Door body device and refrigeration equipment
The door assembly system with sliding mechanisms for refrigeration devices addresses interference issues by ensuring alignment with cabinetry, maintaining aesthetic coordination and user experience.
Patent Information
- Application Number
- CN202422088792.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-01-22
- Filing Date
- 2024-08-26
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-26
AI Technical Summary
When existing refrigerators are placed in a built-in place, opening the door will cause the decorative panels to interfere with the cabinet, affecting coordination and aesthetics, and at the same time affecting the user experience.
Multiple door body components are adopted, each component including a box door and a sliding door mechanism, and the cabinet door is driven to move in the width direction of the box door through the traction assembly to avoid interference with the cabinet door.
While ensuring coordination and aesthetics, the interference between cabinet doors and cabinets is avoided and the user experience is improved.
Smart Images

Figure CN223106408U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of refrigeration equipment, in particular to a door body device and a refrigeration equipment. Background Art
[0002] Currently, refrigerators are essential appliances in almost every household. Most of the existing refrigerators are vertical cabinets. Whether in the kitchen or the living room, etc., the placement of the refrigerator requires a certain amount of space. In order to save space, some of the existing refrigerators adopt an embedded method and are placed together with cabinets, etc.
[0003] As Figure 1 shown, in order to further increase coordination and aesthetics, some refrigerators 10 placed in an embedded manner will hang a decorative panel 30 outside the refrigerator door 11 and make the decorative panel 30 flush with the cabinet 20 on the side of the refrigerator 10. However, in actual use, as Figure 2 shown, the gap between the refrigerator 10 and the cabinet 20 is small, and the decorative panel 30 will interfere with the cabinet 20 during the process of opening the refrigerator door 11. In order to avoid interference, in the general treatment method, the opening angle is usually reduced or the distance between the cabinet 20 and the side of the refrigerator 10 is increased to solve the problem. However, these methods affect the coordination and aesthetics, and also affect the user experience. Summary of the Utility Model
[0004] In order to solve the problems existing in the above background art, a door body device and a refrigeration equipment are provided in the utility model to avoid the problem that the decorative panel interferes with the cabinet during the process of opening the refrigerator door while ensuring coordination and aesthetics and not affecting the user experience.
[0005] According to the first aspect of the utility model, a door body device for a refrigeration equipment is provided. The refrigeration equipment includes a box body, and the door body device includes:
[0006] A plurality of door body components arranged side by side along the height direction of the box body;
[0007] Each door body component includes a box door, a cabinet door and at least one sliding door mechanism. The cabinet door is slidably arranged outside the box door. The cabinet door is a wooden cabinet door. The box door is rotatably connected to the box body through at least one hinge. The sliding door mechanism includes a connected traction component and a sliding door component. The sliding door component is arranged between the box door and the cabinet door. The traction component is configured to drive the sliding door component to act during the opening or closing process of the box door, and then drive the cabinet door to move relative to the width direction of the box door;
[0008] The hinge axis of the hinge corresponding to the previous door body assembly is located at the top of the corresponding box door, and the hinge is provided with a traction assembly; the two hinge axes of the two hinges corresponding to the next door body assembly are respectively located at the top and bottom of the corresponding box door, and each of the two hinges is provided with a traction assembly.
[0009] According to a door body device provided by the utility model, the hinge includes a first hinge, a second hinge and a third hinge, the first hinge is arranged on the top wall of the box body, and the second hinge and the third hinge are arranged on the front side of the box body; the door body device includes a first box door and a second box door, the top of the first box door is rotatably connected to the box body through the first hinge, the top of the second box door is rotatably connected to the box body through the second hinge, and the bottom of the second box door is rotatably connected to the box body through the third hinge.
[0010] According to a door body device provided by the utility model, the first hinge includes a first hinge plate and a first hinge shaft, a portion of the first hinge plate covers the top wall of the box body and the remaining portion protrudes from the top wall toward the box door, the first hinge shaft extends downward from the portion of the first hinge plate protruding from the top wall, the top of the first box door is hinged to the first hinge shaft, and the first traction component is arranged on one of the first hinge plate and the first hinge shaft.
[0011] According to a door body device provided by the utility model, the second hinge includes a second hinge plate, a second hinge shaft and a third hinge shaft, the second hinge plate includes a mounting plate and a connecting plate, the mounting plate is installed on the front side of the box body, the connecting plate is connected to the side of the mounting plate away from the front side of the box body, the connecting plate and the mounting plate are arranged at an angle, the connecting plate has a first side and a second side opposite to each other, the second hinge shaft is arranged on the first side, the bottom of the first box door is hinged to the second hinge shaft, the third hinge shaft is arranged on the second side, the top of the second box door is hinged to the third hinge shaft, and the second traction assembly is arranged on one of the second hinge plate and the third hinge shaft.
[0012] According to a door body device provided by the utility model, the central axis of the second hinge shaft and the central axis of the third hinge shaft are arranged to coincide with each other.
[0013] According to a door body device provided by the utility model, the third hinge includes a third hinge plate and a fourth hinge shaft, the third hinge plate includes a support plate and an extension plate, the support plate is installed on the front side of the box body, the extension plate is connected to the side of the support plate away from the front side of the box body, the support plate and the extension plate are arranged at an angle, the fourth hinge shaft is arranged on the top surface of the extension plate and extends upward, and the third traction component is arranged on one of the third hinge plate and the fourth hinge shaft.
[0014] According to a door body device provided by the utility model, the hinge comprises a hinge plate and a hinge shaft arranged on the hinge plate, the hinge plate is arranged on the box body, and the box door is rotatably arranged on the box body through the hinge shaft;
[0015] The traction assembly includes a traction rod, a first rotating shaft fixing seat and a second rotating shaft fixing seat;
[0016] The first rotating shaft fixing seat is connected to the sliding door assembly, the second rotating shaft fixing seat is connected to the hinge plate, one end of the traction rod is rotatably connected to the first rotating shaft fixing seat, and the other end of the traction rod is rotatably connected to the second rotating shaft fixing seat;
[0017] During the process of opening or closing the cabinet door, the traction rod drives the sliding door assembly to move, thereby driving the cabinet door to move in the width direction relative to the cabinet door.
[0018] According to a door body device provided by the utility model, the sliding door assembly includes:
[0019] A base having a first guide rail formed on one side and a second guide rail formed on the other side;
[0020] A first slider is slidably disposed on the first guide rail, and the traction assembly is connected to the first slider;
[0021] A second sliding block is slidably disposed on the second guide rail and connected to the cabinet door;
[0022] A transmission member, two ends of which are respectively transmission-connected to the first slider and the second slider;
[0023] During the process of opening or closing the door, the traction assembly drives the first slider to move on the first guide rail, and the first slider drives the second slider to move in the opposite direction on the second guide rail through the transmission member.
[0024] According to a door body device provided by the utility model, the transmission member includes:
[0025] A first rack, disposed on the first sliding block;
[0026] A second rack is provided on the second slider.
[0027] A gear is rotatably provided on the base and meshes with the first rack and the second rack.
[0028] According to a second aspect of the present invention, there is provided a refrigeration device, comprising:
[0029] A box body forming a storage space;
[0030] The door body device according to any one of the first aspects of the present invention, wherein a plurality of the door body assemblies are arranged side by side in the height direction of the box body and are configured to open or close the storage space of the box body.
[0031] The door body device provided by the present invention includes a plurality of door body assemblies. Each door body assembly includes a box door, a cabinet door and a sliding door mechanism. After the door body device in the present invention is installed on the box body of the refrigeration device, the plurality of door body assemblies can be arranged at intervals in the height direction of the box body. When the box door in each door body assembly can rotate relative to the box body to open or close the storage space of the box body, the sliding door mechanism can drive the cabinet door to move relative to the box door in the width direction of the box door, so that when the refrigeration device is placed in an embedded manner in a cabinet, without affecting the coordination, aesthetics and the user experience, interference between the cabinet door and the cabinet can be avoided during the process of opening the box door.
