Refrigerator
By installing magnetic components on the refrigerator drawers and doors, the principle of magnetic opposite-sex attracting is used to automatically bring out the drawer when the refrigerator door is opened, and the magnetic unit is turned over by pulling the handle, which solves the problem of inconvenience in use and achieves a faster operating experience.
Patent Information
- Application Number
- CN202422062868.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-08-23
AI Technical Summary
Due to the low position of the refrigerator, the open grid cannot be set like the fresh-keeping layer, which causes users to frequently open the refrigerator door and bend down to operate the drawer, which is inconvenient to use.
A first magnetic component is installed on the refrigerator drawer, including a magnetic unit and a trigger unit. The second magnetic component is installed on the refrigerator door. Using the principle of magnetic opposite-sex attracting, the refrigerator door is automatically brought out of the drawer when it is opened, and the magnetic unit is turned over by a pull handle, switching the magnetic interaction to facilitate the drawer to disengage from the door.
The steps of using the refrigerator are simplified. Users only need to open the refrigerator door to bring out the drawer synchronously, making the operation faster and easier. At the same time, the automatic disengagement function of the drawer and the door improves the user experience.
Smart Images

Figure CN222925834U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of household appliances, in particular to a refrigerator. Background Art
[0002] With the improvement of people's living standards, refrigerators have become a standard appliance in every household. The lower layer of the refrigerator is usually a freezer layer. Due to its low position, the freezer layer cannot be set as an open grid like the fresh-keeping layer. Instead, it is set as multiple drawers to facilitate users to take and store items. Therefore, when a user needs to use the freezer layer, they need to open the refrigerator door and then bend down to pull out the drawer. As a frequently used appliance, such an operation is inconvenient for users every time. Summary of the Utility Model
[0003] In view of the above technical problems, the utility model provides a refrigerator.
[0004] A refrigerator includes: a refrigerator drawer and a refrigerator door; a first magnetic component installed on one side of the refrigerator drawer close to the refrigerator door. The first magnetic component includes a magnetic unit and a trigger unit. The magnetic unit is connected to the trigger unit. The magnetic unit includes a first state and a second state with opposite magnetic polarities, and is configured to be able to flip in response to the trigger of the trigger unit and switch from the first state to the second state; a second magnetic component installed on one side of the refrigerator door close to the refrigerator drawer. The second magnetic component includes a second magnet, and the second magnet has a magnetic polarity opposite to that of the magnetic unit in the first state.
[0005] With such a setting, when the refrigerator door is opened, the magnetic unit is in the first state, and the second magnet has a magnetic polarity opposite to that of the magnetic unit. According to the principle of magnetic attraction between opposite poles, the second magnet on the refrigerator door will attract the magnetic unit to move, so that the refrigerator drawer will follow the opening of the refrigerator door. Therefore, the user only needs to open the refrigerator door to synchronously take out the refrigerator drawer, and the operation is more rapid and convenient. The trigger unit can drive the magnetic unit to flip. As the magnetic unit flips, its magnetic polarity also reverses, switches to the second state and repels the second magnet with the same polarity, so that the refrigerator drawer is separated from the refrigerator door, facilitating the user to use.
[0006] In one embodiment, the trigger unit includes a handle, a connecting rod and a rocker. The handle is connected to the connecting rod. The rocker is rotatably connected to one end of the connecting rod away from the handle. The magnetic unit is rotatably connected to the refrigerator drawer, and the rocker is rotatably connected to the magnetic unit. As the handle moves, the connecting rod moves synchronously and drives the rocker to move, and drives the magnetic unit to flip, so as to switch from the first state to the second state.
[0007] In one embodiment, a mounting plate is provided on the refrigerator drawer. The magnetic unit includes a first magnet and a bracket. The first magnet is connected to the bracket. A rotating shaft protrudes from a side of the bracket facing the mounting plate, and a rotating hole is correspondingly formed in the mounting plate. The rotating shaft passes through the rotating hole.
[0008] In one embodiment, the bracket includes a connecting portion and a fixing portion. The fixing portions are located at both ends of the connecting portion and are configured as cylindrical structures. The rotating shaft is coaxially arranged with the fixing portion. An installation groove is formed in the connecting portion, and the first magnet is installed in the installation groove.
[0009] In one embodiment, there are two magnetic units, which are respectively arranged at both ends in the length direction of the refrigerator drawer. The connecting rod includes a first section, a second section, and a third section. The first section is connected to the handle. The second section is perpendicular to the first section and extends along the length direction of the refrigerator drawer. The third section is divided into two parts, which are respectively connected to both ends in the length direction of the second section, extend away from the second section, and are connected to the magnetic unit.
