Refrigeration equipment assembly

CN223769109UActive Publication Date: 2026-01-06GUANGZHOU MIDEA HUALING REFRIGERATOR
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Patent Information

Application Number
CN202423219763.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-06
Estimated Expiration
2034-12-25

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  • Figure CN223769109U_ABST
    Figure CN223769109U_ABST
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Abstract

The refrigeration equipment assembly provided by the embodiment of the utility model comprises refrigeration equipment, a cabinet plate, a matching assembly, a fixing piece and a plurality of operating pieces. The refrigeration equipment comprises a box body and a door body, the box body is provided with a containing cavity and an opening communicating with the containing cavity, and the door body is arranged at the opening; the cabinet plate is installed on the side, away from the containing cavity, of the door body through the matching assembly, the matching assembly is provided with a plurality of operation holes, and the operation pieces are installed on the door body and correspond to the operation holes one to one; the operating pieces are arranged in the corresponding operating holes, and the fixing pieces are detachably connected with the matching assembly and the door body. The matching assembly can drive the cabinet plate to move in the height direction of the refrigeration equipment under the condition that the operation piece rotates, so that the relative position of the door body and the cabinet plate in the height direction is adjusted.
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Description

Technical Field

[0001] This application belongs to the field of household appliance technology, and in particular relates to a refrigeration equipment component. Background Technology

[0002] In built-in home furnishings, cabinets are often installed on some refrigeration units to maintain a consistent overall style. These cabinets are mounted on the doors of the refrigeration units. However, due to manufacturing and installation errors, the height of the cabinets sometimes needs further adjustment. In related technologies, adjusting the height of the cabinet requires disassembling it, measuring the adjustment amount, and then reinstalling it, making the adjustment process cumbersome and demanding on the workers. Utility Model Content

[0003] This application aims to solve, at least to some extent, the technical problem. To this end, this application provides a refrigeration device component.

[0004] In a first aspect, this application provides a refrigeration device component, including:

[0005] A refrigeration device includes a housing and a door, the housing having a receiving cavity and an opening communicating with the receiving cavity, and the door being disposed at the opening;

[0006] The cabinet panel and the fitting assembly are provided. The cabinet panel is installed on the side of the door away from the receiving cavity by means of the fitting assembly. The fitting assembly is provided with multiple operating holes.

[0007] Multiple operating components are installed on the door body and are respectively set in one of the multiple operating holes; the operating components are set in the corresponding operating holes.

[0008] A fastener that detachably connects the mating assembly and the door body;

[0009] The cooperating component can drive the cabinet panel to move along the height direction of the refrigeration equipment when the operating component rotates, so as to adjust the relative position of the door and the cabinet panel in the height direction.

[0010] In the refrigeration equipment components provided in this application, since the cooperating components can drive the cabinet panel to move along the height direction of the door body when the operating component is rotated, so as to adjust the relative position of the door body and the cabinet panel in the height direction, when the height of the cabinet panel needs to be adjusted, only the operating component needs to be rotated, without having to remove the cabinet panel from the door body. This makes the cabinet panel height adjustment steps simpler, reduces the workload of operators, and improves adjustment efficiency.

[0011] In some embodiments, the operating element includes a connecting part and an operating part connected together. The connecting part is fixedly connected to the door body, and the operating part cooperates with the operating hole. The axis of the connecting part and the axis of the operating part are misaligned.

[0012] In some embodiments, the connecting part includes a first connecting segment and a second connecting segment connected together, the second connecting segment being connected to the operating part; the refrigeration equipment assembly further includes a reinforcing plate, the reinforcing plate being fixedly connected to the door body, the reinforcing plate having a connecting hole, the second connecting segment being disposed in the connecting hole, the first connecting segment being disposed between the reinforcing plate and the door body, and the projection of the first connecting segment on the reinforcing plate covering the connecting hole.

[0013] In some embodiments, the mating assembly further includes a fixing member, and the mating assembly is also provided with a guide groove. The fixing member passes through the guide groove and is detachably connected to the door body. The guide groove is arranged along the height direction, and when the mating assembly moves along the height direction, the guide groove moves relative to the fixing member.