[0032] In addition to the technical problems solved by the present invention, the technical features of the technical solutions constituted, and the advantages brought by the technical solutions with these technical features described above, other technical features of the present invention and the advantages brought by these technical features will be further described in conjunction with the accompanying drawings. Description of the Drawings
[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or related technologies, the following will briefly introduce the drawings required for use in the description of the embodiments or related technologies. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0034] Figure 1 FIG. is a schematic structural diagram of a refrigerator in the related art placed in an embedded manner with a cabinet. Among them, a decorative panel is provided outside the refrigerator door, and the refrigerator door is in a closed position.
[0035] Figure 2It is a schematic structural diagram of a refrigerator in the related art placed together with a cabinet in an embedded manner. Among them, a decorative panel is provided on the outside of the refrigerator door, and the refrigerator door is in an open position.
[0036] Figure 3 It is a schematic structural diagram of a refrigeration device provided with a door body device according to an embodiment of the present invention.
[0037] Figure 4 It is a schematic structural diagram of a refrigeration device provided with a door body device sliding according to an embodiment of the present invention.
[0038] Figure 5 It is a schematic structural diagram of a first hinge in a door body device according to an embodiment of the present invention.
[0039] Figure 6 It is a schematic structural diagram of a second hinge in a door body device according to an embodiment of the present invention.
[0040] Figure 7 It is a schematic structural diagram of a third hinge in a door body device according to an embodiment of the present invention.
[0041] Figure 8 It is a schematic structural diagram of the connection between the first hinge in the door body device and the box door according to an embodiment of the present invention.
[0042] Figure 9 It is a schematic structural diagram of the connection between the second hinge in the door body device and the box door according to an embodiment of the present invention.
[0043] Figure 10 It is a schematic structural diagram of the connection between the third hinge in the door body device and the box door according to an embodiment of the present invention.
[0044] Figure 11 It is a schematic structural diagram of a sliding door mechanism in a door body device according to an embodiment of the present invention.
[0045] Figure 12 It is Figure 11 A schematic structural diagram of another perspective of the sliding door mechanism shown in
[0046] Figure 13 It is a schematic structural diagram of a sliding door mechanism in a door body device according to another embodiment of the present invention.
[0047] Figure 14 It is Figure 13 A schematic structural diagram of another perspective of the sliding door mechanism shown in
[0048] Figure 15 It isFigure 13 Schematic diagram of the structure of the sliding door mechanism after being exploded.
[0049] Reference numerals:
[0050] 10. Refrigerator; 11. Refrigerator door; 20. Cabinet; 30. Decorative panel;
[0051] 100, door assembly; 110, cabinet door; 111, first cabinet door; 112, second cabinet door; 200, cabinet door; 300, sliding door mechanism; 310, traction assembly; 311, traction rod; 312, first rotating shaft fixing seat; 313, second rotating shaft fixing seat; 320, sliding door assembly; 321, base; 3211, first guide rail; 3212, second guide rail; 322, first slider; 323, second slider; 324, connecting member; 3241, first connecting member; 3242, second connecting member; 325, joint plate; 326, first receiving plate; 327, second receiving plate; 328, first roller; 3 29. The second roller; 330. The transmission member; 331. The first rack; 332. The second rack; 333. The gear; 400. The hinge; 410. The first hinge; 411. The first hinge plate; 412. The first hinge shaft; 413. The vertical plate; 430. The second hinge; 431. The second hinge plate; 4311. The mounting plate; 4312. The connecting plate; 432. The second hinge shaft; 433. The third hinge shaft; 420. The third hinge; 421. The third hinge plate; 4211. The supporting plate; 4212. The extension plate; 422. The fourth hinge shaft; 500. The box; 510. The first cabinet; 520. The second cabinet. DETAILED DESCRIPTION
[0052] The following is a further detailed description of the implementation of the present utility model in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.
[0053] In the description of the embodiments of the present utility model, it should be noted that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the embodiments of the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the embodiments of the present utility model. In addition, the terms "first", "second", and "third" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance. In addition, in the description of the present utility model, unless otherwise specified, "multiple", "multiple roots", and "multiple groups" mean two or more.
[0054] In the description of the embodiments of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present utility model can be understood according to specific situations.
[0055] In the embodiments of the present utility model, unless otherwise clearly specified and defined, the first feature being "on" or "under" the second feature can be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on the top of" the second feature can be that the first feature is directly above or obliquely above the second feature, or simply means that the first feature is at a higher horizontal height than the second feature. The first feature being "under", "beneath" and "under the bottom of" the second feature can be that the first feature is directly below or obliquely below the second feature, or simply means that the first feature is at a lower horizontal height than the second feature.
[0056] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the embodiments of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0057] In one embodiment according to the present utility model, a door body device and a refrigeration device are provided. The door body device is used for the refrigeration device. The door body device includes a plurality of door body components. The plurality of door body components are arranged at intervals along the height direction of the cabinet. Each door body component includes a cabinet door, a door panel, and a sliding door mechanism. When the refrigeration device is placed together with the cabinet in an embedded manner or directly placed in the cabinet, the door panel is slidably arranged on the outer side of the cabinet door. When the cabinet door is closed, the door panel can be flush with the door panel of the cabinet, which can ensure coordination and aesthetics. When the cabinet door is opened, the sliding door mechanism can drive the door panel to move to avoid interference between the door panel and the door panel of the cabinet, which can improve the user experience. The following further describes the door body device and the refrigeration device in the present embodiment with reference to Figures 3 to 15 the figures shown.
[0058] Specifically, asFigure 3 and Figure 4 As shown in and
[0059] , the door body device in this embodiment includes a plurality of door body components 100, and the plurality of door body components 100 are arranged side by side along the height direction of the box body 500.
[0059] Among them, each door body component includes a box door, a cabinet door, and at least one sliding door mechanism. The cabinet door is slidably arranged outside the box door. The box door is rotatably connected to the box body through at least one hinge. The sliding door mechanism includes a connected traction component and a sliding door component. The sliding door component is arranged between the box door and the cabinet door. The traction component is configured to drive the sliding door component to act during the opening or closing process of the box door, and then drive the cabinet door to move relative to the width direction of the box door;
[0060] The hinge axis of the hinge corresponding to the previous door body component is located at the top of the corresponding box door, and one traction component is provided on the hinge; the two hinge axes of the two hinges corresponding to the next door body component are respectively located at the top and bottom of the corresponding box door, and one traction component is provided on each of the two hinges.
[0061] Among them, the thickness of the box door 110 is 18 - 60 mm. Exemplarily, the thickness of the box door 110 is 18 mm, 25 mm, 50 mm, 60 mm, etc. The thickness of the cabinet door 200 is 12 - 26 mm. Exemplarily, the thickness of the cabinet door 200 is 12 mm, 18 mm, 24 mm, 26 mm, etc. In addition, the cabinet door 200 can be a wooden door or a plastic door, etc.
[0062] It can be understood that the door body device in this embodiment can be used in refrigeration equipment such as refrigerators, freezers, ice makers, etc. Among them, the refrigeration equipment includes a box body 500, and a storage space is formed in the box body 500. Vegetables, fruits, etc. that need to be refrigerated or frozen can be placed in the storage space. Optionally, a refrigeration device and the like are further provided in the box body 500 of the refrigeration equipment, and the refrigeration device can perform refrigeration processing on the storage space.
[0063] In this embodiment, the door body device includes a plurality of door body components 100. For example, the number of the door body components 100 can be two, three, or four, and the plurality of door body components 100 are arranged at intervals along the height direction of the box body 500. Exemplarily, Figure 3 the door body device shown in Figure 3 includes two door body components 100.
[0064] Furthermore, each door body component 100 includes a box door 110, a cabinet door 200, and at least one sliding door mechanism 300.
[0065] Among them, the multiple door body components 100 include two door body components. For example, the two door body components are respectively a first door body component and a second door body component. The first door body component is located above the second door body component, and the cabinet doors 110 of the first door body component and the second door body component can be respectively rotatably connected to the cabinet body 500 through hinges 400.
