the refrigerator door 11 of the first refrigerator door 2 and the second refrigerator door 3, the first refrigerator door 2 can be closed first and then the second refrigerator door 3, or the second refrigerator door 3 can be closed first and then the first refrigerator door 2, or the first refrigerator door 2 and the second refrigerator door 3 can be closed simultaneously. In all these cases, the sealing element 41 can be pressed against the sealing mating element 42. That is, the sealing function of the sealing structure 4 is not limited to the closing order of the first refrigerator door 2 and the second refrigerator door 3. Therefore, the closing method of the double-door refrigerator door is flexible and easy to operate.
[0053] In some embodiments, the sealing structure 4 further includes a sealing pusher 43, and a sealing mating member 42 is telescopically mounted on the second refrigerator door 3. The sealing pusher 43 is used to push the sealing mating member 42 out relative to the second refrigerator door 3 to seal against the sealing member 41. That is, the sealing mating member 42 is configured to be flexibly telescopic relative to the second refrigerator door 3. For example, when the sealing mating member 42 is extended relative to the second refrigerator door 3, the sealing mating member 42 presses against the sealing member 41 to seal the gap between the first refrigerator door 2 and the second refrigerator door 3. When the sealing mating member 42 is retracted relative to the second refrigerator door 3, the sealing mating member 42 is located inside the second refrigerator door 3 or does not protrude excessively from the second refrigerator door 3, making it easy for the second refrigerator door 3 to open. Moreover, the sealing mating member 42 will not form an outward protruding structure when the second refrigerator door 3 is opened, ensuring the aesthetics of the second refrigerator door 3 when it is opened.
[0054] Among them, the sealing pusher 43 can be used as a driving member for the extension of the sealing mating member 42 to realize the active driving of the sealing mating member 42, so as to ensure that the sealing mating can be stably achieved when the first refrigerator door 2 and the second refrigerator door 3 are closed.
[0055] In the specific design, the sealing pusher 43 can be set to electric, manual or other driving methods, such as a drive motor, or a manual component exposed to the outside, or a drive component linked with the second refrigerator door 3. The setting method is flexible and can be selected, thereby facilitating the reliable sealing cooperation between the sealing structure 4 and the first refrigerator door 2 and the second refrigerator door 3.
[0056] In some embodiments, the sealing pusher 43 is telescopically mounted on the second refrigerator door 3. That is, the telescopic movement of the sealing mating member 42 within the second refrigerator door 3 can be controlled by the telescopic movement of the sealing pusher 43, thereby achieving the pressing and separating of the sealing mating member 42 and the sealing member 41. In other words, the sealing pusher 43 can also be configured to be movable relative to the second refrigerator door 3, so that when the sealing pusher 43 moves relative to the second refrigerator door 3, it drives the sealing mating member 42, thereby achieving an active sealing effect.
[0057] In other words, when the second refrigerator door 3 is closed, the sealing pusher 43 presses against the refrigerator body 1, so that the refrigerator body 1 pushes the sealing pusher 43 to move relative to the second refrigerator door 3. As the second refrigerator door 3 is closed, the sealing pusher 43 moves a certain distance. As the sealing pusher 43 moves, it pushes the sealing mating part 42 to move relative to the second refrigerator door 3, so that the sealing mating part 42 extends out of the second refrigerator door 3 and presses against the sealing part 41, thereby achieving a sealing fit with the sealing part 41.
[0058] Specifically, such as Figure 4 and Figure 5As shown, the left end of the sealing fitting 42 extends outside the second refrigerator door 3, while the right end of the sealing fitting 42 is located inside the second refrigerator door 3. Simultaneously, the upper end of the sealing pusher 43 is located inside the second refrigerator door 3 and presses against the right end of the sealing fitting 42, while the lower end of the sealing pusher 43 extends outside the second refrigerator door 3. That is, when the second refrigerator door 3 is closed relative to the refrigerator body 1, the refrigerator body 1 pushes the lower end of the sealing pusher 43 upwards, causing the upper end of the sealing pusher 43 to push the right end of the sealing fitting 42 to the left. This drives the left end of the sealing fitting 42 to press against the sealing member 41, thus achieving an automatic sealing function. The structure is simple, requires no manual operation of the sealing pusher 43, and is easy to use.