[0014] In some embodiments, the guide grooves are provided on both sides of the operating hole.

[0015] In some embodiments, the cabinet panel has multiple adjustment areas corresponding to the multiple operating holes, and the mating assembly can drive the corresponding adjustment area to move along the height direction of the door body when one of the operating elements is rotated.

[0016] In some embodiments, the mating assembly includes a first mating member and a second mating member, the first mating member being disposed on the door body, the second mating member being disposed on the cabinet panel, the first mating member being assembled on the second mating member, and the operating hole being disposed on the first mating member.

[0017] In some embodiments, the first mating member is connected to the door body to form a slot, and the second mating member is engaged in the slot.

[0018] In some embodiments, the second mating member is disposed along the width direction of the refrigeration device, and the snap-fit ​​portion slides into the slot.

[0019] In some embodiments, the mating assembly further includes a fastener and an adjusting shim, the fastener being detachably connected to the second mating component and the cabinet panel, and the adjusting shim being disposed between the second mating component and the cabinet panel. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 A schematic diagram of the refrigeration equipment components in the open state is shown.

[0022] Figure 2 A schematic diagram of the assembly of the door body and its mating components is shown.

[0023] Figure 3 It shows Figure 2 The main view.

[0024] Figure 4 It shows Figure 3 A schematic diagram of the structure of the operating component.

[0025] Figure 5 It shows Figure 3 A partial structural diagram.

[0026] Figure 6 It shows Figure 5 Assembly diagram of the central reinforcing plate and the operating component.

[0027] Figure 7 It shows Figure 1 A schematic diagram of the structure of the middle cabinet panel.

[0028] Figure label:

[0029] 10-Refrigeration equipment component, 100-Refrigeration equipment, 110-Door body, 111-End cover, 120-Box body, 121-Receiving cavity, 200-Cabinet panel, 210-Adjustment area, 300-Matching component, 310-First mating part, 311-Operating hole, 312-Guide groove, 313-Slot, 320-Second mating part, 330-Fixing part, 340-Fastener, 400-Operating part, 410-Connecting part, 420-Operating part, 411-First connecting section, 412-Second connecting section, 500-Reinforcing plate, 510-Connecting hole. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] It should be noted that all directional indications in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0032] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixing," etc., should be interpreted broadly. For example, "fixing" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0033] Furthermore, in this utility model, descriptions involving "first," "second," etc., are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. If the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0034] In built-in home furnishings, cabinets are often added to some refrigeration equipment to improve overall style consistency, ensuring the equipment's appearance matches the surrounding environment. These cabinets are installed on the doors of the refrigeration equipment. However, due to manufacturing and installation errors, the cabinet height sometimes needs further adjustment. In related technologies, adjusting the cabinet height requires disassembling the cabinet, measuring the adjustment amount, and then reinstalling it, making the adjustment process cumbersome. To address these issues, this application provides a refrigeration equipment component that eliminates the need to remove the cabinet from the door when adjusting its height. This simplifies the height adjustment process, reduces the workload for workers, and improves adjustment efficiency.

[0035] This application is described below with reference to the accompanying drawings and specific embodiments:

[0036] Please see Figure 1 and Figure 2This application provides a refrigeration equipment component 10, which simplifies the height adjustment steps of the cabinet panel 200, reduces the workload of operators, and improves adjustment efficiency.

[0037] In this embodiment, the refrigeration equipment assembly 10 includes a refrigeration equipment 100, a cabinet panel 200, a mating assembly 300, multiple operating components 400, and a fixing component 330. The refrigeration equipment 100 includes a housing 120 and a door 110. The housing 120 has a receiving cavity 121 and an opening communicating with the receiving cavity 121, and the door 110 is disposed at the opening. The cabinet panel 200 is installed on the side of the door 110 away from the receiving cavity 121 via the mating assembly 300, and the mating assembly 300 is provided with multiple operating holes 311. Multiple operating components 400 are installed on the door 110 and are arranged one-to-one with the multiple operating holes 311. The operating components 400 are disposed in the corresponding operating holes 311, and the fixing component 330 is detachably connected to the mating assembly 300 and the door 110.

