Dry-wet separation drawer for refrigeration device, and refrigeration device
By setting the drawer body, partition assembly and telescopic part in the dry and wet drawers of the refrigeration equipment, the problem of large moving resistance of the partition plate in the prior art is solved, and flexible adjustment and sealing effect of the dry and wet areas is achieved, and user experience and equipment life are improved.
Patent Information
- Application Number
- PCT/CN2025/079714
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-03-01
- Filing Date
- 2025-02-28
- Publication Date
- 2025-09-04
AI Technical Summary
The existing wet and dry separation drawers have great resistance when moving the partition board position, making it difficult to adjust the position flexibly, affecting the user experience.
A dry and wet drawer for refrigeration equipment is designed. By providing a drawer body, a partition assembly and a telescopic portion, the partition assembly is slidally connected to the drawer body, and the telescopic portion is movably contracted to adjust the volume of the dry and wet areas, and reduce friction resistance through the seal and the roller.
It realizes flexible position adjustment of dry and wet drawers, reduces operation difficulty, improves user experience, and extends service life, ensuring sealing performance and food freshness.
Smart Images

Figure CN2025079714_04092025_PF_FP_ABST
Abstract
Description
Wet and dry drawers for refrigeration equipment and refrigeration equipment
[0001] This application is based on Chinese patent application number 202410238422.6, filed on March 1, 2024, and Chinese patent application number 202410238535.6, filed on March 1, 2024, and claims the priority of the above Chinese patent applications. The entire contents of the Chinese patent applications are hereby incorporated into this application as a reference. Technical Field
[0002] The present application relates to the technical field of refrigerators, for example, to a wet and dry drawer for a refrigeration device and the refrigeration device. Background Art
[0003] Refrigerators are refrigeration devices that maintain a constant low temperature and are also consumer products designed to keep food and other items cold. They contain a compressor, an ice maker (a cabinet or box for freezing ice), and a storage box with a refrigeration unit. The humidity inside existing refrigerators is easily affected by both the internal temperature and the external humidity, causing fluctuations. This can lead to dehydration and moisture in food, affecting its storage quality and shelf life. Separating the dry and wet areas requires specialized materials and refrigeration systems, requiring numerous additional components and hindering precise humidity control.
[0004] During the implementation of the embodiments of the present disclosure, it was found that at least the following problems exist in the related art:
[0005] In order to ensure the sealing between the dry area and the wet area, the existing dry and wet separation drawer has a sealing strip arranged around the partition plate. When the partition plate is moved, there is a large resistance during the sliding process of the partition plate, making it difficult to move.
[0006] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of this application, and therefore may include information that does not constitute prior art known to ordinary technicians in this field. Summary of the Invention
[0007] In order to provide a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. The summary is not an extensive review, nor is it intended to identify key / critical elements or delineate the scope of protection of these embodiments, but rather serves as a prelude to the detailed description that follows.
[0008] The embodiments of the present disclosure provide a wet-dry drawer for a refrigeration device and the refrigeration device, so as to solve the problem that the partition plate of the existing wet-dry drawer has large movement resistance and is difficult to adjust the position.
[0009] An embodiment of the first aspect of the present application provides a wet and dry drawer for a refrigeration device, and the wet and dry drawer for a refrigeration device includes: a drawer body, which defines a storage space and is provided with an abutment portion; a partition assembly, which is arranged in the storage space and is slidably connected to the drawer body, and is used to separate the storage space into a dry area and a wet area, and a accommodating space is defined in the partition assembly; a telescopic portion, which is movably arranged in the accommodating space and can be retracted toward the interior of the accommodating space along a preset trajectory.
[0010] An embodiment of a second aspect of the present application provides a refrigeration device, the refrigeration device comprising a wet and dry drawer for a refrigeration device as described in any one of the above optional embodiments.
[0011] The above general description and the following description are exemplary and explanatory only and are not intended to limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] One or more embodiments are exemplarily described by corresponding drawings. These exemplary descriptions and drawings do not limit the embodiments. Elements with the same reference numerals in the drawings are shown as similar elements. The drawings do not constitute a scale limitation. In addition,
[0013] FIG1 is a schematic structural diagram of a wet and dry drawer for a refrigeration device provided by an embodiment of the present disclosure;
[0014] FIG2 is a partial structural diagram of a wet and dry drawer for a refrigeration device provided by an embodiment of the present disclosure;
[0015] FIG3 is a cross-sectional schematic diagram of a wet and dry drawer for a refrigeration device provided by an embodiment of the present disclosure;
[0016] FIG4 is a cross-sectional schematic diagram of another wet and dry drawer for refrigeration equipment provided by an embodiment of the present disclosure;
[0017] FIG5 is an exploded schematic diagram of a partial structure of a wet and dry drawer for a refrigeration device provided by an embodiment of the present disclosure;
[0018] FIG6 is a cross-sectional schematic diagram of a partial structure of a wet and dry drawer for a refrigeration device provided by an embodiment of the present disclosure;
[0019] FIG7 is an enlarged schematic diagram of portion A in FIG6 provided by an embodiment of the present disclosure;
[0020] FIG8 is a cross-sectional schematic diagram of another wet and dry drawer for refrigeration equipment provided by an embodiment of the present disclosure;
[0021] FIG9 is a cross-sectional schematic diagram of a partial structure of another wet and dry drawer for refrigeration equipment provided by an embodiment of the present disclosure;
[0022] FIG10 is an enlarged schematic diagram of portion B in FIG9 provided in an embodiment of the present disclosure;
[0023] FIG11 is a refrigeration device provided by an embodiment of the present disclosure.
[0024] Reference numerals: 10: Drawer body, 101: Storage space, 11: Cover, 12: Moisture-permeable membrane, 13: Dry area, 14: Wet area, 15: Dehumidification port, 16: First position-limiting member, 17: First position-limiting guide rail, 18: Abutment portion, 181: Front stop, 182: Rear stop, 19: Support portion; 20: Partition assembly, 21: First partition, 211: First clamping portion, 22: Second partition, 221: First clamping structure; 30: First telescopic assembly, 31: First telescopic member, 311: Connecting portion, 312: Position-limiting groove, 313: First position-limiting port, 32: Second telescopic member, 321: Connecting structure, 322: Protrusion; 40: First roller; 50: Sealing strip; 60: First elastic member; 70: Second elastic member; 16A: Position-limiting block, 17A: Second position-limiting member; 211A: second clamping portion, 221A: second clamping structure, 23A: second limiting guide rail; 30A: connecting rod assembly, 31A: first connecting rod, 311A: horizontal rod, 312A: vertical rod, 32A: second connecting rod; 40A: second telescopic assembly, 41A: third telescopic member, 411A: second limiting opening, 412A: fixing opening; 50A: second roller, 51A: roller, 52A: fixing seat; 70A: third elastic member. DETAILED DESCRIPTION
[0025] In order to be able to understand the features and technical content of the embodiments of the present disclosure in more detail, the implementation of the embodiments of the present disclosure is described in detail below in conjunction with the accompanying drawings. The accompanying drawings are for reference only and are not used to limit the embodiments of the present disclosure. In the following technical description, for the sake of convenience of explanation, a full understanding of the disclosed embodiments is provided through multiple details. However, one or more embodiments can still be implemented without these details. In other cases, to simplify the drawings, well-known structures and devices can be simplified for display.
[0026] The reference to any prior art in the specification is not and should not be taken as an admission or any form of suggestion that the prior art forms part of the common general knowledge in the application area or any other jurisdiction, or that the prior art could reasonably be understood and regarded as relevant by a person skilled in the art.
[0027] In the description and claims of the embodiments of the present disclosure, as well as in the accompanying drawings, the terms "first," "second," and the like are used to distinguish similar items and are not necessarily used to describe a particular order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate to describe the embodiments of the present disclosure herein. In addition, the terms "including," "having," and any variations thereof are intended to cover non-exclusive inclusions.