[0059] In some embodiments, the vehicle refrigerator 100 further includes a first elastic member 44, which is installed between the sealing pusher 43 and the second refrigerator door 3. The first elastic member 44 is used to push the sealing pusher 43 to extend toward the refrigerator body 1. In other words, the first elastic member 44 can apply an elastic force to the sealing pusher 43 to extend toward the refrigerator body 1, so that when there is no pressure between the sealing pusher 43 and the refrigerator body 1, the first elastic member 44 can reset the sealing pusher 43 to the position to contact the refrigerator body 1.
[0060] Specifically, when the second refrigerator door 3 is opened, the sealing pusher 43 separates from the refrigerator body 1, meaning the refrigerator body 1 exerts no pushing force on the sealing pusher 43. The first elastic member 44 can push the sealing pusher 43 out of the second refrigerator door 3 toward the refrigerator body 1, and the sealing pusher 43 remains in the extended state. At this time, the sealing pusher 43 no longer exerts a pushing force on the sealing mating member 42, and the sealing mating member 42 will not extend excessively out of the second refrigerator door 3. When the second refrigerator door 3 is closed, the refrigerator body 1 contacts the sealing pusher 43 and overcomes the elastic force of the first elastic member 44, so that the sealing pusher 43 extends into the second refrigerator door 3 and presses against the sealing mating member 42, thereby pushing the sealing mating member 42 to seal with the sealing member 41.
[0061] Therefore, when the second refrigerator door 3 is opened, the first elastic member 44 can act as a reset drive member for the sealing push member 43, so that the sealing push member 43 is reset to the position to be in contact with the refrigerator body 1, ensuring that the refrigerator body 1 can accurately press against the sealing push member 43 when the second refrigerator door 3 is closed, thus ensuring the reliability of the seal.
[0062] In some embodiments, a movable guide plate 31 is provided inside the second refrigerator door 3, and the sealing pusher 43 is movably disposed through the movable guide plate 31. That is, the sealing pusher 43 can extend outward along the movable guide plate 31 to the outside of the second refrigerator door 3, or extend into the inside of the second refrigerator door 3 along the movable guide plate 31. In other words, the movable guide plate 31 can guide the sealing pusher 43 so that the sealing pusher 43 can move along a fixed trajectory, thereby ensuring the reliability of the movement of the sealing pusher 43.
[0063] The first elastic member 44 is elastically pressed between the movable guide plate 31 and the sealing pusher 43. For example, one end of the first elastic member 44 is pressed against the movable guide plate 31 and the other end is pressed against the sealing pusher 43, so that the first elastic member 44 pushes the sealing pusher 43 to guide the movement relative to the movable guide plate 31, so as to ensure that the sealing pusher 43 can reliably extend.
[0064] Specifically, such as Figures 3-5 As shown, the first elastic element 44 can be constructed as a spring, and the first elastic element 44 is sleeved on the sealing pusher 43, and as... Figure 4 As shown, the outer peripheral wall of the sealing pusher 43 is provided with an axial limiting part, which is located below the movable guide plate 31. The upper end of the first elastic member 44 abuts against the movable guide plate 31, and the lower end of the first elastic member 44 abuts against the axial limiting part, so that the lower end of the first elastic member 44 can push the axial limiting part to drive the sealing pusher 43 to extend downward to cooperate with the refrigerator body 1.
[0065] In some embodiments, the movement direction of the sealing pusher 43 intersects with the movement direction of the sealing mating member 42. That is, the sealing pusher 43 can move along the height direction of the second refrigerator door 3, and the sealing mating member 42 can move along the length direction of the second refrigerator door 3, or the sealing mating member 42 and the sealing pusher 43 can move at a certain angle. Thus, by opening or closing the second refrigerator door 3, the extension and retraction control of the sealing pusher 43 can be realized, thereby controlling the retraction of the sealing mating member 42 within the second refrigerator door 3.
[0066] In this design, one of the sealing pusher 43 and the sealing mating member 42 is provided with a pushing ramp 45, and the sealing pusher 43 is adapted to push the sealing mating member 42 to move at the pushing ramp 45. That is, the pushing ramp 45 can be provided on the sealing pusher 43 so that the pushing ramp 45 abuts against the sealing mating member 42, or the pushing ramp 45 can be provided on the sealing mating member 42 so that the sealing pusher 43 abuts against the sealing mating member 42. Thus, by providing the pushing ramp 45, when the sealing pusher 43 and the sealing mating member 42 are in contact and mating through the pushing ramp 45, force can be transmitted in two different directions. For example, when the sealing pusher 43 moves along the height direction of the second refrigerator door 3, the pushing ramp 45 can be used to push the sealing mating member 42 to move along the length direction of the second refrigerator door 3, thereby facilitating the sealing function of the sealing structure 4.
