Refrigeration equipment assembly

By using detachable mounting components and fittings in the refrigeration equipment, the problem of needing to disassemble and drill multiple times to adjust the height of the cabinet panels has been solved, achieving the effect of simplifying the process and improving efficiency.

CN223769110UActive Publication Date: 2026-01-06GUANGZHOU MIDEA HUALING REFRIGERATOR
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Patent Information

Application Number
CN202423220513.1
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

AI Technical Summary

Technical Problem

In existing technologies, adjusting the height of refrigeration equipment cabinet panels requires multiple disassemblies and re-drilling, resulting in damage to the cabinet panels and low adjustment efficiency.

Method used

The system uses detachable mounting parts and fittings, allowing the cabinet height to be adjusted by adjusting the distance between the fittings, thus avoiding the need to drill new holes in the cabinet. Stable connections are achieved using limit grooves and fasteners.

Benefits of technology

The process of adjusting the cabinet height has been simplified, the adjustment efficiency has been improved, damage to the cabinet panels has been avoided, and the stability and aesthetics of the installation have been enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The refrigeration equipment assembly provided by the embodiment of the utility model comprises refrigeration equipment, a cabinet plate and a mounting assembly. The refrigeration equipment comprises a box body and a door body installed on the box body. The cabinet plate is located on the side, away from the box body, of the door body. The mounting assembly comprises a mounting part and a plurality of assembling parts, and the mounting part is detachably connected with any assembling part selectively; the installation part is installed on the cabinet plate, and the assembly part is installed on the refrigeration equipment. Wherein each assembly part is provided with a contact surface connected with the refrigeration equipment and a connecting surface connected with the mounting part, an adjusting distance is formed between the contact surface and the connecting surface, and the adjusting distances of the plurality of assembly parts are different.
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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, cabinet panels are often added to some refrigeration equipment to improve overall style consistency, ensuring the equipment's appearance matches the surrounding design. These panels are installed on the doors of the refrigeration equipment. However, due to manufacturing and installation errors, the height of the panels sometimes needs further adjustment after installation.

[0003] In related technologies, cabinet panels are installed onto door bodies using mounting components, which are then fixed to the cabinet panels with bolts. If the height of the cabinet panel needs to be adjusted, the mounting component must be removed from the cabinet panel, readjusted, and then re-bolted back onto the cabinet panel before being reinstalled onto the door body. Since each adjustment of the mounting component requires drilling new holes in the cabinet panel to install bolts, repeated adjustments can damage the cabinet panel and result in low adjustment efficiency. Utility Model Content

[0004] This application aims to at least partially solve the technical problem in related technologies where each adjustment of the mounting components requires re-drilling holes in the cabinet panel to install bolts, which damages the cabinet panel after repeated adjustments and results in low adjustment efficiency. Therefore, this application provides a refrigeration equipment assembly.

[0005] This application provides a refrigeration equipment component, characterized in that it includes:

[0006] Refrigeration equipment and cabinet panel, wherein the refrigeration equipment includes a cabinet body and a door body installed on the cabinet body, and the cabinet panel is located on the side of the door body away from the cabinet body;

[0007] The mounting assembly includes mounting elements and multiple mounting accessories, wherein the mounting elements are selectively and detachably connected to any one of the mounting accessories; the mounting elements are mounted on the cabinet panel, and the mounting accessories are mounted on the refrigeration equipment;

[0008] The assembly has a contact surface that connects to the refrigeration equipment and a connecting surface that connects to the mounting component. There is an adjustment distance between the contact surface and the connecting surface, and the adjustment distances of the multiple assemblies are different.

[0009] In the refrigeration equipment assembly provided in this application embodiment, the assemblies have a contact surface that connects to the refrigeration equipment and a connecting surface that connects to the mounting component. There is an adjustment distance between the contact surface and the connecting surface. The adjustment distances of multiple assemblies are different. Therefore, when it is necessary to adjust the height of the cabinet panel, the assemblies can be disassembled and other assemblies with different adjustment distances can be connected to the mounting component to adjust the height of the cabinet panel without having to remove the mounting component from the cabinet panel and re-drill holes in the cabinet panel. This can avoid damage to the cabinet panel to a certain extent, and the adjustment steps are simpler, improving the adjustment efficiency.

[0010] In some embodiments, the refrigeration equipment further includes a limiting member, which is connected to the door body to form a limiting groove, the fitting is snapped into the limiting groove, and the contact surface is in contact with the top of the limiting member.

