Mounting assembly
By using the fixed and movable parts of the positioning parts in the embedded refrigeration device and adjusting the spacing distance between the positioning surfaces, the problem of difficult cabinet door installation is solved, precise positioning and uniform gaps are achieved, and installation efficiency and stability are improved.
Patent Information
- Application Number
- CN202422266961.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The doors of built-in refrigeration units are difficult to install, and it is difficult to achieve precise positioning and uniform clearance with the cabinet body or adjacent doors.
A positioning member including a fixed part and a movable part movably arranged on the fixed part is used. By adjusting the position of the movable part relative to the fixed part, the spacing distance between the first positioning surface and the second positioning surface is flexibly adjusted to ensure precise alignment and uniform gap between the cabinet door and the cabinet body or adjacent cabinet doors.
It simplifies the installation process of cabinet doors, improves installation efficiency and accuracy, ensures precise alignment between cabinet doors and cabinet bodies or adjacent cabinet doors, avoids misalignment, ensures uniformity of gaps and normal opening and closing of cabinet doors.
Smart Images

Figure CN223319377U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of household appliances, in particular to a mounting assembly. Background Art
[0002] As people's demands for a better quality of life increase, the market demand for embedded refrigeration devices, such as built-in refrigerators, continues to grow. In particular, embedded refrigeration devices have become standard equipment in some high-end residences and finely decorated homes. Embedded refrigeration devices generally consist of a refrigeration unit and a cabinet. The cabinet consists of a cabinet body and a door. The refrigeration unit generally includes a cabinet body, a storage compartment formed within the cabinet body, and a refrigeration unit door for opening and closing the storage compartment. By embedding the refrigeration unit cabinet body within the cabinet body and positioning the cabinet door over the refrigeration unit door, the appearance of the embedded refrigeration unit can be coordinated with the overall style of other furniture, making it less obtrusive and enhancing the overall visual effect of the home decoration. However, this design has the following drawbacks: the cabinet door is difficult to install. Utility Model Content
[0003] The purpose of the present utility model is to provide an installation assembly, which includes a positioning member including a fixed part and a movable part movably arranged on the fixed part, the fixed part forms a first positioning surface, and the movable part forms a second positioning surface, which can facilitate the determination and adjustment of the gap between the cabinet door and the cabinet body or the cabinet door of an adjacent cabinet, thereby facilitating the positioning and installation of the cabinet door.
[0004] To achieve the above-mentioned purpose, one embodiment of the present application provides a mounting assembly for installing a cabinet door of an embedded refrigeration device, wherein the embedded refrigeration device includes a refrigeration device and a cabinet, the refrigeration device includes a box body and a refrigeration device door, and the cabinet includes a cabinet body and a cabinet door, wherein the mounting assembly includes a positioning member, the positioning member includes a fixed portion and a movable portion movably arranged on the fixed portion, the fixed portion forms a first positioning surface, and the movable portion forms a second positioning surface, and the spacing distance between the first positioning surface and the second positioning surface is adjusted by adjusting the position of the movable portion relative to the fixed portion, one of the first positioning surface and the second positioning surface is used to abut against the cabinet door side wall, and the other is used to abut against the cabinet body or the adjacent cabinet door side wall to limit the distance between the cabinet door side wall and the cabinet body, or to limit the distance between the cabinet door side wall and the adjacent cabinet door.
[0005] As one embodiment of the present application, the fixed part includes several mounting positions with different distances from the first positioning surface, and the movable part can be installed at any of the mounting positions. The spacing distance between the first positioning surface and the second positioning surface is adjusted by adjusting the mounting position of the movable part.
[0006] As one embodiment of the present application, the movable portion is slidably connected to the fixed portion, and the movable portion can slide relative to the fixed portion in a direction perpendicular to the first positioning surface to adjust the spacing distance between the first positioning surface and the second positioning surface.
[0007] As one embodiment of the present application, the fixed portion is provided with a numerical mark corresponding to the installation position, and the numerical mark represents the distance between the first positioning surface and the second positioning surface when the movable portion is installed at the installation position corresponding to the numerical mark.
[0008] As one embodiment of the present application, the fixed part includes a plurality of mounting grooves, which form the mounting position. The movable part can be installed in any one of the mounting grooves. Each of the mounting grooves has a closed end close to the first positioning surface and an open end away from the first positioning surface. The closed ends of different mounting grooves are spaced at different distances from the first positioning surface. The movable part has an abutting end away from the second positioning surface, and the abutting end enters the mounting groove through the open end and abuts against the closed end.
