Adjusting device and embedded refrigerator

By designing an adjustment device including support, drive and movable parts, the problem of large error in position adjustment of embedded refrigerator door panels is solved, and the precise adjustment of door panels and the improvement of the aesthetics of the cabinets is achieved.

CN120194462APending Publication Date: 2025-06-24QINDAO HAIER REFRIGERATOR CO LTD +2
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Patent Information

Application Number
CN202311785122.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-22
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

During the installation of the embedded refrigerator, the position adjustment error of the door panel is large, which affects the aesthetics of the cabinet.

Method used

An adjustment device is designed, including a support member, a plurality of drive members and a moving member. The driving parts of the different driving parts drive movement, so that the door panel can be adjusted accurately in multiple directions.

Benefits of technology

Accurate adjustment of door panels is achieved, errors of manual adjustment are reduced, and the aesthetics of the cabinet is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of equipment assembly, and discloses an adjusting device and an embedded refrigerator, the adjusting device comprises a supporting piece, a plurality of driving pieces and a movable piece, each driving piece comprises a base part and a driving part, the driving part of each driving piece is fixedly connected to the supporting piece, and the driving part of each driving piece is movably arranged on the corresponding base part; driving positions matched with the driving parts of the driving parts are arranged at different positions of the movable part respectively, and the driving part of each driving part is at least partially located at the corresponding driving position in the movable part; the movable part is driven to move by driving the driving part of the driving part to move. The supporting piece and the movable piece can be arranged on the refrigerator door and the door plate of the refrigerator respectively, the movable piece can be driven to move in different directions through the driving parts of the different driving pieces, then the movable piece can drive the door plate to move in different directions relative to the refrigerator door, and therefore the door plate can be accurately adjusted to the expected position conveniently.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of equipment assembly, for example, to an adjusting device and an embedded refrigerator. Background Art

[0002] For aesthetic reasons, after an embedded refrigerator is installed in a cabinet, a door panel generally needs to be installed outside the refrigerator door to make the overall coordination of the cabinet unified. During the installation of the door panel, the position of the door panel needs to be adjusted to fix the door panel at a desired position. In the related art, the position of the door panel is usually adjusted manually by a person, but the error of this position adjustment method is relatively large, which affects the aesthetic degree of the cabinet.

[0003] It should be noted that the information disclosed in the above background art section is only used to enhance the understanding of the background of the present application, and thus may include information that does not constitute the prior art known to those of ordinary skill in the art. Summary of the Invention

[0004] To have a basic understanding of some aspects of the disclosed embodiments, a simple summary is given below. This summary is not a comprehensive review, nor is it intended to identify key / important elements or delineate the scope of protection of these embodiments, but rather serves as a preamble to the following detailed description.

[0005] Embodiments of the present disclosure provide an adjusting device and an embedded refrigerator, which can accurately adjust a door panel to a desired position by the adjusting device.

[0006] According to a first aspect of the present disclosure, an adjusting device is provided, the adjusting device comprising:

[0007] A support member;

[0008] A plurality of driving members, each driving member including a base portion and a driving portion, the driving portion of each driving member being fixedly connected to the support member, and the driving portion of each driving member being movably disposed in the corresponding base portion;

[0009] An active member, the active member being provided with driving positions adapted to the driving portions of the respective driving members at different positions, and the driving portion of each driving member being at least partially located in the corresponding driving position in the active member;

[0010] By driving the driving portion of the driving member to move to drive the active member to move, wherein the driving portions of different driving members can drive the active member to move in different directions.

[0011] In some embodiments, the plurality of driving members includes a first driving member, the base portion of the first driving member being a first sleeve, and the driving portion of the first driving member including a screw;

[0012] The first sleeve is fixed to the support member. The head of the screw rod is sleeved on the first sleeve, and the rod portion of the screw rod drives the movable member to move in a threaded driving manner.

[0013] In some embodiments, the driving portion of the first driving member further includes a push plate, and the push plate is provided with a threaded hole that can be threadedly engaged with the rod portion of the screw rod;

[0014] The movable member is provided with a receiving hole corresponding to the screw rod, and the aperture size of the receiving hole is larger than the diameter of the rod portion of the screw rod;

[0015] The rod portion of the screw rod sequentially passes through the threaded hole of the push plate and the receiving hole.

[0016] In some embodiments, the plurality of driving members includes a second driving member. The base portion of the second driving member is a second sleeve, and the driving portion of the second driving member is a first eccentric rod mechanism. The two ends of the first eccentric rod mechanism are eccentrically arranged, and the first eccentric rod mechanism is rotatably sleeved on the second sleeve;

[0017] The movable member is provided with a first elongated hole corresponding to the first eccentric rod mechanism;

[0018] The first end of the first eccentric rod mechanism is sleeved on the second sleeve, and the second end of the first eccentric rod mechanism extends into the first elongated hole;

[0019] By rotating the first eccentric rod mechanism, the movable member can be driven to move.

