Mounting structure of ceiling machine panel and shell and ceiling machine with same
By introducing a sliding fit structure between the first sliding plate and the mounting part, and a spring-loaded limit design into the ceiling machine, the problem of difficult assembly and disassembly of the panel and the housing is solved, achieving an efficient installation and disassembly process and reducing production costs.
Patent Information
- Application Number
- CN202311405740.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-27
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-10-27
AI Technical Summary
In existing technologies, the installation and disassembly of the ceiling-mounted unit panel and the housing are not easy, resulting in low installation efficiency.
The first sliding plate and the first mounting part adopt a sliding fit structure. The design of the hoist hole allows the mounting hole diameter to be changed, which makes it easy for the mounting bolts to pass through. The spring buckle and the limiting structure ensure the fixation of the panel and the shell, simplifying the operation process.
It improves the efficiency of disassembling and assembling the ceiling machine panel and housing, simplifies the installation process, and reduces production costs.
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Figure CN119934670B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of ceiling machine, in particular to a ceiling machine panel and shell mounting structure and a ceiling machine with the same. BACKGROUND
[0002] Ceiling machine is an air conditioner hung on the ceiling, which can be perfectly matched with home decoration and is elegant and high-end. Ceiling machine can blow air in four directions, which is suitable for large space and space with high floor height, and is generally installed in supermarkets, large open space offices, conference rooms, restaurants and living rooms.
[0003] Ceiling machine usually includes a shell and a panel, the shell is installed on the ceiling through a lifting lug, and the lifting lug is connected to the ceiling panel by screws or bolts. Since the panel is large in size and heavy in weight, the operator needs to hold the panel assembly by hand to disassemble or install it. When installing, the bolt and the corresponding mounting hole on the panel are not easy to align, resulting in low installation efficiency. In addition, since the ceiling machine is usually hung on the ceiling, the panel needs to be removed during after-sales installation and maintenance. The connection structure of the panel and the shell in the prior art is not easy to disassemble, which affects the installation and disassembly efficiency. SUMMARY
[0004] The problem solved by the present application is that the panel and shell of the ceiling machine are not easy to disassemble in the prior art.
[0005] To solve the above problems, the present application discloses a ceiling machine panel and shell mounting structure, comprising:
[0006] An installation bolt is arranged on the shell and used for fixed connection with the panel;
[0007] A first installation part is arranged at the four corners of the ceiling machine panel, and a first installation hole is arranged on the first installation part. The first end of the installation bolt can pass through the first installation hole to cooperate with the installation of the panel and the shell;
[0008] A first pull slide is movably arranged on the first installation part, and a gourd hole is arranged on the first pull slide. The gourd hole includes a large hole part and a small hole part in communication. The first pull slide can move between a passing position and a fixing position relative to the first installation part. When the first pull slide moves to the passing position, the large hole part corresponds to the first installation hole, and the first end of the installation bolt can pass through the first installation hole and the large hole part. When the first pull slide moves to the fixing position, the small hole part corresponds to the first installation hole, and the small hole part can be fixed with the installation bolt.
[0009] The first installation hole can be much larger than the diameter of the installation bolt through the first pull slide and the gourd hole, so that the installation bolt can quickly pass through the first installation hole, greatly saving the installation time of the panel and the shell, and improving the disassembly and assembly efficiency of the panel and the shell
[0010] Further, a first guide structure is arranged between the first installation part and the first pull slide, and the first pull slide moves along the first guide structure between the passing position and the fixing position.
[0011] The first guide structure is used for limiting and guiding the movement of the first pull slide, avoiding the skewing of the first pull slide during movement, so as to ensure the corresponding relationship between the large hole part and the small hole part of the gourd hole and the first installation hole, and improve the installation efficiency of the panel and the shell.
[0012] Further, the first guide structure includes a first screw hole, a first limiting screw and a first guide slot, the first limiting screw is connected with the first screw hole after passing through the first guide slot, and the first nut diameter of the first limiting screw is larger than the width of the first guide slot.
[0013] Through the above arrangement, the first pull slide moves between the passing position and the fixing position under the cooperation of the first limiting screw and the first guide slot, avoiding the skewing of the first pull slide during movement, and ensuring the smooth cooperation and installation of the panel and the shell.
[0014] Further, a first limiting structure is arranged between the first installation part and the first pull slide, and the first limiting structure is used for limiting the first pull slide in the passing position and / or the fixing position.
[0015] Through the arrangement of the first limiting structure, the first pull slide can be limited with the first installation part in the passing position or the fixing position, avoiding self-displacement, and ensuring the smooth operation of personnel.
[0016] Further, the first limiting structure includes a spring buckle, a first limiting part and a second limiting part, when the first pull slide is located in the passing position, the spring buckle is limited with the second limiting part, and when the first pull slide is located in the fixing position, the spring buckle is limited with the first limiting part.
[0017] The spring buckle can be deformed when the first pull slide moves, so as to be popped out for limiting when the first pull slide reaches the expected working position, and the limiting of the two working positions of the first pull slide can be realized through one spring buckle, which is simple and convenient.
[0018] Further, the spring buckle is arranged on the first installation part, and the first limiting part and the second limiting part are arranged on the first pull slide.
[0019] The setting on the first mounting part can be integrally formed by injection molding, which is simple and convenient, and can significantly reduce the production cost of the corresponding parts.
[0020] Further, the elastic buckle comprises an elastic buckle groove and an elastic strip, the elastic strip is arranged in the elastic buckle groove, and the elastic strip partially protrudes from the elastic buckle groove, the protruding part of the elastic strip can be compressed and deformed to shrink in the direction of the elastic buckle groove when the first pull slide moves, and the protruding part of the elastic strip can be popped out and matched with the first limiting part or the second limiting part to limit when the first pull slide reaches a predetermined working position.