[0009] As one embodiment of the present application, the mounting grooves are arranged in parallel along a direction parallel to the first positioning surface, and the first positioning surface is parallel to the second positioning surface.
[0010] As one of the embodiments of the present application, the fixed part is formed with a slide, the movable part has a slider cooperating with the slide, the slide is provided with a position mark, the slider is provided with a plurality of scale lines spaced apart along its sliding direction, and the slider is also provided with numerical marks corresponding to the scale lines, and the numerical marks represent the interval distance between the first positioning surface and the second positioning surface when the corresponding scale lines are aligned with the position mark.
[0011] As one of the embodiments of the present application, the slideway is formed with a groove structure, the groove structure includes a plurality of grooves evenly arranged along the sliding direction of the slider, the slider is formed with a protrusion structure that cooperates with the groove structure, the protrusion structure includes one or more protrusions that cooperate with the groove, and the protrusion portion is embedded in the groove.
[0012] As one embodiment of the present application, the positioning member includes a plug-in portion, the refrigeration equipment door is formed with a plug-in groove near its side wall, the side wall of the refrigeration equipment door is formed with a plug-in opening connected to the plug-in groove, the plug-in portion is inserted into the plug-in groove through the plug-in opening and can move in a direction perpendicular to the side wall of the refrigeration equipment door.
[0013] As one of the embodiments of the present application, the positioning member includes an upper positioning member and a left positioning member or a right positioning member, the upper positioning member is used to limit the distance between the upper wall of the cabinet door and the cabinet body or the adjacent upper cabinet door, the left positioning member is used to limit the distance between the left wall of the cabinet door and the cabinet body or the adjacent left cabinet door, and the right positioning member is used to limit the distance between the right wall of the cabinet door and the cabinet body or the adjacent right cabinet door.
[0014] Compared with the prior art, the present invention comprises a positioning member including a fixed portion and a movable portion movably arranged on the fixed portion, wherein the fixed portion forms a first positioning surface and the movable portion forms a second positioning surface. The beneficial effect of the present invention is that the gap between the cabinet door and the cabinet body or the door of an adjacent cabinet can be easily determined and adjusted, thereby facilitating the positioning and installation of the cabinet door. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The specific embodiments of the present invention are further described in detail below with reference to the accompanying drawings, wherein:
[0016] Figure 1 This is a schematic structural diagram of an embedded refrigeration device according to an embodiment of the present application;
[0017] Figure 2 yes Figure 1 Schematic diagram of the structure of the refrigeration equipment;
[0018] Figure 3 yes Figure 1 Schematic diagram of the structure of refrigeration equipment doors, cabinet doors and positioning parts;
[0019] Figure 4 This is a schematic structural diagram of a positioning member according to an embodiment of the present application;
[0020] Figure 5 This is a schematic structural diagram of a positioning member according to another embodiment of the present application;
[0021] Figure 6 yes Figure 5 An exploded view of the positioning member shown;
[0022] Figure 7 yes Figure 3 A partial schematic diagram of the door socket of the refrigeration equipment shown;
[0023] Figure 8 yes Figure 7 Schematic diagram of the matching between the plug-in slot and the positioning piece.
[0024] Wherein: 1. Refrigeration equipment; 11. Cabinet; 12. Refrigeration equipment door; 121. Plug slot; 122. Plug opening; 2. Cabinet; 21. Cabinet body; 22. Cabinet door; 23. Adjacent cabinet door; 24. Cabinet door side wall; 3. Positioning member; 31. Fixing portion; 311. First positioning surface; 312. Mounting position; 3121. First mounting position; 3122. Second mounting position; 3123. Third mounting position; 313. Fixed numerical identifier; 3131. First fixed numerical identifier; 3132. 132. Second fixed numerical identifier; 3133. Third fixed numerical identifier; 314. Mounting slot; 315. Slide; 316. Position identifier; 317. Groove structure; 318. Connecting portion; 32. Movable portion; 321. Second positioning surface; 322. Abutting end; 323. Slider; 324. Scale line; 325. Movable numerical identifier; 326. Protruding structure; 33. Upper positioning member; 34. Left positioning member; 35. Right positioning member; 100. Embedded refrigeration device. DETAILED DESCRIPTION
[0025] The following describes this patent in detail with reference to the specific embodiments shown in the accompanying drawings. However, these embodiments do not limit this patent, and any structural, methodological, or functional changes made by a person skilled in the art based on these embodiments are included within the scope of protection of this patent.