[0038] Among them, the cooperating component 300 can drive the cabinet panel 200 to move along the height direction of the refrigeration equipment 100 when the operating component 400 rotates, so as to adjust the relative position of the door 110 and the cabinet panel 200 in the height direction.

[0039] It should be noted that the refrigeration equipment 100 can be a refrigerator, freezer, display case, wine cabinet, etc. In the embodiments of this application, a refrigerator is used as an example for illustration. When the refrigeration equipment 100 is other equipment, the same principle applies.

[0040] The refrigeration device 100 is roughly a cuboid. For ease of description, the height direction Z, width direction X, and thickness direction Y are defined respectively. In the usage state of the refrigeration device 100, the vertical direction is the height direction Z, and the projection of the refrigeration device 100 in the vertical direction is a rectangle. The direction of the long side of the rectangle is the width direction X, and the direction of the wide side is the thickness direction Y.

[0041] Similarly, for ease of description, six directions are defined: up, down, left, right, front, and back. Among them, in the height direction Z, the top of the refrigeration device 100 is called up, and the bottom of the refrigeration device 100 is called down. In the width direction X, the two directions are left and right, respectively. In the thickness direction Y, the side facing the user is front, and the opposite side is back.

[0042] The cabinet 120 is a basic component of the refrigeration equipment 100, providing installation and protection for other components of the refrigeration equipment 100. The receiving cavity 121 of the cabinet 120 is used to place items for refrigeration. A door 110 is provided at the opening of the cabinet 120, meaning the door 110 can be opened or closed to allow a user to access items in the receiving cavity 121. A cabinet panel 200 is located on the side of the door 110 away from the receiving cavity 121, i.e., the cabinet panel 200 is located on the front side of the door 110, so that the refrigeration equipment 100 matches the surrounding style and enhances aesthetics.

[0043] The cabinet panel 200 is installed on the side of the door 110 away from the receiving cavity 121 via a mating assembly 300. The mating assembly 300 has multiple operating holes 311, and multiple operating parts 400 are installed on the door 110, corresponding one-to-one with the multiple operating holes 311. The operating parts 400 are set in the corresponding operating holes 311, and the mating assembly 300 can drive the cabinet panel 200 to move along the height direction Z of the refrigeration equipment 100 when the operating parts 400 rotate. That is, the rotation of the operating parts 400 in the operating hole 131 can drive the mating assembly 300 to move up and down, thereby driving the cabinet panel 200 to move up and down. Since the door 110 is fixed, the relative position of the door 110 and the cabinet panel 200 in the height direction Z can be adjusted by the mating assembly 300 driving the cabinet panel 200 to move along the height direction Z. Therefore, when the height of the cabinet panel 200 needs to be adjusted, simply rotate the operating part 400 until the height of the cabinet panel 200 is adjusted to the correct position, without having to remove the cabinet panel 200 from the door 110. This simplifies the height adjustment process, reduces the workload of operators, and improves adjustment efficiency.

[0044] The fastener 330 detachably connects the mating assembly 300 and the door 110. That is, when the fastener 330 is connected to the mating assembly 300 and the door 110, the mating assembly 300 is fixedly installed on the door 110. Only when the fastener 330 is detached can the mating assembly 300 move while the operating member 400 rotates. Therefore, when the height of the cabinet panel 200 needs to be adjusted, the fastener 330 is first detached, allowing the mating assembly 300 to move and engage with the door 110. The operating member 400 is then rotated to move the mating assembly 300 up and down, thereby adjusting the height of the cabinet panel 200. After adjustment, the fastener 330 is then reconnected to the mating assembly 300 and the door 110, ensuring that the cabinet panel 200 maintains the adjusted height and is fixed to the door 110.

[0045] Please see Figure 3 and Figure 4In some embodiments, the operating member 400 includes a connecting part 410 and an operating part 420 connected together. The connecting part 410 is fixedly connected to the door body 110, and the operating part 420 cooperates with the operating hole 311. The axis of the connecting part 410 and the axis of the operating part 420 are misaligned.