[0021] The elastic buckle structure is simple and reliable, and the elastic buckle groove and the elastic strip can be integrally injection molded with the first mounting part, which simplifies the production process and reduces the production cost.
[0022] Further, the first limiting part is one of a limiting hole, a limiting groove, and a limiting protrusion; and the second limiting part is one of a limiting hole, a limiting groove, a limiting protrusion, and a limiting edge plate.
[0023] The limiting edge plate is an edge plate close to the large hole part and away from the small hole part, and since the edge plate does not need to be provided with other structures away from the small hole part, the edge plate can be directly used as the second limiting part, which can save the material of the first pull slide and simplify the production process and reduce the production cost.
[0024] Further, the first pull slide comprises a first pull slide body, a first folding part is arranged at one end of the first pull slide body, the first folding part is folded away from the first mounting part, and the first folding part is used for pulling the first pull slide to move.
[0025] The first folding part is arranged to facilitate an operator to grasp the first pull slide to move, so that the panel and the shell can be quickly assembled.
[0026] The application further discloses a ceiling machine, the ceiling machine comprises the mounting structure of the panel and the shell of the ceiling machine, and detachable corner cover plates are arranged at four corners of the panel.
[0027] The corner cover plates are arranged to cover the corresponding mounting structure and play a role in decoration after the installation is completed.
[0028] Compared with the prior art, the mounting structure of the panel and the shell of the ceiling machine and the ceiling machine having the same have the following advantages:
[0029] The application achieves the change of the installation hole diameter when the panel and the shell are assembled by the sliding fit of the first pull slide and the first installation part, when passing through the position, the large hole part corresponds to the first installation hole, facilitating the installation bolt to pass through, when fixing the position, the small hole part corresponds to the first installation hole, so as to realize the relative fixation of the installation bolt and the panel, in addition, the positioning of the first pull slide when passing through the position and the fixed position is realized by the cooperation of the elastic buckle and the first limiting part and the second limiting part, avoiding the self-moving of the first pull slide affecting the operation during the installation or disassembly process. The application has the advantages of simple structure, convenient and fast installation, and improves the disassembly and assembly efficiency of the ceiling machine panel. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 The application discloses a panel and a shell assembled three-dimensional structure schematic diagram;
[0031] Figure 2 The application discloses a panel and a shell assembled side view;
[0032] Figure 3 The application discloses a Figure 2 sectional structure schematic diagram of A-A part;
[0033] Figure 4 The application discloses a Figure 3 local enlarged schematic diagram of C part;
[0034] Figure 5 The application discloses a Figure 2 sectional structure schematic diagram of B-B part;
[0035] Figure 6 The application discloses a Figure 5 local enlarged schematic diagram of D part, at this time, the first pull slide is in the fixed position;
[0036] Figure 7 The application discloses a Figure 5 local enlarged schematic diagram of E part, at this time, the first pull slide is in the passing-through position;
[0037] Figure 8 The application discloses a first pull slide three-dimensional structure schematic diagram;
[0038] Figure 9 The application discloses a panel three-dimensional structure schematic diagram;
[0039] Figure 10 The application discloses a Figure 9 local enlarged schematic diagram of F part;
[0040] Figure 11 The application discloses a Figure 9 local enlarged schematic diagram of G part;
[0041] Figure 12 This is a cross-sectional structural diagram of the first mounting part according to an embodiment of the present invention;
[0042] Figure 13 This is a schematic diagram of the structure in which the second sliding piece is fixed to the panel after the grille and panel are assembled according to an embodiment of the present invention;
[0043] Figure 14 This is a schematic diagram of the structure of the grille and panel assembly according to an embodiment of the present invention;
[0044] Figure 15 for Figure 14 A magnified view of the middle H section;
[0045] Figure 16 This is a three-dimensional structural diagram of the grille according to an embodiment of the present invention;
[0046] Figure 17 for Figure 16 A magnified view of a portion of the J-section;
[0047] Figure 18 for Figure 16 A magnified view of the middle K region;
[0048] Figure 19 This is a three-dimensional structural diagram of the second pull slider according to an embodiment of the present invention;
[0049] Figure 20 This is a three-dimensional structural diagram of the air guide plate according to an embodiment of the present invention;
[0050] Figure 21 This is a three-dimensional structural diagram of the air guide drive assembly described in an embodiment of the present invention;
[0051] Figure 22 This is a three-dimensional structural diagram of the air guide drive assembly described in an embodiment of the present invention from another angle;
[0052] Figure 23 This is a three-dimensional structural diagram of the air-guiding driven component described in an embodiment of the present invention.
[0053] Explanation of reference numerals in the attached figures:
[0054] 100-panel; 110-first mounting portion; 111-first limiting screw; 112-first mounting hole; 113-snap buckle; 1131-snap buckle slot; 1132-snap strip; 114-first screw hole; 120-second mounting portion; 121-hanging hole; 122-hanging stopper; 130-third mounting portion; 131-first screw column; 132-back plate; 133-first limiting plate; 134-first limiting slot; 135-first mounting slot; 136-first limiting table; 140-fourth mounting portion; 141-second screw hole; 142-first insertion slot; 143-second mounting slot; 150-second insertion slot; 200-housing; 210-mounting ear; 220-mounting bolt; 221-limiting nut; 300-corner cover plate; 400-air deflector; 410-first connecting column; 411-third insertion slot; 412-second limiting table; 500-grating; 510-grating hook; 511-connecting portion; 512-rotation shaft; 520-fifth mounting portion; 521-second limiting screw; 522-second screw column; 523-first guide plate; 524-second guide plate; 525-supporting plate; 526-through hole; 527-sliding slot; 528-limiting step; 600-first pull slide; 610-first pull slide body; 611-first guide slot; 612-first limiting portion; 613-second limiting portion; 614-large hole portion; 615-small hole portion; 620-first folding portion; 630-second folding portion; 700-air deflector driving assembly; 710-driving cover plate; 720-first side plate; 730-first positioning plate; 740-second connecting column; 741-insertion column; 750-limiting column; 760-second side plate; 770-driving member; 800-air deflector driven assembly; 810-driven cover plate; 820-insertion plate; 830-stop plate; 840-connecting slot; 850-second positioning plate; 900-second pull slide; 910-second pull slide body; 911-second guide slot; 912-clamping boss; 913-first guide portion; 914-second guide portion; 915-fifth limiting portion; 920-connecting plate; 921-pull slide handle. DETAILED DESCRIPTION
[0055] In order to make the objects, technical solutions and advantages of the present application clearer, the following further describes the present application with reference to the accompanying drawings and embodiments. It should be understood that the described embodiments are part of the embodiments of the present application, rather than all the embodiments. The specific embodiments described herein are only used to explain the present application, and are not used to limit the present application. It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.