[0011] In some embodiments, the assembly includes an assembly body and a connector arranged at an angle, the assembly body being detachably connected to the mounting component, the connector being snapped into the limiting groove, and the contact surface and the connecting surface being located on opposite sides of the assembly body.

[0012] In some embodiments, the limiting groove is provided along the width direction of the refrigeration equipment, and the fitting is slidably engaged with the limiting groove.

[0013] In some embodiments, the mounting assembly further includes a fixing member, a connecting block is provided on the connecting surface, the mounting member is provided with a mounting groove, the connecting block is snapped into the mounting groove, and the fixing member detachably connects the connecting block and the mounting member.

[0014] In some embodiments, the end of the connecting block is provided with a protrusion protruding from the connecting block, and the bottom surface of the mounting groove is provided with a groove, and the protrusion is engaged in the groove.

[0015] In some embodiments, the connecting block is provided with a connecting seat, the bottom surface of the mounting groove is provided with a connecting groove, and the connecting seat is disposed in the connecting groove; the connecting seat has a first connecting hole, the mounting member has a second connecting hole, and the fixing member passes through the first connecting hole and the second connecting hole.

[0016] In some embodiments, the mounting member has an end face and a side face that are angled together, the end face having a mounting opening that communicates with the mounting groove, and the connecting block being able to slide from the mounting opening into the mounting groove.

[0017] In some embodiments, sliders are provided on both sides of the mounting groove, and sliding grooves are provided on both sides of the connecting block, with the sliders slidingly engaging with the sliding grooves on the same side.

[0018] In some embodiments, the end of the mounting member away from the mounting port is provided with a stop member, the mounting member is provided with a stop opening, and the stop member is engaged with the stop opening.

[0019] In some embodiments, the fastener has a stop portion, the end face is provided with a third connecting hole, the third connecting hole is offset from the mounting port, the fastener passes through the third connecting hole, and a portion of the stop portion abuts against the connecting block.

[0020] In some embodiments, the assembly further includes a snap-fit ​​element disposed on the side of the connecting block, the side having a snap-fit ​​interface communicating with the mounting groove, the snap-fit ​​element snapping into the snap-fit ​​interface.

[0021] In some embodiments, the assembly further includes a snap-fit ​​element disposed on the top of the connecting block, and the top wall of the mounting groove is provided with a ratchet structure, the snap-fit ​​element engaging with the ratchet structure.

[0022] In some embodiments, the side has an operating port that communicates with the mounting groove, and the fastener and the ratchet structure are exposed in the operating port.

[0023] In some embodiments, the mounting assembly further includes fasteners and adjusting shims, the fasteners detachably connecting the mounting element and the cabinet panel, and the adjusting shims disposed between the mounting element and the cabinet panel. Attached Figure Description

[0024] 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.

[0025] Figure 1 A schematic diagram of the structure of the refrigeration equipment components is shown.

[0026] Figure 2 A schematic diagram of the assembly of the mounting components and the door body is shown.

[0027] Figure 3 It shows Figure 2 Side view.

[0028] Figure 4 It shows Figure 2 Schematic diagram of the installation components Figure 1 .

[0029] Figure 5 It shows Figure 4 Exploded view.

[0030] Figure 6 It shows Figure 5 Side view of the middle assembly.

[0031] Figure 7 It shows Figure 4 An exploded view from another perspective.

[0032] Figure 8 It shows Figure 4 An exploded view of another embodiment.

[0033] Figure 9 It shows Figure 2 Schematic diagram of the installation components Figure 2 .

[0034] Figure 10 It shows Figure 9 Exploded view.

[0035] Figure 11 It shows Figure 2 Schematic diagram of the installation components Figure 3 .

[0036] Figure 12 It shows Figure 11 Exploded view.

[0037] Figure 13 It shows Figure 2 Schematic diagram of the installation components Figure 4 .

[0038] Figure 14 It shows Figure 13 Exploded view.

[0039] Figure label:

[0040] 10-Refrigeration equipment component, 11-Refrigeration equipment, 11a-Box body, 11b-Door body, 12-Cabinet panel, 13-Mounting component, 15-Limiting component, 15a-Limiting groove, 100-Mounting component, 110-Mounting groove, 111-Slider, 112-Ratchet structure, 120-Groove, 130-Connecting groove, 140-Second connecting hole, 150-End face, 151-Mounting port, 152-Third connecting hole, 160-Side, 161-Snap-on interface 162-Operating port, 170-Stop component, 200-Assembly component, 210-Assembly body, 211-Contact surface, 212-Connecting surface, 213-Connecting block, 214-Protrusion, 215-Connecting seat, 216-First connecting hole, 217-Slide groove, 218-Stop port, 220-Connecting component, 230-Snap fastener, 300-Fixing component, 310-Stop part, L-Adjustment distance, Z-Height direction, X-Width direction, Y-Thickness direction. Detailed Implementation

[0041] 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.