[0028] In the embodiments of the present disclosure, the terms "upper", "lower", "inside", "middle", "outside", "front", "back" and the like indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. These terms are mainly intended to better describe the embodiments of the present disclosure and their embodiments, and are not intended to limit the indicated devices, elements or components to having a specific direction, or to be constructed and operated in a specific direction. Moreover, in addition to being used to indicate directions or positional relationships, some of the above terms may also be used to indicate other meanings. For example, the term "upper" may also be used to indicate a certain dependency or connection relationship in certain circumstances. For those of ordinary skill in the art, the specific meanings of these terms in the embodiments of the present disclosure can be understood according to specific circumstances.
[0029] Furthermore, the terms "disposed," "connected," and "fixed" should be interpreted broadly. For example, "connected" can mean a fixed connection, a removable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be a direct connection, an indirect connection through an intermediary, or an internal connection between two devices, elements, or components. Those skilled in the art will understand the specific meanings of these terms in the embodiments of this disclosure based on the specific circumstances.
[0030] Unless otherwise stated, the term "plurality" means two or more.
[0031] In the embodiment of the present disclosure, the character " / " indicates that the preceding and following objects are in an "or" relationship. For example, A / B means: A or B.
[0032] The term "and / or" describes an association between objects, indicating that three relationships can exist. For example, A and / or B means: A or B, or A and B.
[0033] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present disclosure can be combined with each other.
[0034] The present disclosure provides a wet / dry drawer for a refrigeration device. The wet / dry drawer comprises: a drawer body defining a storage space and having an abutment portion; a partition assembly disposed within the storage space and slidably connected to the drawer body, for separating the storage space into a dry area and a wet area; the partition assembly defining a storage space; and a telescopic portion movably disposed within the storage space and capable of retracting toward the interior of the storage space along a predetermined trajectory. This is further described below using Examples 1 and 2.
[0035] Example 1
[0036] With reference to Figures 1 to 7 , the definitions of up and down, front and back, and left and right directions in this embodiment are based on the example shown in Figure 1 . The present disclosure provides a wet-dry drawer for a refrigeration device, comprising: a drawer body 10, a partition assembly 20, and a telescopic portion, wherein the telescopic portion includes a first telescopic assembly. The drawer body 10 defines a storage space 101 and is provided with an abutment portion 18 . The partition assembly 20 is disposed within the storage space 101 and is slidably connected to the drawer body 10 , for dividing the storage space 101 into a dry area 13 and a wet area 14 . The partition assembly 20 defines a storage space. The first telescopic assembly 30 is movably disposed within the storage space, and one end of the first telescopic assembly 30 abuts the abutment portion 18 , allowing the first telescopic assembly 30 to retract toward the interior of the storage space along a predetermined trajectory under the control of the abutment portion 18 . When the partition assembly 20 moves upward, the first telescopic assembly 30 retracts toward the interior of the storage space under the action of the abutment portion 18 , thereby separating the first telescopic assembly from the sidewall of the drawer body 10 .
[0037] In the disclosed embodiment, a drawer body 10 is provided, allowing items to be placed in the storage space 101 defined therein. A partition assembly 20 is provided, which divides the storage space 101 into a dry area 13 and a wet area 14. Users can store items requiring low humidity in the dry area 13 and items requiring high humidity in the wet area 14, respectively. Items requiring a dry environment, such as cereals and snacks, are stored in the dry area 13, while items requiring a certain humidity, such as vegetables and fruits, are stored in the wet area 14. By slidably connecting the partition assembly 20 to the drawer body 10, users can flexibly adjust the volume of the dry and wet areas 13 and 14 according to their needs. If a large number of items require low humidity, the user can slide the partition assembly 20 toward the wet area 14 to increase the volume of the dry area 13. If a large number of items require high humidity, the user can slide the partition assembly 20 toward the dry area 13 to increase the volume of the wet area 14. With such a configuration, the user can adjust the size of the dry area 13 and the wet area 14 by himself, thereby improving the user experience.
[0038] Optionally, the wet and dry drawer for refrigeration equipment further includes a seal, which is provided in the first telescopic assembly 30 and located between the partition assembly 20 and the drawer body 10 to fill the gap between the partition assembly 20 and the drawer body 10.
[0039] By providing a seal, the seal can fill the gap between the partition assembly 20 and the drawer body 10, preventing air from flowing between the dry area 13 and the wet area 14 through the gap between the partition assembly 20 and the drawer body 10. This ensures that the wet and dry drawer has good sealing performance when closed, thereby maintaining the freshness and dryness of food or items. By providing the seal on the first telescopic assembly 30, the seal can be moved toward the storage space with the first telescopic assembly 30, thereby separating the seal from the inner wall of the drawer body 10.
[0040] By providing the first telescopic assembly 30 and placing the first telescopic assembly 30 in contact with the abutting portion 18 of the drawer body 10, the first telescopic assembly 30 can be moved under the action of the abutting portion 18. In this way, when the user needs to adjust the volume of the dry area 13 and the wet area 14, he only needs to lift the partition assembly 20 to cause the seal to retract into the interior of the partition assembly 20 under the drive of the first telescopic assembly 30, thereby separating the seal from the inner wall of the drawer body 10, avoiding friction resistance between the seal and the inner wall of the drawer, thereby reducing the difficulty of movement and improving the user experience. In addition, with this arrangement, when adjusting the position of the partition assembly 20, the user only needs to operate the partition assembly 20 with one hand, which greatly reduces the difficulty of operation.
[0041] Optionally, the drawer body 10 is further provided with an opening, and a cover plate 11 is provided at the opening, and the cover plate 11 is detachably mounted on the opening of the drawer body 10. When the cover plate 11 is buckled on the opening, the dry area 13 and the wet area 14 are in a completely closed state.
[0042] Optionally, both the upper and lower ends of the partition assembly 20 are provided with mounting grooves, and the mounting grooves are used to install and fix the sealing strip 50 .
[0043] In this way, by setting installation grooves at the upper and lower ends of the partition assembly 20, the sealing strip 50 can be installed at the upper and lower ends of the partition assembly 20. The sealing strip 50 can fill the gap between the upper and lower ends of the partition assembly 20 and the drawer body 10, thereby improving the sealing effect of the partition assembly 20.
[0044] Optionally, the partition assembly 20 includes a first partition 21 and a second partition 22 , the first partition 21 is provided with a first clamping portion 211 , and the second partition 22 is provided with a first clamping structure 221 adapted to the first clamping portion 211 , so that the first partition 21 is clamped with the second partition 22 .
[0045] An accommodation space is formed between the first partition plate 21 and the second partition plate 22 .
[0046] In this way, it is convenient to disassemble the partition assembly 20 and replace or inspect the first telescopic assembly 30 or other components inside.
[0047] 5 and 6 , the first clamping portion 211 is located at the middle, upper, and lower ends of the first partition 21 facing the second partition 22 , and the first clamping structure 221 is located at a corresponding position of the second partition 22 .
[0048] Optionally, the first telescopic component 30 includes: a first telescopic member 31 and a second telescopic member 32, the first telescopic member 31 is arranged in the accommodating space and can move in the front-to-back direction, and the interior of the first telescopic member 31 defines a mounting cavity; the second telescopic member 32 is arranged in the mounting cavity and can move in the up-down direction, and the second telescopic member 32 extends to the outside of the first telescopic member 31, and the extended end of the second telescopic member 32 abuts against the abutment portion 18; wherein the second telescopic member 32 is connected to the first telescopic member 31, and the second telescopic member 32 can drive the first telescopic member 31 to move in the front-to-back direction.
[0049] According to the disclosed embodiment, a first telescopic member 31 and a second telescopic member 32 are provided, and the extended end of the second telescopic member 32 is brought into contact with the abutment portion 18. The second telescopic member 32 is connected to the first telescopic member 31, and the second telescopic member 32 is capable of driving the first telescopic member 31 to move in the front-to-back direction. In this way, the upward movement of the partition assembly can be converted into the up-and-down movement of the second telescopic member 32, thereby driving the first telescopic member 31 to retract inward. In addition, the first telescopic assembly 30 can have a stable trajectory during movement. This stable motion trajectory not only ensures the reliability of the partition assembly 20 during use, but also reduces the noise and wear that may be generated due to unstable movement.