[0056] The following specifically describes an installation structure of a ceiling machine panel and a housing and a ceiling machine with the same according to an embodiment of the present application with reference to the accompanying drawings.
[0057] Embodiment 1
[0058] The embodiment provides a mounting structure of a ceiling panel and a shell, as shown in the drawings, comprising: Figures 1-12
[0059] A mounting bolt 220 is arranged on the shell 200 and used for fixed connection with the panel 100.
[0060] A first mounting portion 110 is arranged at four corners of the ceiling panel 100, and a first mounting hole 112 is arranged on the first mounting portion 110, and a first end of the mounting bolt 220 can pass through the first mounting hole 112 to realize cooperative installation of the panel 100 and the shell 200.
[0061] A first pull slide 600 is movably arranged on the first mounting portion 110, and a gourd hole is arranged on the first pull slide 600, the gourd hole comprises a large hole part 614 and a small hole part 615 which are communicated, the first pull slide 600 can move between a passing position and a fixing position relative to the first mounting portion 110, when the first pull slide 600 moves to the passing position, the large hole part 614 corresponds to the first mounting hole 112, and the first end of the mounting bolt 220 can pass through the first mounting hole 112 and the large hole part 614; when the first pull slide 600 moves to the fixing position, the small hole part 615 corresponds to the first mounting hole 112, and the small hole part 615 is fixed with the mounting bolt 220.
[0062] In the prior art, the diameter of the mounting bolt 220 is slightly smaller than the first mounting hole 112, after passing through the first mounting hole 112, the cooperative installation of the panel 100 and the shell 200 is realized by cooperation and tightening of the limiting nut 221 and the mounting bolt 220, in this case, the diameter of the first mounting hole 112 needs to be greater than the diameter of the mounting bolt 220 and less than the outer diameter of the limiting nut 221, which leads to that the diameter of the first mounting hole 112 is slightly larger than the diameter of the mounting bolt 220, so that the mounting bolt 220 and the first mounting hole 112 are difficult to align during installation, which seriously affects the installation efficiency. In the embodiment, through the arrangement of the first pull slide 600 and the gourd hole, the diameter of the first mounting hole 112 can be much larger than the diameter of the mounting bolt 220, so as to facilitate the mounting bolt 220 to quickly pass through the first mounting hole 112, greatly saving the cooperative installation time of the panel 100 and the shell 200, and improving the dismounting efficiency of the panel 100 and the shell 200. The first mounting portion 110 is arranged at four corners of the panel 100.
[0063] As one of the optional embodiments, as shown in the drawings, Figure 6 , Figure 7 As shown, a first guide structure is arranged between the first mounting portion 110 and the first pull slide 600, and the first pull slide 600 moves along the first guide structure between a passing position and a fixing position. The first guide structure is used for limiting and guiding the movement of the first pull slide 600, avoiding the first pull slide 600 from being skewed during movement, so as to ensure the corresponding relationship between the large hole portion 614 and the small hole portion 615 in the gourd hole and the first mounting hole 112, and improve the mounting efficiency of the panel 100 and the shell 200.
[0064] Optionally, as Figure 6 、 Figure 7 、 Figure 8 、 Figure 10As shown, the first guide structure includes a first screw hole 114, a first limiting screw 111 and a first guide groove 611, the first limiting screw 111 is connected with the first screw hole 114 after passing through the first guide groove 611, and the first nut diameter of the first limiting screw 111 is greater than the width of the first guide groove 611. Wherein, the first screw hole 114 can be arranged on the first mounting portion 110, at this time, the first guide groove 611 is correspondingly arranged on the first pull slide 600, the first screw hole 114 can also be arranged on the first pull slide 600, at this time, the first guide groove 611 is correspondingly arranged on the first mounting portion 110, which will not be limited here. Through the above arrangement, the first pull slide 600 moves between the through position and the fixed position under the cooperation and limiting action of the first limiting screw 111 and the first guide groove 611, avoiding the skew of the first pull slide 600 during movement, and ensuring the smooth cooperation and installation of the panel 100 and the shell 200. It should be noted that the first guide structure can also adopt the structure of a boss + a guide groove, and the technical scheme of the boss extending into the guide groove for limiting and guiding, which will not be described in detail here. As one of the optional embodiments, the first screw hole 114 and the first limiting screw 111 are two respectively, and the first guide groove 611 is one, the two first limiting screws 111 pass through the first guide groove 611 and are connected with the first screw hole 114, which can completely avoid the skew of the first pull slide 600 during movement by limiting the movement direction of the first pull slide 600 through the two first limiting screws 111, but a longer first guide groove 611 is required. As another optional embodiment, the first screw hole 114, the first limiting screw 111 and the first guide groove 611 are two respectively, each group of first screw hole 114, first limiting screw 111 and first guide groove 611 constitutes a first guide structure, so that two groups of guide structures are used to limit and guide the first pull slide 600, which can also completely avoid the skew during movement, and ensure the smooth cooperation and installation of the panel 100 and the shell 200. In this embodiment, the first limiting screw 111 is not completely fastened, so that the first pull slide 600 can move along the first guide groove 611 relative to the first mounting portion 110.
