A full-embedded upper and lower combined intelligent remote control refrigerator
By using a detachable upper and lower cabinet design and locking components, the problem of high transportation and production costs caused by the large size of the refrigerator is solved. It enables convenient disassembly and stable connection, reduces transportation and production costs, and improves service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-22
- Publication Date
- 2026-03-27
AI Technical Summary
Existing two-compartment refrigerators are large in size, resulting in high long-distance transportation costs, high production costs, and high maintenance costs.
It adopts a detachable upper and lower cabinet design, which enables quick assembly and disassembly through locking components, reducing transportation and production costs, and improving connection stability through protective components.
This technology enables easy disassembly and transportation of refrigerators, reducing transportation and production costs while improving connection stability and lifespan.
Smart Images

Figure CN115682626B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of household appliances, in particular to a full-embedded upper and lower combined intelligent remote control refrigerator. BACKGROUND
[0002] The refrigerator is a kind of refrigeration equipment that keeps constant low temperature, and is also a kind of civil product that keeps constant low temperature of food or other objects. The cabinet has a compressor and an ice maker for ice making, that is, a storage cabinet with refrigeration device. The existing refrigerator is generally single and independent, either a room is a freezer room, or two rooms, one of which is a refrigerator room and the other is a freezer room, with single function.
[0003] For the related technology in the above, the inventor believes that the two-room refrigerator has completed the overall assembly before leaving the factory, but the refrigerator is large in size, thereby increasing the long-distance transportation cost of the refrigerator. SUMMARY
[0004] In order to improve the problem that the two-room refrigerator is large in size and causes high long-distance transportation cost, the present application provides a full-embedded upper and lower combined intelligent remote control refrigerator.
[0005] The full-embedded upper and lower combined intelligent remote control refrigerator provided by the present application adopts the following technical scheme:
[0006] A full-embedded upper and lower combined intelligent remote control refrigerator, comprising an upper cabinet and a lower cabinet for refrigeration, further comprising a locking assembly for connecting the upper cabinet and the lower cabinet, the locking assembly comprising a plurality of support seats arranged at the bottom of the upper cabinet and a plurality of limiting blocks arranged at the top of the lower cabinet, the limiting blocks one by one correspond to the support seats, a plurality of the limiting blocks are provided with a slot on the side wall for the support seat to slide, the plurality of slots are the same in depth direction, the top of the lower cabinet is detachably connected with a limiting plate, and the limiting plate is used to limit the support seat in the slot.
[0007] By adopting the technical scheme, when the upper cabinet is placed on the lower cabinet, the bottom wall of the upper cabinet abuts against the top wall of the lower cabinet, the plurality of support seats are correspondingly directed to the plurality of limiting blocks and enter the slots, the support seats slide along the depth of the slots to abut against the lower cabinet, the limiting plate is installed on the top of the lower cabinet and the support seats are limited in the slots, the support seats are not easy to slide in the slots, thereby realizing the quick splicing of the upper cabinet and the lower cabinet; when the refrigerator needs to be transported, the worker dismounts the limiting plate of the lower cabinet, the limiting effect of the support seats on the limiting blocks disappears, the support seats slide along the depth direction of the slots to separate from the lower cabinet, thereby realizing the disassembly of the upper cabinet and the lower cabinet, facilitating the worker to pack and transport the upper cabinet and the lower cabinet respectively, thereby reducing the transportation cost of the refrigerator; the upper cabinet and the lower cabinet can be manufactured separately, without the need of manufacturing the upper cabinet and the lower cabinet in one piece, thereby reducing the production cost of the refrigerator; the upper cabinet and the lower cabinet independently perform the refrigeration work, when one of the cabinets is damaged, the other cabinet can normally work, thereby reducing the maintenance cost of the refrigerator.
[0008] Optionally, the limiting plate outer wall is provided with a positioning block, and the lower cabinet top wall is provided with a positioning slot for accommodating the positioning block; when the positioning block is located in the positioning slot, the positioning block guides the limiting plate to limit the support seat in the slot.
[0009] By adopting the technical scheme, when the worker places the positioning block in the positioning slot, the limiting plate outer wall is embedded in the lower cabinet and the upper cabinet, and the positioning block guides the limiting plate to limit the support seat in the slot, without the need of the worker to observe the limiting effect of the limiting plate on the support seat in the slot, thereby improving the stability of the splicing of the upper cabinet and the lower cabinet.
[0010] Optionally, the lower cabinet top wall is provided with an abutting block, the abutting block outer wall abuts against the limiting plate outer wall and limits the positioning block in the positioning slot.
[0011] By adopting the technical scheme, when the limiting plate is installed on the lower cabinet top wall, the abutting block outer wall abuts against the limiting plate outer wall and limits the positioning block in the positioning slot, so that the positioning block is not easy to separate from the inner wall of the positioning slot, thereby improving the connection stability of the limiting plate and the lower cabinet.