[0046] The axis of the connecting part 410 and the axis of the operating part 420 are misaligned, meaning the operating member 400 has an eccentric structure. This eccentric structure can convert rotational motion into linear motion through eccentric force. Since the connecting part 410 is fixedly connected to the door body 110 and the mating assembly 300 is movably connected to the door body 110, when the operating member 400 rotates, the position of the connecting part 410 remains unchanged. Under the action of eccentric force, the operating part 420 drives the mating assembly 300 to move along the height direction Z within the operating hole 311. In other words, it drives the mating assembly 300 to move up and down, thereby causing the cabinet panel 200 to move up and down.

[0047] Specifically, the operating part 420 and the operating hole 311 can be threaded, so that the operating part 420 and the operating hole 311 are more tightly connected, thereby making the driving of the operating part 420 on the mating component 300 more stable.

[0048] Please see Figure 5 and Figure 6 In some embodiments, the connecting part 410 includes a first connecting segment 411 and a second connecting segment 412 connected together, the second connecting segment 412 being connected to the operating part 420; the refrigeration equipment assembly 10 also includes a reinforcing plate 500, the reinforcing plate 500 being fixedly connected to the door body 110, the reinforcing plate 500 having a connecting hole 510, the second connecting segment 412 being disposed in the connecting hole 510, the first connecting segment 411 being disposed between the reinforcing plate 500 and the door body 110, and the projection of the first connecting segment 411 on the reinforcing plate 500 covering the connecting hole 510.

[0049] Since the operating component 400 needs to rotate to drive the mating assembly 300 to move up and down, and the operating part 420 rotates within the operating hole 311 of the mating assembly 300, the door body 110 also needs to have a hole to cooperate with the rotation of the connecting part 410. However, if a hole is directly made in the door body 110, it will affect the structural strength of the door body 110. Therefore, a reinforcing plate 500 is fixedly installed on the door body 110, and a connecting hole 510 is provided on the reinforcing plate 500. The second connecting section 412 is provided in the connecting hole 510, that is, the connecting part 410 rotates within the connecting hole 510 of the reinforcing plate 500, so as not to affect the structural strength of the door body 110.

[0050] Since the first connecting segment 411 is disposed between the reinforcing plate 500 and the door body 110, and the projection of the first connecting segment 411 on the reinforcing plate 500 covers the connecting hole 510, the first connecting segment 411 can prevent the connecting part 410 from disengaging from the connecting hole 510. That is, the connecting part 410 is movably riveted to the reinforcing plate 500 to realize the fixed connection between the operating member 400 and the reinforcing plate 500, thereby realizing the fixed connection between the operating member 400 and the door body 110.

[0051] Specifically, the reinforcing plate 500 can be a sheet metal part, and the reinforcing plate 500 and the door body 110 can be fixedly connected by connecting bolts.

[0052] Please see Figure 2 and Figure 3 In some embodiments, the mating component 300 is further provided with a guide groove 312, and the fixing member 330 passes through the guide groove 312 and is detachably connected to the door body 110. The guide groove 312 is arranged along the height direction Z. When the mating component 300 moves along the height direction Z, the guide groove 312 moves relative to the fixing member 330.

[0053] Since the guide groove 312 is arranged along the height direction Z, when the mating component 300 moves along the height direction Z, the fixing member 330 moves relative to the guide groove 312. That is, when the mating component 300 moves along the height direction Z, the guide groove 312 also moves relative to the fixing member 330 along the height direction Z. In other words, the fixing member 330 moves relative to the guide groove 312 along the height direction Z within the guide groove 312. The relative movement of the guide groove 312 and the fixing member 330 in the height direction Z can guide the movement of the mating component 300, making the movement of the mating component 300 more stable, thereby making the height adjustment of the cabinet panel 200 more stable.