[0050] By defining an installation cavity inside the first telescopic member 31 and arranging the second telescopic member 32 in the installation cavity, the entire first telescopic assembly 30 can be made more compact in structure, effectively saving space, avoiding the thickness of the partition assembly 20 being too thick, and improving the utilization rate of the storage space of the drawer body 10.
[0051] Specifically, the sealing member is provided on the end surface of the first telescopic member 31 facing the side wall of the drawer body 10 .
[0052] In this way, by arranging the seal on the end face of the side wall of the first telescopic member 31 facing the drawer body 10, it is ensured that the seal can fit closely to the side wall of the drawer body 10, thereby improving the sealing efficiency. Secondly, when the first telescopic member 31 moves in the front-to-back direction, the seal will move accordingly. This design enables the seal to adapt to the slight unevenness of the side wall of the drawer body 10, as well as the slight deformation of the drawer body 10 during use, thereby ensuring that an effective seal is always maintained. In addition, the seal is directly installed on the end face of the first telescopic member 31, making the installation and replacement process of the seal simpler and more direct.
[0053] Optionally, the inner wall of the first telescopic member 31 is convex to form a connecting portion 311, and the second telescopic member 32 is provided with a connecting structure 321 adapted to the connecting portion 311, and the connecting structure 321 abuts against the connecting portion 311; wherein, the abutting surface between the connecting portion 311 and the connecting structure 321 is set at an angle to the movement direction of the second telescopic member 32, and the angle range is 30 degrees to 60 degrees.
[0054] According to the embodiment of the present disclosure, by providing a connecting structure 321 and a connecting portion 311, and arranging the contact surface of the connecting portion 311 and the connecting structure 321 at an angle to the direction of motion of the second telescopic member 32, the force of the second telescopic member 32 in the up-down direction can be converted into a force in the front-back direction through the connecting structure 321 and the connecting portion 311, so that the first telescopic member 31 moves in the front-back direction. Secondly, the contact surface of the connecting portion 311 and the connecting structure 321 at an angle to the direction of motion of the second telescopic member 32 not only guides the second telescopic member 32, ensuring that the second telescopic member 32 moves up and down along a predetermined motion trajectory, but also effectively disperses the stress generated by the movement of the second telescopic member 32, reduces stress concentration, and improves the durability of the first telescopic assembly 30. In addition, the connecting portion 311 and the connecting structure 321 contact surface are arranged at an angle, so that the first telescopic assembly 30 has certain adaptability and flexibility, and can adapt to different installation environments and usage scenarios. Whether it is slight dimensional deviation or adjustment of the installation angle, this design can compensate, greatly reducing the difficulty of assembly.
[0055] Preferably, the angle is 45 degrees. Such an appropriate angle design can make the second telescopic member 32 move up and down more smoothly, reduce the possibility of jamming or friction, and improve the user experience.
[0056] Optionally, the first telescopic component 30 also includes: a first elastic member 60, the first elastic member 60 is arranged in the accommodating space, the first end of the first elastic member 60 is connected to the partition assembly 20, and the second end of the first elastic member 60 is connected to the first telescopic member 31, used to drive the first telescopic member 31 to move in the direction of extending out of the accommodating space.
[0057] According to the embodiment of the present disclosure, by providing a first elastic member 60 and configuring the first elastic member 60 to drive the first telescopic member 31 to move in a direction extending out of the accommodation space, when the user moves the partition assembly 20 and the partition assembly 20 is lifted, the first telescopic member 31 will retract into the accommodation space. Once the force acting to lift the partition assembly 20 disappears, the first elastic member 60 will automatically drive the first telescopic member 30 to reset using its elastic force, causing the first telescopic member 31 to extend out of the accommodation space, thereby causing the seal to abut against the side wall of the drawer body 10, ensuring the sealing effect of the partition assembly 20. In addition, when the partition assembly 20 moves upward, the first elastic member 60 can absorb part of the impact energy, reducing the hard collision between the first telescopic member 31 and the partition assembly 20, thereby avoiding damage to the first telescopic member 31 and the partition assembly 20 and extending the service life of the wet and dry drawer.
[0058] 5 and 6 , optionally, the partition assembly 20 is provided with two support portions 19 , the two support portions 19 are vertically spaced apart, the number of the first elastic members 60 is two, and the first elastic members 60 are provided in one-to-one correspondence with the support portions 19 .
[0059] In this way, not only the reset speed of the first telescopic member 31 can be accelerated, but also the reliability of the first telescopic assembly 30 can be improved, thereby avoiding the situation where the first telescopic member 31 cannot be reset due to damage to one of the first elastic members 60 or the support portion 19.
[0060] Specifically, the first elastic member 60 may be a metal spring or a rubber spring. It is understood that the specific form of the first elastic member 60 is not unique.
[0061] Optionally, the first telescopic assembly 30 also includes: a second elastic member 70, the second elastic member 70 is arranged in the installation cavity, and the second elastic member 70 is arranged between the first telescopic member 31 and the second telescopic member 32, and the second elastic member 70 is used to drive the second telescopic member 32 to move in a direction away from the bottom wall of the drawer body 10.
[0062] According to the embodiment of the present disclosure, by providing a second telescopic member 32 and configuring the second elastic member 70 to drive the second telescopic member 32 to move in a direction away from the bottom wall of the drawer body 10, when the user lifts the partition assembly 20 and slides the partition assembly 20, the second telescopic member 32 moves downward under the action of the abutment portion 18, and the second elastic member 70 is compressed. Once the force acting to lift the partition assembly 20 disappears, the second elastic member 70 will use its elastic force to automatically drive the second telescopic member 32 to reset, so that the second telescopic member 32 is always in abutment with the abutment portion 18, ensuring that the user can adjust the position of the partition assembly 20 multiple times. In addition, when the second telescopic member 32 is subjected to slight pressure or vibration during use, the second elastic member 70 can automatically compensate for these changes, ensuring that the second telescopic member 32 is always in abutment with the abutment portion 18, thereby improving the reliability of the first telescopic assembly 30.
[0063] Specifically, the second elastic member 70 may be a metal spring or a rubber spring. It is understood that the specific form of the second elastic member 70 is not unique.
[0064] Preferably, the first telescopic assembly 30 includes a first elastic member 60 and a second elastic member 70 .
[0065] In this way, the first elastic member 60 and the second elastic member 70 can jointly accelerate the restoration of the first telescopic assembly 30 .
[0066] Optionally, the partition assembly 20 is provided with a first limiting member 16 , and the first telescopic member 31 is provided with a limiting groove 312 adapted to the first limiting member 16 . The first telescopic member 31 can move a predetermined distance in the front-to-rear direction under the limitation of the first limiting member 16 .
[0067] By adopting the embodiment of the present disclosure, by setting the first limit member 16 and the limit groove 312, the mutual cooperation between the first limit member 16 and the limit groove 312 can accurately limit the movement range of the first telescopic member 31 in the front-to-back direction, so that when the partition assembly 20 moves upward, the first telescopic member 31 can only be extended and retracted along the front-to-back direction under the limitation of the first limit member 16, ensuring that the first telescopic member 31 can move according to a predetermined trajectory, thereby improving the stability and reliability of the movement.
[0068] As shown in FIG. 5 , optionally, the first limiting member 16 includes a limiting portion and an anti-slip portion, and the anti-slip portion is arranged parallel to the end surface of the partition.
[0069] In this way, by providing the anti-drop portion, the first telescopic member 31 can be effectively prevented from accidentally falling off during use. Even if the dry and wet drawer is subjected to external impact or vibration, the first telescopic member 31 can remain in the correct position under the constraint of the first limit member 16, thereby improving reliability.