[0067] Specifically, such as Figure 4 and Figure 5 As shown, the pushing inclined surface 45 is provided on the sealing mating member 42, and the pushing inclined surface 45 and the upper end of the sealing pushing member 43 abut against each other. At the same time, the movement directions of the sealing mating member 42 and the sealing pushing member 43 are perpendicular to each other. When the second refrigerator door 3 is opened, the lower end of the sealing pushing member 43 extends downward from the second refrigerator door 3 and the upper end presses against the lower part of the pushing inclined surface 45. As the refrigerator door closes, the refrigerator body 1 presses the lower end of the sealing pushing member 43, and the sealing pushing member 43 gradually moves upward along the pushing inclined surface 45 under the pressure of the refrigerator body 1. The pushing inclined surface 45 gradually moves in a direction perpendicular to it under the action of the sealing pushing member 43, that is, it drives the sealing mating member 42 to extend outward from the second refrigerator door 3. Thus, when the second refrigerator door 3 is closed downward, the first refrigerator door 2 and the second refrigerator door 3 can achieve a sealing fit in the horizontal direction.
[0068] In some embodiments, the sealing fitting 42 is movably disposed through the side wall of the second refrigerator door 3 facing the first refrigerator door 2, and is movable along the width direction of the second refrigerator door 3 to approach or move away from the first refrigerator door 2. That is, the sealing fitting 42 is disposed inside the second refrigerator door 3 on the side close to the first refrigerator door 2 and can flexibly extend and retract relative to the second refrigerator door 3, thereby pressing against or moving away from the sealing fitting 41.
[0069] And / or, in other embodiments, the sealing pusher 43 is movably disposed through the bottom wall of the second refrigerator door 3 facing the refrigerator body 1, and is movable along the height direction of the second refrigerator door 3 to approach or move away from the refrigerator body 1. That is, the sealing pusher 43 is disposed inside the second refrigerator door 3 on the side close to the refrigerator body 1 and can flexibly extend and retract relative to the second refrigerator door 3, thereby achieving selective contact with the refrigerator body 1.
[0070] Specifically, such as Figure 4 and Figure 5As shown, the first refrigerator door 2 and the second refrigerator door 3 are distributed along the left-right direction and are both located above the refrigerator body 1. A sealing fitting 42 is movably inserted through the left side wall of the second refrigerator door 3, while a sealing pusher 43 is movably inserted through the bottom wall of the second refrigerator door 3. When the second refrigerator door 3 is closed, the sealing pusher 43 is pressed upwards and gradually tightens the sealing fitting 42. Simultaneously, the sealing fitting 42 extends to the left of the second refrigerator door 3, approaching the first refrigerator door 2 and pressing against the sealing fitting 41, thereby achieving a sealing fit between the first refrigerator door 2 and the second refrigerator door 3.
[0071] In some embodiments, the vehicle refrigerator 100 further includes a second elastic member 46, which is installed between the sealing member 42 and the second refrigerator door 3. When the sealing member 42 extends outward toward the second refrigerator door 3, the second elastic member 46 is in a compressed state, with one end pressing against the sealing member 42 and the other end pressing against the side wall of the second refrigerator door 3. At this time, the sealing member 42 is subjected to an elastic pushing force that causes it to retract toward the second refrigerator door 3. Furthermore, when the second refrigerator door 3 is opened, the sealing pusher 43 no longer provides a pushing force to the sealing member 42, and the second elastic member 46 can push the sealing member 42 to retract toward the second refrigerator door 3. That is, the second elastic member 46 is used to push the sealing member 42 toward the second refrigerator door 3. This facilitates the opening of the second refrigerator door 3.
[0072] Specifically, such as Figure 4 and Figure 5 As shown, the second elastic element 46 can be constructed as a spring, and the second elastic element 46 is sleeved outside the sealing fitting 42. The left end of the second elastic element 46 abuts against the left inner side wall of the second refrigerator door 3, and the right end of the second elastic element 46 abuts against the sealing fitting 42. In this way, the second elastic element 46 can generate an elastic force between the sealing fitting 42 and the second refrigerator door 3 to ensure that the sealing fitting 42 can be effectively reset and accurately retracted to make effective pressing contact with the sealing pusher 43, thus ensuring the reliability of the seal.