[0042] It should be noted that all directional indications in this embodiment are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0043] In this utility model, unless otherwise explicitly specified and limited, the terms "connection" and "fixation" should be interpreted broadly. For example, "fixation" 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.

[0044] 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 as "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. When 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.

[0045] In built-in home furnishings, cabinet panels are often added to some refrigeration equipment to improve overall style consistency, ensuring the equipment's appearance matches the surrounding design. These panels are installed on the doors of the refrigeration equipment. However, due to manufacturing and installation errors, the height of the panels sometimes needs further adjustment after installation.

[0046] In related technologies, cabinet panels are installed onto door bodies using mounting components, which are then fixed to the cabinet panels with bolts. If the height of the cabinet panel needs to be adjusted, the mounting component must be removed from the cabinet panel, readjusted, and then re-bolted back onto the cabinet panel before being reinstalled onto the door body. Since each adjustment of the mounting component requires drilling new holes in the cabinet panel to install bolts, repeated adjustments can damage the cabinet panel and result in low adjustment efficiency.

[0047] To address the problems existing in related technologies to some extent, this application provides a refrigeration equipment component that eliminates the need to remove the mounting parts from the cabinet and re-drill holes in it when adjusting the height of the cabinet panel. This avoids damage to the cabinet panel to some extent, simplifies the adjustment process, and improves adjustment efficiency.

[0048] This application is described below with reference to the accompanying drawings and specific embodiments:

[0049] Please see Figure 1 This application provides a refrigeration equipment component 10. The refrigeration equipment component 10 provided by this application can avoid damage to the cabinet panel 12 to a certain extent, and makes the adjustment steps simpler and improves the adjustment efficiency.

[0050] Please see Figures 1-6 In this embodiment, the refrigeration equipment assembly 10 includes a refrigeration device 11, a cabinet panel 12, and a mounting assembly 13. The refrigeration device 11 includes a housing 11a and a door 11b installed on the housing 11a, with the cabinet panel 12 located on the side of the door 11b away from the housing 11a. The mounting assembly 13 includes a mounting member 100 and a plurality of mounting accessories 200, wherein the mounting member 100 can be selectively and detachably connected to any one of the mounting accessories 200; the mounting member 100 is installed on the cabinet panel 12, and the mounting accessories 200 are installed on the refrigeration device 11.

[0051] Among them, the assembly 200 has a contact surface 211 that connects to the refrigeration equipment 11 and a connecting surface 212 that connects to the mounting component 100. There is an adjustment distance L between the contact surface 211 and the connecting surface 212. The adjustment distance L of the multiple assemblies 200 is different.

[0052] It should be noted that the refrigeration device 11 can be a refrigerator, freezer, display case, wine cabinet, etc. In this embodiment, a refrigerator is used as an example for illustration. The same principle applies when the refrigeration device 11 is other devices.

[0053] The refrigeration device 11 is roughly a cuboid. For ease of description, the height direction Z, width direction X, and thickness direction Y are defined respectively. In the use state of the refrigeration device 11, the vertical direction is the height direction Z, the projection of the refrigeration device 11 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.

[0054] 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 cooling device 11 is up, and the bottom of the cooling device 11 is 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.

[0055] The cabinet 11a is the basic component of the refrigeration equipment 11, providing installation and protection for other components of the refrigeration equipment 11. The receiving cavity of the cabinet 11a is used to place items for refrigeration. A door 11b is located at the opening of the cabinet 11a, allowing the door 11b to be opened or closed to allow the user to access items within the receiving cavity. A cabinet panel 12 is located on the side of the door 11b furthest from the receiving cavity, i.e., on the front side of the door 11b, to ensure the refrigeration equipment 11 matches the surrounding style and enhances its aesthetics.

[0056] The mounting component 100 can be selectively and detachably connected to any one of the mounting accessories 200, meaning that the mounting component 100 can be freely combined with multiple mounting accessories 200, and the user can choose according to their needs. The mounting component 100 is installed on the cabinet panel 12, and the mounting accessory 200 is installed on the refrigeration equipment 11. The mounting component 100 and the mounting accessory 200 are detachably connected. Therefore, the mounting accessory 200 has both a contact surface 211 that contacts the refrigeration equipment 11 and a connecting surface 212 that contacts the mounting component 100. The distance between the contact surface 211 and the connecting surface 212 is the adjustment distance L, and the adjustment distance L is different for each mounting accessory 200.