[0066] The first door body component is correspondingly connected with a hinge 400. The cabinet door 110 in the first door body component is rotatably connected to the cabinet body 500 through the hinge axis of the hinge 400, and the hinge axis of the hinge 400 is located at the top of the cabinet door 110 in the first door body component. At the same time, the hinge is provided with a traction component 310.
[0067] The second door body component is correspondingly connected with two hinges 400. The cabinet door 110 in the second door body component is rotatably connected to the cabinet body 500 through the two hinges 400. The hinge axis of one hinge 400 is located at the top of the cabinet door 110 in the second door body component, and the hinge axis of the other hinge 400 is located at the bottom of the cabinet door 110 in the second door body component. At the same time, the two hinges are respectively provided with a traction component 310.
[0068] In this embodiment, the cabinet door 110 can be used to open or close the storage space in the cabinet body 500. When the cabinet door 110 is in the closed position for closing the storage space, the storage space is in a closed state, and the items in the storage space can be refrigerated. When the cabinet door 110 is in the open position for opening the storage space, the storage space is in an open state, and the user can take out the items in the storage space.
[0069] For the convenience of describing the positional relationship between various components, in this embodiment, as Figure 3 shown, the cabinet body 500 is generally constructed as a cuboid structure with a certain height. The cabinet body 500 can be placed on a horizontal plane. The cabinet body 500 has a height direction, a width direction, and a thickness direction that are perpendicular to each other. Among them, the height direction of the cabinet body 500 is parallel to the vertical direction, and the width direction and the thickness direction are located in the horizontal plane and are perpendicular to each other.
[0070] A storage space is provided inside the cabinet body 500. An opening is provided on the side of the cabinet body 500 in the thickness direction, and the opening communicates with the storage space. The cabinet door 110 is connected to the side of the cabinet body 500 in the thickness direction where the opening is provided. The cabinet door 110 extends along the width direction of the cabinet body 500. The cabinet door 110 is connected with a hinge 400 on one side in the width direction of the cabinet body 500. The cabinet door 110 can be rotatably connected to the cabinet body 500 through the hinge 400, so as to ensure that the cabinet door 110 can open or close the storage space of the cabinet body 500.
[0071] Moreover, the side of the box body 500 on which the box door 110 is installed is the front side, that is, the box door 110 is installed on the front side of the box body 500 .
[0072] The door 110 is generally constructed as a flat plate structure with a certain thickness. The door 110 has a height direction, a width direction and a thickness direction that are perpendicular to each other. The height direction of the door 110 is parallel to the vertical direction, and the width direction and the length direction are located in a horizontal plane and are perpendicular to each other. One side of the door 110 in the width direction can be rotatably connected to the box body 500 via a hinge 400. For example, Figure 3 As shown, the cabinet door 110 is connected to a hinge 400 on the right side of the cabinet 500 in the width direction, and the cabinet door 110 can be rotatably connected to the cabinet 500 via the hinge 400 .
[0073] Moreover, when the door 110 is in a position to close the storage space of the housing 500 , the width direction of the door 110 is parallel to the width direction of the housing 500 , and the thickness direction of the door 110 is parallel to the thickness direction of the housing 500 .
[0074] Furthermore, the cabinet door 200 can be a decorative door panel. The cabinet door 200 is constructed as a flat structure with a certain thickness. The cabinet door 200 is connected to the outer side of the cabinet door 110 that is away from the cabinet body 500. When the refrigeration equipment is placed together with the cabinet in an embedded manner or directly placed in the cabinet, when the cabinet door 110 is in a closed position, the cabinet door 200 can be flush with the door panel of the cabinet, that is, the outer wall surface of the cabinet door 200 that is away from the cabinet door 110 can be flush with the outer wall surface of the cabinet.
[0075] In actual usage scenarios, the outer wall surface of the cabinet door 200 can be selected with the same material and shape as the outer wall surface of the cabinet, and can be attached with the same decoration, so that the refrigeration equipment can be sufficiently coordinated with the cabinet and can ensure aesthetics.
[0076] After the door device in the present embodiment is installed on the cabinet 500 of the refrigeration equipment, a plurality of door assemblies 100 can be arranged at intervals along the height direction of the cabinet 500. When the cabinet door 110 in each door assembly 100 can be rotated relative to the cabinet 500 to open or close the storage space of the cabinet 500, the sliding door mechanism 300 can drive the cabinet door 200 to move relative to the cabinet door 110 in the width direction of the cabinet door 110. Therefore, when the refrigeration equipment is placed in an embedded manner in the cabinet, the cabinet door 200 can avoid interference with the cabinet during the process of opening the cabinet door 110 while ensuring coordination and aesthetics and not affecting the user's experience.
[0077] In one embodiment, Figure 4As shown, the door body device and the box body 500 are configured to be arranged in the installation space formed between the first cabinet body 510 and the second cabinet body 520; during the opening or closing process of the box door 110, the sliding door mechanism 300 is configured to drive the cabinet door 200 to move a preset distance on the box door 110, so that the cabinet door 200 avoids the side walls of the first cabinet body 510 and the second cabinet body 520;
[0078] Alternatively, the door body device and the box body 500 are configured to be arranged in the cabinet body; during the opening or closing process of the box door 110, the sliding door mechanism 300 is configured to drive the cabinet door 200 to move a preset distance on the box door 110, so that the cabinet door 200 avoids the side wall of the cabinet body.
[0079] It can be understood that the refrigeration device includes the door body device and the box body 500.
[0080] In practice, as Figure 4 shown, when the refrigeration device with the door body device and the box body 500 is placed between the adjacent first cabinet body 510 and the second cabinet body 520, multiple door body components 100 in the door body device can be arranged at intervals along the height direction of the box body 500, and the cabinet door 200 is arranged on the outer side of the box door 110 in each door body component 100, and the cabinet door 200 can move relative to the box door 110 along the width direction of the box door 110. Optionally, when the box door 110 is in the state of closing the storage space of the box body 500, the outer wall surface of the cabinet door 200 facing away from the box door 110 can be flush with the outer wall surfaces of the first cabinet body 510 and the second cabinet body 520, and the outer wall surfaces of the first cabinet body 510 and the second cabinet body 520 and the outer wall surface of the cabinet door 200 facing away from the box door 110 are in the same direction in the thickness direction of the box body 500.
[0081] At this time, during the rotation process of the box door 110 relative to the box body 500, the sliding door mechanism 300 can drive the cabinet door 200 to move, so that the cabinet door 200 avoids the side walls of the first cabinet body 510 and the second cabinet body 520.
[0082] Alternatively, after the refrigeration device is placed in the cabinet body, the cabinet door 200 can be arranged on the outer side of the box door 110 in each door body component 100, and the cabinet door 200 can move relative to the box door 110. Optionally, when the box door 110 is in the state of closing the storage space of the box body 500, the outer wall surface of the cabinet door 200 facing away from the box door 110 can be flush with the outer wall surface of the cabinet body, and the outer wall surface of the cabinet body and the outer wall surface of the cabinet door 200 facing away from the box door 110 are in the same direction in the thickness direction of the box body 500.
[0083] At this time, during the rotation process of the box door 110 relative to the box body 500, the sliding door mechanism 300 can drive the cabinet door 200 to move, and can also make the cabinet door 200 avoid the side wall of the cabinet body.
[0084] Further, in the sliding door mechanism 300 of the present embodiment, as Figure 11 and Figure 13 shown, the sliding door mechanism 300 includes a traction assembly 310 and a sliding door assembly 320 connected to each other. The traction assembly 310 can be disposed on the hinge 400, and the sliding door assembly 320 can be disposed on the cabinet door 110. The sliding door assembly 320 can also be connected to the cabinet door 200. During the rotation of the cabinet door 110 relative to the cabinet body 500, the traction assembly 310 can drive the sliding door assembly 320 to act, and thereby drive the cabinet door 200 to move relative to the cabinet door 110.