[0012] Optionally, the protective assembly is further provided, the protective assembly is used for shielding the connection between the support seat and the limiting block, the protective assembly comprises a first protective plate, a second protective plate and a third protective plate, the first protective plate, the second protective plate and the third protective plate are detachably connected to the circumferential edge of the top of the lower cabinet, and the first protective plate, the second protective plate, the third protective plate and the limiting plate form a protective gap for accommodating the locking assembly.
[0013] By adopting the technical scheme, the first protective plate, the second protective plate, the third protective plate and the limiting plate are sequentially installed on the top of the lower cabinet body, a protective gap is formed between the first protective plate, the second protective plate, the third protective plate and the limiting plate, the connecting part of the support seat and the limiting block is located in the protective cavity, and the user is less likely to collide with the support seat when using the refrigerator, thereby improving the connection stability of the support seat and the limiting block; meanwhile, the outer walls of the first protective plate, the second protective plate and the third protective plate abut against the bottom wall of the upper cabinet body and the top wall of the lower cabinet body, the firmness and stability of the lower cabinet body and the upper cabinet body are increased, and the connection stability of the upper cabinet body and the lower cabinet body is improved.
[0014] Optionally, the first protective plate and the third protective plate are located at opposite edges of the lower cabinet body, the second protective plate and the limiting plate are located at opposite edges of the lower cabinet body, the outer wall of the second protective plate is provided with a positioning plate facing the outer walls of the first protective plate and the third protective plate, and the outer wall of the positioning plate abuts against the outer walls of the first protective plate and the third protective plate one by one and limits the first protective plate and the third protective plate on the top wall of the lower cabinet body.
[0015] By adopting the technical scheme, when the first protective plate, the second protective plate and the third protective plate are sequentially placed on the top of the lower cabinet body, the outer wall of the positioning plate abuts against the outer walls of the first protective plate and the third protective plate one by one and limits the first protective plate and the third protective plate on the top wall of the lower cabinet body, so that the first protective plate and the third protective plate are limited on the top wall of the lower cabinet body, thereby facilitating the staff to sequentially fix the first protective plate, the second protective plate and the third protective plate on the lower cabinet body without the need for another staff to fix the first protective plate and the third protective plate, and the installation efficiency of the staff on the refrigerator is improved.
[0016] Optionally, the support seat is threadedly connected to the bottom of the lower cabinet body, and the bottom of the support seat is used to support the ground.
[0017] By adopting the technical scheme, the lower cabinet body is abutted against the ground through the support seat, so that the bottom of the lower cabinet body is less likely to wear the ground when the refrigerator is used, thereby improving the service life of the refrigerator; when the support seat is worn after long-time use, the support seat is unscrewed to realize the disassembly of the refrigerator and the support seat, a new support seat is replaced, and the entire lower cabinet body shell does not need to be replaced, thereby reducing the waste of materials.
[0018] Optionally, a support is detachably connected to the bottom of the lower cabinet body, an outer wall of the support is rotatably connected with a roller, the roller is in rolling contact with the ground, and the lowest end of the roller is higher than the lowest end of the support seat.
[0019] When the user needs to move the refrigerator, the support seat is unscrewed, the support seat and the lower cabinet body are disassembled, the wheel surface is in rolling contact with the ground, rolling friction replaces sliding friction, the pushing force of the user moving the refrigerator is reduced, and the user moves the position of the refrigerator more conveniently; when the wheel surface is worn after long-term use, the staff disassembles the support from the lower cabinet body, the support and the lower cabinet body are disassembled, a new support is installed on the lower cabinet body, and therefore, the service life of the lower cabinet body is increased.
[0020] Optionally, the support is provided with a support groove, and an inner wall of the support groove is used for stepping by the user.
[0021] By adopting the technical scheme, when the user needs to move the position of the refrigerator, the staff steps on the inner wall of the support groove and drives the wheel surface into rolling contact with the ground, the inner wall of the support groove provides a force point for the user, and therefore, the user moves the position of the refrigerator conveniently.
[0022] Optionally, the support seat comprises a plug-in column, a support column and a base, the plug-in column, the support column and the base are sequentially and end-to-end connected, an end of the plug-in column away from the support column is threadedly connected to the x bottom, an end surface of the base away from the support column is used for abutting against the ground, and a diameter of the base is greater than a diameter of the support column.
[0023] By adopting the technical scheme, the diameter of the base is greater than the diameter of the support column, the abutting area of the base and the ground is increased, the pressure of the base on the ground is reduced, the base is not easily worn after long-term use, and the service life of the refrigerator is further improved.
[0024] Optionally, the dustproof partition plate is further provided, the dustproof partition plate is used for shielding the top of the upper cabinet body, the top of the upper cabinet body is provided with a clamping strip, and an outer wall of the clamping strip abuts against an outer wall of the dustproof partition plate and limits the dustproof partition plate on the top of the upper cabinet body.
[0025] By adopting the technical scheme, when the outer wall of the dustproof partition plate abuts against the outer wall of the clamping strip, the dustproof partition plate shields the top of the upper cabinet body, dust in the air is not easily introduced into the inner cavity of the upper cabinet body from the top of the upper cabinet body, and parts in the upper cabinet body are not easily damaged, and therefore, the service life of the refrigerator is improved.