[0020] In some embodiments, a circle of first teeth is arranged at intervals along the circumferential direction on the inner wall of the second sleeve;

[0021] The first end of the first eccentric rod mechanism includes:

[0022] A first cylinder, and a first sliding groove is arranged on the side wall of the first cylinder;

[0023] A first sliding portion, the first sliding portion is slidably arranged in the first cylinder, the first sliding portion is provided with a first slider, and the first slider is located in the first sliding groove and at least partially protrudes from the first cylinder;

[0024] By sliding the first sliding portion, the first slider can be made to abut against or disengage from the first teeth.

[0025] In some embodiments, the plurality of driving members includes a third driving member. The base portion of the third driving member is a third sleeve, and the driving portion of the third driving member is a second eccentric rod mechanism. The two ends of the second eccentric rod mechanism are eccentrically arranged, and the second eccentric rod mechanism is rotatably sleeved on the third sleeve;

[0026] The movable member is provided with a second elongated hole corresponding to the second eccentric rod mechanism;

[0027] The first end of the second eccentric rod mechanism is sleeved on the third sleeve, and the second end of the second eccentric rod mechanism extends into the second strip-shaped hole;

[0028] By rotating the second eccentric rod mechanism, the movable member can be driven to move.

[0029] In some embodiments, a circle of second teeth is arranged at intervals along the circumferential direction on the inner wall of the third sleeve;

[0030] The first end of the second eccentric rod mechanism includes:

[0031] A second cylinder body, and a second sliding groove is arranged on the side wall of the second cylinder body;

[0032] A second sliding part, the second sliding part is arranged in the second cylinder body in a slidable manner, a second slider is arranged on the first sliding part, and the second slider is located in the second sliding groove and at least partially protrudes out of the second cylinder body;

[0033] By sliding the second sliding part, the second slider can be made to abut against or disengage from the second teeth.

[0034] In some embodiments, the support member is a box body, and the driving parts of the respective driving members are fixedly connected to the same side wall of the box body;

[0035] The box body is provided with an avoidance hole, and a part of the movable member protrudes out of the box body through the avoidance hole.

[0036] In some embodiments, the movable member includes:

[0037] A first plate member, and driving positions adapted to the driving parts of the respective driving members are respectively arranged at different positions on the first plate member;

[0038] A second plate member, the second plate member is vertically connected to the first plate member;

[0039] A connecting part, the connecting part is vertically connected to the second plate member.

[0040] According to a second aspect of the present disclosure, an embedded refrigerator is provided, and the embedded refrigerator includes:

[0041] A refrigerator body, the refrigerator body has a door;

[0042] An adjusting device as provided in the first aspect of the present disclosure, and the support member of the adjusting device is fixedly connected to the door;

[0043] A door panel, the door panel is fixedly connected to the movable member of the adjusting device.

[0044] The adjusting device and the embedded refrigerator provided by the embodiments of the present disclosure can achieve the following technical effects:

[0045] The adjusting device is provided with a support member and a movable member. The support member and the movable member can be respectively connected to the door of the refrigerator and the door panel. The driving parts of different driving members can drive the movable member to move in different directions, so that the movable member can drive the door panel to move in different directions relative to the door, thus facilitating the accurate adjustment of the door panel to the desired position.

[0046] The above general description and the following description are only exemplary and explanatory, and are not used to limit this application. Brief Description of the Drawings

[0047] One or more embodiments are exemplarily illustrated by the corresponding drawings. These exemplary illustrations and the drawings do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are shown as similar elements. The drawings do not constitute a scale limitation, and among them:

[0048] Figure 1 is an overall structural schematic diagram of an adjusting device provided by an embodiment of the present disclosure;

[0049] Figure 2 is an assembly schematic diagram of a driving member and a movable member provided by an embodiment of the present disclosure;

[0050] Figure 3 is an assembly schematic diagram of a driving member and a support member provided by an embodiment of the present disclosure;

[0051] Figure 4 is a structural schematic diagram of a first eccentric rod mechanism provided by an embodiment of the present disclosure;

[0052] Figure 5 is a structural schematic diagram of a second eccentric rod mechanism provided by an embodiment of the present disclosure;

[0053] Figure 6 is a structural schematic diagram of an embedded refrigerator provided by an embodiment of the present disclosure;

[0054] Figure 7 is an assembly schematic diagram of a door and an adjusting device provided by an embodiment of the present disclosure;

[0055] Figure 8 is provided by an embodiment of the present disclosure Figure 7 structural schematic diagram after removing the outer side plate.