[0057] Since the height of the refrigeration unit 11 remains constant—in other words, the installation position of the accessory 200 on the refrigeration unit 11 is fixed—even if different accessories 200 are replaced, the height of the contact surface 211 between the accessory 200 and the refrigeration unit 11 remains unchanged after the accessory 200 is installed on the refrigeration unit 11. Because different accessories 200 have different adjustment distances L, even with the contact surface 211 remaining constant, replacing different accessories 200 will change the height of the connecting surface 212 that connects to the mounting component 100. Consequently, the height of the mounting component 100 connected to the connecting surface 212 will also adjust accordingly, and thus the mounting component 100 will drive the cabinet panel 12 to adjust its height.

[0058] Since the mounting component 100 is detachably connected to the mounting accessory 200, when the height of the cabinet panel 12 needs to be adjusted, the existing mounting accessory 200 can be removed and replaced with another mounting accessory 200 with a different adjustment distance L, which can then be connected to the mounting component 100. Because the entire adjustment process only involves the installation and removal of the mounting accessory 200 and the mounting component 100, without needing to remove the mounting component 100 from the cabinet panel 12 and re-drill holes in it, damage to the cabinet panel 12 can be avoided to some extent. Furthermore, the adjustment steps are simpler, improving adjustment efficiency.

[0059] Please see Figure 2 and Figure 3 In some embodiments, the refrigeration device 11 further includes a limiting member 15, which is connected to the door body 11b to form a limiting groove 15a. The fitting 200 is snapped into the limiting groove 15a, and the contact surface 211 is in contact with the top of the limiting member 15.

[0060] When the fitting 200 is snapped into the limiting groove 15a, the fitting 200 is installed on the door body 11b. The fitting 200 and the door body 11b are connected by a snap-fit, which facilitates the installation and removal of the fitting 200 and the door body 11b. Specifically, the door body 11b has an end cap, and the limiting member 15 is connected to the end cap to form the limiting groove 15a.

[0061] The position of the limiting member 15 remains unchanged, and the contact surface 211 is in contact with the top of the limiting member 15. That is, the limiting member 15 supports the contact surface 211. Under its own weight, the assembly 200 always contacts the top surface of the limiting member 15 through the contact surface 211. Therefore, even if different assemblies 200 are replaced, the height of the contact surface 211 between the top of the assembly 200 and the limiting member 15 remains unchanged, so that the height of the connecting surface 212 can be changed, thereby adjusting the height of the cabinet panel 12.

[0062] Please see Figures 3-5 In some embodiments, the assembly 200 includes an assembly body 210 and a connector 220 arranged at an angle. The assembly body 210 is detachably connected to the mounting part 100, and the connector 220 is snapped into the limiting groove 15a. The contact surface 211 and the connecting surface 212 are located on opposite sides of the assembly body 210.

[0063] The connecting surface 212 is located on the top of the assembly body 210, the contact surface 211 is located on the bottom of the assembly body 210, and the connector 220 is located on the bottom of the assembly body 210. Since the connector 220 needs to be engaged within the limiting groove 15a to achieve the installation and fit between the assembly part 200 and the door body 11b, both the connecting surface 212 and the contact surface 211 are located on the assembly body 210 to avoid interfering with the engagement between the connector 220 and the limiting groove 15a. Specifically, the assembly body 210 and the connector 220 can be vertically arranged.

[0064] Please see Figure 2 and Figure 3 In some embodiments, the limiting groove 15a is provided along the width direction X of the refrigeration device 11, and the fitting 200 slides in conjunction with the limiting groove 15a.

[0065] Since the limiting groove 15a is set along the width direction X of the refrigeration equipment 11, the assembly part slides with the limiting groove 15a, that is, the assembly part can move in the width direction X within the limiting groove 15a. In other words, the assembly part can move left and right within the limiting groove 15a, thereby driving the cabinet panel 12 to move left or right relative to the door 11b, so as to adjust the relative position of the cabinet panel 12 and the door 11b in the width direction X.

[0066] Please see Figures 5-7 In some embodiments, the mounting assembly 13 further includes a fastener 300, a connecting block 213 is provided on the connecting surface 212, the mounting component 100 is provided with a mounting groove 110, the connecting block 213 is snapped into the mounting groove 110, and the fastener 300 detachably connects the connecting block 213 and the mounting component 100.