[0026] In summary, the application has at least one of the following beneficial technical effects:
[0027] 1. The limiting block and the support seat are arranged, the upper cabinet body and the lower cabinet body are disassembled, the transport personnel conveniently pack and transport the upper cabinet body and the lower cabinet body respectively, and therefore, the transportation cost of the refrigerator is reduced.
[0028] 2. The limiting block and the positioning groove are arranged, the limiting block guides the limiting plate to limit the support seat in the plug-in groove, and therefore, the stability of the splicing of the upper cabinet body and the lower cabinet body is improved.
[0029] 3. The arrangement of the first protective plate, the second protective plate and the third protective plate increases the tightness of the connection between the upper cabinet and the lower cabinet, and improves the connection stability of the upper cabinet and the lower cabinet. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 is a schematic diagram of the overall structure of Embodiment 1 of the present application.
[0031] Figure 2 is an exploded view of Embodiment 1 of the present application, mainly showing the locking assembly.
[0032] Figure 3 is an exploded view of Embodiment 1 of the present application, mainly showing the protective assembly.
[0033] Figure 4 is an exploded view of Embodiment 1 of the present application, mainly showing the top cover.
[0034] Figure 5 is a schematic diagram of the overall structure of the bracket in Embodiment 2 of the present application.
[0035] Figure 6 is a sectional view of the bracket in Embodiment 2 of the present application.
[0036] BRIEF DESCRIPTION OF DRAWINGS: 1, upper cabinet; 11, door body; 12, dustproof partition; 13, clamping strip; 131, sliding groove; 2, lower cabinet; 3, locking assembly; 31, support seat; 311, plug-in column; 312, support column; 3121, fixed ring groove; 313, base; 32, limiting block; 321, insertion slot; 322, sliding slot; 4, top cover; 41, accommodating groove; 42, communication groove; 43, positioning groove; 44, abutting block; 441, clamping section; 442, fixed section; 45, wireless charging module; 46, mounting groove; 5, limiting plate; 51, positioning block; 52, clamping groove; 521, first reinforcing rib; 6, protective assembly; 61, first protective plate; 62, second protective plate; 621, positioning plate; 63, third protective plate; 631, protective gap; 632, second reinforcing rib; 7, bracket; 71, roller; 711, fan blade; 72, support groove; 73, air cavity; 731, piston; 732, gas flow channel; 733, elastic member; 74, moving slot; 75, accommodating cavity; 76, through groove; 8, fixing assembly; 81, fixed half ring; 811, accommodating gap; 9, limiting assembly; 91, first rack; 911, guide surface; 92, gear; 93, second rack; 931, fixed groove; 932, sliding block. DETAILED DESCRIPTION
[0037] The following will be described in detail in combination with the accompanying Figures 1-6 The present application will be further described in detail.
[0038] Embodiment 1
[0039] Embodiment 1 of the present application discloses a full-embedded upper and lower combined intelligent remote control refrigerator. Figure 1 and Figure 2 A full-embedded upper and lower combined intelligent remote control refrigerator comprises an upper cabinet body 1, a lower cabinet body 2, and a locking assembly 3 for connecting the upper cabinet body 1 and the lower cabinet body 2, and the upper cabinet body 1 and the lower cabinet body 2 are both used for refrigeration.
[0040] Referring to Figure 2 , the locking assembly 3 comprises a plurality of support seats 31 and a plurality of limiting blocks 32, the support seat 31 is used for supporting the upper cabinet body 1 or the lower cabinet body 2, and in the embodiment of the present application, the number of support seats 31 is eight, four support seats 31 are threadedly connected at the bottom of the upper cabinet body 1, and the support seats 31 are located at the four corners of the upper cabinet body 1, and the other four support seats 31 are threadedly connected at the bottom of the lower cabinet body 2, and the support seats 31 are located at the four corners of the lower cabinet body 2.
[0041] Referring to Figure 2 , the support seat 31 comprises a plug-in column 311, a support column 312, and a base 313, which are coaxially fixed in sequence, and in the embodiment of the present application, the plug-in column 311, the support column 312, and the base 313 are integrally formed and fixed, the outer wall of the plug-in column 311 is threadedly connected to the bottom wall of the lower cabinet body 2 or the bottom wall of the upper cabinet body 1, thereby fixing the support seat 31 and the lower cabinet body 2 or the upper cabinet body 1, and the outer wall of the base 313 away from the support column 312 is used for abutting against the ground, so that the bottom wall of the lower cabinet body 2 or the bottom wall of the upper cabinet body 1 is not easy to be damaged by friction with the ground, thereby improving the service life of the refrigerator.