[0010] In one embodiment, the refrigerator further includes an elastic seat and an elastic member. The elastic seat is located above the second section away from the first section and is fixedly connected to the refrigerator drawer. One end of the elastic member abuts against the elastic seat, and the other end abuts against the second section.
[0011] In one embodiment, a movable groove is formed in the middle of the refrigerator drawer. The handle is arranged in the movable groove, and a part of the handle is located inside the refrigerator drawer, and the other part passes through the movable groove and extends into the interior of the refrigerator drawer;
[0012] Wherein, a guiding seat is further constructed inside the refrigerator drawer. A guiding groove is formed in the guiding seat. One side of the handle located inside the refrigerator drawer has a guiding block. The guiding block is arranged in the guiding groove and is slidably connected to the groove wall of the guiding groove.
[0013] In one embodiment, the second magnetic assembly further includes a fixing disk. The fixing disk is located between the refrigerator door and the refrigerator drawer and is connected to the refrigerator door. A receiving groove is formed in the fixing disk, and the second magnet is installed in the receiving groove.
[0014] In one embodiment, the fixing disk includes a disk body and a connecting column. The connecting column is coaxially arranged with the disk body. One end of the connecting column is connected to the bottom of the receiving groove, and the other end extends into the refrigerator door;
[0015] Wherein, the connecting column includes an expanding section and a reducing section, one end of the reducing section is connected to the disk body, and the other end is connected to the expanding section, the expanding section extends into the refrigerator door, and the diameter of the expanding section is larger than that of the reducing section.
[0016] In one embodiment, a buffer boss is protruding from one side of the fixed disk close to the refrigerator drawer. The buffer boss is arranged around the circumference of the fixed disk and is arranged at an angle to the axis of the fixed disk.
[0017] Compared with the prior art, the utility model arranges a first magnetic component on the refrigerator drawer and a second magnetic component on the refrigerator door. The mutual attraction effect of the two enables the refrigerator door to bring out the refrigerator drawer during the opening process. The user does not need to repeat the operation to open the refrigerator drawer, which simplifies the use steps. The first magnet in the first magnetic component can be flipped by the handle, so that the opposite attraction between it and the second magnetic component is switched to like repulsion, thereby helping the refrigerator drawer to separate from the refrigerator door. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 A partial structural schematic diagram of one embodiment of a refrigerator provided by the utility model;
[0019] Figure 2 for Figure 1 A local enlarged view of point A in FIG.
[0020] Figure 3 A partial structural schematic diagram of another angle of one embodiment of the refrigerator provided by the utility model;
[0021] Figure 4 for Figure 1 A local enlarged view of point A in FIG.
[0022] Figure 5 This is an enlarged view of a part of the structure of one embodiment of the refrigerator provided by the utility model;
[0023] Figure 6 It is an enlarged view of a part of the structure of one embodiment of the refrigerator provided by the utility model from another angle;
[0024] Figure 7 This is an enlarged view of the partial structure of the handle of one embodiment of the refrigerator provided by the utility model.
[0025] The symbols in the figure mean the following:
[0026] 100, Refrigerator; 10, Refrigerator drawer; 11, Mounting plate; 12, Movable slot; 13, Guide seat; 131, Guide groove; 20, Refrigerator door; 30, First magnetic assembly; 31, Magnetic unit; 311, First magnet; 312, Bracket; 3121, Rotating shaft; 3122, Connecting portion; 3123, Fixing portion; 32, Trigger unit; 321, Handle; 3211, Guide block; 322, Link; 3221, First section; 3222, Second section; 3223, Third section; 323, Rocker; 40, Second magnetic assembly; 41, Second magnet; 42, Fixed disk; 421, Accommodating groove; 422, Disk body; 423, Connecting column; 4231, Enlarged diameter section; 4232, Reduced diameter section; 424, Buffer boss; 50, Elastic seat; 60, Elastic member. Detailed implementation manners
[0027] To make the above objects, features, and advantages of the present application more obvious and understandable, the following will describe the detailed implementation manners of the present application with reference to the accompanying drawings. Many specific details are set forth in the following description to fully understand the present application. However, the present application can be implemented in many other ways different from those described herein. Those skilled in the art can make similar improvements without departing from the connotation of the present application. Therefore, the present application is not limited by the specific embodiments disclosed below.