[0085] Exemplarily, since the hinge 400 is fixedly connected to the cabinet body 500, during the rotation of the cabinet door 110 relative to the cabinet body 500, the traction assembly 310 can apply a pulling force to the sliding door assembly 320, and then the sliding door assembly 320 drives the cabinet door 200 to move based on this pulling force.
[0086] Thus, when the door device in the present embodiment is installed on the cabinet body 500 of the refrigeration device, a plurality of door assemblies 100 can be arranged at intervals along the height direction of the cabinet body 500. Each door assembly 100 can at least correspond to one storage space of the cabinet body 500. During the rotation of the cabinet door 110 in each door assembly 100 relative to the cabinet body 500, the sliding door assembly 320 can drive the cabinet door 200 to move relative to the cabinet door 110 under the drive of the traction assembly 310. Therefore, when the refrigeration device is placed in the cabinet in an embedded manner, without affecting the coordination, aesthetics and the user experience, the interference between the cabinet door 200 and the cabinet can be avoided during the opening of the cabinet door 110.
[0087] Further, in one embodiment, as Figure 3 shown, the hinge 400 includes a first hinge 410, a second hinge 430 and a third hinge 420. The first hinge 410 is disposed on the top wall of the cabinet body 500, and the second hinge 430 and the third hinge 420 are disposed on the front surface of the cabinet body 500; the door device includes a first cabinet door 111 and a second cabinet door 112. The top of the first cabinet door 111 is rotatably connected to the cabinet body 500 through the first hinge 410, the top of the second cabinet door 112 is rotatably connected to the cabinet body 500 through the second hinge 430, and the bottom of the second cabinet door 112 is rotatably connected to the cabinet body 500 through the third hinge 420.
[0088] Exemplarily, the number of hinges 400 is at least three. The hinge 400 at least includes a first hinge 410, a second hinge 430 and a third hinge 420. Among them, the first hinge 410 is used for fixedly setting on the top wall of the cabinet body 500, the second hinge 430 and the third hinge 420 are used for fixedly setting on the front surface of the cabinet body 500, and both the first hinge 410 and the second hinge 430 can be used for connecting the cabinet door 110.
[0089] The door body device includes two door body assemblies 100, namely a first door body assembly and a second door body assembly. The first door body assembly includes a first box door 111, and the second door body assembly includes a second box door 112. Figure 3 As shown, the first door 111 and the second door 112 are spaced apart from each other in the height direction of the box body 500 .
[0090] The top of the first door 111 may be rotatably connected to the box body 500 via a first hinge 410 , the top of the second door 112 may be rotatably connected to the box body 500 via a second hinge 430 , and the bottom of the second door 112 may be rotatably connected to the box body 500 via a third hinge 420 .
[0091] In actual applications, according to different refrigeration needs, the cabinet 500 of different refrigeration equipment will be equipped with different numbers of storage spaces. These storage spaces are arranged at intervals along the height direction of the cabinet 500. Some storage spaces are used for refrigeration, and some storage spaces are used for freezing. Accordingly, in order to be able to close these storage spaces in a targeted manner, the number of cabinet doors 110 can be multiple, and each cabinet door 110 corresponds to at least one of the storage space positions.
[0092] For example, Figure 3 As shown, the box body 500 is provided with two storage spaces at intervals in the vertical direction, and the two storage spaces can be used for refrigeration and freezing respectively, and there are two doors 110, namely, a first door 111 and a second door 112, and the two doors 110 correspond to the positions of the two storage spaces one by one. At this time, the two storage spaces can be opened or closed independently through the two doors 110.
[0093] For another example, the box body 500 may be provided with three storage spaces at intervals along the vertical direction, namely, the first space, the second space, and the third space, the first space and the second space are used for refrigeration, and the third space is used for freezing, and the number of the door 110 is two, namely, the first door 111 and the second door 112, wherein the first door 111 corresponds to the positions of the first space and the second space at the same time, and the second door 112 corresponds to the position of the third space. In this case, the first door 111 can be used to open or close the first space and the second space at the same time, and the second door 112 can be used to control the opening and closing state of the third space separately.
[0094] It can be understood that in this embodiment, each box door 110 can correspond to a separate storage space, in which case the box door 110 can independently control the opening and closing status of the storage space; or, as required, each box door 110 can also correspond to multiple adjacent storage spaces, in which case the box door 110 can simultaneously control the opening and closing status of the multiple storage spaces.
[0095] Further, in one embodiment, as Figure 5 shown, the first hinge 410 includes a first hinge plate 411 and a first hinge shaft 412. A part of the first hinge plate 411 covers the top wall of the box body 500 and the remaining part protrudes from the top wall towards the box door 110. The first hinge shaft 412 extends downward from the part of the first hinge plate 411 that protrudes from the top wall. The top of the first box door 111 is hinged to the first hinge shaft 412, and the first traction assembly 310 is disposed on one of the first hinge plate 411 and the first hinge shaft 412.
[0096] Exemplarily, the first hinge plate 411 and the first hinge shaft 412 can be made of a metal or non-metal material with a certain structural strength. The first hinge plate 411 includes a first fitting portion and a first protruding portion that are connected to each other. The first fitting portion is provided with a plurality of mounting holes, and the first hinge shaft 412 is fixedly disposed on the first protruding portion by means of welding or threaded connection.
[0097] During actual installation, a plurality of threaded holes can be provided in advance on the top wall of the box body 500. Then, the first fitting portion of the first hinge plate 411 is made to fit to the top wall of the box body 500, and at the same time, the mounting holes on the first fitting portion are made to correspond to the positions of the threaded holes. Then, the first fitting portion is fixed to the top wall of the box body 500 by means of bolts. At this time, the first fitting portion can cover and fit to the top wall of the box body 500, the first protruding portion can protrude from the top wall towards the first box door 111, and moreover, the first hinge shaft 412 can extend downward along the height direction of the box body 500.
[0098] Based on this, when installing the box door 110, a hinge hole can be provided in advance on the top of the first box door 111. Then, the first hinge shaft 412 is inserted into the hinge hole, and thus, the installation of the first box door 111 can be achieved.
[0099] Moreover, a sliding door mechanism 300 is connected to the top of the first box door 111, and the traction assembly 310 in the sliding door mechanism 300 can be disposed on the first hinge plate 411 or on the first hinge shaft 412.
[0100] For example, as Figure 5 shown, in one embodiment, a vertical plate 413 is provided on the first hinge plate 411. The vertical plate 413 extends downward along the thickness direction of the first hinge plate 411, and the vertical plate 413 is provided with mounting holes.
[0101] As Figure 8 shown, during actual installation, the first hinge plate 411 is fixed to the top wall of the box body 500, the first box door 111 is rotatably connected to the first hinge shaft 412, and a part of the structure of the traction assembly 310 can be connected to the vertical plate 413 by means of bolts.
[0102] Further, in one embodiment, as Figure 6 shown, the second hinge 430 includes a second hinge plate 431, a second hinge shaft 432, and a third hinge shaft 433. The second hinge plate 431 includes a mounting plate 4311 and a connecting plate 4312. The mounting plate 4311 is mounted on the front surface of the cabinet 500. The connecting plate 4312 is connected to the side of the mounting plate 4311 facing away from the front surface of the cabinet 500. The connecting plate 4312 is disposed at an angle with respect to the mounting plate 4311. The connecting plate 4312 has a first side and a second side opposite to each other. The second hinge shaft 432 is disposed on the first side, and the bottom of the first door 111 is hinged to the second hinge shaft 432. The third hinge shaft 433 is disposed on the second side, and the top of the second door 112 is hinged to the third hinge shaft 433. The second traction assembly 310 is disposed on one of the second hinge plate 431 and the third hinge shaft 433.
[0103] Exemplarily, the second hinge plate 431, the second hinge shaft 432, and the third hinge shaft 433 can be made of a metal material or a non-metal material with a certain structural strength. The second hinge plate 431 includes a mounting plate 4311 and a connecting plate 4312 that are connected to each other. The connecting plate 4312 is substantially perpendicular to the mounting plate 4311. A plurality of mounting holes are provided on the mounting plate 4311. During actual production and manufacturing, the mounting plate 4311 and the connecting plate 4312 can be integrally formed on the same sheet of material. Thereafter, the connecting plate 4312 can be bent relative to the mounting plate 4311 by means of stamping and folding.