[0042] Referring to Figure 2 , in the embodiment of the present application, the number of limiting blocks 32 is eight, the top wall of the upper cabinet body 1 and the top wall of the lower cabinet body 2 are detachably connected with a top cover 4, and in the embodiment of the present application, the top cover 4 is fixed on the top wall of the upper cabinet body 1 and the top wall of the lower cabinet body 2 by bolts, four limiting blocks 32 are fixed on the top wall of the upper cabinet body 1 through the top cover 4, and the other four limiting blocks 32 are fixed on the top wall of the lower cabinet body 2 through the top cover 4, the outer wall of the top cover 4 is provided with four accommodating grooves 41 for accommodating the limiting blocks 32, and the four accommodating grooves 41 are located at the four corners of the top cover 4, and in the embodiment of the present application, the limiting blocks 32 are integrally formed or welded and fixed on the inner wall of the accommodating grooves 41, the side wall of the limiting block 32 is provided with a plug-in slot 321 for sliding of the base 313, the plurality of plug-in slots 321 are the same in depth, and the top wall of the limiting block 32 is provided with a sliding slot 322 for sliding of the support column 312, and the sliding slot 322 is communicated with the plug-in slot 321.
[0043] Referring to Figure 2When the bottom wall of the upper cabinet 1 abuts against the top wall of the lower cabinet 2, the support seat 31 on the bottom wall of the upper cabinet 1 corresponds to the limiting block 32 on the top wall of the lower cabinet 2, the outer wall of the base 313 abuts against the inner wall of the slot 321 and slides along the depth of the slot 321 to the upper cabinet 1 abutting against the lower cabinet 2, realizing the installation of the upper cabinet 1 and the lower cabinet 2, thereby saving the floor space of the refrigerator.
[0044] Referring to Figure 2 The upper cabinet 1 and the lower cabinet 2 are provided with storage cavities for storing foodstuffs, and the upper cabinet 1 and the lower cabinet 2 are rotationally connected with a door body 11 for closing the storage cavities, the top wall of the upper cabinet 1 and the top wall of the lower cabinet 2 are detachably connected with a limiting plate 5, the limiting plate 5 is fixed on the top wall of the upper cabinet 1 or the top wall of the lower cabinet 2 through a top cover 4, the outer wall of the top cover 4 away from the door body 11 is provided with a communication slot 42 for accommodating the limiting plate 5, and the communication slot 42 communicates with the slot 321, and in the embodiment of the application, the limiting plate 5 is threadedly connected with the inner wall of the communication slot 42, thereby realizing the fixation of the limiting plate 5 on the upper cabinet 1 or the lower cabinet 2.
[0045] Referring to Figure 2 When the limiting plate 5 is located in the communication slot 42, the outer wall of the limiting plate 5 closes the slot 321 and limits the support seat 31 in the limiting block 32, so that the base 313 is not easy to slide along the depth direction of the slot 321, thereby realizing the fixation of the upper cabinet 1 and the lower cabinet 2.
[0046] Referring to Figure 3 And Figure 2 The outer wall of the limiting plate 5 away from the top cover 4 is fixed with a plurality of positioning blocks 51, the top wall of the top cover 4 is provided with a plurality of positioning slots 43 for accommodating the positioning blocks 51, the positioning slots 43 correspond to the positioning blocks 51, and the top wall of the top cover 4 is fixed with a plurality of abutting blocks 44 for limiting the limiting plate 5 on the top cover 4, the abutting block 44 comprises a clamping section 441 and a fixed section 442 which are fixed in sequence, the length direction of the clamping section 441 is perpendicular to the length direction of the fixed section 442, and the clamping section 441 is located above the positioning slot 43.
[0047] Referring to Figure 3 And Figure 2 The outer wall of the limiting plate 5 away from the fixed section 442 is provided with a clamping slot 52 for accommodating the clamping section 441, the length direction of the clamping slot 52 is the same as the length direction of the limiting plate 5, when the positioning block 51 is located in the positioning slot 43, the outer wall of the clamping section 441 abuts against the inner wall of the clamping slot 52 and limits the positioning block 51 in the positioning slot 43, thereby further improving the connection stability of the limiting plate 5 and the top cover 4.
[0048] Referring to Figure 4A plurality of first reinforcing ribs 521 are fixed to the inner wall of the clamping groove 52, the arrangement direction of the plurality of first reinforcing ribs 521 is the same as the length direction of the clamping groove 52, the first reinforcing ribs 521 improve the structural strength of the limiting plate 5, the limiting plate 5 is not easy to deform under stress, and the stability of the fixing of the upper cabinet body 1 and the lower cabinet body 2 is further improved.
[0049] With reference to Figure 4 The top cover 4 is connected with a wireless charging module 45, the wireless charging module 45 is used for power supply for other electronic devices, the wireless charging module 45 and the power supply are communicated through a wire, and the outer wall of the top cover 4 is provided with a mounting groove 46 for accommodating the wireless charging module 45, the wireless charging module 45 is fixed to the inner wall of the mounting groove 46, so that the wireless charging module 45 is embedded in the top cover 4, the user is not easy to collide with the wireless charging module 45 during use, and the service life of the wireless charging module 45 is improved.