[0073] In some embodiments, the side of the first refrigerator door 2 away from the second refrigerator door 3 is rotatably mounted to the refrigerator body 1 via a first rotating shaft 21; the side of the second refrigerator door 3 away from the first refrigerator door 2 is rotatably mounted to the refrigerator body 1 via a second rotating shaft 32. That is, both the first refrigerator door 2 and the second refrigerator door 3 can rotate flexibly on the refrigerator body 1, and the rotating shafts are both located on the side away from the other refrigerator door. Thus, the first refrigerator door 2 and the second refrigerator door 3 are mounted opposite each other on the refrigerator body 1.
[0074] Specifically, such as Figure 4 and Figure 5As shown, the left side of the first refrigerator door 2 is rotatably connected to the refrigerator body 1 via the first rotating shaft 21, and the right side of the second refrigerator door 3 is rotatably connected to the refrigerator body 1 via the second rotating shaft 32. The right side of the first refrigerator door 2 and the left side of the second refrigerator door 3 are oppositely distributed and can be sealed together by the sealing structure 4.
[0075] When the vehicle refrigerator 100 needs to be opened, the first refrigerator door 2 can be opened outward around the first rotating shaft 21, and then the second refrigerator door 3 can be opened outward around the second rotating shaft 32. Alternatively, the second refrigerator door 3 can be opened outward around the second rotating shaft 32, and then the first refrigerator door 2 can be opened outward around the first rotating shaft 21. Or, the first refrigerator door 2 and the second refrigerator door 3 can be opened simultaneously around the first rotating shaft 21 and the second rotating shaft 32. All of these methods can open the vehicle refrigerator 100. When the vehicle refrigerator 100 needs to be closed, the first refrigerator door 2 and the second refrigerator door 3 can be closed simultaneously around the first rotating shaft 21 and the second rotating shaft 32. Thus, the vehicle refrigerator 100 can be flexibly opened or closed through the first rotating shaft 21 and the second rotating shaft 32, and the operation is simple.
[0076] In some embodiments, the first refrigerator door 2 includes a first inner refrigerator panel 22 and a first outer refrigerator panel 23, one of which is rotatably connected to the refrigerator body 1. That is, the first inner refrigerator panel 22 can be rotatably connected to the refrigerator body 1, or the first outer refrigerator panel 23 can be rotatably connected to the refrigerator body 1, both of which can realize the opening or closing of the first refrigerator door 2, and a first insulation cavity 24 is defined between the first inner refrigerator panel 22 and the first outer refrigerator panel 23.
[0077] And / or, in other embodiments, the second refrigerator door 3 includes a second inner refrigerator panel 33 and a second outer refrigerator panel 34, one of which is rotatably connected to the refrigerator body 1. That is, the second inner refrigerator panel 33 or the second outer refrigerator panel 34 can be rotatably connected to the refrigerator body 1, both of which can realize the opening or closing of the second refrigerator door 3, and a second insulation cavity 35 is defined between the second inner refrigerator panel 33 and the second outer refrigerator panel 34.
[0078] It should be noted that the internal materials of the first insulation cavity 24 and the second insulation cavity 35 can be polyurethane foam, foaming agent, or other heat insulation materials; thus, by setting the first insulation cavity 24 and the second insulation cavity 35, the heat transfer between the inside and outside of the vehicle refrigerator 100 can be reduced, thereby ensuring the cooling effect of the vehicle refrigerator 100.
[0079] Specifically, such as Figure 4 and Figure 5As shown, the first refrigerator inner panel 22 and the second refrigerator inner panel 33 are rotatably connected to the refrigerator body 1. When the vehicle refrigerator 100 is opened, the first refrigerator inner panel 22 or the second refrigerator inner panel 33 can be rotated outwards respectively, or the first refrigerator inner panel 22 and the second refrigerator inner panel 33 can be rotated outwards simultaneously, thus opening the vehicle refrigerator 100. When the vehicle refrigerator 100 is closed, the first refrigerator inner panel 22 and the second refrigerator inner panel 33 can be rotated inwards simultaneously, thereby closing the vehicle refrigerator 100.