[0067] Because the connecting surface 212 is provided with a connecting block 213 and the mounting part 100 is provided with a mounting groove 110, the connecting block 213 is snapped into the mounting groove 110, thereby realizing the docking between the mounting parts 100 and the mounting parts 100. The connecting block 213 and the connecting groove 130 can be directly docked in the height direction Z. The fastener 300 detachably connects the connecting block 213 and the mounting part 100 so that the connecting block 213 and the mounting part 100 can be fixedly connected after docking, thereby strengthening the connection strength between the connecting block 213 and the mounting part 100, thereby making the cabinet panel 12 stable on the door 11b.

[0068] Since the fastener 300 detachably connects the connecting block 213 and the mounting piece 100, when the height of the cabinet panel 12 needs to be adjusted, the fastener 300 is removed, and the mounting piece 100 and the fitting 200 are separated. Other fittings 200 with different adjustment distances L are selected and engaged with the mounting piece 100. Then the fastener 300 is installed to fix the connection between the mounting piece 100 and the fitting 200.

[0069] It should be noted that, apart from the different adjustment distances, the structures of the multiple assembly parts 200 are completely identical, so any one of the assembly parts 200 can be connected to the mounting part 100.

[0070] Please see Figure 5 and Figure 7 In some embodiments, the end of the connecting block 213 is provided with a protrusion 214 protruding from the connecting block 213, and the bottom surface of the mounting groove 110 is provided with a groove 120, and the protrusion 214 is engaged in the groove 120.

[0071] If there is misalignment when the mounting component 100 and the assembly 200 are connected, the position of the cabinet panel 12 relative to the door panel in the width direction X and the thickness direction Y may change. Therefore, in order to make the connection between the mounting component 100 and the assembly 200 more precise, the end of the connecting block 213 is provided with a protrusion 214 protruding from the connecting block 213, and the bottom surface of the mounting groove 110 is provided with a groove 120. The protrusion 214 is engaged in the groove 120. The cooperation between the protrusion 214 and the groove 120 can position the relative position between the assembly 200 and the mounting component 100, so that the connection between the mounting component 100 and the assembly 200 is more precise.

[0072] Specifically, please refer to Figure 5 Both ends of the connecting block 213 may be provided with protrusions 214, and correspondingly, the bottom surface of the mounting groove 110 is provided with two grooves 120, or, please refer to Figure 8 The connecting block 213 may have a protrusion 214 on only one end, and there is no restriction on this.

[0073] Please see Figure 5 and Figure 7 In some embodiments, the connecting block 213 is provided with a connecting seat 215, the bottom surface of the mounting groove 110 is provided with a connecting groove 130, and the connecting seat 215 is disposed in the connecting groove 130; the connecting seat 215 has a first connecting hole 216, the mounting member 100 has a second connecting hole 140, and the fixing member 300 passes through the first connecting hole 216 and the second connecting hole 140.

[0074] The connecting block 213 is provided with a connecting seat 215, and the bottom surface of the mounting groove 110 is provided with a connecting groove 130. The connecting seat 215 is set in the connecting groove 130, so that the setting of the connecting seat 215 will not occupy additional space of the assembly 200. Furthermore, the connecting seat 215 being set in the connecting groove 130 can also further position the docking of the mounting part 100 and the assembly 200, making the docking of the mounting part 100 and the assembly 200 more precise.

[0075] The fastener 300 can be a screw. The first connecting hole 216 and the second connecting hole 140 are both screw holes. The fastener 300 passes through the first connecting hole 216 and the second connecting hole 140, so as to fix the mounting part 100 and the assembly part 200.

[0076] Please see Figure 9 and Figure 10 In some embodiments, the mounting member 100 has an end face 150 and a side face 160 arranged at an angle. The end face 150 is provided with a mounting opening 151 that communicates with the mounting groove 110. The connecting block 213 can slide into the mounting groove 110 through the mounting opening 151.

[0077] Since the connecting block 213 can slide from the mounting port 151 into the mounting groove 110, when connecting the mounting component 100 and the assembly 200, the connecting block 213 is slid into the mounting groove 110 through the mounting port 151, thus achieving the snap-fit ​​between the connecting block 213 and the mounting groove 110. When it is necessary to separate the mounting component 100 and the assembly 200, the connecting block 213 can be slid out of the mounting groove 110 through the mounting port 151.

[0078] Specifically, the end face 150 is set along the thickness direction Y, the side face 160 is set along the width direction X, and obviously, the mounting groove 110 is set along the width direction X.

[0079] Please see Figure 9 and Figure 10 In some embodiments, sliders 111 are provided on both sides of the mounting groove 110, and sliding grooves 217 are provided on both sides of the connecting block 213. The sliders 111 slide in cooperation with the sliding grooves 217 on the same side.