[0028] It should be noted that when a mechanism is referred to as "fixed to" or "disposed on" another mechanism, it can be directly on the other mechanism or there can also be an intermediate mechanism. When a mechanism is considered to be "connected" to another mechanism, it can be directly connected to the other mechanism or there may be an intermediate mechanism at the same time. The terms "vertical", "horizontal", "upper", "lower", "left", "right" and similar expressions used in the specification of the present application are only for the purpose of illustration and do not represent the only implementation manner.
[0029] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present application, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined.
[0030] In this application, unless otherwise clearly defined and limited, the first feature being "on" or "under" the second feature may mean that the first feature is in direct contact with the second feature or the first feature is in indirect contact with the second feature through an intermediate medium. Moreover, the first feature being "above", "over" or "on top of" the second feature may mean that the first feature is directly above or obliquely above the second feature, or simply indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "under", "beneath" or "underneath" the second feature may mean that the first feature is directly below or obliquely below the second feature, or simply indicates that the horizontal height of the first feature is lower than that of the second feature.
[0031] Unless otherwise defined, all technical and scientific terms used in the description of this application have the same meaning as commonly understood by those skilled in the technical field to which this application belongs. The terms used in the description of this application are only for the purpose of describing specific embodiments and are not intended to limit this application. The term "and / or" used in the description of this application includes any and all combinations of one or more of the related listed items.
[0032] Please refer to Figures 1-7 , the present utility model provides a refrigerator 100, which includes a refrigerator drawer 10, a refrigerator door 20, a first magnetic component 30 and a second magnetic component 40. The first magnetic component 30 is installed on one side of the refrigerator drawer 10 close to the refrigerator door 20. The first magnetic component 30 includes a magnetic unit 31 and a trigger unit 32. The magnetic unit 31 is connected to the trigger unit 32. The magnetic unit 31 includes a first state and a second state with opposite magnetisms, and is configured to be able to flip in response to the trigger of the trigger unit 32 and switch from the first state to the second state; the second magnetic component 40 is installed on one side of the refrigerator door 20 close to the refrigerator drawer 10. The second magnetic component 40 includes a second magnet 41. The second magnet 41 has opposite magnetism to the magnetic unit 31 in the first state. Thus, when the refrigerator door 20 is opened, the magnetic unit 31 is in the first state, and the second magnet 41 on the refrigerator door 20 has opposite magnetism to the magnetic unit 31. According to the principle of attraction between opposite magnetic poles, the second magnet 41 on the refrigerator door 20 will attract the magnetic unit 31 to move, so that the refrigerator drawer 10 will follow the opening of the refrigerator door 20. Therefore, the user only needs to open the refrigerator door 20 to synchronously take out the refrigerator drawer 10, and the operation is more rapid and convenient. The trigger unit 32 can drive the magnetic unit 31 to flip. As the magnetic unit 31 flips, its magnetism also reverses, switches to the second state and repels the second magnet 41 with the same magnetism, so as to separate the refrigerator drawer 10 from the refrigerator door 20 for the convenience of the user.
[0033] Specifically, the triggering unit 32 includes a handle 321, a connecting rod 322, and a rocker 323. The handle 321 is connected to the connecting rod 322. The rocker 323 is rotatably connected to one end of the connecting rod 322 away from the handle 321. The magnetic unit 31 is rotatably connected to the refrigerator drawer 10, and the rocker 323 is rotatably connected to the magnetic unit 31. As the handle 321 moves, the connecting rod 322 moves synchronously and drives the rocker 323 to move, and drives the magnetic unit 31 to flip, so as to switch from the first state to the second state. In this way, the flipping of the magnetic unit 31 can be configured on the handle 321 through the rocker 323 and the connecting rod 322. The user only needs to pull the handle 321 to drive the connecting rod 322, and then further drive the rocker 323 through the connecting rod 322 to make the magnetic unit 31 rotate.
[0034] Further, an installation plate 11 is provided on the refrigerator drawer 10. The magnetic unit 31 includes a first magnet 311 and a bracket 312. The first magnet 311 is connected to the bracket 312. A rotating shaft 3121 protrudes from one side of the bracket 312 facing the installation plate 11. A rotating hole is correspondingly formed on the installation plate 11, and the rotating shaft 3121 passes through the rotating hole. In this way, the installation plate 11 and the rotating hole on the installation plate 11 can limit the rotation of the bracket 312, so that the installation position of the bracket 312 is stable. The first magnet 311 is connected to the bracket 312 and can rotate following the bracket 312, thereby realizing the flipping of the first magnet 311.