[0050] With reference to Figure 4 The upper cabinet body 1 is connected with a dustproof partition plate 12 for shielding the top cover 4, the top wall of the upper cabinet body 1 is fixed with two clamping strips 13, the two clamping strips 13 are located at opposite edges of the upper cabinet body 1, one of the clamping strips 13 is fixed to the limiting plate 5 in the embodiment of the application, and the other clamping strip 13 is fixed to the top cover 4, the clamping strip 13 and the limiting plate 5 and the clamping strip 13 and the top cover 4 are provided with sliding grooves 131 for sliding of the dustproof partition plate 12, the length direction of the sliding groove 131 is the same as the length direction of the limiting plate 5, the dustproof partition plate 12 slides along the length direction of the sliding groove 131 to shield the top cover 4, so that dust is not easy to enter the wireless charging module 45, and the service life of the wireless charging module 45 is improved; meanwhile, the inner wall of the sliding groove 131 abuts against the outer wall of the dustproof partition plate 12, so that the dustproof partition plate 12 is not easy to displace on the top wall of the upper cabinet body 1, and the fixing stability of the dustproof partition plate 12 and the upper cabinet body 1 is improved.
[0051] With reference to Figure 2 The material of the dustproof partition plate 12 in the embodiment of the application is glass, the user can clearly observe the internal structure of the top cover 4, and the dustproof partition plate 12 does not need to be disassembled.
[0052] With reference to Figure 3 and Figure 2 The upper cabinet body 1 and the lower cabinet body 2 are connected with a protection assembly 6, the protection assembly 6 is used for shielding the supporting seat 31 and the limiting block 32, the protection assembly 6 comprises a first protection plate 61, a second protection plate 62 and a third protection plate 63, the first protection plate 61, the second protection plate 62 and the third protection plate 63 are detachably connected to the lower cabinet body 2 through the top cover 4, and the first protection plate 61, the second protection plate 62 and the third protection plate 63 are fixed to the circumferential edge of the top cover 4 through bolts in the embodiment of the application.
[0053] With reference to Figure 3 and Figure 2, the limiting plate 5 and the second protective plate 62 are located on opposite edges of the top cover 4, the third protective plate 63 and the first protective plate 61 are located on opposite edges of the top cover 4, and the limiting plate 5, the first protective plate 61, the second protective plate 62 and the third protective plate 63 are sequentially abutted at the ends, the second protective plate 62 is fixed with a positioning plate 621 on the outer wall facing the first protective plate 61 and the third protective plate 63, and the positioning plate 621 is integrally formed or welded on the second protective plate 62 in the embodiment of the application, the end of the positioning plate 621 protrudes away from the second protective plate 62, and the protruding direction of the positioning plate 621 is perpendicular to the length direction of the second protective plate 62.
[0054] With reference to Figure 3 and Figure 2 When the outer wall of the positioning plate 621 abuts against the outer wall of the first protective plate 61 and the outer wall of the third protective plate 63 one by one, the first protective plate 61 and the third protective plate 63 are limited to the edges of the top cover 4, so that the staff can conveniently fix the first protective plate 61 and the third protective plate 63 on the edges of the top cover 4 by bolts, without the need for the staff to align the first protective plate 61 and the third protective plate 63 with the top cover 4 for fixing.
[0055] With reference to Figure 3 and Figure 3 The limiting plate 5, the second protective plate 62, the first protective plate 61 and the third protective plate 63 form a protective gap 631 for accommodating the locking assembly 3, and the outer walls of the limiting plate 5, the first protective plate 61, the second protective plate 62 and the third protective plate 63 abut against the top wall of the lower cabinet body 2 and the bottom wall of the upper cabinet body 1 to form a seal, so that dust is not easy to enter the protective gap 631 from the connection between the upper cabinet body 1 and the lower cabinet body 2, thereby reducing the frequency of cleaning the refrigerator by the user.
[0056] With reference to Figure 2 The outer walls of the first protective plate 61, the second protective plate 62 and the third protective plate 63 are fixed with a plurality of second reinforcing ribs 632, the arrangement direction of the plurality of second reinforcing ribs 632 is the same as the length direction of the respective protective plate, so that the first protective plate 61, the second protective plate 62 and the third protective plate 63 are not easy to deform under stress, thereby further improving the stability of the fixing of the upper cabinet body 1 and the lower cabinet body 2.
[0057] With reference to Figure 3 and Figure 2, the bottom wall of the lower cabinet 2 and the bottom wall of the upper cabinet 1 are detachably connected with a support 7, in the embodiment of the application, the support 7 is fixed on the lower cabinet 2 or the upper cabinet 1 through bolts, so that the user can detach easily, the support 7 is located on the side of the lower cabinet 2 or the upper cabinet 1 away from the door body 11, the support 7 is rotatably connected with two rollers 71, the two rollers 71 are located at the two ends of the length direction of the support 7, the roller 71 is in rolling contact with the ground, when the support seat 31 is fixed on the bottom wall of the upper cabinet 1 and the bottom of the lower cabinet 2, the lowest end of the roller 71 is higher than the lowest end of the support seat 31, the height of the support seat 31 limits the roller 71 from rolling on the ground, so as to improve the limiting stability of the user using the refrigerator.