[0080] Since the slider 111 slides in the groove 217 on the same side, when the connecting block 213 moves in the mounting groove 110, the slider 111 will slide in the groove 217 on the same side, which can provide guidance for the movement of the connecting block 213, making the movement of the connecting block 213 in the mounting groove 110 more stable and improving the snap-fit ​​effect between the connecting block 213 and the mounting groove 110.

[0081] Please see Figure 9 and Figure 10 In some embodiments, the end of the mounting member 100 away from the mounting port 151 is provided with a stop member 170, and the mounting part 200 is provided with a stop port 218, and the stop member 170 is snapped into the stop port 218.

[0082] During the process of the connecting block 213 sliding from the mounting port 151 into the mounting groove 110, when the connecting block 213 has slid into place, that is, when the connecting block 213 is fully engaged in the mounting groove 110, the stop 170 engages with the stop port 218. The stop 170 limits the movement of the connecting block 213, and the engagement between the stop 170 and the stop port 218 also positions the mating between the mounting component 100 and the assembly component 200, ensuring precise mating between them.

[0083] Please see Figure 11 and Figure 12 In some embodiments, the fastener 300 has a stop portion 310, and the end face 150 is provided with a third connecting hole 152. The third connecting hole 152 is offset from the mounting port 151. The fastener 300 passes through the third connecting hole 152, and a portion of the stop portion 310 abuts against the connecting block 213.

[0084] Since the fastener 300 passes through the third connecting hole 152, it is fixedly connected to the mounting member 100. Because the fastener 300 has a stop portion 310, and part of the stop portion 310 abuts against the connecting block 213, the stop portion 310 can limit the connection block 213, preventing it from detaching from the mounting slot 110 through the mounting opening 151. This ensures a stable connection between the mounting member 100 and the mounting accessory 200, thereby ensuring the cabinet panel 12 is stably installed on the door 11b. Of course, after the connecting block 213 has slid into place within the mounting slot 110, the fastener 300 is then passed through the second connecting block 213, and part of the stop portion 310 abuts against the connecting block 213.

[0085] Specifically, the fastener 300 can be a screw, and the screw nut is configured with a stop portion 310.

[0086] Please see Figure 9 and Figure 10 In some embodiments, the assembly 200 further includes a snap fastener 230, which is disposed on the side of the connecting block 213. The side 160 is provided with a card interface 161 that communicates with the mounting groove 110, and the snap fastener 230 is snapped into the card interface 161.

[0087] Since the fastener 230 is engaged in the card interface 161, the engagement between the fastener 230 and the card interface 161 can limit the relative movement between the mounting part 100 and the assembly part 200 in the width direction X, so as to avoid the mounting part 100 moving relative to the assembly part 200 in the width direction X after the mounting part 100 and the assembly part 200 are installed, causing the cabinet panel 12 to move relative to the door 11b in the width direction X.

[0088] Specifically, the latching member 230 is elastic and can be pressed onto the connecting block 213. It is understood that the connecting block 213 has a clearance fit with the mounting groove 110, and the latching member 230 can be considered as protruding from the outer surface of the connecting block 213. Therefore, to facilitate the sliding of the connecting block 213 into the connecting channel, the latching member 230 is made elastic and can be pressed onto the connecting block 213. In this way, when the connecting block 213 is inserted into the connecting channel, the latching member 230 is pressed down by the compression of the connecting channel, allowing the connecting block 213 to smoothly enter the connecting channel until the latching member 230 moves to the position of the card interface 161. The latching member 230 then resets under the elastic action, thus locking into the card interface 161.

[0089] When it is necessary to separate the connecting block 213 and the mounting part 100, the buckle 230 is pressed through the card interface 161, so that the buckle 230 is disengaged from the card interface 161, and the limit is removed, allowing the connecting block 213 to be disengaged from the inlet, which greatly facilitates the connection and disengagement between the connecting block 213 and the mounting part 100.

[0090] Please see Figure 13 and Figure 14 In some embodiments, the assembly 200 further includes a snap fastener 230, which is disposed on the top of the connecting block 213. The top wall of the mounting groove 110 is provided with a ratchet structure 112, and the snap fastener 230 is engaged with the ratchet structure 112.

[0091] In addition to the snap-fit ​​mechanism between the snap-fit ​​member 230 and the snap-fit ​​interface 161, the snap-fit ​​member 230 can also snap-fit ​​with the ratchet structure 112. Because the snap-fit ​​member 230 snaps into the ratchet structure 112, under the snap-fit ​​action of the snap-fit ​​member 230 and the ratchet structure 112, the relative movement between the mounting member 100 and the assembly 200 can be limited in the width direction X, along the direction in which the connecting block 213 slides out of the mounting groove 110. This is to minimize the possibility that after the mounting member 100 and the assembly 200 are installed, the mounting member 100 will move relative to the assembly 200 in the width direction X, causing the cabinet panel 12 to move relative to the door 11b in the width direction X.