[0026] Reference Figure 1 and Figure 2 The embedded refrigeration device 100 includes a refrigeration device 1 and a cabinet 2. The refrigeration device 1 includes a housing 11 and a refrigeration device door 12. The cabinet 2 includes a cabinet 21 and a cabinet door 22. The housing 11 can be embedded in the cabinet 21. The refrigeration device 1 can include a storage compartment formed in the housing 11. The storage compartment can be a refrigerator, a freezer, or a temperature-controlled room. The refrigeration device door 12 can be connected to the housing 11 via a hinge and is used to open and close the storage compartment. The cabinet door 22 can be arranged opposite the refrigeration device door 12 and is used to cover the exterior surface of the refrigeration device door 12.
[0027] In this application, the vertical direction refers to the height of the refrigeration unit 1, the front-to-back direction refers to the depth of the refrigeration unit 1, and the left-to-right direction refers to the width of the refrigeration unit 1. When the refrigeration unit door 12 is closed, its exterior surface faces forward. When the cabinet door 22 and the refrigeration unit door 12 are closed, the cabinet door 22 is located in front of the refrigeration unit door 12 and covers the front wall of the refrigeration unit door 12.
[0028] In this application, the sidewall may include the upper sidewall, lower sidewall, left sidewall, and right sidewall. The upper sidewall may also be referred to as the upper wall or top wall. The lower sidewall may also be referred to as the lower wall or bottom wall, the left sidewall may also be referred to as the left wall or left side wall, and the right sidewall may also be referred to as the right wall or right side wall. The sidewall does not include the front wall and the rear wall.
[0029] Reference Figures 1 to 4 , the present application provides a mounting assembly. The mounting assembly is used to install the cabinet door 22 of the embedded refrigeration device 100. The mounting assembly includes a positioning member 3. The positioning member 3 includes a fixed portion 31 and a movable portion 32 movably provided on the fixed portion 31. The fixed portion 31 forms a first positioning surface 311. The movable portion 32 forms a second positioning surface 321. The spacing distance between the first positioning surface 311 and the second positioning surface 321 is adjusted by adjusting the position of the movable portion 32 relative to the fixed portion 31. One of the first positioning surface 311 and the second positioning surface 321 is used to abut against the cabinet door side wall 24. The other is used to abut against the cabinet body 21 or the side wall of the adjacent cabinet door 23 to limit the distance between the cabinet door side wall 24 and the cabinet body 21, or to limit the distance between the cabinet door side wall 24 and the adjacent cabinet door 23.
[0030] When the first positioning surface 311 formed by the fixing portion 31 abuts against the cabinet door side wall 24, the second positioning surface 321 can abut against the inner side wall of the cabinet body 21, thereby ensuring the spacing distance between the cabinet door 22 and the cabinet body 21. The second positioning surface 321 can also abut against the side wall of the adjacent cabinet door 23, thereby ensuring the spacing distance between the cabinet door 22 and the adjacent cabinet door 23.
[0031] The fixing portion 31 can be installed on the cabinet body 21 , the cabinet door 22 , the refrigeration equipment door 12 , or the box body 11 .
[0032] The cabinet 2 may include multiple cabinet doors, and the adjacent cabinet door 23 may refer to the upper cabinet door located on the upper side of the currently installed cabinet door 22, or the lower cabinet door located on the lower side of the currently installed cabinet door 22, or the left cabinet door located on the left side of the currently installed cabinet door 22, or the right cabinet door located on the right side of the currently installed cabinet door 22.
[0033] The positioning member 3 includes a fixed portion 31 and a movable portion 32. By adjusting the position of the movable portion 32 relative to the fixed portion 31, the spacing distance between the first positioning surface 311 and the second positioning surface 321 can be flexibly adjusted, so that the installation assembly can adapt to different distance requirements between the cabinet door 22 and the cabinet body 21 or the adjacent cabinet door 23, thereby improving the flexibility of installation. One of the first positioning surface 311 and the second positioning surface 321 is used to abut against the cabinet door side wall 24, and the other is used to abut against the cabinet body 21 or the side wall of the adjacent cabinet door 23. This dual positioning surface design can ensure precise alignment between the cabinet door 22 and the cabinet body 21 or the adjacent cabinet door 23, avoid misalignment, ensure uniformity of the gap, and ensure the normal opening and closing of the cabinet door 22. The adjustable design of the movable portion 32 and the fixed portion 31 simplifies the installation process. The installer can quickly adjust the position of the movable portion 32 on the fixed portion 31 according to specific needs, reducing the time for installation and adjustment.