[0056] Reference Signs:

[0057] 100 - adjusting device;

[0058] 1 - support member, 11 - avoidance hole, 12 - first side wall;

[0059] 2 - first driving member, 21 - first sleeve, 22 - screw rod, 23 - push plate;

[0060] 3 - Second driving member;

[0061] 31 - Second sleeve, 311 - First tooth;

[0062] 32 - First eccentric rod mechanism;

[0063] 321 - First rod;

[0064] 322 - First cylinder, 3221 - First chute

[0065] 323 - First sliding part, 3231 - First slider;

[0066] 4 - Third driving member;

[0067] 41 - Third sleeve, 411 - Second tooth;

[0068] 42 - Second eccentric rod mechanism;

[0069] 421 - Second rod 421;

[0070] 422 - Second cylinder, 4221 - Second chute;

[0071] 423 - Second sliding part, 4231 - Second slider;

[0072] 5 - Movable part;

[0073] 51 - First plate;

[0074] 52 - Second plate;

[0075] 53 - Connecting part, 531 - Plug, 532 - Screw;

[0076] 54 - Accommodating hole, 55 - First strip hole, 56 - Second strip hole;

[0077] 20 - Box door, 201 - Outer plate; 202 - Operation hole;

[0078] 300 - Door panel. Detailed implementation manners

[0079] In order to more comprehensively understand the features and technical content of the embodiments of the present disclosure, the implementation of the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings. The accompanying drawings are for reference and illustration only and are not intended to limit the embodiments of the present disclosure. In the following technical description, for the convenience of explanation, a sufficient 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, well-known structures and devices can be shown in a simplified manner to simplify the drawings.

[0080] In the specification, claims and the above-mentioned drawings of the embodiments of the present disclosure, terms such as "first", "second", etc. are used to distinguish similar objects, and do not necessarily describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so as to implement the embodiments of the present disclosure described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion.

[0081] In the embodiments of the present disclosure, the orientation or positional relationship indicated by terms such as "upper", "lower", "inner", "middle", "outer", "front", "rear", etc. is based on the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe the embodiments of the present disclosure and their embodiments, and are not used to limit that the indicated device, element or component must have a specific orientation, or be constructed and operated in a specific orientation. And, in addition to being able to represent an orientation or positional relationship, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. 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.

[0082] In addition, the terms "arranged", "connected", "fixed" should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there is an internal connection between two devices, elements or components. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present disclosure can be understood according to specific circumstances.

[0083] Unless otherwise specified, the term "plurality" means two or more.

[0084] In the embodiments of the present disclosure, the character " / " indicates that the objects before and after are in an "or" relationship. For example, A / B means: A or B.

[0085] The term "and / or" is an associative relationship describing an object, indicating that three relationships can exist. For example, A and / or B means: A or B, or, A and B these three relationships.

[0086] It should be noted that, without conflict, the embodiments in the embodiments of the present disclosure and the features in the embodiments can be combined with each other.

[0087] For aesthetic reasons, after an embedded refrigerator is installed in a cabinet, a door panel generally needs to be installed outside the refrigerator door to make the overall cabinet coordinated and unified. During the installation of the door panel, the position of the door panel needs to be adjusted to fix the door panel at the desired position. In the related art, the position of the door panel is usually adjusted manually by a person, but the error of this position adjustment method is relatively large, which affects the aesthetics of the cabinet.

[0088] As shown in combination with Figures 1 to 3 FIG. 5, an adjustment device 100 is provided in an embodiment of the present disclosure. The adjustment device 100 includes a support member 1, a plurality of driving members (such as the reference numerals 2, 3, and 4 in the figure), and a movable member 5. The number of driving members can be determined according to actual design requirements. For example, the number of driving members can be 3.

[0089] The driving member includes a base portion (such as the reference numerals 21, 31, and 41 in the figure) and a driving portion (such as the reference numerals 22, 23, 32, and 42 in the figure). The driving portion of each driving member is fixedly connected to the support member 1, and the driving portion of each driving member is disposed in the corresponding base portion in a movable manner.

[0090] The movable member 5 is respectively provided with driving positions (such as the reference numerals 54, 55, and 56 in the figure) adapted to the driving portions of the respective driving members at different positions, and at least a part of the driving portion of each driving member is located in the corresponding driving position in the movable member 5.

[0091] By driving the movement of the driving portion of the driving member to drive the movement of the movable member 5, wherein the driving portions of different driving members can drive the movable member 5 to move in different directions. Taking the number of driving members as 3 as an example, the movement of the driving portions of the 3 driving members can respectively drive the movable member 5 to move Figure 2 in the x, y, and z directions in the figure.

[0092] The adjustment device 100 provided in the embodiment of the present disclosure is provided with a support member 1 and a movable movable member 5. The support member 1 and the movable member 5 can be respectively connected to the refrigerator door and the door panel. The driving portions of different driving members can drive the movable member 5 to move in different directions, so that the movable member 5 can drive the door panel to move in different directions relative to the refrigerator door, thereby facilitating the accurate adjustment of the door panel to the desired position.