[0065] As a preferred embodiment of the application, Figure 6 、 Figure 7 、 Figure 12As shown in the drawings, a first limiting structure is arranged between the first mounting portion 110 and the first pull slide 600, which is used for limiting the first pull slide 600 when passing through a position and / or being fixed. When the first limiting structure is not arranged, the first pull slide 600 will automatically move during operation, which will cause the risk that the panel 100 and the shell 200 cannot be smoothly disassembled. Through the arrangement of the first limiting structure, the first pull slide 600 can be limited by the first mounting portion 110 when passing through a position or being fixed, so as to avoid self-displacement and ensure the smooth operation of personnel.
[0066] Optionally, as shown in the drawings, Figure 6 、 Figure 7 、 Figure 8 、 Figure 10 The first limiting structure includes a spring buckle 113, a first limiting portion 612 and a second limiting portion 613. When the first pull slide 600 is located at the passing position, the spring buckle 113 is limited by the second limiting portion 613. When the first pull slide 600 is located at the fixed position, the spring buckle 113 is limited by the first limiting portion 612. The spring buckle 113 can be deformed when the first pull slide 600 moves, so as to be popped out for limiting when the first pull slide 600 reaches the expected working position. Through one spring buckle 113, the limiting of the two working positions of the first pull slide 600 can be realized, which is simple and convenient. The spring buckle 113 is arranged on one of the first mounting portion 110 and the first pull slide 600, and the first limiting portion 612 and the second limiting portion 613 are arranged on the other one.
[0067] As one of the preferred embodiments, as shown in the drawings, Figure 8 、 Figure 10 The spring buckle 113 is arranged on the first mounting portion 110, and the first limiting portion 612 and the second limiting portion 613 are arranged on the first pull slide 600. Since the first pull slide body 610 of the first pull slide 600 is a sheet, arranging the spring buckle 113 on it will cause the production process to be more complex, which will cause the cost to rise. When the spring buckle 113 is arranged on the first mounting portion 110, it can be integrally formed by injection molding, which is simple and convenient, and can significantly reduce the production cost of the corresponding component.
[0068] As one of the optional embodiments, as shown in the drawings, Figure 12As shown, the elastic buckle 113 comprises an elastic buckle groove 1131 and an elastic strip 1132, the elastic strip 1132 is arranged in the elastic buckle groove 1131, and the elastic strip 1132 partially protrudes from the elastic buckle groove 1131, the protruding part of the elastic strip 1132 can be compressed and deformed to shrink in the direction of the elastic buckle groove 1131 when the first pull slide 600 moves, and the elastic strip 1132 is popped out when the first pull slide 600 reaches the predetermined working position, and cooperates with the first limiting part 612 or the second limiting part 613 to limit. Through the above arrangement, the elastic buckle 113 has simple structure and reliable positioning, and the elastic buckle groove 1131 and the elastic strip 1132 can be integrally injection molded with the first mounting part 110, which simplifies the production process and reduces the production cost.
[0069] As a part of optional embodiment, the first limiting part 612 is one of a limiting hole, a limiting groove, and a limiting protrusion; and the second limiting part 613 is one of a limiting hole, a limiting groove, a limiting protrusion, and a limiting side plate. Specifically, in the embodiment, as shown in the figure, Figure 12 The first limiting part 612 is a limiting hole penetrating through the first pull slide 600, which can also be a limiting protrusion protruding towards the first mounting part 110, or a limiting groove not penetrating through the first pull slide 600; and the second limiting part 613 is a limiting side plate, specifically, the limiting side plate is a side plate close to the large hole part 614 and away from the small hole part 615. Since the side plate does not need to be provided with other structures away from the small hole part 615, it can be directly used as the second limiting part 613, which can save the material of the first pull slide 600 on one hand, and simplify the production process and reduce the production cost on the other hand.
[0070] As one of the preferred embodiments, the first limiting structure is arranged between the first guiding structure and the gourd hole. Through the above arrangement, the first limiting structure forms cooperative limiting between the first guiding structure and the gourd hole, which can effectively utilize the limiting effect, avoid the movement or deviation of the first pull slide 600 during operation, and ensure the use effect.
[0071] In the embodiment, as shown in the figure, Figure 8As shown, the first pull slide 600 comprises a first pull slide body 610, the first guide structure and / or the first limiting structure are arranged between the first pull slide body 610 and the first mounting portion 110, the gourd hole is arranged on the first pull slide body 610, and the first folding portion 620 is arranged at one end of the first pull slide body 610 and is folded away from the first mounting portion 110, so as to pull the first pull slide 600 to move. The arrangement of the first folding portion 620 facilitates the operator to grasp and pull the first pull slide 600 to move, so as to realize the rapid assembly of the panel 100 and the shell 200. As an embodiment of the present application, the first guide groove 611, the first limiting portion 612 and the second limiting portion 613 are arranged on the first pull slide body 610.
[0072] As one of the embodiments, as shown in Figure 8 As shown, the second folding portion 630 is arranged on the side of the large hole portion 614 away from the small hole portion 615 and is folded away from the first mounting portion 110. The arrangement of the second folding portion 630 can enhance the strength of the first pull slide 600 on the one hand, and on the other hand, a corresponding limiting piece (not shown in the figure) is arranged on the first mounting portion 110, so that when the first pull slide 600 is located at the through position, the second folding portion 630 is arranged in abutment with the limiting piece, which can realize the face-to-face abutment between the second folding portion 630 and the limiting piece, so as to adjust the position of the first pull slide 600 and correct the deviation of the first pull slide 600 in the moving process, thereby ensuring the smooth installation of the panel 100 and the shell 200.