[0054] When the height of the cabinet panel 200 needs to be adjusted, simply loosen the fastener 330 from the door 110 to a certain extent to achieve a movable fit between the mating component 300 and the door 110, without completely disassembling the fastener 330. In this way, the fastener 330 always passes through the guide groove 312. When the operating component 400 rotates to drive the mating component 300 to move up and down, the fastener 330 can move relative to the guide groove 312, providing guidance for the movement of the mating component 300. After the height of the cabinet panel 200 is adjusted, tighten the fastener 330 to securely connect the fastener 330 to the door 110 and the mating component 300, thus maintaining the adjusted height of the cabinet panel 200. In other words, the fastener 330 can both securely connect the door 110 and the mating component 300, allowing the cabinet panel 200 to be fixedly installed on the door 110, and also provide guidance for the up and down movement of the cabinet panel 200.

[0055] Guide grooves 312 can be provided on both sides of the operating hole 311. Of course, a fixing member 330 is provided in each guide groove 312. That is, while the operating member 400 rotates in the operating hole 311 to drive the mating component 300 to move up and down, the guide grooves 312 on both sides of the operating hole 311 move up and down relative to the fixing member 330. Thus, both sides of the operating hole 311 provide guidance for the movement of the mating component 300, which can improve the guiding effect and further make the movement of the mating component 300 more stable.

[0056] Specifically, the fastener 330 can be a countersunk screw, which is screwed onto the door 110, thus achieving a detachable connection with the door 110.

[0057] Please see Figure 2 and Figure 7 In some embodiments, the cabinet panel 200 has multiple adjustment areas 210 corresponding to multiple operation holes 311, and the cooperating component 300 can drive the corresponding adjustment area 210 to move along the height direction Z of the door body 110 when one of the operating components 400 is rotated.

[0058] It is understandable that multiple operating holes 311 are spaced apart, and multiple operating components 400 are independent of each other. That is, one or more operating components 400 can be rotated as needed. The rotation of each operating component 400 only causes the corresponding adjustment area 210 to move up and down significantly, while other adjustment areas 210 only move up and down slightly. Moreover, the degree of rotation of each operating component 400 can also be different, so the movement range of the corresponding adjustment area 210 will also be different. Therefore, by rotating the operating component 400 within the operating hole 311, not only the overall height of the cabinet panel 200 can be adjusted, but also the angle of the cabinet panel 200 can be adjusted.

[0059] Taking an example with two operating holes 311, the two operating holes 311 are located at opposite ends of the mating assembly 300. If only the operating component 400 in one operating hole 311 is rotated, the operating component 400 in the other operating hole 311 remains stationary. This means that only one end of the cabinet panel 200's adjustment area 210 moves significantly along the height direction Z with the rotation of the corresponding operating component 400, while the other end's adjustment area 210 moves less. Therefore, the movement of the adjustment areas 210 at both ends is inconsistent, allowing adjustment of the cabinet panel 200's angle. In other words, when the cabinet panel 200's angle needs adjustment, selectively rotate one or more operating components 400, observing the angle of the cabinet panel 200 as you adjust, until the angle of the cabinet panel 200 is adjusted to the desired position.

[0060] Please see Figure 2 and Figure 3In some embodiments, the mating component 300 includes a first mating part 310 and a second mating part 320. The first mating part 310 is disposed on the door body 110, the second mating part 320 is disposed on the cabinet panel 200, the first mating part 310 is assembled on the second mating part 320, and the operating hole 311 is disposed on the first mating part 310.

[0061] Since the first mating component 310 is located on the door 110 and the second mating component 320 is located on the cabinet panel 200, the first mating component 310 is assembled onto the second mating component 320, thus enabling the cabinet panel 200 to be installed on the door 110. Because the operating hole 311 is located in the first mating component 310, when the operating component 400 rotates within the operating hole 311, the operating component 400 drives the first mating component 310 to move up and down relative to the door 110, and the first mating component 310 then drives the second mating component 320 to move up and down. That is, when the operating component 400 rotates, the first mating component 310, through the second mating component 320, drives the cabinet panel 200 to move along the height direction of the refrigeration equipment 100, thereby adjusting the height of the cabinet panel 200. Of course, the fixing component 330 detachably connects the first mating component 310 and the door 110.