[0070] Optionally, there are two first limiting members 16 , which are spaced apart vertically. The first telescopic member 31 has two limiting grooves 312 , which are arranged in one-to-one correspondence with the first limiting members 16 .
[0071] In this way, the limiting effect of the first limiting member 16 can be improved, the first telescopic member 31 can be prevented from shaking during the movement, and the movement stability can be improved.
[0072] Optionally, the partition assembly 20 is provided with a first limiting guide rail 17 or one of the protrusions 322, and the second telescopic member 32 is provided with the other of the first limiting guide rail 17 or the protrusion 322, and the first limiting guide rail 17 is adapted to the protrusion 322; wherein, the first limiting guide rail 17 is extended along the movement direction of the second telescopic member 32, and the side wall of the first telescopic member 31 is provided with a first limiting opening 313, and the first limiting guide rail 17 or the protrusion 322 of the second telescopic member 32 extends out of the first limiting opening 313 and cooperates with the protrusion 322 or the first limiting guide rail 17 of the partition assembly 20, so that the first telescopic member 31 can move in the up and down directions under the limitation of the partition assembly 20.
[0073] According to the embodiment of the present disclosure, a first limiting guide rail 17 and a protrusion 322 are respectively provided on the partition assembly 20 and the second telescopic member 32, and the movement of the second telescopic member 32 in the up and down directions is limited by the cooperation between the first limiting guide rail 17 and the protrusion 322. The cooperation between the first limiting guide rail 17 and the protrusion 322 provides a precise guiding and positioning function for the second telescopic member 32. When the second telescopic member 32 moves along its direction of movement, the first limiting guide rail 17 and the protrusion 322 ensure that the second telescopic member 32 moves up and down along a predetermined trajectory under the limitation of the partition assembly 20, so as to reduce the shaking or deviation of the second telescopic member 32 during use and improve the movement stability.
[0074] 5 to 7 , optionally, the partition assembly 20 is provided with a first position-limiting guide rail 17 , the second telescopic member 32 is provided with a protrusion 322 , and the length of the first position-limiting guide rail 17 is greater than the movement distance of the second telescopic member 32 .
[0075] Optionally, the top end of the front side wall of the drawer body 10 extends backward to form a front stop edge 181, and the rear side wall of the drawer body 10 extends forward to form a rear stop edge 182; wherein, the abutting portion 18 includes a front stop edge 181 and a rear stop edge 182, and the number of first telescopic components 30 is two, the two first telescopic components 30 are arranged opposite to each other and are located on both sides of the partition assembly 20, and the two first telescopic components 30 are respectively abutted against the front stop edge 181 and the rear stop edge 182.
[0076] By adopting the disclosed embodiment, by providing a front stop 181 and a rear stop 182, and disposing two first telescopic assemblies 30 respectively abutting the front stop 181 and the rear stop 182, the seals on the first telescopic assemblies 30 corresponding to the front and rear side walls can both telescope with the first telescopic assemblies 30, and the seals opposite the two side walls of the drawer body 10 can also telescope as needed. Furthermore, this arrangement not only evenly distributes the applied force on the drawer body 10, reducing stress concentration, but also evenly distributes the force on the first telescopic assemblies 30, thereby improving the durability and service life of the wet / dry drawer.
[0077] Optionally, the front stop edge 181 and the rear stop edge 182 are extended along the sliding direction of the partition assembly 20 .
[0078] In this way, when the partition assembly 20 is adjusted to any position in the drawer body 10 , the first telescopic assembly 30 can abut against the abutting portion 18 , thereby ensuring the stability and reliability of the movement of the partition assembly 20 .
[0079] Optionally, the wet and dry drawer for refrigeration equipment also includes: a first roller 40, which is arranged on the first telescopic component 30, and the first roller 40 is located at the connection between the first telescopic component 30 and the abutment portion 18, so that the first telescopic component 30 is rollingly connected to the drawer body 10.
[0080] According to the disclosed embodiment, by providing a first roller 40 and positioning the first roller 40 at the connection between the first telescopic assembly 30 and the abutment 18, the first telescopic assembly 30 can be connected to the abutment 18 via the first roller 40. Thus, the first roller 40 can be used to convert the friction between the first telescopic assembly 30 and the drawer body 10 from sliding friction to rolling friction, thereby reducing the resistance to movement between the first telescopic assembly 30 and the drawer body 10 and the effort required by the user to adjust the position of the partition assembly 20. Furthermore, due to the low resistance of rolling friction, the contact pressure between the first roller 40 and the drawer body 10 is also reduced, thereby reducing wear and extending the service life of the wet and dry drawer. Furthermore, compared to the sliding friction of the first telescopic assembly 30 relative to the abutment 18, rolling friction generates less noise. This can help reduce the noise generated when the partition assembly 20 slides, improving the user experience.
[0081] Specifically, the first roller 40 is disposed at an extended end of the second telescopic member 32 . The first roller 40 is rotatably connected to the second telescopic member 32 , and the first roller 40 abuts against the abutting portion 18 .
[0082] Example 2
[0083] 1 to 3 and 8 to 10 , an embodiment of the present disclosure provides a wet and dry drawer for refrigeration equipment, the wet and dry drawer for refrigeration equipment comprising: a drawer body 10, a partition assembly 20 and a telescopic portion, wherein the telescopic portion comprises a connecting rod assembly 30A and a second telescopic assembly 40A. The drawer body 10 defines a storage space 101, and the drawer body 10 is provided with an abutment 18; the partition assembly 20 is arranged in the storage space 101 and is slidably connected to the drawer body 10, for dividing the storage space 101 into a dry area 13 and a wet area 14, and the partition assembly 20 defines the accommodating space; the connecting rod assembly 30A is movably arranged in the accommodating space, and the connecting rod assembly 30A abuts against the abutment 18; the second telescopic assembly 40A is movably arranged in the accommodating space, and the second telescopic assembly 40A is hinged to the connecting rod assembly 30A, and the second telescopic assembly 40A can be driven by the connecting rod assembly 30A to retract toward the interior of the accommodating space along a preset trajectory; wherein, when the partition assembly 20 moves upward, the connecting rod assembly 30A moves under the action of the abutment 18, and the connecting rod assembly 30A drives the second telescopic assembly 40A to move inward along the preset trajectory to retract, so that the second telescopic assembly 40A is separated from the inner side wall of the drawer body 10.
[0084] 1 to 3 , the structural features of the embodiment of the present disclosure that are the same as those in embodiment 1 are not described again in detail.
[0085] 8 to 10 , by setting a connecting rod assembly 30A and a second telescopic assembly 40A and setting the connecting rod assembly 30A in abutment with the abutment portion 18 of the drawer body 10 , and the second telescopic assembly 40A is hinged to the connecting rod assembly 30A, the connecting rod assembly 30A and the second telescopic assembly 40A can be made to move under the action of the abutment portion 18 . In this way, when the user needs to adjust the volume of the dry area 13 and the wet area 14, he only needs to lift and slide the partition assembly 20. When the partition assembly 20 moves upward, the abutment portion 18 of the drawer body abuts against the connecting assembly, and then the connecting assembly drives the second telescopic assembly 40A to retract inward relative to the partition assembly 20, and then the second telescopic assembly 40A is separated from the inner wall of the drawer body 10, avoiding friction resistance between the second telescopic assembly 40A and the inner wall of the drawer body 10, thereby reducing the difficulty of sliding the partition assembly 20 and effectively improving the user's experience. In addition, when the user adjusts the position of the partition assembly 20 in this setting, he only needs to operate the partition assembly 20 with one hand, which greatly reduces the difficulty of operation.
[0086] Optionally, the partition assembly 20 includes a first partition 21 and a second partition 22, the first partition 21 is provided with a second clamping portion 211A, and the second partition 22 is provided with a second clamping structure 221A adapted to the second clamping portion 211A, so that the first partition 21 and the second partition 22 are clamped together, and a accommodating space is formed between the first partition 21 and the second partition 22.