[0093] Optionally, the driving portion of each driving member can abut against the corresponding driving position in the movable member 5. When driving the movement of the driving portion of the driving member, the driving position in the movable member 5 will hold the movable member 5, so that the movable member 5 can apply a driving force to the movable member 5 to drive the movement of the movable member 5. It should be noted here that when the driving portion of each driving member abuts against the corresponding driving position in the movable member 5, it does not prevent the driving portions of other driving members from driving the movement of the movable member 5.

[0094] Optionally, the driving part of each driving member can be flexibly connected to the corresponding driving position in the movable member 5. When driving the movement of the driving part of the driving member, the driving position in the movable member 5 will drive and hold the movable member 5, so that the movable member 5 can apply a driving force to the movable member 5 to drive the movement of the movable member 5. The driving part of each driving member can be flexibly connected to the corresponding driving position in the movable member 5, so it will not hinder the driving part of other driving members from driving the movement of the movable member 5.

[0095] In some embodiments, the support member 1 is a box body, and the driving parts of the respective driving members are fixedly connected to the same side wall of the box body. For example, the driving parts of the respective driving members are fixedly connected to the first side wall 12 of the box body. A part of the driving part of each driving member is movably arranged on the corresponding base part, and the remaining part of the driving part of each driving member is arranged inside the box body. The box body is provided with an avoidance hole 11, and a part of the movable member 5 protrudes from the box body through the avoidance hole 11, and the remaining part of the movable member 5 is arranged inside the box body. For example, the support member 1 includes a first side wall and a second side wall, the driving parts of the respective driving members are fixedly connected to the first side wall of the box body, the second side wall is provided with an avoidance hole 11, and a part of the movable member 5 protrudes from the box body through the avoidance hole 11.

[0096] In some embodiments, the movable member 5 includes a first plate member 51, a second plate member 52 and a connecting portion 53. The first plate member 51 is respectively provided with driving positions adapted to the driving parts of the respective driving members at different positions. The second plate member 52 is vertically connected to the first plate member 51, the connecting portion 53 is vertically connected to the second plate member 52, and the connecting portion 53 at least partially protrudes from the box body through the avoidance hole 11.

[0097] Optionally, the first plate member 51 and the second plate member 52 can be integrally formed. By bending a plate member, the mutually perpendicular first plate member 51 and second plate member 52 are formed.

[0098] Optionally, the first plate member 51 and the second plate member 52 are welded together.

[0099] Optionally, the first plate member 51 and the second plate member 52 can be welded and connected by a connecting member (such as a bolt).

[0100] In some embodiments, the size of the first plate member 51 is larger than that of the second plate member 52. The first plate member 51 is generally strip-shaped, and the second plate member 52 is close to a corner of the first plate member 51.

[0101] In some embodiments, the connecting portion 53 is fixedly connected to the second plate member 52. Alternatively, the connecting portion 53 is detachably connected to the second plate member 52.

[0102] In some embodiments, the second plate member 52 is provided with a notch, and the connecting portion 53 includes a plug 531 and a screw 532. The rod portion of the screw 532 passes through the notch and is screwed into the plug 531, so that the head of the screw 532 and the plug 531 clamp the second plate member 52.

[0103] Optionally, the plug 531 is provided with a telescopic joint so that the plug 531 forms an expandable effect, so that the outer diameter size of the plug 531 can be changed. It can be understood that, due to the provision of the telescopic joint, the plug 531 can be inserted into a hole with an inner diameter smaller than the outer diameter of the plug 531 for expansion, and the effect that the plug 531 is not easily slipped out of the hole can be achieved.

[0104] In some embodiments, the plurality of driving members include a first driving member 2. The base portion of the first driving member 2 is a first sleeve 21, and the driving portion of the first driving member 2 includes a screw rod 22. The first sleeve 21 is fixed to the support member 1, the head of the screw rod 22 is sleeved on the first sleeve 21, the screw rod 22 can rotate relative to the first sleeve 21, and the rod portion of the screw rod 22 drives the movable member 5 to move in a thread driving manner. Optionally, the first sleeve 21 is vertically disposed on the first side wall 12 of the support member 1 and penetrates through the first side wall 12. Figure 2 For example, the rod portion of the screw rod 22 drives the movable member 5 to move along the x-axis direction in a thread driving manner.