[0062] Of course, the guide groove 312 is also provided on the first mating part 310, and the fixing part 330 passes through the guide groove 312 and is fixedly connected to the door body 110, so that the first mating part 310 is movably connected to the door body 110.

[0063] Please see Figure 2 In some embodiments, the first mating member 310 is connected to the door body 110 to form a slot 313, and the second mating member 320 is engaged in the slot 313.

[0064] The second mating component 320 snaps into the slot 313, thus assembling the first mating component 310 and the second mating component 320. When the first mating component 310 moves up and down, it drives the second mating component 320 to move up and down, thereby driving the cabinet panel 200 to move up and down. Since the first mating component 310 and the second mating component 320 are connected by a snap-fit, it is convenient to install and disassemble the first mating component 310 and the second mating component 320.

[0065] The number of second mating parts 320 is the same as the number of operating holes 311, and the second mating parts 320 and operating holes 311 are set in a one-to-one correspondence. Obviously, the adjustment area 210 of the cabinet panel 200 is also set in a one-to-one correspondence with the second mating parts 320. In this way, when the operating part 400 rotates within the operating hole 311, it can drive the corresponding second mating part 320 to move up and down. The second mating part 320 drives the corresponding adjustment area 210 to move up and down, thereby adjusting the height or angle of the cabinet panel 200.

[0066] Specifically, the upper end of the door body 110 has an end cap 111 for sealing, and the first mating part 310 can be connected to the end cap 111 to form a groove 313. Of course, the first mating part 310 can be movably connected to the end cap 111.

[0067] In some embodiments, the slot 313 is provided along the width direction X of the refrigeration device 100, and the second mating member 320 is slidably engaged with the slot 313.

[0068] Since the slot 313 is set along the width direction X of the refrigeration equipment 100, the second mating part 320 slides with the slot 313, that is, the second mating part 320 can move in the slot 313 along the width direction X. In other words, the second mating part 320 can move left and right in the slot 313, thereby driving the cabinet panel 200 to move left or right relative to the door 110 to adjust the relative position of the cabinet panel 200 and the door 110 in the width direction X.

[0069] Please see Figure 1 and Figure 2 In some embodiments, the mating assembly 300 further includes a fastener 340 and an adjusting shim, the fastener 340 being detachably connected to the second mating component 320 and the cabinet panel 200, and the adjusting shim being disposed between the second mating component 320 and the cabinet panel 200.

[0070] The mounting part 321 is detachably connected to the cabinet panel 200 via fasteners 340. It can be understood that the door 110 and the cabinet panel 200 are arranged sequentially in the thickness direction Y, and the mounting part 321 is located on the side of the cabinet panel 200 facing the door 110. In other words, the mounting part 321 and the cabinet panel 200 are arranged sequentially in the thickness direction Y. Since the adjusting shims are located between the second mating part 320 and the cabinet panel 200, the distance between the cabinet panel 200 and the mounting part 321 in the thickness direction Y can be adjusted by setting the number or thickness of the adjusting shims, thereby adjusting the distance between the cabinet panel 200 and the door 110 in the thickness direction Y.

[0071] In summary, in this embodiment, the height or angle of the cabinet panel 200 can be adjusted by rotating the operating member 400 within the operating hole 311; the cabinet panel 200 can be adjusted in the width direction X by sliding the snap-fit ​​part 322 with the slot 313; and the cabinet panel 200 can be adjusted in the thickness direction Y by setting the number or thickness of the adjusting shims between the mounting part 321 and the cabinet panel 200. Through adjustments in these three directions, the installation position of the cabinet panel 200 can be made as accurate as possible, thereby improving the aesthetic appearance of the refrigeration equipment 100.

[0072] In the refrigeration equipment assembly 10 provided in this application, since the cooperating component 300 can drive the cabinet panel 200 to move along the height direction Z of the door 110 when the operating component 400 is rotated, so as to adjust the relative position of the door 110 and the cabinet panel 200 in the height direction Z, when it is necessary to adjust the height of the cabinet panel 200, it is only necessary to rotate the operating component 400, without having to remove the cabinet panel 200 from the door 110. This makes the height adjustment steps of the cabinet panel 200 simpler, reduces the workload of the operator, and improves the adjustment efficiency.