[0073] Specifically, as shown in Figure 3 、 Figure 4 As shown, when the ceiling machine is arranged on the ceiling, the first pull slide 600 is arranged on the lower side of the first mounting portion 110. When the ceiling machine is arranged on the ceiling, the first pull slide 600 is arranged on the lower side, so that it can directly face the operator and facilitate the disassembly and assembly of the panel 100. It should be noted that the upper, lower and other directions in the embodiment are described according to the positional relationship when the ceiling machine is arranged on the ceiling.
[0074] As one of the optional embodiments, as shown in Figure 4 As shown, the limiting nut 221 is arranged at the first end of the mounting bolt 220, the limiting nut 221 can pass through the first mounting hole 112 and the large hole portion 614 together with the mounting bolt 220, and can be blocked and fixed with the small hole portion 615. Alternatively, the necked portion is arranged at the first end of the mounting bolt 220, the diameter of the necked portion is smaller than that of the mounting bolt 220, and the necked portion can be clamped and fixed with the small hole portion 615.
[0075] As shown in Figure 1 ,Figure 2 As shown, a mounting lug 210 is provided on the housing 200, and the mounting bolt 220 is mounted on the housing 200 through the mounting lug 210. The first end of the mounting bolt 220 is fixed to the panel 100, and the second end is used to fix the housing 200 to the ceiling. Since this invention does not involve improvements to the specific structure and connection relationship of the second end of the mounting bolt 220 and the internal components of the housing 200, the accompanying drawings of this application do not fully show the second end of the mounting bolt 220 and the internal components of the housing 200, and the accompanying drawings of this application are not intended to limit the specific dimensional relationship between the mounting bolt 220 and the housing 200, etc.
[0076] As one optional embodiment, a lifting ring is also provided on the panel 100, which is rotatably connected to the panel 100. A hanging hook is provided inside the housing 200, and the lifting ring and the hanging hook are detachably engaged. This arrangement allows for pre-assembly of the panel 100 by engaging the lifting ring and the hanging hook during installation, freeing the operator's hands to operate the first sliding plate 600, thus improving operational convenience. The specific structure of the lifting ring and the hanging hook can be found in existing technology and will not be elaborated upon here.
[0077] Based on this, a grille 500 can also be detachably provided on the panel 100. This embodiment also provides an assembly structure for the grille 500 and the panel 100:
[0078] like Figures 13-19 As shown, a plurality of grille hooks 510 are provided on one side of the grille 500, and a second mounting part 120 is correspondingly provided on the panel 100. The grille hooks 510 and the second mounting part 120 are rotatably engaged. A plurality of second sliding components are provided on the other side opposite to the grille hooks 510. The second sliding components include movable second sliding pieces 900. A second insertion groove 150 is correspondingly provided on the panel 100. The second sliding pieces 900 can move into the second insertion groove 150 to form a fixed engagement between the grille 500 and the panel 100. The second sliding piece 900 includes a sliding handle 921. The sliding handle 921 is provided on the outer periphery of the grille 500 and is used to drive the second sliding piece 900 to move. After the grille 500 and the panel 100 are assembled, there is a gap between the outer periphery of the grille 500 and the panel 100. The sliding handle 921 is disposed in the gap.
[0079] Generally, the filter screen shielding the air inlet is arranged in the ceiling machine, the filter screen is fixedly arranged on the upper side of the grille 500, and the filter screen is used for filtering air entering the interior of the ceiling machine. The filter screen needs to be cleaned regularly. In the prior art, the grille 500 is usually installed in a clamped manner with the panel 100 through a buckle structure, so that the grille 500 is not easy to disassemble, and the filter screen needs to be cleaned after the panel 100 is disassembled as a whole, which leads to that the filter screen is not easy to clean, and bacteria will breed for a long time without cleaning the filter screen, thereby affecting the health of users. In the embodiment, when the grille 500 needs to be disassembled, the second pull slide piece 900 can be pulled out of the second plug-in slot 150 by moving the pull slide handle 921 in the gap. At this time, the side of the grille 500, on which the second pull slide assembly is arranged, is separated from the panel 100, so that the grille 500 can rotate around the second mounting portion 120 without falling off. At this time, the filter screen can be disassembled and cleaned. After cleaning is completed, the second pull slide piece 900 is moved again by the pull slide handle 921 to be plugged in the second plug-in slot 150 in a plugged manner, and the cooperation and fixing of the grille 500 and the panel 100 are completed. The arrangement makes it possible to clean the filter screen without completely disassembling the grille 500, which is simple and convenient. If the grille 500 needs to be completely disassembled, the part of the grille 500 close to the second mounting portion 120 is lifted upward after the second pull slide piece 900 is pulled out of the second plug-in slot 150, and then the part is moved toward the second plug-in slot 150, so that the grille hook 510 is separated from the second mounting portion 120. The grille 500 can be completely disassembled. When the grille 500 is installed, the grille hook 510 can be first hung on the second mounting portion 120, and then the second pull slide piece 900 is moved by the pull slide handle 921 to be plugged in the second plug-in slot 150 in a plugged manner. The cooperation and installation of the grille 500 and the panel 100 are completed, which is simple and convenient.