[0058] With reference to Figure 3 and Figure 5 , the side wall of the support 7 away from the door body 11 is provided with a support groove 72, the depth direction of the support groove 72 and the length direction of the support 7 are perpendicular to each other, the length direction of the support groove 72 and the length direction of the support 7 are parallel to each other, the inner wall of the support groove 72 is used for the user to step on, when the user unscrews the two support seats 31 away from the door body 11, the limiting effect of the support seat 31 on the roller 71 disappears, the roller 71 is in rolling contact with the ground, the user steps on the inner wall of the support groove 72, so that the support seat 31 close to the door body 11 rotates away from the ground, so that the friction of the support seat 31 on the ground disappears, thereby facilitating the movement of the staff to the refrigerator.
[0059] The implementation principle of the full-embedded upper and lower combined intelligent remote control refrigerator in the embodiment 1 of the application is that: the user stacks the bottom wall of the upper cabinet 1 on the top wall of the lower cabinet 2, the support seat 31 on the bottom wall of the upper cabinet 1 is one-to-one corresponding to the limiting block 32 on the top wall of the lower cabinet 2, the outer wall of the base 313 abuts against the inner wall of the insertion groove 321 and slides along the depth of the insertion groove 321 to the lower cabinet 2, the limiting plate 5 is fixed on the top wall of the lower cabinet 2 through bolts and the outer wall of the limiting plate 5 closes the insertion groove 321, so that the support seat 31 is limited in the limiting block 32, thereby realizing the fixation of the upper cabinet 1 and the lower cabinet 2.
[0060] When the refrigerator needs to be transported, the bolts on the limiting plate 5 are unscrewed, so that the limiting plate 5 is separated from the lower cabinet 2, and the sealing effect of the limiting plate 5 on the insertion groove 321 disappears, the support seat 31 slides along the depth of the insertion groove 321 to separate the upper cabinet 1 from the lower cabinet 2, thereby realizing the separation of the upper cabinet 1 and the lower cabinet 2, the transport personnel transports the upper cabinet 1 and the lower cabinet 2 separately, so that the upper cabinet 1 and the lower cabinet 2 are not easy to knock during transportation, and the transportation cost of the refrigerator is reduced.
[0061] Embodiment 2
[0062] With reference to Figure 6 and Figure 5The embodiment 2 is different from the embodiment 1 in that the air cavity 73 is arranged in the support 7, the length direction of the air cavity 73 is the same as the length direction of the support 7, the outer wall of the support 7 facing the roller 71 is provided with two moving grooves 74 for the sliding of the support column 312, the moving grooves 74 are located at the two ends of the length direction of the support 7, and the moving grooves 74 are communicated with the air cavity 73.
[0063] With reference to Figure 6 And Figure 6 The fixing assembly 8 for locking the support base 31 is rotationally connected to the outer wall of the support 7 facing the roller 71, the fixing assembly 8 comprises two fixing half-rings 81 rotationally connected to the outer wall of the support 7, the rotation axis of the fixing half-rings 81 is perpendicular to the length direction of the support 7, the two fixing half-rings 81 are located below the moving grooves 74, and the fixing half-rings 81 are provided with an accommodation gap 811 between the two fixing half-rings 81 for accommodating the support column 312, the outer wall of the support column 312 is provided with a plurality of fixing ring grooves 3121 for accommodating the fixing half-rings 81, and the length direction of the fixing ring grooves 3121 is the same as the length direction of the support column 312.
[0064] With reference to Figure 5 When the fixing half-rings 81 are rotated to the direction close to the support column 312 and the outer wall of the fixing half-rings 81 abuts against the inner wall of the fixing ring grooves 3121, the base 313 is limited on the outer wall of the support 7, so that the outer wall of the base 313 abuts against the ground.
[0065] With reference to Figure 6 And Figure 5 The piston 731 is slidably connected to the inner wall of the air cavity 73, the outer wall of the piston 731 abuts against the inner wall of the air cavity 73, the two support columns 312 are fixed at the two ends of the length direction of the piston 731, the inner wall of the air cavity 73 is provided with a gas flow channel 732 for the flow of the gas in the air cavity 73, the gas flow channel 732 penetrates through the outer wall of the support 7, the end of the gas flow channel 732 away from the air cavity 73 faces the roller 71, a plurality of fan blades 711 are coaxially fixed to the side wall of the roller 71, the piston 731 slides in the air cavity 73 and drives the gas in the air cavity 73 to flow out from the gas flow channel 732, and the gas drives the fan blades 711 to rotate, so as to facilitate the user to directly observe whether the roller 71 is damaged.
[0066] With reference to Figure 6 And Figure 5 A plurality of elastic members 733 are fixed to the inner wall of the air cavity 73, the arrangement direction of the plurality of elastic members 733 is the same as the length direction of the support 7, one end of the elastic force direction of the elastic member 733 is fixed to the inner wall of the air cavity 73, the other end of the elastic force direction of the elastic member 733 is fixed to the outer wall of the piston 731 away from the support column 312, the elastic member 733 in the embodiment of the application is a spring and has a certain deformation capacity, and the elastic force of the elastic member 733 drives the piston 731 to slide away from the moving grooves 74.