[0105] In some embodiments, the driving portion of the first driving member 2 further includes a push plate 23, and the push plate 23 is provided with a threaded hole that can be threadedly engaged with the rod portion of the screw rod 22. The movable member 5 is provided with a receiving hole 54 corresponding to the screw rod 22, the aperture size of the receiving hole 54 is larger than the diameter of the rod portion of the screw rod 22, and the rod portion of the screw rod 22 sequentially passes through the threaded hole of the push plate 23 and the receiving hole 54. The screw rod 22 can rotate relative to the first sleeve 21, and when the screw rod 22 rotates, it can drive the push plate 23 to move. When the push plate 23 abuts against the movable member 5, the push plate 23 can push the movable member 5 to move. It should be noted here that the aperture size of the receiving hole 54 is larger than the diameter of the rod portion of the screw rod 22, which can prevent the screw rod 22 and the push plate 23 from hindering the driving portion of other driving members from driving the movable member 5 to move.

[0106] In some embodiments, the first plate member 51 is provided with a receiving hole 54 corresponding to the screw rod 22, the aperture size of the receiving hole 54 is larger than the diameter of the rod portion of the screw rod 22, and the rod portion of the screw rod 22 sequentially passes through the threaded hole of the push plate 23 and the receiving hole 54.

[0107] Optionally, the head of the screw rod 22 is provided with a screw slot (such as a square slot, a hexagonal slot, a flat slot, and a cross slot, etc.), and a screwdriver can be used to rotate the screw rod 22.

[0108] Optionally, the driving part of the first driving member 2 may include a push rod (not shown in the figure), and the push rod may be in contact with the movable member 5. By moving the push rod, the movable member 5 can be pushed to move.

[0109] In some embodiments, the plurality of driving members includes a second driving member 3. The base portion of the second driving member 3 is a second sleeve 31, and the driving portion of the second driving member 3 is a first eccentric rod mechanism 32. The two ends of the first eccentric rod mechanism 32 are eccentrically arranged, and the first eccentric rod mechanism 32 is sleeved on the second sleeve 31 in a rotatable manner. The movable member 5 is provided with a first strip-shaped hole 55 corresponding to the first eccentric rod mechanism 32. The first end of the first eccentric rod mechanism 32 is sleeved on the second sleeve 31, and the second end of the first eccentric rod mechanism 32 extends into the first strip-shaped hole 55. By rotating the first eccentric rod mechanism 32, the movable member 5 can be driven to move. The second sleeve 31 is vertically arranged on the first side wall 12 of the support member 1 and penetrates through the first side wall 12. Taking Figure 2 as an example, the length direction of the first strip-shaped hole 55 is the z-axis direction. By rotating the first eccentric rod mechanism 32, the movable member 5 can be driven to move along the y-axis direction.

[0110] In some embodiments, the first plate member 51 is provided with a first strip-shaped hole 55 corresponding to the first eccentric rod mechanism 32. The first end of the first eccentric rod mechanism 32 is sleeved on the second sleeve 31, and the second end of the first eccentric rod mechanism 32 extends into the first strip-shaped hole 55.

[0111] In some embodiments, the first end of the first eccentric rod mechanism 32 is cylindrical, and the second end of the first eccentric rod mechanism 32 is a first rod member 321. The axis of the first end of the first eccentric rod mechanism 32 is parallel to but not concentric with the axis of the first rod member 321.

[0112] In some embodiments, it is defined that the movable member 5 is provided with a first strip-shaped hole 55 corresponding to the first eccentric rod mechanism 32, and the second end of the first eccentric rod mechanism 32 extends into the first strip-shaped hole 55, which can prevent the second end of the first eccentric rod mechanism 32 from hindering the driving part of other driving members from driving the movable member 5 to move.

[0113] Optionally, the first end of the first eccentric rod mechanism 32 is provided with a screw slot (such as a square slot, a hexagonal slot, a slotted head and a cross slot, etc.), and a screwdriver can be used to rotate the screw rod 22.

[0114] In some embodiments, combining Figure 3 and Figure 4As shown, a circle of first teeth 311 are circumferentially and spacedly arranged on the inner wall of the second sleeve 31. The first end of the first eccentric rod mechanism 32 includes a first cylinder 322 and a first sliding part 323. A first chute 3221 is arranged on the side wall of the first cylinder 322. The first sliding part 323 is slidably arranged in the first cylinder 322. The first sliding part 323 is provided with a first slider 3231. The first slider 3231 is located in the first chute 3221 and at least partially protrudes out of the first cylinder 322. Since the first slider 3231 of the first sliding part 323 is located in the first chute 3221, the first cylinder 322 can be driven to rotate by rotating the first sliding part 323, and then the first eccentric rod is driven to move.

[0115] By sliding the first sliding part 323, the first slider 3231 can be made to abut against or disengage from the first teeth 311. Specifically, when it is necessary to rotate the first eccentric rod mechanism 32, the first sliding part 323 is moved so that the first slider 3231 of the first sliding part 323 disengages from the first teeth 311, so that the first sliding part 323 can rotate. The first cylinder 322 can be driven to rotate by rotating the first sliding part 323, and then the first eccentric rod is driven to move; after the first eccentric rod mechanism 32 rotates to the desired position, the first sliding part 323 is moved so that the first slider 3231 of the first sliding part 323 abuts against the first teeth 311, and the first eccentric rod mechanism 32 is restricted from continuing to rotate by the first teeth 311.