[0080] As one of the embodiments, as shown in Figure 18 The grille hook 510 includes a connecting portion 511 and a rotating shaft 512. The first end of the connecting portion 511 is connected with the side of the grille 500, the second end of the connecting portion 511 extends away from the grille 500, and the rotating shaft 512 is arranged at the second end of the connecting portion 511. The above structure is simple and easy to manufacture and hang, and is convenient for arranging the corresponding second mounting portion 120. It should be noted that, in one of the preferable embodiments, the second end of the connecting portion 511 is bent downward. The arrangement is convenient for arranging the corresponding hook structure of the rotating shaft 512 and makes the rotating shaft 512 have a large rotating space. The hook structure can be a hook structure matched with both ends of the rotating shaft 512, or other structures.
[0081] As one of the optional embodiments, as shown in Figure 18As shown, the connecting portions 511 are provided with two, the rotating shaft 512 is provided with one, the two connecting portions 511 are provided at a certain distance, the second mounting portion 120 includes a hanging hole 121 and a hanging stopper 122, the rotating shaft 512 can extend into the hanging hole 121 through the hanging stopper 122, and after the hanging is completed, the hanging stopper 122 cooperates with the rotating shaft 512 between the two connecting portions 511 to stop. Specifically, as shown in Figure 11 、 Figure 17 the hanging stopper 122 is upwardly protruded at the bottom of the opening of the hanging hole 121, the length of the rotating shaft 512 is L1, the distance between the two connecting portions 511 is L2, the length of the hanging hole 121 is L3, and the length of the hanging stopper 122 is L4, then L3>L1>L2>L4, wherein the length direction of the hanging hole 121 and the hanging stopper 122 is the same as the length direction of the rotating shaft 512, and the setting makes the hanging stopper 122 form a hanging groove between the two hanging holes 121, and the connecting portions 511 cooperate with the hanging groove when the grid hook 510 cooperates with the second mounting portion 120. Through the above setting, when the grid hook 510 cooperates with the second mounting portion 120, the rotating shaft 512 is first extended into the hanging hole 121 on the upper side of the hanging stopper 122, and then the grid 500 is placed downward, so that the hanging stopper 122 extends between the two connecting portions 511, at this time, the two connecting portions 511 also enter the hanging groove, that is, the cooperation of the grid hook 510 and the second mounting portion 120 can be completed, which is simple and convenient.
[0082] As another embodiment of the present application, the connecting portion 511 and the rotating shaft 512 are both one, the second mounting portion 120 includes a hanging hole 121 and two hanging flaps 122, the rotating shaft 512 can extend into the hanging hole 121 through the hanging flaps 122, and after the hanging is completed, the two hanging flaps 122 stop cooperating with the two ends of the rotating shaft 512. The hanging flaps 122 are protruded upward at the bottom of the opening of the hanging hole 121, and are respectively arranged at positions close to the two ends of the length direction of the hanging hole 121. The length of the rotating shaft 512 is denoted as L1, the width of the connecting portion 511 is denoted as L2, the length of the hanging hole 121 is denoted as L3, and the length of the hanging flaps 122 is denoted as L4. Then L3>L1>(L3-L2) / 2>L4, wherein the length direction of the hanging hole 121 and the hanging flaps 122 is the same as the length direction of the rotating shaft 512, the width direction of the connecting portion 511 is the same as the length direction of the rotating shaft 512, and the length direction of the rotating shaft 512 is the axial direction. The above setting forms a hanging groove between the two hanging flaps 122, and the connecting portion 511 cooperates with the hanging groove when the grid hook 510 cooperates with the second mounting portion 120. Through the above setting, when the grid hook 510 cooperates with the second mounting portion 120, the rotating shaft 512 is first extended into the hanging hole 121 above the hanging flaps 122, and then the grid 500 is placed downward, so that the hanging flaps 122 are extended between the rotating shaft 512 on both sides of the connecting portion 511 and the grid 500. At this time, the connecting portion 511 also enters the hanging groove, that is, the cooperation and hanging of the grid hook 510 and the second mounting portion 120 are completed, which is simple and convenient.
[0083] As an embodiment of the present application, as shown in Figures 14-17 The second pull slide assembly further includes a fifth mounting portion 520, the fifth mounting portion 520 is arranged on the grid 500, the second pull slide 900 is movably arranged on the fifth mounting portion 520, and the pull slide handle 921 can drive the second pull slide 900 to move between the disassembly position and the locking position. When the second pull slide 900 is in the locking position, the second pull slide 900 cooperates with the second plug-in groove 150 to be fixed, which is used for the fixed connection of the grid 500 and the panel 100. When the second pull slide 900 is in the disassembly position, the second pull slide 900 is pulled out of the second plug-in groove 150, which is used for disassembling the grid 500 from the panel 100. Through the above setting, the quick assembly and disassembly of the grid 500 and the panel 100 is realized, the operation steps are simplified, and the user experience is improved.
[0084] As one of the optional embodiments, as shown in Figure 15As shown in the fifth mounting portion 520 and the second pull slide 900 between the second guide structure, the second pull slide 900 along the second guide structure between the disassembly position and the locking position. The second guide structure for the second pull slide 900 movement limit guide, to avoid the second pull slide 900 in the movement occurs skew, thereby ensuring the second pull slide 900 and the second plug-in slot 150 of the smooth fit, improve the assembly efficiency of the grille 500 and the panel 100.