[0087] In this way, it is convenient to disassemble the partition assembly 20 and replace or inspect the second telescopic assembly 40A or other components inside.
[0088] Optionally, the inner side wall of the partition assembly 20 is provided with a second limiting guide rail 23A, and the second limiting guide rail 23A is extended vertically; the connecting rod assembly 30A includes: a first connecting rod 31A and a second connecting rod 32A, the first connecting rod 31A is abutted against the abutment portion 18, and the first connecting rod 31A is partially slidably connected to the second limiting guide rail 23A, and can move in the up and down directions under the action of the abutment portion 18; the first end of the second connecting rod 32A is hinged to the first connecting rod 31A, and the second end of the second connecting rod 32A is hinged to the second telescopic assembly 40A to drive the second telescopic assembly 40A to move in the front and rear directions.
[0089] In the disclosed embodiment, the second limiting guide rail 23A and the first connecting rod 31A are provided. The second limiting guide rail 23A extends vertically, providing a clear path and support for the up and down movement of the first connecting rod 31A. This enhances the stability of the connecting rod during movement and prevents shaking or misalignment. Furthermore, the sliding connection between the first connecting rod 31A and the second limiting guide rail 23A reduces friction and wear between the first connecting rod 31A and the second limiting guide rail 23A during movement, thereby extending the service life of the wet / dry drawer.
[0090] By setting a first link 31A and a second link 32A, and hingedly connecting the first end of the second link 32A to the first link 31A and the second end of the second link 32A to the second telescopic assembly 40A, the first link 31A can drive the second link 32A to move, and the second link 32A can convert the up and down movement of the first link 31A into a force along the moving direction of the second telescopic assembly 40A, so that the second link 32A drives the second telescopic assembly 40A to move in the front and rear directions.
[0091] Optionally, the first connecting rod 31A includes: a horizontal rod 311A and a vertical rod 312A, the horizontal rod 311A is extended in the horizontal direction, and the end of the horizontal rod 311A abuts against the abutment portion 18; the first end of the vertical rod 312A is connected to the horizontal rod 311A, and the second end of the vertical rod 312A is extended downward, wherein the vertical rod 312A is slidably connected to the second limiting guide rail 23A.
[0092] According to the embodiment of the present disclosure, a crossbar 311A is provided and extended in the transverse direction, and the end of the crossbar 311A is brought into contact with the abutment portion 18. This allows a stable connection to be formed between the crossbar 311A and the abutment portion 18, thereby avoiding shaking or falling off due to a loose connection. In addition, the abutment between the crossbar 311A and the abutment portion 18 forms a clear force transmission path. When the partition assembly 20 is subjected to external force or moves, this force transmission path ensures that the force is effectively transmitted to the connecting rod assembly 30A, thereby driving the second telescopic assembly 40A to move.
[0093] By setting a vertical rod 312A and extending the vertical rod 312A downward and slidingly connecting it with the second limiting guide rail 23A, the second limiting guide rail 23A provides vertical stable support, ensuring that the connecting rod assembly 30A will not deviate from the predetermined movement path, thereby ensuring the stability of the connecting rod assembly 30A during the up and down movement.
[0094] Specifically, as shown in Figures 8 and 9 , the lower end surface of the crossbar 311A is spaced apart from the upper end of the second limiting guide rail 23A. This allows the crossbar 311A to move downward relative to the second limiting guide rail 23A, and the second limiting guide rail 23A can limit the maximum downward movement of the first connecting rod 31A. The second end of the vertical rod 312A is provided with a connecting block that can abut the lower end of the second limiting guide rail 23A. In this way, the second limiting guide rail 23A can limit the maximum upward movement of the first connecting rod 31A.
[0095] Optionally, there are two vertical rods 312A and they are arranged at intervals along the horizontal direction. Both vertical rods 312A are connected to the cross bar 311A. There are two second position limiting guide rails 23A and the second position limiting guide rails 23A are arranged in a one-to-one correspondence with the vertical rods 312A.
[0096] By adopting the embodiment of the present disclosure, by providing two vertical rods 312A and arranging them in a transversely spaced manner, a larger support area and stronger structural stability are provided, making the connecting rod assembly 30A more stable when subjected to external forces or movement, and reducing the possibility of shaking or deformation. By arranging the two vertical rods 312A in a one-to-one correspondence with the second limiting guide rail 23A, it is possible to ensure that the force is evenly distributed between the vertical rods 312A. This avoids wear or damage caused by excessive force on a single point of the first connecting rod 31A, and improves the durability of the connecting rod assembly 30A. In addition, the guiding functions of the two limiting guide rails complement each other, improving the smoothness and accuracy of the movement of the connecting rod assembly 30A.
[0097] Specifically, as shown in Figures 8 and 9 , there are two vertical rods 312A, which are located in the middle of the horizontal rod 311A and are evenly spaced apart, thereby improving the uniformity of the force applied to the first connecting rod 31A.
[0098] Optionally, the second telescopic component 40A includes: a third telescopic component 41A, the third telescopic component 41A is arranged in the accommodating space and the third telescopic component 41A can move in the front and rear directions; wherein, the partition assembly 20 is provided with a limit block 16A, and the third telescopic component 41A is provided with a second limit opening 411A adapted to the limit block 16A, so that the third telescopic component 41A can move in the front and rear directions under the limitation of the limit block 16A.
[0099] In the disclosed embodiment, by providing a stopper 16A on the partition assembly 20 and a second stopper 411A on the third telescopic member 41A, the stopper 16A and the second stopper 411A cooperate to ensure that the third telescopic member 41A can only move in the front-to-back direction and cannot deflect in other directions. The stopper 16A and the second stopper 411A cooperate to limit the range of motion of the third telescopic member 41A, preventing the second telescopic assembly 40A from being excessively stretched or compressed during adjustment.
[0100] Optionally, both the upper side wall and the lower side wall of the limiting block 16A abut against the side walls corresponding to the second limiting opening 411A.
[0101] In this way, the stopper 16A can prevent the third telescopic member 41A from moving up and down relative to the partition assembly 20, and can accurately limit the position. When the partition assembly 20 is subjected to external force or movement, the cooperation between the stopper 16A and the second limit opening 411A can prevent the third telescopic member 41A from shaking or falling off.
[0102] Optionally, the partition assembly 20 is provided with a second limiting member 17A, the second limiting member 17A is spaced apart from the limiting block 16A, and the third telescopic member 41A is provided with a fixing opening 412A adapted to the second limiting member 17A, so that the third telescopic member 41A can move in the front and rear directions under the limitation of the second limiting member 17A.
[0103] In this way, the second limiting member 17A and the limiting block 16A jointly limit the third telescopic member 41A, thereby improving the stability of the movement of the third telescopic member 41A.
[0104] Optionally, the second telescopic assembly 40A further includes: a seal, which is provided in the second telescopic assembly 40A and located between the partition assembly 20 and the drawer body 10 to fill the gap between the partition assembly 20 and the drawer body 10.
[0105] Thus, by providing a seal, the seal can fill the gap between the partition assembly 20 and the drawer body, preventing air from flowing between the dry area 13 and the wet area 14 through the gap between the partition assembly 20 and the drawer body, ensuring that the dry and wet drawer has good sealing performance when closed, thereby maintaining the freshness and dryness of food or items. By providing the seal on the second telescopic assembly 40A, the seal can be moved toward the storage space with the second telescopic assembly 40A, thereby separating the seal from the inner wall of the drawer body 10.
[0106] Specifically, an installation groove is provided on the end surface of the third telescopic member 41A facing the inner side wall of the drawer body 10 for installing a sealing member.
[0107] In this way, the seal is installed in the mounting groove, effectively filling the gap between the partition assembly 20 and the drawer body 10. This prevents dust, dirt, and other debris from entering the gap, keeping the drawer interior clean and tidy. The seal also prevents air from circulating, ensuring a good seal. Seals typically have a simple and straightforward installation method, allowing users to easily install or replace the seal as needed. This design makes maintenance and upkeep simple and convenient, reducing maintenance costs for users.