[0034] Reference Figure 4 In one embodiment of the present application, the fixed portion 31 includes a plurality of mounting positions 312 spaced at different distances from the first positioning surface 311. The movable portion 32 can be mounted at any mounting position 312. By adjusting the mounting position 312 where the movable portion 32 is located, the distance between the first positioning surface 311 and the second positioning surface 321 can be adjusted.
[0035] The fixed portion 31 is provided with several installation positions 312 spaced at different distances from the first positioning surface 311, and the movable portion 32 can be installed on any installation position 312. This design allows the installer to select a suitable installation position 312 according to actual needs, and adjust the spacing distance between the first positioning surface 311 and the second positioning surface 321 by changing the position of the movable portion 32 on the fixed portion 31, thereby providing the possibility of multi-level spacing distance adjustment and realizing the precise positioning of the cabinet door 22.
[0036] Reference Figure 4 In one embodiment of the present application, the fixed portion 31 is provided with a fixed numerical mark 313 corresponding to the installation position 312. The fixed numerical mark 313 represents the distance between the first positioning surface 311 and the second positioning surface 321 when the movable portion 32 is installed in the installation position 312 corresponding to the fixed numerical mark 313.
[0037] The numerical value indicated by the fixed numerical mark 313 can be an Arabic numeral corresponding to the distance between the first positioning surface 311 and the second positioning surface 321, can be a length unit, or can be a level value representing the distance. The fixed numerical mark 313 can be provided on the positioning member 3 by spraying, engraving, molding, or other means.
[0038] For example, the positioning member 3 can position the cabinet door 22 and the cabinet body 21 or the adjacent cabinet door 23 at three levels of spacing, the first level spacing is 5 mm, the second level spacing is 6 mm, and the third level spacing is 7 mm. Correspondingly, the fixed portion 31 can have a first mounting position 3121, a second mounting position 3122, and a third mounting position 3123 that are spaced at different distances from the first positioning surface 311. When the movable portion 32 is mounted on the first mounting position 3121, the second positioning surface 321 is spaced 5 mm from the first positioning surface 311. When the movable portion 32 is mounted on the second mounting position 3122, the second positioning surface 321 is spaced 6 mm from the first positioning surface 311. When the movable portion 32 is mounted on the third mounting position 3123, the second positioning surface 321 is spaced 7 mm from the first positioning surface 311. The fixing portion 31 has a first fixed numerical identifier 3131 corresponding to the first mounting position 3121, a second fixed numerical identifier 3132 corresponding to the second mounting position 3122, and a third fixed numerical identifier 3133 corresponding to the third mounting position 3123. The numerical value indicated by the first fixed numerical identifier 3131 can be 1, representing the first level, or 5 or 5 mm. The second fixed numerical identifier 3132 can be 2, representing the second level, or 6 or 6 mm. The third fixed numerical identifier 3133 can be 3, representing the third level, or 7 or 7 mm.
[0039] By setting a plurality of installation positions 312 at different distances from the first positioning surface 311, the installer can flexibly adjust the installation position 312 of the movable part 32 according to actual needs when installing the cabinet door 22, thereby adjusting the spacing that can be determined by the positioning member 3 without replacing different positioning members 3, thereby enhancing the versatility of the positioning member 3.
[0040] Fixed numerical markings 313 on the fixed portion 31 visually display the distance between the first positioning surface 311 and the second positioning surface 321 when the movable portion 32 is currently installed in a specific mounting position 312. This makes the adjustment process more intuitive and precise, allowing the installer to easily select the appropriate mounting position 312 based on the fixed numerical markings 313, greatly improving the efficiency and accuracy of installation and adjustment.
[0041] Reference Figure 4 In one embodiment of the present application, the fixed portion 31 includes a plurality of mounting grooves 314. The mounting grooves 314 form mounting positions 312. The movable portion 32 can be installed in any of the mounting grooves 314. Each mounting groove 314 has a closed end close to the first positioning surface 311 and an open end away from the first positioning surface 311. The closed ends of different mounting grooves 314 are spaced at different distances from the first positioning surface 311. The movable portion 32 has an abutting end 322 away from the second positioning surface 321. The abutting end 322 enters the mounting groove 314 through the open end and abuts against the closed end.