[0035] In other embodiments, installation plates 11 may also be provided at both ends in the length direction of the bracket 312, so that the rotation of the bracket 312 is more stable through the limitation in two directions.
[0036] Furthermore, the bracket 312 includes a connecting portion 3122 and a fixing portion 3123. The fixing portions 3123 are located at both ends of the connecting portion 3122 and are provided as cylindrical structures. The rotating shaft 3121 is coaxially arranged with the fixing portion 3123. An installation groove is formed on the connecting portion 3122, and the first magnet 311 is installed in the installation groove. In this way, the two ends of the bracket 312 with a cylindrical structure are more adapted to the installation plate 11. And because the rotating shaft 3121 is coaxially arranged with the fixing portion 3123, they rotate on the same axis and will not interfere with other structures during rotation. The installation groove on the connecting portion 3122 is used for the snap connection installation of the first magnet 311, improving the connection strength and reducing processing steps such as welding or bonding.
[0037] In other embodiments, the connecting portion 3122 may not be provided with an installation groove, but instead the first magnet 311 is directly adhesively or welded to a connecting plate with a flat plate structure, and the fixation of the first magnet 311 can also be achieved.
[0038] Specifically, the connecting portion 3122 is configured as a rectangular block structure, and the first magnet 311 is also configured as a rectangular block structure corresponding to the shape of the connecting portion 3122 to facilitate assembly of the two.
[0039] There are two magnetic units 31, which are respectively arranged at the two ends in the length direction of the refrigerator drawer 10. The connecting rod 322 includes a first section 3221, a second section 3222 and a third section 3223. The first section 3221 is connected to the handle 321, the second section 3222 is arranged perpendicular to the first section 3221 and extends along the length direction of the refrigerator drawer 10, and the third section 3223 is composed of two parts, which are respectively connected to the two ends in the length direction of the second section 3222, extend away from the second section 3222, and are connected to the magnetic unit 31. In this way, the first section 3221 is used to link with the handle 321, and the second section 3222 is used to extend the first section 3221, and the first section 3221 can drive the third section 3223 of the two parts at the same time. The third section 3223 is composed of two parts and can be connected to the two magnetic units 31 respectively, that is, it drives the two rockers 323 to rotate at the same time, so that the first magnet 311 can be turned over.
[0040] In this embodiment, assuming that the refrigerator 100 is placed on a horizontal ground, the first section 3221 extends vertically to the ground, the second section 3222 extends parallel to the ground, and the third sections 3223 of the two parts are parallel to each other and both extend vertically downward.
[0041] Furthermore, the refrigerator 100 further includes an elastic seat 50 and an elastic member 60. The elastic seat 50 is located above the second section 3222 away from the first section 3221 and is fixedly connected to the refrigerator drawer 10. One end of the elastic member 60 abuts against the elastic seat 50, and the other end abuts against the second section 3222. In this way, the elastic seat 50 can always give the second section 3222 an elastic tendency force to move downward through the elastic member 60. Therefore, when the handle 321 is pulled, the first section 3221, the second section 3222 and the third section 3223 all move upward synchronously, and drive the first magnet 311 to flip together with the rocker 323. When the user releases the handle 321 and the pulling force on the handle 321 is removed, the elastic member 60 can push the second section 3222 to move downward and return to the initial position, and the magnetic unit 31 also flips to the first state.
[0042] Specifically, in this embodiment, there are two elastic seats 50, which are respectively arranged on both sides of the first section 3221 in the horizontal direction, and two elastic members 60 are also correspondingly arranged, both abutting between the elastic seat 50 and the second section 3222, thereby providing a more stable elastic driving force to the second section 3222.
[0043] An activity slot 12 is provided in the middle of the refrigerator drawer 10. The handle 321 is arranged in the activity slot 12, and a part of the handle 321 is located inside the refrigerator drawer 10, and the other part extends into the interior of the refrigerator drawer 10 through the activity slot 12. Among them, a guide seat 13 is further constructed inside the refrigerator drawer 10. A guide slot 131 is provided in the guide seat 13. One side of the handle 321 located inside the refrigerator drawer 10 has a guide block 3211. The guide block 3211 is arranged in the guide slot 131 and is slidably connected to the slot wall of the guide slot 131. In this way, the activity slot 12 can abut against and limit the two side walls of the handle 321, so as to play a guiding role for the handle 321, and the engagement of the guide block 3211 on the handle 321 with the guide seat 13 can further improve the moving stability of the handle 321 and prevent the handle 321 from coming out.