[0073] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. In addition, those skilled in the art can combine and integrate the different embodiments or examples described in this specification.

Claims

1. A refrigeration appliance assembly, characterized by, The application relates to a refrigeration equipment (100) comprising a cabinet (120) having a containing cavity (121) and an opening communicating with the containing cavity (121), and a door body (110) arranged at the opening; a cabinet plate (200) and a matching assembly (300), wherein the cabinet plate (200) is installed on the side of the door body (110) away from the containing cavity (121) through the matching assembly (300), and the matching assembly (300) is provided with a plurality of operation holes (311); a plurality of operation members (400) are installed on the door body (110) and arranged in one-to-one correspondence with the operation holes (311); the operation members (400) are arranged in the corresponding operation holes (311); a fixing member (330) detachably connects the matching assembly (300) and the door body (110); wherein the matching assembly (300) can drive the cabinet plate (200) to move along the height direction of the refrigeration equipment (100) under the rotation of the operation members (400), so as to adjust the relative position of the door body (110) and the cabinet plate (200) in the height direction. The operation members (400) comprise connected connection portions (410) and operation portions (420), the connection portions (410) are fixedly connected with the door body (110), the operation portions (420) are matched with the operation holes (311), and the axis of the connection portions (410) and the axis of the operation portions (420) are arranged in a staggered mode. The connection portions (410) comprise connected first connection segments (411) and second connection segments (412), the second connection segments (412) are connected with the operation portions (420); the refrigeration equipment assembly further comprises a reinforcing plate (500) fixedly connected with the door body (110), the reinforcing plate (500) is provided with a connecting hole (510), the second connection segments (412) are arranged in the connecting hole (510), the first connection segments (411) are arranged between the reinforcing plate (500) and the door body (110), and the projection of the first connection segments (411) on the reinforcing plate (500) covers the connecting hole (510). The matching assembly (300) is further provided with a guide groove (312), the fixing member (330) is arranged in the guide groove (312) and detachably connected with the door body (110), the guide groove (312) is arranged along the height direction, and the guide groove (312) moves relative to the fixing member (330) under the movement of the matching assembly (300) along the height direction. Both sides of the operation holes (311) are provided with the guide grooves (312). The cabinet plate (200) has a plurality of adjustment regions corresponding to the operation holes (311) in a one-to-one mode, and the matching assembly (300) can drive the corresponding adjustment regions to move along the height direction of the door body (110) under the rotation of one of the operation members (400).

2. The refrigeration appliance assembly of claim 1, wherein, ​ 3. The refrigeration appliance assembly of claim 2, wherein, ​ 4. The refrigeration appliance assembly of any of claims 1-3, wherein, ​ 5. The refrigeration appliance assembly of claim 4, wherein, ​ 6. The refrigeration appliance assembly of any of claims 1-3, wherein, ​ 7. The refrigeration appliance assembly of any of claims 1-3, wherein, The matching assembly (300) comprises a first matching part (310) and a second matching part (320), the first matching part (310) is arranged on the door body (110), the second matching part (320) is arranged on the cabinet plate (200), the first matching part (310) is assembled on the second matching part (320), and the operation hole (311) is arranged on the first matching part (310).

8. The refrigeration appliance assembly of claim 7, wherein, The first matching part (310) is connected with the door body (110) to form a clamping groove (313), and the second matching part (320) is clamped in the clamping groove (313).

9. The refrigeration appliance assembly of claim 8, wherein, The clamping groove (313) is arranged along the width direction of the refrigeration equipment (100), and the second matching part (320) is slidingly matched with the clamping groove (313).

10. The refrigeration appliance assembly of claim 7, wherein, The matching assembly (300) further comprises a fastener (340) and an adjusting gasket, the fastener (340) detachably connects the second matching part (320) and the cabinet plate (200), and the adjusting gasket is arranged between the second matching part (320) and the cabinet plate (200).