[0067] With reference toFigure 6 And Figure 5 The support 7 is connected with a limiting assembly 9 for limiting the support seat 31. The support 7 is provided with a containing cavity 75 for containing the limiting assembly 9. The containing cavity 75 is located at both ends of the support 7 in the length direction, and the containing cavity 75 is communicated with the air cavity 73. The limiting assembly 9 comprises a first rack 91, a gear 92 and a second rack 93. The gear 92 is rotationally connected to the inner wall of the containing cavity 75. The first rack 91 and the second rack 93 are located on both sides of the gear 92, and the first rack 91 and the second rack 93 are engaged with the gear 92. The second rack 93 is located on the side of the gear 92 close to the roller 71.
[0068] Referring to Figure 6 And Figure 5 The second rack 93 is provided with a fixing groove 931 for containing the base 313 on the outer wall of the piston 731. The first rack 91 is a guide surface 911 on the outer wall of the piston 731. The guide surface 911 is inclinedly arranged towards the direction close to the elastic member 733. The guide surface 911 abuts against the outer wall of the piston 731. The second rack 93 is fixed with a sliding block 932 on the outer wall away from the gear 92. The support 7 is provided with a through groove 76 for the sliding block 932 to slide. The length direction of the through groove 76 and the length direction of the second rack 93 are parallel to each other. The through groove 76 is communicated with the air cavity 73. The end of the sliding block 932 away from the second rack 93 penetrates the through groove 76 and protrudes from the support 7.
[0069] Referring to Figure 6 And Figure 5 Figure 6 When the fixing half ring 81 is rotated to the direction away from the support column 312 to the fixing half ring 81 is separated from the fixing ring groove 3121, the limiting effect of the support seat 31 on the support 7 disappears. The pressure of the lower cabinet body 2 drives the support column 312 to slide to the direction close to the support 7. The outer wall of the piston 731 abuts against the guide surface 911 and drives the first rack 91 to slide to the direction away from the support column 312. The gear 92 rotates and drives the second rack 93 to slide to the direction close to the support column 312 to the inner wall of the fixing groove 931 abutting against the outer wall of the base 313, thereby limiting the base 313. The support 7 comprises two mounting plates. The plate surfaces of the two mounting plates abut against each other and form the air cavity 73. When the staff installs the piston 731, the first rack 91, the second rack 93 and the gear 92 on one of the mounting plates in sequence, and welds and fixes the other mounting plate on the plate surface of the mounting plate to form the support 7.
[0070] The implementation principle of the embodiment 2 is that when the refrigerator needs to be moved, the fixing half ring 81 is rotated to the direction away from the support column 312 to the fixing half ring 81 is separated from the fixing ring groove 3121. The pressure of the lower cabinet body 2 drives the support column 312 to slide to the direction close to the support 7. The piston 731 slides to the direction close to the lower cabinet body 2. The gas in the air cavity 73 is discharged from the gas flow channel 732. The gas drives the fan blade 711 to rotate, thereby facilitating the user to directly observe whether the roller 71 is damaged.
[0071] When the lowest end of the roller 71 and the lowest end of the support base 31 are flush, the elastic member 733 drives the support column 312 to slide towards the direction of approaching the support 7, the outer wall of the piston 731 abuts against the guide surface 911 and drives the first rack 91 to slide away from the support column 312, the gear 92 rotates and drives the second rack 93 to slide towards the direction of approaching the support column 312 to the inner wall of the fixed groove 931 abutting against the outer wall of the base 313, so as to realize the fixation of the support base 31.
[0072] When the refrigerator is moved to the appropriate position, the user slides the slider 932 away from the support column 312, the gear 92 rotates and drives the first rack 91 to slide towards the direction of approaching the support column 312, the guide surface 911 abuts against the end surface of the piston 731 and drives the support column 312 to slide towards the ground direction to the lowest end of the support base 31 and the lowest end of the roller 71 flush, the user steps on the base 313 and drives the support base 31 to slide towards the ground direction to the appropriate height, the fixed half ring 81 rotates towards the direction of approaching the support column 312 to the outer wall of the fixed half ring 81 abutting against the inner wall of the fixed ring groove 3121, so as to realize the limiting of the support base 31 on the support 7.
[0073] The above are the preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: all equivalent changes made on the structure, shape, principle of the present application shall be covered within the protection scope of the present application.