[0104] The two sides in the thickness direction of the connecting plate 4312 are the first side and the second side respectively. The second hinge shaft 432 is fixedly connected to the first side, and the third hinge shaft 433 is fixedly connected to the second side.
[0105] During actual production and manufacturing, the second hinge shaft 432 and the third hinge shaft 433 can be fixedly connected to the connecting plate 4312 by welding respectively. Alternatively, the second hinge shaft 432 and the third hinge shaft 433 can be configured as an integral part in the shape of a long bar. The connecting plate 4312 is provided with through holes penetrating along its thickness direction. The integral part is inserted into the through holes, and the integral part is fixed in the through holes by welding or screw connection. The two ends of the integral part in the length direction on the connecting plate 4312 are respectively formed as the second hinge shaft 432 and the third hinge shaft 433.
[0106] During actual installation, as Figure 9 shown, according to the installation position of the door 110, a plurality of threaded holes can be provided in advance on the front surface of the cabinet 500. For example, as Figure 3As shown, a plurality of threaded holes are provided at the position corresponding to the gap between the first door 111 and the second door 112 on the front surface of the box body 500. Then, the mounting holes on the mounting plate 4311 of the second hinge plate 431 are aligned with the positions of the threaded holes, and the mounting plate 4311 is fixed to the front surface of the box body 500 by means of bolts. At this time, the connecting plate 4312 extends towards the direction of the door 110. At the same time, the second hinge shaft 432 extends upward along the height direction of the box body 500, and the third hinge shaft 433 extends downward along the height direction of the box body 500.
[0107] Based on this, when installing the door 110, hinge holes can be provided in advance at the bottom of the first door 111, and hinge holes can be provided in advance at the top of the second door 112. Then, the second hinge shaft 432 can be inserted into the hinge hole at the bottom of the first door 111, and the third hinge shaft 433 can be inserted into the hinge hole at the top of the second door 112. Thus, the installation of the first door 111 and the second door 112 can be achieved.
[0108] In addition, a sliding door mechanism 300 is connected to the top of the second door 112. The traction assembly 310 in the sliding door mechanism 300 can be arranged on the mounting plate 4311 or the connecting plate 4312 in the second hinge plate 431, or can also be arranged on the third hinge shaft 433.
[0109] In one embodiment, as Figure 9 shown, the second door 112 is provided with a sliding door mechanism 300, and the traction assembly 310 in the sliding door mechanism 300 can be fixedly connected to the mounting plate 4311 via bolts.
[0110] Furthermore, in one embodiment, the central axis of the second hinge shaft 432 and the central axis of the third hinge shaft 433 are arranged to coincide.
[0111] It can be understood that by setting the central axis of the second hinge shaft 432 and the central axis of the third hinge shaft 433 to be collinear, the first door 111 and the second door 112 can be rotated around the same rotation axis, so that the connection structure between the door 110 and the box body 500 is more reasonable and more convenient for installation.
[0112] Furthermore, in one embodiment, as Figure 7As shown, the third hinge 420 includes a third hinge plate 421 and a fourth hinge shaft 422. The third hinge plate 421 includes a support plate 4211 and an extension plate 4212. The support plate 4211 is installed on the front of the box body 500. The extension plate 4212 is connected to one side of the support plate 4211 facing away from the front of the box body 500. The support plate 4211 and the extension plate 4212 are arranged at an angle. The fourth hinge shaft 422 is arranged on the top surface of the extension plate 4212 and extends upward. The third traction assembly 310 is arranged on one of the third hinge plate 421 and the fourth hinge shaft 422.
[0113] Exemplarily, the third hinge plate 421 and the fourth hinge shaft 422 can also be made of metal or non-metal materials with a certain structural strength. The third hinge plate 421 includes a support plate 4211 and an extension plate 4212 that are connected to each other. The extension plate 4212 is substantially perpendicular to the support plate 4211. The two can be integrally formed by stamping or other methods. The support plate 4211 is provided with a plurality of mounting holes. The fourth hinge shaft 422 is fixedly arranged on the extension plate 4212 by welding or threaded connection or other methods.
[0114] During actual installation, a plurality of threaded holes can be set in advance at a position on the front of the box body 500 and close to the bottom. Then, one side of the support plate 4211 in the thickness direction is attached to the front of the box body 500, and the mounting holes on the support plate 4211 are made to correspond to the positions of the threaded holes. Then, the support plate 4211 is fixed to the front of the box body 500 by means of bolts. The extension plate 4212 is connected to the other side of the support plate 4211 in the thickness direction and extends towards the direction of the second box door 112. Moreover, the fourth hinge shaft 422 extends upward along the height direction of the box body 500.
[0115] Based on this, when installing the box door 110, an articulated hole can be set in advance at the bottom of the second box door 112. Then, the fourth hinge shaft 422 is inserted into the articulated hole. Thus, the installation of the second box door 112 can be realized.
[0116] In addition, a sliding door mechanism 300 is connected to the bottom of the second box door 112. The traction assembly 310 in the sliding door mechanism 300 can be arranged on the third hinge plate 421 or can also be arranged on the fourth hinge shaft 422.
[0117] For example, as Figure 10 shown, during actual installation, the support plate 4211 is fixed at a position on the front of the box body 500 and close to the bottom. The second box door 112 is rotatably connected to the fourth hinge shaft 422. Some structures in the traction assembly 310 can be connected to the support plate 4211 by means of bolts.
[0118] In a specific embodiment, as Figure 3As shown, two storage spaces are provided at intervals along the height direction of the box body 500. A first hinge 410 is provided at the top of the box body 500, a second hinge 430 is provided in the middle of the box body 500 and approximately at a position between the two storage spaces, and a third hinge 420 is provided at the bottom of the box body 500. The door device includes two door components 100. The two door components 100 respectively include a first box door 111 and a second box door 112. The first box door 111 and the second box door 112 are provided at intervals along the height direction of the box body 500, and the first box door 111 and the second box door 112 respectively correspond to the two storage spaces of the box body 500.
[0119] During installation, the top of the first box door 111 is hinged to the first hinge shaft 412 of the first hinge 410, the bottom of the first box door 111 is hinged to the second hinge shaft 432 of the second hinge 430, the top of the second box door 112 is hinged to the third hinge shaft 433 of the second hinge 430, and the bottom of the second box door 112 is hinged to the fourth hinge shaft 422 of the third hinge 420.
[0120] Thus, through the above setting method, the first box door 111 and the second box door 112 can be rotatably connected to the box body 500.
[0121] Further, in one embodiment, as Figure 11 shown, in order to ensure that the traction assembly 310 can drive the sliding door assembly 320 to move, the hinge 400 includes a hinge plate and a hinge shaft provided on the hinge plate. The hinge plate is provided on the box body 500, and the box door 110 is rotatably provided on the box body 500 through the hinge shaft; the traction assembly 310 includes a traction rod 311, a first rotating shaft fixing seat 312, and a second rotating shaft fixing seat 313; the first rotating shaft fixing seat 312 is connected to the sliding door assembly 320, the second rotating shaft fixing seat 313 is connected to the hinge 400 plate, one end of the traction rod 311 is rotatably connected to the first rotating shaft fixing seat 312, and the other end of the traction rod 311 is rotatably connected to the second rotating shaft fixing seat 313; during the opening or closing process of the box door 110, the traction rod 311 drives the sliding door assembly 320 to act, and further drives the cabinet door 200 to move relative to the width direction of the box door 110.
[0122] Exemplarily, the hinge 400 may include a hinge plate and a hinge shaft. The hinge shaft is fixedly arranged on the hinge plate by means of welding or the like. During actual installation, the hinge plate can be fixedly arranged on the box body 500 by means of structures such as bolts. Threaded holes can be provided in the box door 110 in advance. After the hinge plate is fixed to the box body 500, the hinge shaft can be inserted into the hinge hole of the box door 110, so as to realize the rotational connection of the box door 110 relative to the box body 500.