[0085] Optionally, as shown in the second guide structure includes a second limit screw 521, the second screw column 522 and the second guide groove 911, the second screw cap diameter of the second limit screw 521 is greater than the width of the second guide groove 911. Figure 17 、 Figure 19 As shown in the second guide structure includes a second limit screw 521, the second screw column 522 and the second guide groove 911, the second screw cap diameter of the second limit screw 521 is greater than the width of the second guide groove 911. Through the above setting, the second pull slide 900 in the second limit screw 521 and the second guide groove 911 in the cooperation of the limiting effect, between the disassembly position and the locking position, to avoid the second pull slide 900 in the movement occurs skew, to ensure the smooth fit of the panel 100 and the grille 500. It should be noted that the second guide structure can also be used as a boss + guide groove structure, boss into the guide groove for limit guide technical solution, will not be described in detail. As one of the optional embodiments, the second screw column 522, the second limit screw 521 are two, the second guide groove 911 has one, two second limit screw 521 through the second guide groove 911 and the second screw column 522 connection, the setting by two second limit screw 521 limit the movement direction of the second pull slide 900, can completely avoid the skew in the moving process, but need a longer second guide groove 911, as another optional embodiment, the second screw column 522, the second limit screw 521 and the second guide groove 911 are two, each group of second screw column 522, the second limit screw 521 and the second guide groove 911 constitute a second guide structure, so that the two groups of guide structure for the second pull slide 900 limit guide, also can completely avoid the skew in the moving process, to ensure the smooth fit of the panel 100 and the grille 500.
[0086] As one of the embodiments, as shown in the second guide structure includes a second limit screw 521, the second screw column 522 and the second guide groove 911, the second screw cap diameter of the second limit screw 521 is greater than the width of the second guide groove 911. Figure 17 、 Figure 19As shown, the second guide structure further comprises a first guide plate 523 and a first guide part 913 for cooperation and guidance, and a second guide plate 524 and a second guide part 914 for cooperation and guidance, the first guide part 913 comprises a third guide groove for cooperation and guidance with the first guide plate 523, the second guide part 914 comprises a fourth guide groove for cooperation and guidance with the second guide plate 524, and a fifth limiting part 915, a limiting step 528 is arranged on the second guide plate 524, and the fifth limiting part 915 is used for cooperation and limitation with the limiting step 528. Through the above arrangement, the displacement direction of the second pull slide 900 can be further limited to prevent it from deviating during movement, thereby ensuring the smooth insertion of the second pull slide 900 into the second insertion slot 150. The fifth limiting part 915 and the limiting step 528 are arranged to assist in limiting the displacement of the second pull slide 900 when moving towards the second insertion slot 150.
[0087] As one of the preferred embodiments, as shown in Figure 17 、 Figure 19 The fifth mounting part 520 further comprises a support plate 525, a through hole 526 is arranged on the support plate 525, and the second pull slide 900 is movably arranged through the through hole 526. It should be understood that in order to ensure the mobility of the second pull slide 900, the second limiting screw 521 cannot be completely fastened, and the first guide plate 523 and the first guide part 913, the second guide plate 524 and the second guide part 914 cannot be tightly connected, so that when the grid 500 is assembled with the panel 100, the second pull slide 900 will have a certain downward movement, and there is a risk that it cannot be aligned with the second insertion slot 150. The arrangement of the support plate 525 and the through hole 526 can effectively support the second pull slide 900, limit its downward displacement during assembly, and ensure that the second pull slide 900 can be smoothly assembled with the second insertion slot 150.
[0088] In this embodiment, as shown in Figure 19 The second pull slide 900 comprises a second pull slide body 910 and a connecting plate 920, the second guide structure is arranged between the second pull slide body 910 and the fifth mounting part 520, the connecting plate 920 is used to connect the second pull slide body 910 with a pull slide handle 921, and the fifth mounting part 520 further comprises a sliding groove 527, and the connecting plate 920 is movably arranged in the sliding groove 527. The sliding groove 527 is used to limit the movement displacement of the connecting plate 920, thereby limiting the movement displacement of the pull slide handle 921, and further limiting the displacement of the second pull slide 900.
[0089] As one of the preferred embodiments, as shown in Figure 19As shown, the second pull slide 900 is provided with a clamping boss 912, and a clamping groove (not shown in the figure) is correspondingly provided in the second insertion slot 150. When the second pull slide 900 is in the locking position, the clamping boss 912 is clamped with the clamping groove. Through the above arrangement, the second pull slide 900 can be locked when it is inserted into the second insertion slot 150, avoiding displacement of the second pull slide 900 and ensuring the stability of the connection between the grid 500 and the panel 100.
[0090] On this basis, the panel 100 can also be provided with an air guide plate 400 driven by a driving device, and the mounting structure of the air guide plate 400 driving device is also provided in the embodiment.
[0091] As shown in Figures 9-11 、 Figures 20-23 , the panel 100, the air guide plate 400, the air guide driving assembly 700, and the air guide driven assembly 800 are included, the third mounting portion 130 and the fourth mounting portion 140 are provided on the panel 100, the third mounting portion 130 is used for cooperating with the driving end of the air guide plate 400 and the air guide driving assembly 700, the fourth mounting portion 140 is used for cooperating with the driven end of the air guide plate 400 and the air guide driven assembly 800, the first limiting table 136 is provided in the third mounting portion 130, the second limiting table 412 is provided on the driving end of the air guide plate 400, and the first limiting table 136 is used for cooperating with the second limiting table 412 to limit the assembly angle of the air guide plate 400.
[0092] In the prior art, the driving end of the air guide plate 400 needs to be inserted into the output shaft of the motor during installation. If the air guide plate 400 is arranged in parallel with the panel 100, the air guide plate 400 cannot be gripped due to the extremely small distance between the air guide plate 400 and the side plate of the mounting hole on the panel 100, which affects the assembly of the air guide plate 400. Therefore, the output shaft of the motor needs to be rotated by a certain angle, and the air guide plate 400 needs to be assembled at an angle relative to the panel 100. During assembly, the angle between the air guide plate 400 and the panel 100 can be too large to be gripped by the operator, which affects the assembly efficiency. In the present application, the angle between the air guide plate 400 and the panel 100 during assembly is limited within a certain range through the arrangement of the first limiting table 136 and the second limiting table 412, so that the air guide plate 400 can be quickly and easily assembled, and the assembly efficiency of the air guide plate 400 is significantly improved.