[0042] The fixed portion 31 is provided with a plurality of mounting slots 314. The distance between the closed end of each mounting slot 314 and the first positioning surface 311 is different. This provides a plurality of optional mounting positions 312 for the movable portion 32. The installer can select the appropriate mounting slot 314 according to the required spacing distance, thereby flexibly adjusting the spacing between the first positioning surface 311 and the second positioning surface 321. Each mounting slot 314 has an open end. The abutting end 322 of the movable portion 32 can be easily inserted into the mounting slot 314 from the open end and finally abutted against the closed end. This makes the installation and adjustment process very simple. The installer only needs to push the movable portion 32 into the designated mounting slot 314 to complete the position fixation without the need for complicated operations. The abutting end 322 is in close contact with the closed end of the mounting slot 314, which also provides stable support and accurate positioning for the movable portion 32, ensuring that the adjusted spacing distance remains stable and avoiding loosening or displacement during use. The design of the mounting slot 314 provides a flexible, efficient and reliable installation and adjustment method for the movable part 32. The installer can freely select different mounting slots 314 according to needs, accurately control the spacing distance between the first positioning surface 311 and the second positioning surface 321, simplifying the adjustment process while improving the stability and durability of the equipment.
[0043] Reference Figure 4 In one embodiment of the present application, the mounting grooves 314 are arranged in parallel along a direction parallel to the first positioning surface 311. The first positioning surface 311 is parallel to the second positioning surface 321. The design of the parallel and spaced mounting grooves 314 provides a clearer installation path for the movable part 32. The installer only needs to select a suitable mounting groove 314 and insert the movable part 32 to quickly complete the installation or adjustment, which reduces the complexity of the operation and improves the installation efficiency. Since the first positioning surface 311 and the second positioning surface 321 are parallel, the contact surface between the positioning member 3 and the cabinet door 22, the cabinet body 21 or the adjacent cabinet door 23 can be closer, and the gap can be uniform.
[0044] Reference Figure 5 In one embodiment of the present application, the movable portion 32 is slidably connected to the fixed portion 31. The movable portion 32 can slide relative to the fixed portion 31 in a direction perpendicular to the first positioning surface 311 to adjust the spacing between the first positioning surface 311 and the second positioning surface 321.
[0045] This embodiment differs from the above-mentioned design of forming multiple mounting positions 312 on the fixed portion 31. Instead, it realizes a more flexible, precise and continuous adjustment function through the sliding connection between the movable portion 32 and the fixed portion 31. The sliding adjustment method makes the distance adjustment process between the first positioning surface 311 and the second positioning surface 321 more intuitive and convenient. The installer does not need to perform complicated disassembly and assembly operations, and can adjust the spacing by simply sliding the movable portion 32, thereby improving the efficiency of installation and subsequent maintenance. In addition, because the sliding connection provides a continuous adjustment range, it can better adapt to the installation requirements of cabinet doors 22, cabinet bodies 21 or adjacent cabinet doors 23 of different specifications or thicknesses. This flexibility enables the positioning member 3 to be used in a variety of scenarios, enhancing the versatility of the positioning member 3.
[0046] Reference Figure 5 In one embodiment of the present application, the fixed portion 31 is formed with a slideway 315, and the movable portion 32 has a slider 323 that cooperates with the slideway 315. The slideway 315 is provided with a position marker 316. The slider 323 is provided with a plurality of scale lines 324 spaced apart along its sliding direction. The slider 323 is also provided with movable numerical markers 325 corresponding to the scale lines 324. The movable numerical markers 325 represent the distance between the first positioning surface 311 and the second positioning surface 321 when the corresponding scale line 324 is aligned with the position marker 316.
[0047] The position mark 316 can be a mark provided on the positioning member 3 by spraying, engraving, molding, etc. The position mark 316 can be a straight line or an arrow, etc. The activity value mark 325 can be an Arabic numeral or a level number as described above.
[0048] For example, the slider 323 is provided with three scale lines 324 spaced apart along its sliding direction. The first scale line 324 corresponds to an active numerical identifier 325 of 6, the second scale line 324 corresponds to an active numerical identifier 325 of 8, and the third scale line 324 corresponds to an active numerical identifier 325 of 10. When the slider 323 slides relative to the slideway 315 until the first scale line 324 is aligned with the position identifier 316, the distance between the first positioning surface 311 and the second positioning surface 321 is 6 mm. When the slider 323 slides relative to the slideway 315 until the second scale line 324 is aligned with the position identifier 316, the distance between the first positioning surface 311 and the second positioning surface 321 is 8 mm. When the slider 323 slides relative to the slideway 315 until the third scale line 324 is aligned with the position identifier 316, the distance between the first positioning surface 311 and the second positioning surface 321 is 10 mm.