[0123] In the traction assembly 310, the first rotating shaft fixing seat 312 is arranged on the sliding door assembly 320, the second rotating shaft fixing seat 313 is arranged on the hinge plate, and both ends of the traction rod 311 are rotatably connected to the first rotating shaft fixing seat 312 and the second rotating shaft fixing seat 313 respectively.
[0124] During actual use, when the box door 110 rotates between positions for opening or closing the storage space relative to the box body 500, the traction assembly 310 can pull the sliding door assembly 320 to act, so that the sliding door assembly 320 drives the cabinet door 200 to move relative to the box door 110 in the width direction of the box door 110.
[0125] Further, in one embodiment, as Figure 11 and Figure 12 shown, the sliding door assembly 320 includes: a base 321, a first slider 322, a second slider 323, and a transmission member 330.
[0126] Among them, a first guide rail 3211 is formed on one side of the base 321, and a second guide rail 3212 is formed on the other side; the first slider 322 is slidably arranged on the first guide rail 3211, and the first rotating shaft fixing seat 312 is connected to the first slider 322; the second slider 323 is slidably arranged on the second guide rail 3212 and is connected to the cabinet door 200; both ends of the transmission member 330 are in transmission connection with the first slider 322 and the second slider 323 respectively. During the opening or closing process of the box door 110, the traction rod 311 drives the first slider 322 to move on the first guide rail 3211, and the first slider 322 drives the second slider 323 to move in the opposite direction on the second guide rail 3212 through the transmission member 330.
[0127] Exemplarily, in this embodiment, the sliding door mechanism 300 can be arranged on the box door 110, one of the first slider 322 and the second slider 323 is in transmission connection with the box body 500, and the other is slidably connected to the cabinet door 200 arranged outside the box door 110. When the box door 110 rotates, the two sliders can slide relative to each other to drive the cabinet door 200 to slide relative to the box door 110, so that the cabinet door 200 can avoid obstacles on both sides during the opening and closing process of the box door 110.
[0128] Specifically, taking the first slider 322 connected to the box door 110 and the second slider 323 connected to the door panel as an example, the base 321 of this embodiment can be arranged on the box door 110. Both ends of the transmission member 330 are in transmission connection with the first slider 322 and the second slider 323 respectively, so that the first slider 322 can drive the second slider 323 to move synchronously, and further drive the cabinet door 200 to slide relative to the box door 110.
[0129] By reasonably setting the transmission direction of the transmission member 330, the first slider 322 and the second slider 323 move in opposite directions during movement, so as to drive the door panel to avoid obstacles.
[0130] It can be understood that the first slider 322 can also be connected to the cabinet door 200. Correspondingly, the second slider 323 is connected to the box body 500, and its working process is the same as that of the above embodiment, which will not be elaborated here.
[0131] In order to ensure that the first slider 322 can drive the second slider 323 to move in opposite directions on the base 321, as Figure 11 shown, the transmission member 330 includes: a first rack 331, a second rack 332 and a gear 333.
[0132] Wherein, the first rack 331 is arranged on the first slider 322; the second rack 332 is arranged on the second slider 323; the gear 333 is rotatably arranged on the base 321 and meshes with the first rack 331 and the second rack 332.
[0133] In this embodiment, the first rack 331 extends along the length direction of the first guide rail 3211 and is arranged on the first slider 322, the second rack 332 extends along the length direction of the second guide rail 3212 and is arranged on the second slider 323, the gear 333 is rotatably arranged on the base 321 and is located between the first rack 331 and the second rack 332, and the first rack 331 and the second rack 332 respectively mesh with the gear 333 from both sides of the gear 333. When the first slider 322 drives the first rack 331 to move, the first rack 331 can drive the gear 333 to rotate. At this time, the gear 333 can drive the second rack 332 to move in the opposite direction relative to the first rack 331, so that the second slider 323 slides in the opposite direction relative to the first slider 322.
[0134] During actual installation, after the hinge plate is fixedly installed on the box body 500, the second rotating shaft fixing seat 313 can be fixed on the hinge plate by means of structures such as bolts. Exemplarily, through holes are provided in the second rotating shaft fixing seat 313. During installation, an external bolt can be passed through the through holes and connected to the hinge plate, so as to fix the second rotating shaft fixing seat 313 on the hinge plate.
[0135] Then, the base 321 can be fixed on the box door 110 by means of structures such as bolts. Exemplarily, joint plates 325 are respectively arranged on both sides in the length direction of the base 321, and through holes are respectively provided on the two joint plates 325. During installation, an external bolt can be passed through the through holes on the two joint plates 325 and connected to the box door 110, so as to fix the base 321 on the box door 110.
[0136] After that, the cabinet door 200 is fixed to the second slider 323. For example, the cabinet door 200 can be fixedly connected to the second slider 323 by means of bolts or snap-fit structures, etc.
[0137] During actual use, as Figure 11 and Figure 12 shown, when the box door 110 moves relative to the box body 500 from the position of closing the storage space towards the position of opening the storage space, since the first rotating shaft fixing seat 312 follows the hinge seat and is fixed on the box door 110, during the rotation of the box door 110, the first slider 322 will move along the A direction on the first guide rail 3211. At the same time, the first rack 331 will drive the gear 333 to rotate clockwise, and the gear 333 will drive the second rack 332 to move along the B direction. Correspondingly, the second slider 323 will also move along the B direction. Since the base 321 is fixedly connected to the box door 110 and the second slider 323 is fixedly connected to the cabinet door 200, at this time, the cabinet door 200 will move relative to the box door 110 along the B direction. Wherein, the A direction is opposite to the B direction, and both the A direction and the B direction are parallel to the width direction of the box door 110.
[0138] Correspondingly, when the box door 110 moves relative to the box body 500 from the position of opening the storage space towards the position of closing the storage space, during the rotation of the box door 110, the first slider 322 will move along the direction opposite to the A direction on the first guide rail 3211. At the same time, the first rack 331 will drive the gear 333 to rotate counterclockwise, and the gear 333 will drive the second rack 332 to move along the direction opposite to the B direction. Correspondingly, the second slider 323 will also move along the direction opposite to the B direction.
[0139] Furthermore, in yet another specific implementation manner, as Figures 13 to 15 shown, the base 321 is configured as a plate-like structure with a certain length. The first guide rail 3211 and the second guide rail 3212 are respectively arranged on both sides of the width direction of the base 321, and both the first guide rail 3211 and the second guide rail 3212 extend along the length direction of the base 321. The first slider 322 is slidably arranged on the first guide rail 3211, and the second slider 323 is slidably arranged on the second guide rail 3212.
[0140] In some embodiments, the traction assembly includes: a first link and a second link. The first end of the first link is rotatably arranged on the hinge 400. For example, it is arranged on the hinge plate of the hinge 400.
[0141] Among them, the first end of the first link is rotatably arranged in the installation area. For example, the first end of the first link is installed in the installation area through a rotating shaft fixing seat. The first end of the second link is rotatably connected to the second end of the first link; the second end of the second link is rotatably arranged on the cabinet door 110 and is meshed and connected to the tooth part on the first slider 322 through the gear arranged at the second end of the second link.
[0142] It can be understood that the first link and the second link are connected by a hinge, the first link and the second link can rotate relative to each other, the first link can rotate relative to the cabinet body 500, and the second link can rotate relative to the cabinet door 110.
[0143] When the second end of the second link makes a circular motion around the hinge axis with the cabinet door 110 as the center, due to the misalignment of the first end of the first link with the hinge axis, the distance between the second end of the second link and the first end of the first link changes, while the position of the second end of the second link relative to the cabinet door 110 remains unchanged, thereby causing the second end of the second link to rotate around the cabinet door 110 and driving the second slider 323 to drive the cabinet door 200 to move along the width direction of the cabinet door 110.