[0044] Preferably, two guide slots 131 are provided on the guide seat 13, and the two guide slots 131 are respectively arranged on both sides of the handle 321. Guide blocks 3211 are also convexly provided on both horizontal sides of the handle 321. Therefore, both sides of the handle 321 can be guided by the guide seat 13.
[0045] It should be explained that a cavity is constructed inside the refrigerator drawer 10, and the first magnetic assembly 30 is installed in the cavity. Figure 1 and Figure 2 One side plate of the refrigerator drawer 10 close to the refrigerator door 20 is removed to directly display its internal structure.
[0046] The second magnetic assembly 40 further includes a fixing plate 42. The fixing plate 42 is located between the refrigerator door 20 and the refrigerator drawer 10 and is connected to the refrigerator door 20. A receiving groove 421 is provided on the fixing plate 42, and the second magnet 41 is installed in the receiving groove 421. In this way, the connection strength between the second magnet 41 and the fixing plate 42 is high, and the second magnet 41 can be prevented from falling off.
[0047] Specifically, the fixing plate 42 is set as a cylindrical plate body 422, and the receiving groove 421 provided therein is also set as a cylindrical groove. Therefore, the second magnet 41 is also correspondingly set as a cylinder to facilitate the assembly of the three.
[0048] In other embodiments, the fixing plate 42 and the second magnet 41 can also be correspondingly set as a rectangular structure.
[0049] The fixed plate 42 includes a plate body 422 and a connecting column 423. The connecting column 423 is coaxially arranged with the plate body 422. One end of the connecting column 423 is connected to the bottom of the accommodating groove 421, and the other end extends into the refrigerator door 20. The connecting column 423 includes an enlarged diameter section 4231 and a reduced diameter section 4232. One end of the reduced diameter section 4232 is connected to the plate body 422, and the other end is connected to the enlarged diameter section 4231. The enlarged diameter section 4231 extends into the refrigerator door 20, and the diameter of the enlarged diameter section 4231 is larger than that of the reduced diameter section 4232. In this way, the enlarged diameter section 4231 facilitates the connection between the connecting column 423 and the refrigerator door 20, and can prevent the connecting column 423 from being separated from the refrigerator door 20, thereby improving the connection strength of the second magnetic component 40.
[0050] A buffer boss 424 is provided on one side of the fixed plate 42 near the refrigerator drawer 10. The buffer boss 424 is arranged around the circumference of the fixed plate 42 and is arranged at an angle to the axis of the fixed plate 42. The buffer boss 424 can reduce the second gear vibration generated by the collision between the fixed plate 42 and the refrigerator drawer 10, thereby extending the service life.
[0051] Preferably, in the present embodiment, the buffer boss 424 is made of silicone material, which can produce an adsorption effect after abutting against the refrigerator drawer 10, thereby further helping to bring out the refrigerator drawer 10 when the refrigerator door 20 is opened.
[0052] Compared with the prior art, the utility model sets a first magnetic component 30 on the refrigerator drawer 10 and a second magnetic component 40 on the refrigerator door 20. The mutual attraction effect between the two allows the refrigerator door 20 to be brought out of the refrigerator drawer 10 during the opening process. The user does not need to repeat the operation to open the refrigerator drawer 10, which simplifies the use steps. The first magnet 311 in the first magnetic component 30 can be flipped through the handle 321, so that the opposite attraction between it and the second magnetic component 40 is switched to like repulsion, thereby helping the refrigerator drawer 10 to separate from the refrigerator door 20.
[0053] The technical features of the above-described embodiments may be arbitrarily combined. To make the description concise, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0054] The above-mentioned embodiments only express several implementation methods of the utility model, and the description is relatively specific and detailed, but it cannot be understood as limiting the scope of the utility model patent. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the concept of the utility model, which all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent shall be based on the attached claims.
Claims
1. A refrigerator, characterized in that: include: Refrigerator drawer (10) and refrigerator door (20); A first magnetic component (30) is installed on a side of the refrigerator drawer (10) close to the refrigerator door (20), the first magnetic component (30) comprising a magnetic unit (31) and a trigger unit (32), the magnetic unit (31) being connected to the trigger unit (32), the magnetic unit (31) comprising a first state and a second state with opposite magnetic properties, and being configured to be able to flip in response to being triggered by the trigger unit (32) and switch from the first state to the second state; A second magnetic component (40) is installed on a side of the refrigerator door (20) close to the refrigerator drawer (10), and the second magnetic component (40) includes a second magnet (41), and the second magnet (41) has a magnetic property opposite to that of the magnetic unit (31) in the first state.