[0049] Reference Figure 5In one embodiment of the present application, the slideway 315 is formed with a groove structure 317. The groove structure 317 includes a plurality of grooves evenly arranged along the sliding direction of the slider 323. The slider 323 is formed with a protrusion structure 326 that cooperates with the groove structure 317. The protrusion structure 326 includes one or more protrusions that cooperate with the grooves, and the protrusions are embedded in the grooves. The protrusion structure 326 and the groove structure 317 can have a mutually cooperating sawtooth or wavy shape, for example.
[0050] The groove structure 317 on the slide 315 cooperates with the protrusion structure 326 on the slider 323. The protrusion can provide clear physical feedback when embedded in the groove. During the sliding process of the slider 323, the installer can sense whether the slider 323 is in the correct position through the sense of engagement of the protrusion embedded in the groove, ensuring that the adjusted slider 323 can be firmly maintained in a specific position and is not easily slipped due to external force or vibration, thereby improving the accuracy and stability of the adjustment.
[0051] The groove structure 317 is evenly arranged along the sliding direction of the slider 323. By sliding the slider 323, the installer can insert the protrusions into different grooves to achieve multi-level precise adjustment at different positions. Each groove corresponds to a fixed position, allowing the slider 323 to be adjusted step by step to achieve precise height or spacing control. The slider 323 can adjust the position of the movable portion 32 on the fixed portion 31 with a simple slide, without the need for complex tools. After each adjustment, the mating of the protrusions and grooves automatically fixes the position of the slider 323, eliminating the need for manual locking or additional fixing steps, greatly simplifying the operation process.
[0052] Reference Figures 4 to 8 In one embodiment of the present application, the positioning member 3 includes an inserting portion 318. The refrigeration equipment door 12 has an inserting slot 121 formed near its side wall. The side wall of the refrigeration equipment door 12 has an inserting opening 122 formed therein that communicates with the inserting slot 121. The inserting portion 318 is inserted into the inserting slot 121 through the inserting opening 122. The inserting portion 318 can also move in a direction perpendicular to the side wall of the refrigeration equipment door 12. The inserting slot 121 can be formed by an inward depression in the door shell of the refrigeration equipment door 12.
[0053] Before installing the cabinet door 22, the positioning member 3 can be pre-inserted into the refrigeration equipment door 12. After the refrigeration equipment 1 is embedded in the cabinet body 21, the positioning member 3 can be moved in a direction away from the side wall of the refrigeration equipment door 12 until the positioning member 3 abuts the inner wall of the cabinet body 21. Then, the cabinet door 22 is aligned with the refrigeration equipment door 12, and the cabinet door side wall 24 is abutted against the positioning member 3 to ensure a gap between the cabinet door side wall 24 and the cabinet body 21.
[0054] The design of the plug-in structure allows the positioning member 3 to be embedded in the refrigeration equipment door 12, reducing the space occupied by the positioning member 3 and preventing interference between the positioning member 3 and other structures such as the cabinet body 21 and the cabinet door 22. Because the plug-in portion 318 can move closer to or further away from the side wall of the refrigeration equipment door 12 in a direction perpendicular to the side wall of the refrigeration equipment door 12, this design provides room for adjustment. During the actual installation process, the user can fine-tune the positioning member 3 according to the actual position and needs to ensure the final installation effect. Inserting the plug-in portion 318 of the positioning member 3 into the plug-in slot 121 of the refrigeration equipment door 12 through the plug-in opening 122 also simplifies the installation process, facilitates the installation and removal of the positioning member 3, and shortens assembly time.
[0055] Reference Figure 3 and Figure 8 In one embodiment of the present application, the positioning member 3 may include an upper positioning member 33. The upper positioning member 33 is used to define the distance between the upper wall of the cabinet door 22 and the cabinet body 21 or an adjacent upper cabinet door 22. When the upper positioning member 33 is used to define the distance between the upper wall of the cabinet door 22 and the cabinet body 21, one of the first positioning surface 311 and the second positioning surface 321 abuts against the upper wall of the cabinet door 22, and the other abuts against the upper inner wall of the inner side wall of the cabinet body 21. When the upper positioning member 33 is used to define the distance between the upper wall of the cabinet door 22 and the adjacent upper cabinet door 22, one of the first positioning surface 311 and the second positioning surface 321 abuts against the upper wall of the cabinet door 22, and the other abuts against the lower wall of the upper cabinet door 22.