Claims
1. A fully integrated upper and lower combined intelligent remote control refrigerator, comprising an upper cabinet (1) and a lower cabinet (2) for refrigeration, characterized in that: It also includes a locking component (3), which is used to connect the upper cabinet (1) and the lower cabinet (2). The locking component (3) includes multiple support bases (31) disposed at the bottom of the upper cabinet (1) and multiple limiting blocks (32) disposed at the top of the lower cabinet (2). The limiting blocks (32) face the support bases (31) one by one. Each of the multiple limiting blocks (32) has a slot (321) on its side wall for the support bases (31) to slide. The multiple slots (321) are the same in depth direction. The lower cabinet (2) has a detachable limit plate (5) at its top, which is used to limit the support base (31) within the slot (321). The lower cabinet (2) has a detachable bracket (7) at its bottom, and a roller (71) is rotatably connected to the outer wall of the bracket (7). The roller (71) has a wheel surface that makes rolling contact with the ground. The support base (31) includes a plug-in post (311), a support post (312), and a base (313). The plug-in post (311) and the support post (312) are... The base (313) is coaxially fixed at its ends. An air chamber (73) is provided inside the bracket (7). A sliding groove (74) for the support column (312) to slide along the outer wall of the bracket (7) facing the roller (71) is provided. The sliding groove (74) communicates with the air chamber (73). A piston (731) is slidably connected to the inner wall of the air chamber (73). The outer wall of the piston (731) abuts against the inner wall of the air chamber (73). Two support columns (312) are fixed at both ends along the length of the piston (731). The inner wall of the air chamber (73) is provided with a gas flow channel (732) for the gas to flow in the air chamber (73). The gas flow channel (732) passes through the outer wall of the support (7). The end of the gas flow channel (732) away from the air chamber (73) faces the roller (71). Multiple fan blades (711) are coaxially fixed on the side wall of the roller (71). The piston (731) slides in the air chamber (73) and drives the gas in the air chamber (73) to be discharged from the gas flow channel (732). The gas drives the fan blades (711) to rotate.
2. The fully embedded upper and lower combined intelligent remote control refrigerator according to claim 1, characterized in that: The outer wall of the limiting plate (5) is provided with a positioning block (51), and the top wall of the lower cabinet (2) is provided with a positioning groove (43) for accommodating the positioning block (51). When the positioning block (51) is located in the positioning groove (43), the positioning block (51) guides the limiting plate (5) to limit the support seat (31) in the slot (321).
3. The fully embedded upper and lower combined intelligent remote control refrigerator according to claim 2, characterized in that: The lower cabinet (2) has an abutment block (44) on its top wall. The outer wall of the abutment block (44) abuts against the outer wall of the limiting plate (5) and limits the positioning block (51) to the positioning groove (43).
4. The fully embedded upper and lower combined intelligent remote control refrigerator according to claim 1, characterized in that: It also includes a protective component (6) for shielding the connection between the support base (31) and the limiting block (32). The protective component (6) includes a first protective plate (61), a second protective plate (62) and a third protective plate (63). The first protective plate (61), the second protective plate (62) and the third protective plate (63) are detachably connected to the top circumferential edge of the lower cabinet (2). A protective gap (631) for accommodating the locking component (3) is formed between the first protective plate (61), the second protective plate (62), the third protective plate (63) and the limiting plate (5).
5. A fully embedded, top-and-bottom combined intelligent remote control refrigerator according to claim 4, characterized in that: The first protective plate (61) and the third protective plate (63) are located at opposite edges of the lower cabinet (2), and the second protective plate (62) and the limiting plate (5) are located at opposite edges of the lower cabinet (2). The second protective plate (62) is provided with positioning plates (621) on the outer wall facing the first protective plate (61) and the third protective plate (63). The outer wall of the positioning plate (621) is abutted against the outer wall of the first protective plate (61) and the outer wall of the third protective plate (63) respectively, and the first protective plate (61) and the third protective plate (63) are limited to the top wall of the lower cabinet (2).
6. A fully embedded, top-and-bottom combined intelligent remote control refrigerator according to claim 1, characterized in that: The support base (31) is threaded to the bottom of the lower cabinet (2), and the bottom of the support base (31) is used to support the ground.
7. A fully embedded, top-and-bottom combined intelligent remote control refrigerator according to claim 6, characterized in that: The lowest end of the roller (71) is higher than the lowest end of the support base (31).
8. A fully embedded, top-and-bottom combined intelligent remote control refrigerator according to claim 7, characterized in that: The bracket (7) has a support groove (72), and the inner wall of the support groove (72) is used for the user to step on.
9. A fully embedded, top-bottom combined intelligent remote control refrigerator according to claim 6, characterized in that: The support base (31) includes a plug-in post (311), a support post (312), and a base (313). The plug-in post (311), the support post (312), and the base (313) are connected at their ends in sequence. The end of the plug-in post (311) away from the support post (312) is threaded to the bottom of the lower cabinet (2). The end face of the base (313) away from the support post (312) is used to abut against the ground. The diameter of the base (313) is larger than the diameter of the support post (312).
10. A fully embedded, top-and-bottom combined intelligent remote control refrigerator according to claim 1, characterized in that: It also includes a dustproof partition (12), which is used to cover the top of the upper cabinet (1). The top of the upper cabinet (1) is provided with a clip (13), the outer wall of the clip (13) abuts against the outer wall of the dustproof partition (12) and limits the dustproof partition (12) to the top of the upper cabinet (1).
Citation Information
Patent Citations
Furniture installation fixing base
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Be applied to base mechanism of refrigerator
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Combined refrigerator
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