2. The refrigerator according to claim 1, characterized in that: The trigger unit (32) comprises a handle (321), a connecting rod (322) and a rocker (323); the handle (321) is connected to the connecting rod (322); the rocker (323) is rotatably connected to an end of the connecting rod (322) away from the handle (321); the magnetic unit (31) is rotatably connected to the refrigerator drawer (10); and the rocker (323) is rotatably connected to the magnetic unit (31); as the handle (321) moves, the connecting rod (322) moves synchronously and drives the rocker (323) to move, and drives the magnetic unit (31) to flip, so as to switch from the first state to the second state.
3. The refrigerator according to claim 2, characterized in that: The refrigerator drawer (10) is provided with a mounting plate (11), and the magnetic unit (31) comprises a first magnet (311) and a bracket (312), wherein the first magnet (311) and the bracket (312) are connected, and a rotating shaft (3121) is protruded on one side of the bracket (312) facing the mounting plate (11), and a rotating hole is correspondingly opened on the mounting plate (11), and the rotating shaft (3121) is passed through the rotating hole.
4. The refrigerator according to claim 3, characterized in that: The bracket (312) comprises a connecting portion (3122) and a fixing portion (3123); the fixing portion (3123) is located at both ends of the connecting portion (3122) and is configured as a cylindrical structure; the rotating shaft (3121) is coaxially arranged with the fixing portion (3123); a mounting groove is provided on the connecting portion (3122), and the first magnet (311) is installed in the mounting groove.
5. The refrigerator according to claim 2, characterized in that: There are two magnetic units (31), which are respectively arranged at the two ends of the length direction of the refrigerator drawer (10); the connecting rod (322) includes a first section (3221), a second section (3222) and a third section (3223); the first section (3221) is connected to the handle (321); the second section (3222) is arranged perpendicular to the first section (3221) and extends along the length direction of the refrigerator drawer (10); the third section (3223) consists of two parts, which are respectively connected to the two ends of the second section (3222) in the length direction, extend away from the second section (3222), and are connected to the magnetic unit (31).
6. The refrigerator according to claim 5, characterized in that: The refrigerator further comprises an elastic seat (50) and an elastic member (60); the elastic seat (50) is located above the second section (3222) away from the first section (3221) and is fixedly connected to the refrigerator drawer (10); one end of the elastic member (60) abuts against the elastic seat (50) and the other end abuts against the second section (3222).
7. The refrigerator according to claim 2, characterized in that: A movable groove (12) is provided in the middle of the refrigerator drawer (10), the handle (321) is arranged in the movable groove (12), and a portion of the handle (321) is located on the inner side of the refrigerator drawer (10), and another portion passes through the movable groove (12) and extends into the interior of the refrigerator drawer (10); The refrigerator drawer (10) is further provided with a guide seat (13) inside, a guide groove (131) is provided inside the guide seat (13), and the handle (321) is provided with a guide block (3211) on one side inside the refrigerator drawer (10), and the guide block (3211) is arranged in the guide groove (131) and is slidably connected to the groove wall of the guide groove (131).
8. The refrigerator according to claim 1, characterized in that: The second magnetic component (40) further comprises a fixed disk (42), the fixed disk (42) being located between the refrigerator door (20) and the refrigerator drawer (10) and connected to the refrigerator door (20), the fixed disk (42) being provided with a receiving groove (421), and the second magnet (41) being installed in the receiving groove (421).
9. The refrigerator according to claim 8, characterized in that: The fixed plate (42) comprises a plate body (422) and a connecting column (423), wherein the connecting column (423) is coaxially arranged with the plate body (422), one end of the connecting column (423) is connected to the bottom of the accommodating groove (421), and the other end extends into the refrigerator door (20); Wherein, the connecting column (423) includes an expanded diameter section (4231) and a reduced diameter section (4232), one end of the reduced diameter section (4232) is connected to the disk body (422), and the other end is connected to the expanded diameter section (4231), the expanded diameter section (4231) extends into the refrigerator door (20), and the diameter of the expanded diameter section (4231) is larger than that of the reduced diameter section (4232).
10. The refrigerator according to claim 8, characterized in that: A buffer boss (424) is protrudingly provided on one side of the fixed disk (42) close to the refrigerator drawer (10); the buffer boss (424) is arranged circumferentially around the fixed disk (42) and is arranged at an angle to the axis of the fixed disk (42).