[0080] In some embodiments, the refrigerator body 1 is provided with a main sealing member 5 surrounding the refrigerator opening 11. The first refrigerator door 2 and the second refrigerator door 3 are sealed against the main sealing member 5 when the refrigerator opening 11 is closed. That is, the main sealing member 5 can be used to make the first refrigerator door 2 and the second refrigerator door 3 respectively seal against the refrigerator opening 11. When the first refrigerator door 2 and the second refrigerator door 3 are closed, the first refrigerator door 2 and the second refrigerator door 3 are sealed against the refrigerator opening 11, thereby effectively preventing the low-temperature airflow inside the vehicle refrigerator 100 from flowing out and ensuring the cooling effect of the vehicle refrigerator 100.
[0081] Specifically, such as Figure 2 As shown, the main sealing element 5 is constructed as an annular sealing ring, and the annular sealing ring is arranged around the refrigerator opening 11. When the first refrigerator door 2 and the second refrigerator door 3 are closed, the bottom walls of the first refrigerator door 2 and the second refrigerator door 3 press against the main sealing element 5. As a result, the low-temperature airflow inside the refrigerator body 1 cannot flow out from the gap between the first refrigerator door 2 and the second refrigerator door 3 and the refrigerator opening 11, so that the cooling function of the vehicle refrigerator 100 can be used normally.
[0082] In some embodiments, the first refrigerator door 2 and / or the second refrigerator door 3 are provided with sealing baffles 47. That is, the sealing baffles 47 can be provided on the first refrigerator door 2, or on the second refrigerator door 3, or both the first refrigerator door 2 and the second refrigerator door 3 can be provided with sealing baffles 47. The sealing baffles 47 are located at the end of the sealing structure 4 and press against the main sealing member 5. Thus, by making the main sealing member 5 and the sealing baffles 47 press against each other, a sealing fit is achieved between the first refrigerator door 2 and the refrigerator opening 11, and between the second refrigerator door 3 and the refrigerator opening 11, thereby preventing low-temperature airflow from flowing out of the refrigerator body 1 to the outside and ensuring the cooling effect of the vehicle refrigerator 100.
[0083] Specifically, such as Figure 6 and Figure 7As shown, both the first refrigerator door 2 and the second refrigerator door 3 are equipped with sealing baffles 47. The sealing baffles 47 protrude downward from the end of the sealing structure 4 and extend to the outside of the first refrigerator inner panel 22 and the second refrigerator inner panel 33, respectively. When the first refrigerator door 2 and the second refrigerator door 3 are closed, the sealing baffles 47 gradually approach the main sealing member 5 and finally press against the main sealing member 5. Thus, the sealing baffles 47 of the first refrigerator door 2 and the sealing baffles 47 of the second refrigerator door 3 respectively form a sealing fit with the main sealing member 5, so that the low-temperature airflow inside the refrigerator body 1 cannot flow out to the outside, thereby ensuring the normal use of the cooling function of the vehicle refrigerator 100.
[0084] It should be noted that the first refrigerator outer panel 23 and the second refrigerator outer panel 34 are provided with armrest covers 6. The armrest covers 6 serve as an exterior structural component covering the first refrigerator outer panel 23 and the second refrigerator outer panel 34, which can improve the aesthetics of the vehicle refrigerator 100.
[0085] This utility model also proposes a vehicle.
[0086] The vehicle according to the embodiments of this utility model includes a vehicle-mounted refrigerator 100 according to any of the above embodiments. By placing a sealing structure 4 between the first refrigerator door 2 and the second refrigerator door 3 to form a sealed fit, the low-temperature airflow inside the vehicle-mounted refrigerator 100 is effectively prevented from flowing out of the joint between the first refrigerator door 2 and the second refrigerator door 3 into the external environment, ensuring the normal operation of the vehicle-mounted refrigerator 100's cooling function. At the same time, the split-type installation of the first refrigerator door 2 and the second refrigerator door 3 makes operation convenient and quick, and improves space utilization.
[0087] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0088] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A vehicle-mounted refrigerator, characterized in that, include: The refrigerator body (1) is provided with a refrigerator opening (11); The first refrigerator door (2) and the second refrigerator door (3) are installed opposite each other at the refrigerator opening (11) to be used together to selectively open or close the refrigerator opening (11); A sealing structure (4) is provided for sealing between the first refrigerator door (2) and the second refrigerator door (3).
2. The vehicle-mounted refrigerator according to claim 1, characterized in that, The sealing structure (4) includes a sealing element (41) and a sealing mating element (42). The sealing element (41) is installed on the first refrigerator door (2), and the sealing mating element (42) is installed on the second refrigerator door (3). When the first refrigerator door (2) and the second refrigerator door (3) close the refrigerator opening (11), the sealing element (41) seals against the sealing mating element (42).