[0056] Reference Figure 3 and Figure 8 In one embodiment of the present application, the positioning member 3 may include a left positioning member 34. The left positioning member 34 is used to limit the distance between the left wall of the cabinet door 22 and the cabinet body 21 or the adjacent left cabinet door 22. When the left positioning member 34 is used to limit the distance between the left wall of the cabinet door 22 and the cabinet body 21, one of the first positioning surface 311 and the second positioning surface 321 abuts against the left wall of the cabinet door 22, and the other abuts against the left inner wall of the inner side wall of the cabinet body 21. When the left positioning member 34 is used to limit the distance between the left wall of the cabinet door 22 and the adjacent left cabinet door 22, one of the first positioning surface 311 and the second positioning surface 321 abuts against the left wall of the cabinet door 22, and the other abuts against the right wall of the left cabinet door 22.
[0057] Reference Figure 3In one embodiment of the present application, the positioning member 3 may include a right positioning member 35. The right positioning member 35 is used to limit the distance between the right wall of the cabinet door 22 and the cabinet body 21 or the adjacent right cabinet door 22. The right positioning member 35 is used to limit the distance between the right wall of the cabinet door 22 and the cabinet body 21 or the adjacent right cabinet door 22. When the right positioning member 35 is used to define the distance between the right wall of the cabinet door 22 and the cabinet body 21, one of the first positioning surface 311 and the second positioning surface 321 abuts against the right wall of the cabinet door 22, and the other abuts against the right inner wall of the inner side wall of the cabinet body 21. When the right positioning member 35 is used to limit the distance between the right wall of the cabinet door 22 and the adjacent right cabinet door 22, one of the first positioning surface 311 and the second positioning surface 321 abuts against the right wall of the cabinet door 22, and the other abuts against the left wall of the right cabinet door 22.
[0058] Reference Figure 3 In one embodiment of the present application, when used to determine the gap between the cabinet door 22 and the cabinet body 21, the positioning member 3 can include an upper positioning member 33 and a left positioning member 34 at the same time, or can include an upper positioning member 33 and a right positioning member 35 at the same time, so that the cabinet door 22 can be positioned with the upper side wall and the left side wall or the right side wall of the inner side wall of the cabinet body 21 as a reference to ensure the accuracy of the position of the cabinet door 22.
[0059] The refrigeration device 1 of the present application may be a refrigerator, a freezer, etc.
[0060] In summary, the installation assembly of the present application can solve the problem of difficulty in installing the cabinet door 22.
[0061] The design scheme of the present application can be used to easily determine and adjust the gap between the cabinet door 22 and the cabinet body 21 or the adjacent cabinet door 22, thereby facilitating the positioning and installation of the cabinet door 22. The positioning member 3 includes a fixed portion 31 and a movable portion 32. By adjusting the position of the movable portion 32 relative to the fixed portion 31, the spacing distance between the first positioning surface 311 and the second positioning surface 321 can be flexibly adjusted, so that the installation assembly can adapt to different distance requirements between the cabinet door 22 and the cabinet body 21 or the adjacent cabinet door 23, thereby improving the flexibility of installation. One of the first positioning surface 311 and the second positioning surface 321 is used to abut against the cabinet door side wall 24, and the other is used to abut against the cabinet body 21 or the adjacent cabinet door 23 side wall. This dual positioning surface design can ensure the precise alignment between the cabinet door 22 and the cabinet body 21 or the adjacent cabinet door 23, avoid misalignment, ensure uniformity of the gap, and ensure the normal opening and closing of the cabinet door 22. The adjustable design of the movable portion 32 and the fixed portion 31 simplifies the installation process. The installer can quickly adjust the position of the movable portion 32 on the fixed portion 31 according to specific needs, reducing the time for installation and adjustment.
[0062] It should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each implementation method can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
[0063] The series of detailed descriptions listed above are only specific descriptions of the feasible implementation methods of this patent. They are not intended to limit the scope of protection of this patent. Any equivalent implementation methods or changes that do not deviate from the technical spirit of this patent should be included in the scope of protection of this patent.