[0092] Similarly, in this embodiment, the latching member 230 remains elastic and can be pressed onto the connecting block 213. During the process of sliding the connecting block 213 into the mounting groove 110, the latching member 230 can move relative to the ratchet structure 112. When the connecting block 213 slides into place, the latching member 230 engages with one of the ratchet teeth. Under the limiting action of the ratchet teeth, the connecting block 213 cannot move in the opposite direction, thereby preventing the connecting block 213 from dislodging from the mounting groove 110.

[0093] In some embodiments, the side 160 is provided with an operating port 162 that communicates with the mounting groove 110, and the latching member 230 and the ratchet structure 112 are exposed in the operating port 162.

[0094] Since the latching element 230 and the ratchet structure 112 are exposed in the operating port 162, when it is necessary to separate the mounting element 100 and the assembly 200, the latching element 230 is pressed through the operating port, causing the latching element 230 to disengage from the ratchet structure 112, thereby canceling the limit and allowing the connecting block 213 to slide out of the mounting port 151 to separate the mounting element 100 and the assembly 200.

[0095] In some embodiments, the mounting assembly 13 further includes a fastener 400 and an adjusting shim, the fastener 400 being detachably connected to the mounting member 100 and the cabinet panel 12, and the adjusting shim being disposed between the mounting member 100 and the cabinet panel 12.

[0096] The mounting component 100 is detachably connected to the cabinet panel 12 via fasteners 400. It can be understood that the door 11b and the cabinet panel 12 are arranged sequentially in the thickness direction Y, and the mounting component 100 is located on the side of the cabinet panel 12 facing the door 11b. In other words, the mounting component 100 and the cabinet panel 12 are arranged sequentially in the thickness direction Y. Since adjusting shims are provided between the mounting component 100 and the cabinet panel 12, the distance between the cabinet panel 12 and the mounting component 100 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 12 and the door 11b in the thickness direction Y.

[0097] In summary, in this embodiment, the height of the cabinet panel 12 can be adjusted by replacing different fittings 200, the cabinet panel 12 can be adjusted in the width direction X by sliding the fittings 200 with the limiting groove 15a, and the cabinet panel 12 can be adjusted in the thickness direction Y by setting the number or thickness of the adjusting shims between the mounting part 100 and the cabinet panel 12. Through the adjustment in three directions, the installation position of the cabinet panel 12 can be made as accurate as possible, thereby improving the aesthetic appearance of the refrigeration equipment 11.

[0098] In the refrigeration equipment assembly 10 provided in this application embodiment, the mounting part 200 has a contact surface 211 that connects to the refrigeration equipment 11 and a connecting surface 212 that connects to the mounting part 100. There is an adjustment distance L between the contact surface 211 and the connecting surface 212. The adjustment distance L of multiple mounting parts 200 is different. Therefore, when it is necessary to adjust the height of the cabinet panel 12, the mounting part 200 can be disassembled and other mounting parts 200 with different adjustment distances L can be connected to the mounting part 100 to adjust the height of the cabinet panel 12 without having to remove the mounting part 100 from the cabinet panel 12 and re-drill holes in the cabinet panel 12. This can avoid damage to the cabinet panel 12 to a certain extent, and the adjustment steps are simpler, improving the adjustment efficiency.

[0099] In the description of this specification, 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. Moreover, those skilled in the art can combine and integrate the different embodiments or examples described in this specification.

Claims

1. A refrigeration appliance assembly (10) characterized by, The application relates to a refrigeration equipment (11) and a cabinet plate (12), wherein the refrigeration equipment (11) comprises a cabinet (11a) and a door body (11b) installed on the cabinet (11a), and the cabinet plate (12) is located on the side of the door body (11b) away from the cabinet (11a); an installation assembly (13) comprises an installation piece (100) and a plurality of assembly pieces (200), the installation piece (100) is detachably connected with any one of the assembly pieces (200); the installation piece (100) is installed on the cabinet plate (12), and the assembly pieces (200) are installed on the refrigeration equipment (11); wherein the assembly piece (200) has a contact surface (211) connected with the refrigeration equipment (11) and a connecting surface (212) connected with the installation piece (100), the contact surface (211) and the connecting surface (212) have an adjusting distance (L) therebetween, and the adjusting distances (L) of the plurality of assembly pieces (200) are different. The refrigeration equipment (11) further comprises a limiting piece (15) connected with the door body (11b) to form a limiting groove (15a), the assembly piece (200) is clamped in the limiting groove (15a), and the contact surface (211) is connected with the top of the limiting piece (15). The assembly piece (200) comprises an assembly body (210) and a connecting piece (220) arranged at an included angle, the assembly body (210) is detachably connected with the installation piece (100), the connecting piece (220) is clamped in the limiting groove (15a), and the contact surface (211) and the connecting surface (212) are located on the two sides of the assembly body (210) opposite to each other. The limiting groove (15a) is arranged along the width direction (X) of the refrigeration equipment (11), and the assembly piece (200) is slidably connected with the limiting groove (15a).