[0116] Optionally, a spring is arranged in the first cylinder 322, and the spring abuts against the first sliding part 323. When no external force is applied to the first sliding part 323, the elastic force of the spring can keep the first slider 3231 in abutment against the first teeth 311. When an external force is applied to the first sliding part 323, the external force overcomes the elastic force of the spring so that the first slider 3231 disengages from the first teeth 311, so that the first sliding part 323 can rotate.

[0117] Optionally, the first sliding part 323 is provided with a screw slot (such as a square slot, a hexagonal slot, a slotted screw head and a cross slot, etc.), and a screwdriver can be used to rotate the screw rod 22.

[0118] In some embodiments, the plurality of driving members includes a third driving member 4. The base portion of the third driving member 4 is a third sleeve 41, and the driving portion of the third driving member 4 is a second eccentric rod mechanism 42. The two ends of the second eccentric rod mechanism 42 are eccentrically arranged, and the second eccentric rod mechanism 42 is rotatably sleeved on the third sleeve 41. The movable member 5 is provided with a second strip-shaped hole 56 corresponding to the second eccentric rod mechanism 42. The first end of the second eccentric rod mechanism 42 is sleeved on the third sleeve 41, and the second end of the second eccentric rod mechanism 42 extends into the second strip-shaped hole 56. By rotating the second eccentric rod mechanism 42, the movable member 5 can be driven to move. The third sleeve 41 is vertically arranged on the first side wall 12 of the support member 1 and penetrates through the first side wall 12. Taking Figure 2 as an example, the length direction of the second strip-shaped hole 56 is the y-axis direction. By rotating the second eccentric rod mechanism 42, the movable member 5 can be driven to move along the z-axis direction.

[0119] In some embodiments, the first plate member 51 is provided with a second strip-shaped hole 56 corresponding to the second eccentric rod mechanism 42. The first end of the second eccentric rod mechanism 42 is sleeved on the third sleeve 41, and the second end of the second eccentric rod mechanism 42 extends into the second strip-shaped hole 56.

[0120] In some embodiments, the first end of the second eccentric rod mechanism 42 is cylindrical, the second end of the second eccentric rod mechanism 42 is a second rod member 421, and the axis of the first end of the second eccentric rod mechanism 42 is parallel to but not concentric with the axis of the second rod member 421.

[0121] In some embodiments, it is defined that the movable member 5 is provided with a second strip-shaped hole 56 corresponding to the second eccentric rod mechanism 42 and the second end of the second eccentric rod mechanism 42 extends into the second strip-shaped hole 56, which can prevent the second end of the second eccentric rod mechanism 42 from hindering the driving portion of other driving members from driving the movable member 5 to move.

[0122] Optionally, the first end of the second eccentric rod mechanism 42 is provided with a screw slot (such as a square slot, a hexagonal slot, a slotted head and a cross slot, etc.), and a screwdriver can be used to rotate the screw rod 22.

[0123] In some embodiments, in combination with Figure 3 and Figure 5 as shown, a circle of second teeth 411 are arranged at intervals along the circumferential direction on the inner wall of the third sleeve 41. The first end of the second eccentric rod mechanism 42 includes a second cylinder 422 and a second sliding portion 423. A second chute 4221 is arranged on the side wall of the second cylinder 422. The second sliding portion 423 is slidably arranged in the second cylinder 422. The second sliding portion 423 is provided with a second slider 4231, and the second slider 4231 is located in the second chute 4221 and at least partially protrudes out of the second cylinder 422.

[0124] By sliding the second sliding part 423, the second slider 4231 can be made to abut against the second tooth 411 or disengage from the second tooth 411. Since the second slider 4231 of the second sliding part 423 is located in the second chute 4221, the second cylinder 422 can be rotated by rotating the second sliding part 423, thereby driving the second eccentric rod to move.

[0125] By sliding the second sliding part 423, the second slider 4231 can be made to abut against the second tooth 411 or disengage from the second tooth 411. Specifically, when it is necessary to rotate the second eccentric rod mechanism 42, move the second sliding part 423 so that the second slider 4231 of the second sliding part 423 disengages from the second tooth 411, so that the second sliding part 423 can rotate. By rotating the second sliding part 423, the second cylinder 422 can be rotated, thereby driving the second eccentric rod to move; after the second eccentric rod mechanism 42 rotates to the desired position, move the second sliding part 423 so that the second slider 4231 of the second sliding part 423 abuts against the second tooth 411, and use the second tooth 411 to limit the continuous rotation of the second eccentric rod mechanism 42.