[0108] Specifically, the sealing member may be a sealing strip.
[0109] Optionally, there are two second telescopic assemblies 40A, which are arranged opposite to each other and located on both sides of the partition assembly 20, and both second telescopic assemblies 40A are connected to the connecting rod assembly 30A.
[0110] By employing the disclosed embodiment, two second telescopic assemblies 40A are provided, and these two second telescopic assemblies 40A are positioned opposite each other on either side of the partition assembly 20. This allows a single connecting rod assembly 30A to simultaneously drive both second telescopic assemblies 40A toward the interior of the storage space. This allows the user to simultaneously retract the second telescopic assemblies 40A on the front and rear sides of the partition assembly 20 when lifting it, thereby disengaging the second telescopic assemblies 40A on the front and rear sides of the partition assembly 20 from the inner sidewalls of the drawer body 10, thereby making it easier to move the partition assembly 20.
[0111] Optionally, the partition assembly 20 is provided with a third limiting guide rail or one of the limiting adapter parts, and the third telescopic member 41A is provided with the other of the third limiting guide rail or the limiting adapter part, and the third limiting guide rail is adapted to the limiting adapter part, wherein the third limiting guide rail is arranged to extend laterally so that the third telescopic member 41A moves in the forward and backward directions under the limitation of the third limiting guide rail.
[0112] In the disclosed embodiment, the third limiting guide rail and the limiting adapter are provided between the partition assembly 20 and the third telescopic member 41A. This allows the third telescopic member 41A to move only in the forward and backward direction, and not deviate from the predetermined trajectory, within the constraints of the partition assembly 20. Furthermore, the third telescopic member 41A is slidably connected to the third limiting guide rail to reduce friction and wear during movement, thereby extending the service life of the second telescopic assembly 40A.
[0113] Specifically, the third telescopic member 41A is provided with a connecting column, the second end of the second connecting rod 32A is hinged to the connecting column, and the connecting column is connected to the third limiting guide rail.
[0114] In this way, the third limiting guide rail can limit the movement direction of the connection point between the connecting rod assembly 30A and the third telescopic member 41A, which can effectively transmit force and disperse the force. The connecting column serves as the connection point between the third telescopic member 41A and the second connecting rod 32A, ensuring that the third telescopic member 41A can move along the third limiting guide rail, avoiding deviation or shaking.
[0115] Optionally, the second telescopic component 40A also includes: a third elastic member 70A, the third elastic member 70A is arranged in the accommodating space, the first end of the third elastic member 70A is connected to the limit block 16A, the second end of the third elastic member 70A is connected to the second telescopic component 40A, and the third elastic member 70A is used to drive the third telescopic member 41A to move in the direction of extending out of the accommodating space.
[0116] According to the embodiment of the present disclosure, by providing a third elastic member 70A and configuring the third elastic member 70A to drive the third telescopic member 41A to move in a direction extending out of the accommodation space, when the user moves the partition assembly 20 and the partition assembly 20 is lifted, the third telescopic member 41A will retract into the accommodation space. Once the force acting to lift the partition assembly 20 disappears, the third elastic member 70A will use its elastic force to automatically drive the second telescopic assembly 40A to reset, causing the third telescopic member 41A to extend out of the accommodation space, thereby causing the seal to abut against the side wall of the drawer body 10, ensuring the sealing effect of the partition assembly 20. In addition, when the partition assembly 20 moves upward, the third elastic member 70A can absorb part of the impact energy, reducing the hard collision between the third telescopic member 41A and the partition assembly 20, thereby avoiding damage to the third telescopic member 41A and the partition assembly 20 and extending the service life of the wet and dry drawer. In addition, by connecting the first end of the third elastic member 70A to the limit block 16A and the second end of the third elastic member 70A to the second telescopic assembly 40A, the accommodation space of the partition assembly 20 can be fully utilized and the installation space required for the second telescopic assembly 40A can be reduced.
[0117] 8 to 10 , the third elastic member 70A is a spring, a fixing column is provided at the second limit opening 411A, one end of the third elastic member 70A is nested in the fixing column, and the other end abuts against the end face of the limit block 16A facing the fixing column.
[0118] It should be noted that the third elastic member 70A may be a metal spring or a rubber spring. It is understood that the specific form of the third elastic member 70A is not unique.
[0119] Optionally, the wet and dry drawer for refrigeration equipment further includes: a second roller 50A, which is arranged on the connecting rod assembly 30A, and the second roller 50A is located at the connection between the connecting rod assembly 30A and the abutment portion 18, so that the connecting rod assembly 30A is rollingly connected to the drawer body 10.
[0120] According to the embodiment of the present disclosure, by providing a second roller 50A and arranging the second roller 50A at the connection between the connecting rod assembly 30A and the abutment 18, the connecting rod assembly 30A can be connected to the abutment 18 through the second roller 50A. In this way, the friction between the connecting rod assembly 30A and the drawer body 10 can be converted from sliding friction to rolling friction by using the second roller 50A, which can reduce the movement resistance between the connecting rod assembly 30A and the drawer body 10 and reduce the effort required by the user to adjust the position of the partition assembly 20. Secondly, since the resistance of the rolling friction is small, the contact pressure between the second roller 50A and the drawer body 10 is also reduced accordingly, thereby reducing wear and tear and extending the service life of the wet and dry drawer. In addition, compared with the sliding friction of the connecting rod assembly 30A relative to the abutment 18, the noise generated by rolling friction is smaller. This can help reduce the noise generated when the partition assembly 20 slides, thereby improving the user experience.
[0121] Specifically, as shown in Figure 10, the second roller 50A includes a roller 51A and a fixed seat 52A, the roller 51A is rotatably connected to the fixed seat 52A, the fixed seat 52A is fixedly connected to the end of the first connecting rod 31A, the partition assembly 20 is provided with a shift plate, and the fixed seat 52A is provided with a protrusion that can abut against the shift plate, so that the partition assembly 20 limits the moving distance of the fixed seat 52A.
[0122] In this way, by providing the shift plate and the protrusion, it is possible to avoid the situation where the second roller 50A moves downward too far, resulting in the second roller 50A being unable to abut against the abutting portion 18 again.
[0123] Optionally, the top end of the front side wall of the drawer body 10 extends backward to form a front stop edge, and the rear side wall of the drawer body 10 extends forward to form a rear stop edge; wherein, the abutment portion 18 includes a front stop edge and a rear stop edge, and the number of second rollers 50A is two and they are respectively arranged corresponding to the front stop edge and the rear stop edge.
[0124] The disclosed embodiment provides a front stop and a rear stop on the drawer body 10, and two second rollers 50A corresponding to the front and rear stops, respectively. This not only evenly distributes the applied force within the drawer body 10, reducing stress concentration, but also balances the force applied to the connecting rod assembly 30A. This improves the stability of the connecting rod assembly 30A and contributes to the durability and service life of the wet / dry drawer. Furthermore, the front and rear stops do not occupy the internal storage space of the drawer, eliminating the need for major modifications to the drawer body 10.
[0125] Optionally, the front stop edge and the rear stop edge are both extended along the sliding direction of the partition assembly 20 .
[0126] In this way, when the partition assembly 20 is adjusted to any position in the drawer body 10 , the connecting rod assembly 30A can abut against the abutting portion 18 , thereby ensuring the stability and reliability of the movement of the partition assembly 20 .
[0127] As shown in FIG11 , an embodiment of the present disclosure provides a refrigeration device, which includes a wet and dry drawer for a refrigeration device as described in any one of the above optional embodiments.
[0128] The refrigeration equipment using the embodiment of the present disclosure includes the wet and dry drawer for refrigeration equipment of any of the above embodiments, and therefore has the beneficial effects of the wet and dry drawer for refrigeration equipment of any of the above embodiments, which will not be repeated here.