Claims
1. A mounting assembly for mounting a cabinet door (22) of an embedded refrigeration device (100), wherein the embedded refrigeration device (100) comprises a refrigeration device (1) and a cabinet (2), wherein the refrigeration device (1) comprises a housing (11) and a refrigeration device door (12), and the cabinet (2) comprises a housing (21) and a cabinet door (22), and wherein: The mounting assembly includes a positioning member (3), the positioning member (3) including a fixed portion (31) and a movable portion (32) movably arranged on the fixed portion (31), the fixed portion (31) forming a first positioning surface (311), the movable portion (32) forming a second positioning surface (321), and the spacing between the first positioning surface (311) and the second positioning surface (321) is adjusted by adjusting the position of the movable portion (32) relative to the fixed portion (31), one of the first positioning surface (311) and the second positioning surface (321) is used to abut against the cabinet door side wall (24), and the other is used to abut against the cabinet body (21) or the side wall of an adjacent cabinet door (23), so as to limit the distance between the cabinet door side wall (24) and the cabinet body (21), or to limit the distance between the cabinet door side wall (24) and the adjacent cabinet door (23).
2. The mounting assembly according to claim 1, wherein: The fixed portion (31) includes a plurality of mounting positions (312) spaced at different distances from the first positioning surface (311); the movable portion (32) can be mounted at any of the mounting positions (312); and the spacing distance between the first positioning surface (311) and the second positioning surface (321) is adjusted by adjusting the mounting position (312) at which the movable portion (32) is located.
3. The mounting assembly according to claim 1, wherein: The movable portion (32) is slidably connected to the fixed portion (31), and the movable portion (32) can slide relative to the fixed portion (31) in a direction perpendicular to the first positioning surface (311) to adjust the spacing between the first positioning surface (311) and the second positioning surface (321).
4. The mounting assembly according to claim 2, wherein: The fixed portion (31) is provided with a fixed numerical mark (313) corresponding to the installation position (312), and the fixed numerical mark (313) represents the spacing distance between the first positioning surface (311) and the second positioning surface (321) when the movable portion (32) is installed at the installation position (312) corresponding to the fixed numerical mark (313).
5. The mounting assembly according to claim 2, wherein: The fixed portion (31) includes a plurality of mounting grooves (314), the mounting grooves (314) forming the mounting positions (312), and the movable portion (32) can be mounted in any of the mounting grooves (314). Each of the mounting grooves (314) has a closed end close to the first positioning surface (311) and an open end away from the first positioning surface (311). The closed ends of different mounting grooves (314) are spaced at different distances from the first positioning surface (311). The movable portion (32) has an abutting end (322) away from the second positioning surface (321), and the abutting end (322) enters the mounting groove (314) through the open end and abuts against the closed end.
6. The mounting assembly according to claim 5, wherein: The mounting grooves (314) are arranged in parallel along a direction parallel to the first positioning surface (311), and the first positioning surface (311) is parallel to the second positioning surface (321).
7. The mounting assembly according to claim 3, wherein: The fixed portion (31) is formed with a slideway (315), the movable portion (32) has a slider (323) matched with the slideway (315), the slideway (315) is provided with a position mark (316), the slider (323) is provided with a plurality of scale lines (324) at intervals along its sliding direction, and the slider (323) is further provided with an active numerical mark (325) corresponding to the scale lines (324), and the active numerical mark (325) represents the interval distance between the first positioning surface (311) and the second positioning surface (321) when the corresponding scale line (324) is aligned with the position mark (316).
8. The mounting assembly according to claim 7, wherein: The slideway (315) is formed with a groove structure (317), and the groove structure (317) includes a plurality of grooves evenly arranged along the sliding direction of the slider (323). The slider (323) is formed with a protrusion structure (326) that cooperates with the groove structure (317), and the protrusion structure (326) includes one or more protrusions that cooperate with the groove, and the protrusions are embedded in the groove.
9. The mounting assembly according to claim 1, wherein: The positioning member (3) includes a plug-in portion (318), a plug-in slot (121) is formed near a side wall of the refrigeration equipment door (12), and a plug-in opening (122) connected to the plug-in slot (121) is formed on the side wall of the refrigeration equipment door (12), and the plug-in portion (318) is inserted into the plug-in slot (121) through the plug-in opening (122) and can move in a direction perpendicular to the side wall of the refrigeration equipment door (12).
10. The mounting assembly according to claim 1, wherein: The positioning member (3) comprises an upper positioning member (33) and a left positioning member (34) or a right positioning member (35); the upper positioning member (33) is used to define the distance between the upper wall of the cabinet door (22) and the cabinet body (21) or an adjacent upper cabinet door; the left positioning member (34) is used to define the distance between the left wall of the cabinet door (22) and the cabinet body (21) or an adjacent left cabinet door; and the right positioning member (35) is used to define the distance between the right wall of the cabinet door (22) and the cabinet body (21) or an adjacent right cabinet door.