[0126] Optionally, a spring is arranged in the second cylinder 422, and the spring abuts against the second sliding part 423. When no external force is applied to the second sliding part 423, the elastic force of the spring can keep the second slider 4231 abutting against the second tooth 411. When an external force is applied to the second sliding part 423, the external force overcomes the elastic force of the spring to make the second slider 4231 disengage from the second tooth 411 so that the second sliding part 423 can rotate.

[0127] Optionally, the second sliding part 423 is provided with a screw groove (such as a square groove, a hexagonal groove, a slotted groove and a cross groove, etc.), and a screwdriver can be used to rotate the screw rod 22.

[0128] Combined with Figures 6 to 8 As shown, the embodiments of the present disclosure provide an embedded refrigerator, which includes a refrigerator body (only the door 200 in the refrigerator body is shown in the figure), the adjusting device 100 provided in the above embodiments, and a door panel 300. The support member 1 of the adjusting device 100 is fixedly connected to the door 200, and the door panel 300 is fixedly connected to the movable member 5 of the adjusting device 100. One or more adjusting devices 100 can be provided in the embedded refrigerator. For example, 4 adjusting devices 100 can be provided in the embedded refrigerator, and the 4 adjusting devices 100 can be respectively close to the 4 top corners of the door 200. Specifically, the door 200 has an outer panel 201 (i.e., the outer surface of the door 200), and the movable member 5 of the adjusting device 100 at least partially protrudes from the outer panel 201, and the part of the movable member 5 protruding from the outer panel 201 is connected to the door panel 300.

[0129] By adjusting the driving parts of different driving members in the adjusting device 100, the movable member 5 can be driven to move in different directions, so that the movable member 5 can drive the door panel 300 to move in different directions relative to the box door 200, thereby facilitating the accurate adjustment of the door panel 300 to the desired position.

[0130] In some embodiments, the support member 1 is a box body, a part of the movable member 5 projects out of the box body through the avoidance hole 11 and projects out of the outer side plate 201, and the part of the movable member 5 that projects out of the outer side plate 201 is connected to the door panel 300.

[0131] In some embodiments, the movable member 5 includes a first plate member 51, a second plate member 52, and a connecting portion 53. A part of the connecting portion 53 projects out of the box body through the avoidance hole 11 and projects out of the outer side plate 201, and the part of the connecting portion 53 that projects out of the outer side plate 201 is connected to the door panel 300.

[0132] In some embodiments, the connecting portion 53 includes a plug 531 and a screw 532, and the door panel 300 is provided with a hole (not shown in the figure). The plug 531 projects out of the box body through the avoidance hole 11 and projects out of the outer side plate 201, and the plug 531 is inserted into the hole of the door panel 300 to realize the connection with the door panel 300.

[0133] Optionally, the plug 531 is provided with a telescopic slit so that the plug 531 can form an expandable effect, so that the outer diameter size of the plug 531 can be changed. It can be understood that due to the provision of the telescopic slit, the plug 531 can be inserted into a hole with an inner diameter smaller than the outer diameter of the plug 531 for expansion, and the effect that the plug 531 is not easily slipped out of the hole can be achieved, so that the door panel 300 and the adjusting device 100 can be firmly connected.

[0134] In some embodiments, an operation hole 202 is provided on the side wall of the support member 1, which facilitates the user to drive the driving member to move through the operation hole 202.

[0135] Optionally, the head of the screw rod 22 is provided with a screw slot, the head of the screw rod 22 corresponds to an operation hole 202, and the user can use a screwdriver to rotate the screw rod 22 in the operation hole 202.

[0136] Optionally, the first end of the first eccentric rod mechanism 32 is provided with a screw slot, the first end of the first eccentric rod mechanism 32 corresponds to an operation hole 202, and the user can use a screwdriver to rotate the first eccentric rod mechanism 32 in the operation hole 202.

[0137] Optionally, the first sliding portion 323 is provided with a screw slot, the first sliding portion 323 corresponds to an operation hole 202, and the user can use a screwdriver to rotate the first sliding portion 323 in the operation hole 202.

[0138] Optionally, a screw slot is provided at the first end of the second eccentric rod mechanism 42, and the first end of the second eccentric rod mechanism 42 corresponds to an operation hole 202. A user can use a screwdriver to rotate the second eccentric rod mechanism 42 at the operation hole 202.

[0139] Optionally, a screw slot is provided at the second sliding part 423, and the second sliding part 423 corresponds to an operation hole 202. A user can use a screwdriver to rotate the second sliding part 423 at the operation hole 202.