[0144] In practical applications, during the opening process of the cabinet door 110, the cabinet door 110 drives the second end of the second link to rotate relative to the hinge axis. Based on the misaligned arrangement of the first end of the first link with the hinge axis, the distance between the first end of the first link and the second end of the second link increases, driving the second end of the second link to rotate clockwise relative to the cabinet door 110, thereby controlling the second slider 323 to drive the cabinet door 200 to move along the width direction of the cabinet door 110 away from the hinge 400, that is, move to the left relative to the cabinet door 110. In this way, it can be avoided that the cabinet door 200 interferes with the cabinet door 200 of the side cabinet body; during the closing process of the cabinet door 110, the cabinet door 110 drives the second end of the second link to rotate relative to the hinge axis. Based on the misaligned arrangement of the first end of the first link with the hinge axis, the distance between the first end of the first link and the second end of the second link decreases, driving the second end of the second link to rotate counterclockwise relative to the cabinet door 110, thereby controlling the second slider 323 to drive the cabinet door 200 to move along the width direction of the cabinet door 110 towards the hinge 400, that is, move to the right relative to the cabinet door 110. In this way, it can be ensured that the cabinet door 200 can avoid the cabinet door 200 of the side cabinet body when the cabinet door 110 is closed and reset the cabinet door 200.
[0145] In an alternative embodiment, the first rotating shaft fixing seat 312 is connected to the first slider 322, and the cabinet door 200 can be fixedly connected to the second slider 323. Among them, the first guide rail and the second guide rail are used as a kind of track, and the first slider 322 and the second slider 323 are sliding members adapted to the corresponding guide rails and can slide along the corresponding guide rails; in addition, the sliding fit between the first slider 322 and the first guide rail should at least include the case where balls are provided between the first slider 322 and the first guide rail, and the sliding fit between the second slider 323 and the second guide rail should at least include the case where balls are provided between the second slider 323 and the second guide rail.
[0146] Correspondingly, the traction rod 311 can be configured as an arc-shaped rod. One end of the traction rod 311 is rotatably connected to the first rotating shaft fixing seat 312 via the first rotating shaft, and the other end is rotatably connected to the second rotating shaft fixing seat 313 via the second rotating shaft.
[0147] As a way of implementation, as Figure 14 and Figure 15 shown, the first rotating shaft fixing seat 312 is provided with a first clamping portion. The first clamping portion includes two clamping plates arranged side by side at intervals. The two clamping plates are respectively provided with pin holes, and the first rotating shaft is inserted into the two pin holes at the same time. One end of the traction rod 311 can be placed between the two clamping plates, and the end of the traction rod 311 is rotatably connected to the first rotating shaft. Thus, the traction rod 311 can be rotatably connected to the first rotating shaft fixing seat 312. Moreover, the first rotating shaft fixing seat 312 can be fixedly connected to the first slider 322 by means of welding or the like.
[0148] Similarly, as Figure 13 and Figure 15 shown, the second rotating shaft fixing seat 313 is provided with a second clamping portion. The second clamping portion also includes two clamping plates arranged side by side at intervals. The two clamping plates are respectively provided with pin holes, and the second rotating shaft is inserted into the two pin holes at the same time. The other end of the traction rod 311 can be placed between the two clamping plates, and the end of the traction rod 311 is rotatably connected to the second rotating shaft. Thus, the traction rod 311 can be rotatably connected to the second rotating shaft fixing seat 313.
[0149] The first slider 322 and the second slider 323 are connected to each other by a connecting member 324. The first slider 322 can drive the second slider 323 to move in the opposite direction by means of the connecting member 324 during the movement process.
[0150] During actual installation, after the hinge plate is fixedly installed on the box body 500, the second rotating shaft fixing seat 313 can be fixed on the hinge plate by means of structures such as bolts. Exemplarily, a through hole is provided in the second rotating shaft fixing seat 313. During installation, an external bolt can be passed through the through hole and connected to the hinge plate, so as to fix the second rotating shaft fixing seat 313 on the hinge plate.
[0151] Next, the base 321 can be fixed to the door 110 by means of structures such as bolts. Exemplarily, a first receiving plate 326 and a second receiving plate 327 are respectively arranged on both sides in the length direction of the base 321, and through holes are respectively arranged on the first receiving plate 326 and the second receiving plate 327. During installation, an external bolt can pass through the through holes on the first receiving plate 326 and the second receiving plate 327 and be connected to the door 110, thereby fixing the base 321 to the door 110.
[0152] After that, the cabinet door 200 is fixed to the second slider 323. For example, the cabinet door 200 can be fixedly connected to the second slider 323 by means of bolts or snap - fitting structures, etc.
[0153] During actual use, as Figure 13 and Figure 14 shown, when the door 110 moves relative to the cabinet body 500 from the position of closing the storage space towards the position of opening the storage space, since the first rotating shaft fixing seat 312 is fixed to the door 110 following the hinge seat, during the rotation of the door 110, the first slider 322 will move along the C direction on the first guide rail 3211. Correspondingly, the first slider 322 will pull the second slider 323 to move along the D direction on the second guide rail 3212 through the connecting member 324. Since the base 321 is fixedly connected to the door 110 and the second slider 323 is fixedly connected to the cabinet door 200, at this time, the cabinet door 200 will move relative to the door 110 along the D direction. Among them, the C direction is opposite to the D direction, and both the C direction and the D direction are parallel to the width direction of the door 110.
[0154] Correspondingly, when the door 110 moves relative to the cabinet body 500 from the position of opening the storage space towards the position of closing the storage space, during the rotation of the door 110, the first slider 322 will move along the direction opposite to the C direction on the first guide rail 3211. Correspondingly, the first slider 322 will pull the second slider 323 to move along the direction opposite to the D direction on the second guide rail 3212. At this time, the cabinet door 200 will move relative to the door 110 along the direction opposite to the D direction.
[0155] Furthermore, in one embodiment, in order to ensure that the first slider 322 can effectively drive the second slider 323 to move in the reverse direction, as Figures 13 to 15 shown, the connecting member 324 includes: a first connecting member 3241 and a second connecting member 3242.
[0156] Among them, the first connecting member 3241 bypasses one end of the base 321, and its two ends are respectively connected to one end of the first slider 322 and the second slider 323; the second connecting member 3242 bypasses the other end of the base 321, and its two ends are respectively connected to the other ends of the first slider 322 and the second slider 323.
[0157] Exemplarily, the first connecting member 3241 can be a flexible rope. In the length direction of the base 321, one end of the first connecting member 3241 is connected to the first slider 322, and the other end is connected to the second slider 323 after bypassing one end of the base 321. That is, in the length direction of the base 321, the first connecting member 3241 bypasses one end of the base 321, and its two ends respectively extend towards the first slider 322 and the second slider 323 and are respectively connected to the first slider 322 and the second slider 323.
[0158] Correspondingly, one end of the second connecting member 3242 is connected to the first slider 322, and the other end is connected to the second slider 323 after bypassing the other end of the base 321. That is, in the length direction of the base 321, the second connecting member 3242 bypasses the other end of the base 321, and its two ends are also respectively connected to the first slider 322 and the second slider 323.
[0159] At this time, the two ends of the first connecting member 3241 are respectively connected to the two ends of the second connecting member 3242 via the first slider 322 and the second slider 323, and form a substantially annular structure.
[0160] Exemplarily, in order to ensure that the first connecting member 3241 and the second connecting member 3242 can normally pull the second slider 323 to move, as Figure 15 shown, a first roller 328 and a second roller 329 are respectively arranged on both sides in the length direction of the base 321, and the first roller 328 and the second roller 329 can respectively support the first connecting member 3241 and the second connecting member 3242.
[0161] Specifically, as Figure 15 shown, the number of the first rollers 328 is two, and the two first rollers 328 are arranged at intervals in the width direction of the base 321. Moreover, the two first rollers 328 can be respectively rotatably arranged on the first receiving plate 326. In order to facilitate receiving the first connecting member 3241, a receiving groove can be arranged on the outer periphery of the first roller 328 along its circumferential direction. Thus, when installing the first connecting member 3241, the first connecting member 3241 can be placed in the receiving grooves of the two first rollers 328. Thereafter, when the first slider 322 pulls the second slider 323 by means of the first connecting member 3241, the first connecting member 3241 can drive the two first rollers 328 to rotate.