3. The vehicle-mounted refrigerator according to claim 2, characterized in that, The sealing structure (4) further includes a sealing pusher (43), and the sealing mating member (42) is telescopically mounted on the second refrigerator door (3). The sealing pusher (43) is used to push the sealing mating member (42) to extend relative to the second refrigerator door (3) to seal and press against the sealing member (41).
4. The vehicle-mounted refrigerator according to claim 3, characterized in that, The sealing pusher (43) is telescopically mounted on the second refrigerator door (3). The sealing pusher (43) is adapted to press against the refrigerator body (1) when the second refrigerator door (3) closes the refrigerator opening (11), and push the sealing mating member (42) to move under the pressure of the refrigerator body (1).
5. The vehicle-mounted refrigerator according to claim 4, characterized in that, It also includes a first elastic member (44), which is installed between the sealing pusher (43) and the second refrigerator door (3), and the first elastic member (44) is used to push the sealing pusher (43) to extend toward the refrigerator body (1).
6. The vehicle-mounted refrigerator according to claim 5, characterized in that, The second refrigerator door (3) is provided with a movable guide plate (31), and the sealing pusher (43) is movably inserted through the movable guide plate (31). The first elastic member (44) elastically presses against the movable guide plate (31) and the sealing pusher (43).
7. The vehicle-mounted refrigerator according to claim 4, characterized in that, The direction of movement of the sealing pusher (43) intersects the direction of movement of the sealing mating member (42). One of the sealing pusher (43) and the sealing mating member (42) is provided with a pushing slope (45), and the sealing pusher (43) is adapted to push the sealing mating member (42) to move at the pushing slope (45).
8. The vehicle-mounted refrigerator according to claim 4, characterized in that, The sealing fitting (42) is movably inserted through the side wall of the second refrigerator door (3) facing the first refrigerator door (2), and is movable along the width direction of the second refrigerator door (3) to approach or move away from the first refrigerator door (2); And / or, the sealing pusher (43) is movably disposed through the bottom wall of the second refrigerator door (3) facing the refrigerator body (1), and is movable along the height direction of the second refrigerator door (3) to approach or move away from the refrigerator body (1).
9. The vehicle-mounted refrigerator according to claim 2, characterized in that, It also includes a second elastic member (46), which is installed between the sealing fit member (42) and the second refrigerator door (3), and the second elastic member (46) is used to push the sealing fit member (42) to retract toward the second refrigerator door (3).
10. The vehicle-mounted refrigerator according to claim 1, characterized in that, The side of the first refrigerator door (2) away from the second refrigerator door (3) is rotatably mounted to the refrigerator body (1) via a first rotating shaft (21); The second refrigerator door (3) is rotatably mounted to the refrigerator body (1) on the side away from the first refrigerator door (2) via a second rotating shaft (32).
11. The vehicle-mounted refrigerator according to claim 1, characterized in that, The first refrigerator door (2) includes a first refrigerator inner panel (22) and a first refrigerator outer panel (23), one of the first refrigerator inner panel (22) and the first refrigerator outer panel (23) is rotatably connected to the refrigerator body (1), and a first heat preservation cavity (24) is defined between the first refrigerator inner panel (22) and the first refrigerator outer panel (23); And / or, the second refrigerator door (3) includes a second refrigerator inner panel (33) and a second refrigerator outer panel (34), one of the second refrigerator inner panel (33) and the second refrigerator outer panel (34) being rotatably connected to the refrigerator body (1), and a second heat preservation cavity (35) is defined between the second refrigerator inner panel (33) and the second refrigerator outer panel (34).
12. The vehicle-mounted refrigerator according to claim 1, characterized in that, The refrigerator body (1) is provided with a main sealing member (5) surrounding the refrigerator opening (11), and the first refrigerator door (2) and the second refrigerator door (3) are sealed against the main sealing member (5) when the refrigerator opening (11) is closed.
13. The vehicle-mounted refrigerator according to claim 12, characterized in that, The first refrigerator door (2) and / or the second refrigerator door (3) are provided with a sealing baffle (47), the sealing baffle (47) is located at the end of the sealing structure (4), and the sealing baffle (47) is sealed against the main sealing member (5).
14. A vehicle, characterized in that, The vehicle refrigerator includes any one of claims 1-13.