[0140] The above description and the drawings fully illustrate the embodiments of the present disclosure so that those skilled in the art can practice them. Other embodiments may include structural and other changes. The embodiments only represent possible variations. Unless explicitly required, the individual components and functions are optional, and the order of operations may vary. Some parts and features of some embodiments may be included in or replace parts and features of other embodiments. The embodiments of the present disclosure are not limited to the structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.

Claims

1. An adjusting device, characterized in that, Comprising: A support member; A plurality of driving members, each driving member including a base portion and a driving portion, the driving portion of each driving member being fixedly connected to the support member, and the driving portion of each driving member being movably disposed in the corresponding base portion; A movable member, the movable member being provided with driving positions adapted to the driving portions of the respective driving members at different positions, and the driving portion of each driving member being at least partially located in the corresponding driving position in the movable member; By driving the movement of the driving portion of the driving member to drive the movement of the movable member, wherein the driving portions of different driving members can drive the movable member to move in different directions.

2. The adjusting device according to claim 1, characterized in that The plurality of driving members includes a first driving member, the base portion of the first driving member being a first sleeve, and the driving portion of the first driving member including a screw; The first sleeve is fixed to the support member, the head of the screw is sleeved in the first sleeve, and the rod portion of the screw drives the movable member in a threaded driving manner.

3. The adjusting device according to claim 2, wherein The driving portion of the first driving member further includes a push plate, and the push plate is provided with a threaded hole that can be threadedly engaged with the rod portion of the screw; The movable member is provided with a receiving hole corresponding to the screw, and the aperture size of the receiving hole is larger than the diameter of the rod portion of the screw; The rod portion of the screw sequentially passes through the threaded hole of the push plate and the receiving hole.

4. The adjusting device according to claim 1, wherein The plurality of driving members includes a second driving member, the base portion of the second driving member being a second sleeve, and the driving portion of the second driving member being a first eccentric rod mechanism, the two ends of the first eccentric rod mechanism being eccentrically arranged, and the first eccentric rod mechanism being rotatably sleeved in the second sleeve; The movable member is provided with a first strip-shaped hole corresponding to the first eccentric rod mechanism; The first end of the first eccentric rod mechanism is sleeved in the second sleeve, and the second end of the first eccentric rod mechanism extends into the first strip-shaped hole; By rotating the first eccentric rod mechanism, the movable member can be driven to move.

5. The adjusting device according to claim 4, characterized in that, The inner wall of the second sleeve is provided with a circumferentially spaced first set of teeth; The first end of the first eccentric rod mechanism includes: A first cylinder, the side wall of the first cylinder being provided with a first sliding groove; A first sliding portion, the first sliding portion being slidably disposed in the first cylinder, the first sliding portion being provided with a first slider, and the first slider being located in the first sliding groove and at least partially protruding from the first cylinder; By sliding the first sliding portion, the first slider can be made to abut against or disengage from the first set of teeth.

6. The adjusting device according to claim 1, characterized in that The plurality of driving members includes a third driving member, the base portion of the third driving member being a third sleeve, and the driving portion of the third driving member being a second eccentric rod mechanism, the two ends of the second eccentric rod mechanism being eccentrically arranged, and the second eccentric rod mechanism being rotatably sleeved in the third sleeve; The movable member is provided with a second strip-shaped hole corresponding to the second eccentric rod mechanism; The first end of the second eccentric rod mechanism is sleeved in the third sleeve, and the second end of the second eccentric rod mechanism extends into the second strip-shaped hole; By rotating the second eccentric rod mechanism, the movable member can be driven to move.

7. The adjusting device according to claim 6, characterized in that, The inner wall of the third sleeve is provided with a circle of second teeth spaced circumferentially; The first end of the second eccentric rod mechanism includes: A second cylinder body, and a second sliding groove is provided on the side wall of the second cylinder body; A second sliding part, the second sliding part is slidably arranged in the second cylinder body, a second slider is arranged on the first sliding part, and the second slider is located in the second sliding groove and at least partially protrudes out of the second cylinder body; By sliding the second sliding part, the second slider can be made to abut against the second teeth or disengage from the second teeth.

8. The adjusting device according to claim 1, wherein The support member is a box body, and the driving parts of the driving members are fixedly connected to the same side wall of the box body; The box body is provided with an avoidance hole, and a part of the movable member protrudes out of the box body through the avoidance hole.

9. The adjusting device according to claim 1, characterized in that The movable member includes: A first plate member, and driving positions adapted to the driving parts of the driving members are respectively arranged at different positions on the first plate member; A second plate member, the second plate member is vertically connected to the first plate member; A connecting part, the connecting part is vertically connected to the second plate member.

10. An embedded refrigerator, characterized in that, Comprising: A refrigerator body, the refrigerator body has a door; The adjusting device according to any one of claims 1 to 9, wherein the support member of the adjusting device is fixedly connected to the door; A door panel, the door panel is fixedly connected to the movable member of the adjusting device.