[0162] Similarly, the number of the second rollers 329 is two. The two second rollers 329 are arranged at intervals in the width direction of the base 321. Moreover, the two second rollers 329 can be respectively rotatably arranged on the second receiving plate 327. In order to facilitate receiving the second connecting member 3242, a receiving groove extending along the circumferential direction can also be arranged on the outer circumference of the second roller 329. Thus, when installing the second connecting member 3242, the second connecting member 3242 can be placed in the receiving grooves of the two second rollers 329. Thereafter, when the first slider 322 pulls the second slider 323 by means of the second connecting member 3242, the second connecting member 3242 can drive the two second rollers 329 to rotate.
[0163] Thus, in the above setting mode, the first roller 328 can play a role in supporting and limiting the first connecting member 3241, and the second roller 329 can play a role in supporting and limiting the second connecting member 3242. By means of the first roller 328 and the second roller 329, it can be avoided that the first connecting member 3241 and the second connecting member 3242 contact other components during the moving process and cause wear and consumption, and an effective protection effect can be achieved on the first connecting member 3241 and the second connecting member 3242.
[0164] In addition, as described above, a refrigeration device is also provided in this embodiment. The refrigeration device includes a box body 500 and the door body device described in the above embodiment. Among them, the box body 500 forms a storage space, and the box door 110 is rotatably connected to the box body 500 through a hinge 400 and is adapted to open or close the storage space of the box body 500.
[0165] Finally, it should be noted that: the parallelism and perpendicularity referred to in the embodiments of the present invention should not be strictly limited in the geometric sense, and at least the manufacturing and installation errors should be considered. For example, the errors of plus or minus 10° should be within the scope protected by the embodiments of the present invention. In addition, the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A door body device for a refrigeration device, the refrigeration device comprising a box body (500), characterized in that, Comprising: A plurality of door body components (100), the plurality of door body components (100) being arranged side by side in the height direction of the box body (500); Each door body component (100) includes a box door (110), a cabinet door (200), and at least one sliding door mechanism (300). The cabinet door (200) is slidably arranged on the outer side of the box door (110). The cabinet door (200) is a wooden cabinet door. The box door (110) is rotatably connected to the box body (500) through at least one hinge (400). The sliding door mechanism (300) includes a connected traction component (310) and a sliding door component (320). The sliding door component (320) is arranged between the box door (110) and the cabinet door (200). The traction component (310) is configured to drive the sliding door component (320) to act during the opening or closing process of the box door (110), thereby driving the cabinet door (200) to move in the width direction relative to the box door (110); The hinge axis of the hinge (400) corresponding to the previous door body component (100) is located at the top of the corresponding box door (110), and one traction component (310) is provided on the hinge (400). The hinge axes of the two hinges (400) corresponding to the next door body component (100) are respectively located at the top and bottom of the corresponding box door (110), and one traction component (310) is provided on each of the two hinges (400).
2. The door body device according to claim 1, characterized in that, The hinge (400) includes a first hinge (410), a second hinge (430), and a third hinge (420). The first hinge (410) is arranged on the top wall of the box body (500). The second hinge (430) and the third hinge (420) are arranged on the front surface of the box body (500). The door body device includes a first box door (111) and a second box door (112). The top of the first box door (111) is rotatably connected to the box body (500) through the first hinge (410). The top of the second box door (112) is rotatably connected to the box body (500) through the second hinge (430). The bottom of the second box door (112) is rotatably connected to the box body (500) through the third hinge (420).
3. The door body device according to claim 2, wherein, The first hinge (410) includes a first hinge plate (411) and a first hinge axis (412). A part of the first hinge plate (411) covers the top wall of the box body (500) and the remaining part protrudes from the top wall towards the box door (110). The first hinge axis (412) extends downward from the part of the first hinge plate (411) that protrudes from the top wall. The top of the first box door (111) is hinged to the first hinge axis (412). The first traction component (310) is arranged on one of the first hinge plate (411) and the first hinge axis (412).
4. The door body device according to claim 2, characterized in that, The second hinge (430) includes a second hinge plate (431), a second hinge shaft (432), and a third hinge shaft (433). The second hinge plate (431) includes a mounting plate (4311) and a connecting plate (4312). The mounting plate (4311) is mounted on the front surface of the box body (500). The connecting plate (4312) is connected to one side of the mounting plate (4311) facing away from the front surface of the box body (500). The connecting plate (4312) is disposed at an angle to the mounting plate (4311). The connecting plate (4312) has opposite first and second sides. The second hinge shaft (432) is disposed on the first side. The bottom of the first door (111) is hinged to the second hinge shaft (432). The third hinge shaft (433) is disposed on the second side. The top of the second door (112) is hinged to the third hinge shaft (433). The second traction assembly (310) is disposed on one of the second hinge plate (431) and the third hinge shaft (433).
5. The door body device according to claim 4, characterized in that, The central axis of the second hinge shaft (432) and the central axis of the third hinge shaft (433) are coaxially arranged.
6. The door body device according to claim 2, characterized in that, The third hinge (420) includes a third hinge (420) plate and a fourth hinge shaft (422). The third hinge (420) plate includes a support plate (4211) and an extension plate (4212). The support plate (4211) is mounted on the front surface of the box body (500). The extension plate (4212) is connected to one side of the support plate (4211) facing away from the front surface of the box body (500). The support plate (4211) is disposed at an angle to the extension plate (4212). The fourth hinge shaft (422) is disposed on the top surface of the extension plate (4212) and extends upward. The third traction assembly (310) is disposed on one of the third hinge (420) plate and the fourth hinge shaft (422).
7. The door body device according to any one of claims 1 to 6, characterized in that, The hinge (400) includes a hinge (400) plate and a hinge shaft disposed on the hinge (400) plate. The hinge (400) plate is disposed on the box body (500). The door (110) is rotatably disposed on the box body (500) through the hinge shaft; The traction assembly (310) includes a traction rod (311), a first rotating shaft fixing seat (312), and a second rotating shaft fixing seat (313); The first rotating shaft fixing seat (312) is connected to the sliding door assembly (320). The second rotating shaft fixing seat (313) is connected to the hinge (400) plate. One end of the traction rod (311) is rotatably connected to the first rotating shaft fixing seat (312). The other end of the traction rod (311) is rotatably connected to the second rotating shaft fixing seat (313); During the opening or closing process of the door (110), the traction rod (311) drives the sliding door assembly (320) to act, thereby driving the cabinet door (200) to move relative to the width direction of the door (110).
8. The door body device according to any one of claims 1 to 6, characterized in that, The sliding door assembly (320) includes: Base (321), with a first guide rail (3211) formed on one side and a second guide rail (3212) formed on the other side; First slider (322), slidably arranged on the first guide rail (3211), and the traction assembly (310) is connected to the first slider (322); Second slider (323), slidably arranged on the second guide rail (3212) and connected to the cabinet door (200); Transmission member (330), with both ends respectively in transmission connection with the first slider (322) and the second slider (323); During the opening or closing process of the box door (110), the traction assembly (310) drives the first slider (322) to move on the first guide rail (3211), and the first slider (322) drives the second slider (323) to move in the opposite direction on the second guide rail (3212) through the transmission member (330).
9. The door body device according to claim 8, characterized in that, The transmission member (330) includes: First rack (331), arranged on the first slider (322); Second rack (332), arranged on the second slider (323); Gear (333), rotatably arranged on the base (321) and meshing with the first rack (331) and the second rack (332).
10. A refrigeration device, characterized in that, Comprising: Box body (500), forming a storage space; The door device according to any one of claims 1 to 9, a plurality of the door assemblies (100) are arranged side by side along the height direction of the box body (500) and are configured to open or close the storage space of the box body (500).