[0129] Optionally, the refrigeration equipment includes a refrigerator, a freezer, a wine cabinet, etc. It can be understood that the refrigeration equipment is not unique.
[0130] Optionally, the refrigeration device includes a refrigerator, wherein the refrigerator includes a box body, and the box body is provided with a storage cavity; wherein the dry and wet drawers for the refrigeration device are arranged in the storage cavity.
[0131] In this way, by using the refrigerator provided by the present application, the user can adjust the size of the dry area 13 and the wet area 14 by himself, thereby improving the user experience.
[0132] Optionally, a dehumidification port 15 is provided on the side wall of the dry area 13 of the drawer body 10 ; the refrigeration device further comprises a dehumidification device which is connected to the dry area 13 via the dehumidification port 15 for dehumidifying the dry area 13 .
[0133] Specifically, the refrigeration equipment also includes a heat exchanger, which can function as a dehumidifier. The dehumidifier is connected to the dehumidification port 15 via an air duct and can dehumidify the dry area 13 through the dehumidification port 15 to ensure that the humidity in the dry area 13 is lower than that in the wet area 14. Users can store items requiring low humidity in the dry area 13 and items requiring high humidity in the wet area 14. Users can slide the partition assembly 20 toward the dry area 13 to increase the volume of the wet area 14, or they can slide the partition assembly 20 toward the wet area 14 to increase the volume of the dry area 13.
[0134] Optionally, the storage area of the box body can be a freezer compartment or a refrigerator compartment.
[0135] In some embodiments, the refrigeration appliance further includes a position sensor. The position sensor is disposed on the drawer body 10 and / or the partition assembly 20 and is electrically connected to the dehumidification device to detect the position of the partition assembly 20. If the position sensor detects that the partition assembly 20 has moved toward the dry area 13 to a predetermined position, the position sensor may control the dehumidification device to stop dehumidifying the dry area 13.
[0136] Specifically, the position sensor can detect the position of the partition assembly 20 within the drawer body 10 in real time. When the partition is in the preset position, the storage area is completely the wet area 14. At this time, the partition assembly 20 can trigger the position sensor, which controls the dehumidification device to stop dehumidifying the dry area 13, thereby preventing the dehumidification device from affecting the humidity in the wet area 14.
[0137] Optionally, the position sensor includes a magnetic switch and a magnetic element. The magnetic switch is located on the side of the drawer body located in the dry area 13. The magnetic element is located on the partition assembly 20 at a position corresponding to the magnetic switch. When the partition assembly 20 moves toward the dry area 13 to a predetermined position, the magnetic element triggers the magnetic switch.
[0138] Specifically, a magnetic switch is fixedly mounted on one side of the drawer body located in the dry area 13, and the magnetic switch is electrically connected to the dehumidification device. When the partition assembly 20 moves toward the dry area 13 to a preset position, a magnetic element mounted on the partition assembly 20 triggers the magnetic switch. At this point, the magnetic switch controls the dehumidification device to stop dehumidifying the dry area 13 to avoid affecting the humidity in the wet area 14. If the partition moves toward the wet area 14 and leaves the preset position, the magnetic element cannot trigger the magnetic switch. At this point, the magnetic switch is closed, and the dehumidification device can dehumidify the dry area 13 through the dehumidification port 15.
[0139] Optionally, the refrigeration device further includes a moisture permeable membrane 12. The moisture permeable membrane 12 is disposed corresponding to the wet area 14. When the humidity in the wet area 14 is less than or equal to a preset humidity, the moisture permeable membrane 12 can block the water vapor in the wet area 14.
[0140] Optionally, when the humidity in the wet area 14 is less than or equal to a preset humidity, the moisture-permeable membrane 12 can prevent water vapor in the wet area 14 from leaking outward. When the humidity in the wet area 14 is greater than the preset humidity, water vapor in the wet area 14 can leak outward through the moisture-permeable membrane 12 until the humidity in the wet area 14 is less than or equal to the preset humidity.
[0141] Optionally, the preset humidity is greater than or equal to 75% and less than or equal to 95%. For example, the preset humidity can be 75%, 80%, 85%, 90% or 95%.
[0142] In actual applications, the preset humidity can be determined according to the actual needs of the user. For example, the preset humidity is 90%.
[0143] It is understandable that after the user stores the items, some moisture may remain in the items themselves, and this moisture may evaporate into the wet area 14 to humidify the wet area 14 .
[0144] As shown in FIG. 1 , in some embodiments, the moisture-permeable membrane 12 is disposed at a position of the cover plate 11 corresponding to the wet area 14 , and the moisture-permeable membrane 12 is flush with the inner side surface of the cover plate 11 .
[0145] Specifically, an opening is provided on one side of the cover plate 11 located in the wet area 14 to connect the wet area 14 with the external environment, and a moisture-permeable membrane 12 is provided at the opening to control the humidity in the wet area 14. The moisture-permeable membrane 12 is provided flush with the inner side surface of the cover plate 11 to prevent the moisture-permeable membrane 12 from interfering with the movement of the partition assembly 20.
[0146] It is understandable that, since the humidity of the storage chamber of the refrigeration equipment is generally low, when the partition assembly 20 slides toward the wet area 14 to place the moisture permeable membrane 12 in the dry area 13 , the water vapor in the storage chamber cannot pass through the moisture permeable membrane 12 into the dry area 13 .
[0147] In some embodiments, the dehumidification port 15 is provided in the drawer body 10. The partition assembly 20 is provided with a sealing sponge corresponding to the dehumidification port 15. When the partition assembly 20 moves to a preset position toward the dry area 13, the sealing sponge can block the dehumidification port 15.
[0148] Specifically, the dehumidification port 15 is provided on the sidewall of the drawer body 10 on the dry area 13 side, and a sealing sponge is provided corresponding to the partition assembly 20 and the dehumidification port 15. When the partition assembly 20 moves toward the dry area 13 to a predetermined position, the sealing sponge can block the dehumidification port 15, further preventing the dehumidification device or the external environment from affecting the humidity in the wet area 14.
[0149] Optionally, the refrigeration device further comprises a temperature sensor, which is arranged on the drawer body and is used to detect the temperature of the dry area 13 .
[0150] Specifically, the temperature sensor is used to detect the temperature of the dry area 13 , and the temperature sensor is electrically connected to the dehumidification device, and the dehumidification efficiency of the dehumidification device can be controlled according to the temperature of the dry area 13 .
[0151] Optionally, the temperature sensor is disposed at an edge of the cover plate 11 on one side of the dry area 13 .
[0152] The above description and the accompanying drawings sufficiently illustrate the embodiments of the present disclosure to enable those skilled in the art to practice them. Other embodiments may include structural and other changes. The embodiments represent only possible variations. Unless expressly required, individual components and functions are optional, and the order of operations may vary. Portions and features of some embodiments may be included in or replace portions and features of other embodiments. The embodiments of the present disclosure are not limited to the structures described above and shown in the accompanying drawings, and various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.
[0153] The above description and the accompanying drawings fully illustrate the embodiments of the present disclosure so that those skilled in the art can practice them. Other embodiments may include structural, logical, electrical, process and other changes. The embodiments represent only possible variations. Unless explicitly required, individual components and functions are optional, and the order of operations may vary. Parts and features of some embodiments may be included in or replace parts and features of other embodiments. Moreover, the words used in this application are only used to describe the embodiments and are not used to limit the claims. As used in the description of the embodiments and claims, unless the context clearly indicates otherwise, the singular forms "a", "an" and "the" are intended to also include plural forms. Similarly, the term "and / or" as used in this application refers to any and all possible combinations of one or more associated listings. In addition, when used in this application, the term "comprise" and its variations "comprises" and / or comprising refer to the presence of stated features, wholes, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, wholes, steps, operations, elements, components and / or groups of these. In the absence of further restrictions, an element defined by the sentence "comprising a..." does not exclude the presence of other identical elements in the process, method or device that includes the element. In this article, each embodiment may focus on the differences from other embodiments, and the same and similar parts between the various embodiments can be referenced to each other. For the methods, products, etc. disclosed in the embodiments, if they correspond to the method part disclosed in the embodiments, then the relevant parts can be found in the description of the method part.