2. The refrigeration appliance assembly (10) of claim 1, wherein, The installation assembly (13) further comprises a fixing piece (300), the connecting surface (212) is provided with a connecting block (213), the installation piece (100) is provided with an installation groove (110), the connecting block (213) is clamped in the installation groove (110), and the fixing piece (300) is detachably connected with the connecting block (213) and the installation piece (100).

3. The refrigeration appliance assembly (10) of claim 2, wherein, The end of the connecting block (213) is provided with a convex block (214) protruding from the connecting block (213), the bottom surface of the installation groove (110) is provided with a groove (120), and the convex block (214) is clamped in the groove (120).

4. The refrigeration appliance assembly (10) of claim 2, wherein, The connecting block (213) is provided with a connecting seat (215), the bottom surface of the installation groove (110) is provided with a connecting groove (130), and the connecting seat (215) is arranged in the connecting groove (130); the connecting seat (215) has a first connecting hole (216), the installation piece (100) has a second connecting hole (140), and the fixing piece (300) passes through the first connecting hole (216) and the second connecting hole (140).

5. The refrigeration appliance assembly (10) according to any of claims 1-4, characterized in that, ​ 6. The refrigeration appliance assembly (10) of claim 5, wherein, ​ 7. The refrigeration appliance assembly (10) of claim 5, wherein, ​ 8. The refrigeration appliance assembly (10) of claim 5, wherein, The mounting piece (100) has an end surface (150) and a side surface (160) arranged at an angle, the end surface (150) is provided with a mounting opening (151) in communication with the mounting groove (110), and the connecting block (213) can slide into the mounting groove (110) through the mounting opening (151).

9. The refrigeration appliance assembly (10) of claim 8, wherein, Both sides of the mounting groove (110) are provided with sliding blocks (111), and both sides of the connecting block (213) are provided with sliding grooves (217), and the sliding blocks (111) are in sliding fit with the sliding grooves (217) on the same side.

10. The refrigeration appliance assembly (10) of claim 8, wherein, The end of the mounting piece (100) away from the mounting opening (151) is provided with a stop piece (170), the assembly piece (200) is provided with a stop opening (218), and the stop piece (170) is clamped in the stop opening (218).

11. The refrigeration appliance assembly (10) of claim 8, wherein, The fixing piece (300) has a stop portion (310), the end surface (150) is provided with a third connecting hole (152), the third connecting hole (152) is arranged in a staggered manner with the mounting opening (151), the fixing piece (300) is arranged in the third connecting hole (152), and part of the stop portion (310) abuts against the connecting block (213).

12. The refrigeration appliance assembly (10) of claim 8, wherein, The assembly piece (200) further comprises a buckle piece (230), the buckle piece (230) is arranged on the side of the connecting block (213), the side surface (160) is provided with a clamping opening (161) in communication with the mounting groove (110), and the buckle piece (230) is clamped in the clamping opening (161).

13. The refrigeration appliance assembly (10) of claim 8, wherein, The assembly piece (200) further comprises a buckle piece (230), the buckle piece (230) is arranged on the top of the connecting block (213), the top wall of the mounting groove (110) is provided with a ratchet structure (112), and the buckle piece (230) is clamped in the ratchet structure (112).

14. The refrigeration appliance assembly (10) of claim 13, wherein, The side surface (160) is provided with an operation opening (162) in communication with the mounting groove (110), and the buckle piece (230) and the ratchet structure (112) are exposed in the operation opening (162).

15. The refrigeration appliance assembly (10) according to any of claims 1-4, characterized in that, The mounting assembly (13) further comprises a fastener and an adjusting washer, the fastener detachably connects the mounting piece (100) and the cabinet plate (12), and the adjusting washer is arranged between the mounting piece (100) and the cabinet plate (12).