Claims
1. A wet and dry drawer for refrigeration equipment, comprising: The drawer body defines a storage space and is provided with an abutment portion; a partition assembly disposed in the storage space and slidably connected to the drawer body, for dividing the storage space into a dry area and a wet area, wherein the partition assembly defines a storage space; The telescopic portion is movably disposed in the accommodating space and can be retracted toward the interior of the accommodating space along a preset trajectory.
2. The wet and dry drawer according to claim 1, wherein: The telescopic part includes: The first telescopic component is movably disposed in the accommodating space, and one end of the first telescopic component abuts against the abutting portion, and is capable of contracting toward the interior of the accommodating space along a preset trajectory under the limitation of the abutting portion; When the partition assembly moves upward, the first telescopic assembly contracts toward the inside of the accommodating space under the action of the abutting portion, so that the first telescopic assembly is separated from the side wall of the drawer body.
3. The wet and dry drawer for refrigeration equipment according to claim 2, wherein: The first telescopic assembly includes: A first telescopic member is disposed in the accommodation space and is movable in a front-to-rear direction, wherein an installation cavity is defined within the first telescopic member; The second telescopic member is disposed in the mounting cavity and is movable in the up-down direction and extends to the outside of the first telescopic member, with the extended end of the second telescopic member abutting the abutting portion; The second telescopic member is connected to the first telescopic member, and the second telescopic member can drive the first telescopic member to move in the front-rear direction.
4. The wet and dry drawer for refrigeration equipment according to claim 3, wherein: The inner wall of the first telescopic member is convex inwardly to form a connecting portion, and the second telescopic member is provided with a connecting structure adapted to the connecting portion, and the connecting structure abuts against the connecting portion; The contact surface between the connecting portion and the connecting structure is arranged at an angle to the movement direction of the second telescopic member, and the angle range is 30 degrees to 60 degrees.
5. The wet and dry drawer for refrigeration equipment according to claim 3 or 4, wherein: The first telescopic assembly also includes: The first elastic member is arranged in the accommodating space, with a first end connected to the partition assembly and a second end connected to the first telescopic member, and is used to drive the first telescopic member to move in a direction extending out of the accommodating space.
6. The wet and dry drawer for refrigeration equipment according to any one of claims 3 to 5, wherein: The first telescopic assembly also includes: The second elastic member is arranged in the installation cavity and between the first telescopic member and the second telescopic member, and is used for driving the second telescopic member to move in a direction away from the bottom wall of the drawer body.
7. The wet and dry drawer for refrigeration equipment according to any one of claims 3 to 6, wherein: The partition assembly is provided with a first limiting member, and the first telescopic member is provided with a limiting groove adapted to the first limiting member. The first telescopic member can move a predetermined distance in the front-rear direction under the limitation of the first limiting member.
8. The wet and dry drawer for refrigeration equipment according to any one of claims 3 to 7, wherein: The partition assembly is provided with one of a first limiting guide rail or a protrusion, and the second telescopic member is provided with the other of the first limiting guide rail or the protrusion, and the first limiting guide rail is adapted to the protrusion; Among them, the first limiting guide rail is extended along the movement direction of the second telescopic part, and the side wall of the first telescopic part is provided with a first limiting opening. The first limiting guide rail or protrusion of the second telescopic part extends out of the first limiting opening and cooperates with the protrusion or first limiting guide rail of the partition assembly, so that the second telescopic part can move in the up and down directions under the limitation of the partition assembly.
9. The wet and dry drawer for refrigeration equipment according to any one of claims 2 to 8, wherein: The top end of the front side wall of the drawer body extends backward to form a front stop edge, and the rear side wall of the drawer body extends forward to form a rear stop edge; Among them, the abutment portion includes a front stop edge and a rear stop edge, there are two first telescopic components, the two first telescopic components are arranged opposite to each other and are located on both sides of the partition component, and the two first telescopic components abut against the front stop edge and the rear stop edge respectively.
10. The wet and dry drawer for refrigeration equipment according to any one of claims 3 to 9, further comprising: The first roller is provided on the first telescopic component and is located at the connection between the first telescopic component and the abutting portion, so that the first telescopic component is connected to the drawer body in a rolling manner.
11. The wet and dry drawer for refrigeration equipment according to claim 1, wherein: The telescopic part includes: A connecting rod assembly is movably disposed in the accommodating space and abuts against the abutting portion; The second telescopic assembly is movably disposed in the accommodating space and is hinged to the connecting rod assembly. The second telescopic assembly can be retracted toward the interior of the accommodating space along a preset trajectory under the drive of the connecting rod assembly. When the partition assembly moves upward, the connecting rod assembly moves under the action of the abutment portion, and the connecting rod assembly drives the second telescopic assembly to move inward along a preset trajectory to allow the second telescopic assembly to separate from the inner wall of the drawer body.
12. The wet and dry drawer for refrigeration equipment according to claim 11, wherein: The inner side wall of the partition assembly is provided with a second limiting guide rail, which is extended vertically; the connecting rod assembly includes: A first connecting rod is in contact with the abutting portion, and the first connecting rod portion is slidably connected to the second limiting guide rail and can move in an up and down direction under the action of the abutting portion; The second connecting rod has a first end hinged to the first connecting rod and a second end hinged to the second telescopic assembly to drive the second telescopic assembly to move in the front-rear direction.
13. The wet and dry drawer for refrigeration equipment according to claim 12, wherein: The first connecting rod includes: A crossbar is arranged to extend in a transverse direction, and an end portion of the crossbar abuts against the abutting portion; A vertical rod, a first end of which is connected to the horizontal rod and a second end of which is extended downward; Wherein, the vertical rod is slidably connected to the second limiting guide rail.
14. The wet and dry drawer for refrigeration equipment according to claim 13, wherein: There are two vertical bars and they are arranged at intervals in the transverse direction. Both vertical bars are connected to the transverse bar. There are two first position-limiting guide rails and they are arranged in a one-to-one correspondence with the vertical bars.
15. The wet and dry drawer for refrigeration equipment according to any one of claims 11 to 14, wherein: The second telescopic assembly includes: a third telescopic member, disposed in the accommodation space and capable of moving in a front-to-rear direction; Among them, the partition assembly is provided with a limit block, and the third telescopic member is provided with a second limit opening adapted to the limit block, so that the third telescopic member can move in the front-rear direction under the limitation of the limit block.
16. The wet and dry drawer for refrigeration equipment according to any one of claims 11 to 15, wherein: There are two second telescopic assemblies, which are arranged opposite to each other and located on both sides of the partition assembly. Both second telescopic assemblies are connected to the connecting rod assembly.
17. The wet and dry drawer for refrigeration equipment according to claim 15 or 16, wherein: The second telescopic assembly also includes: The third elastic member is arranged in the accommodating space, with a first end connected to the limit block and a second end connected to the second telescopic assembly, and is used to drive the third telescopic member to move in a direction extending out of the accommodating space.
18. The wet and dry drawer for refrigeration equipment according to any one of claims 11 to 17, further comprising: The second roller is provided on the connecting rod assembly and is located at the connection between the connecting rod assembly and the abutting portion, so that the connecting rod assembly is connected to the drawer body in a rolling manner.
19. The wet and dry drawer for refrigeration equipment according to claim 18, wherein: The top end of the front side wall of the drawer body extends backward to form a front stop edge, and the rear side wall of the drawer body extends forward to form a rear stop edge; The abutting portion includes a front stop edge and a rear stop edge, and there are two second rollers which are respectively arranged corresponding to the front stop edge and the rear stop edge.
20. A refrigeration appliance, comprising the wet-dry drawer for a refrigeration appliance according to any one of claims 1 to 19.
Citation Information
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