[0093] As one of the optional embodiments, as shown in Figure 10 、 Figures 20-22As shown, the active end of the air deflector 400 is provided with a first connecting column 410, the third mounting part 130 includes a first mounting slot 135, the first connecting column 410 is rotatably arranged in the first mounting slot 135, the first limiting table 136 is arranged on the first mounting slot 135, and the second limiting table 412 is correspondingly arranged on the first connecting column 410. The first connecting column 410 is used to be connected with the air deflector driving assembly 700 and can drive the air deflector 400 to rotate under the driving of the air deflector driving assembly 700. Through the above arrangement, only the corresponding limiting structure such as the first limiting table 136 and the second limiting table 412 needs to be arranged on the first connecting column 410 and the first mounting slot 135 of the prior art, so that the angle limiting of the air deflector 400 during assembly can be realized, without the need to greatly change the structure of the prior art, which is simple and convenient. Specifically, the first mounting slot 135 is arranged on the first step, the first step is fixedly connected with the panel 100, and the side of the first mounting slot 135 close to the corner cover plate 300 is a first opening structure, which facilitates the arrangement of the first connecting column 410 and the second connecting column 740 of the air deflector driving assembly 700.
[0094] In this embodiment, as shown in Figure 21 、 Figure 22 The air deflector driving assembly 700 includes a driving cover plate 710, a first side plate 720, a second side plate 760, a front side plate and a driving member 770. The driving cover plate 710, the first side plate 720, the second side plate 760 and the front side plate surround to form a first containing cavity, and the driving member 770 is arranged in the first containing cavity. A second connecting column 740 is arranged on the front side plate, a plug-in column 741 is arranged in the second connecting column 740, a third plug-in slot 411 is arranged on the first connecting column 410, the plug-in column 741 is plugged into the third plug-in slot 411, when plugged, the second connecting column 740 is sleeved on the outer periphery of the first connecting column 410, and the third plug-in slot 411 is connected with the output shaft of the driving member 770. The third plug-in slot 411 is an elliptical hole. In this case, when the driving member 770 operates, the output shaft drives the third plug-in slot 411 to rotate, and then drives the air deflector 400 to rotate, so that the driving of the air deflector 400 during air supply can be realized. Optionally, the driving member 770 is a motor.
[0095] As one of the preferred embodiments, as shown in Figure 10 、 Figure 21As shown, a limiting post 750 is also provided on the front side plate, and a first limiting groove 134 is correspondingly provided on the third mounting part 130. The first limiting groove 134 cooperates with the limiting post 750 to limit the movement. The setting of the limiting post 750 and the first limiting groove 134 can limit the insertion depth of the insertion post 741 and the third insertion groove 411, and can also limit the installation height of the air guide drive assembly 700, thereby limiting the installation position of the air guide drive assembly 700 to ensure its smooth assembly with the air guide plate 400. Optionally, the first limiting groove 134 is provided on the first step.
[0096] Optional, such as Figure 21 , Figure 22 As shown, a first positioning plate 730 is provided on the first side plate 720, and a third screw hole is provided on the first positioning plate 730. A first screw post 131 is correspondingly provided on the third mounting part 130. The air guide drive assembly 700 is fixedly mounted on the panel 100 through the third screw hole and the first screw post 131. It should be noted that when the air guide drive assembly 700 is connected with the air guide plate 400, pushing the air guide drive assembly 700 towards the air guide plate 400 will cause the front side plate to abut against the panel 100 or the limiting post 750 to abut against the first limiting groove 134, reaching the preset installation position. At this time, the third screw hole and the first screw post 131 are automatically aligned, so that the air guide drive assembly 700 can be fixedly connected to the panel 100 with screws.
[0097] As one of the preferred embodiments, such as Figure 10 As shown, the third mounting part 130 also includes a first limiting plate 133, which is used to cooperate with the first positioning plate 730 to limit the distance between the air guide drive assembly 700 and the air guide plate 400 when the air guide drive assembly 700 is disassembled or assembled. The limitation on the distance between the air guide drive assembly 700 and the air guide plate 400 during installation and disassembly refers to the following: When installing the air guide drive assembly 700, the first positioning plate 730 is placed between the first step and the first limiting plate 133, thereby directly placing the air guide drive assembly 700 close to the air guide plate 400, realizing quick assembly of the air guide plate 400 and the air guide drive assembly 700. When it is necessary to disassemble the air guide drive assembly 700, separating the plug post 741 from the third plug slot 411 will cause the air guide drive assembly 700 to move away from the first step. At this time, the first limiting plate 133 and the first positioning plate 730 abut against each other, which can limit the distance of the air guide drive assembly 700 away from the air guide plate 400. This allows the installation of the air guide drive assembly 700 to be carried out in a small space, saving the space occupied by the air guide drive assembly 700 inside the ceiling machine during installation.
[0098] In one embodiment of the present invention, such asFigure 10 As shown, the third mounting portion 130 further comprises a back plate 132, which is arranged at a position away from the air deflector 400. After the air deflector driving assembly 700 is assembled with the air deflector 400, the back plate 132 is flush with one end of the driving cover plate 710 away from the front side plate. Preferably, the back plate 132 is shaped and sized to fit the driving cover plate 710. After the air deflector driving assembly 700 is assembled, the back plate 132 closes the one end of the driving cover plate 710 away from the front side plate. The back plate 132 can support the driving cover plate 710 when the air deflector driving assembly 700 is mounted, so as to avoid the second connecting column 740 being warped and affecting the assembly with the air deflector 400. In addition, the back plate 132 can also protect the driving member 770 after the air deflector driving assembly 700 is assembled. As an optional embodiment, the first limiting plate 133, the back plate 132, the first screw column 131, the first limiting groove 134, the first mounting groove 135, the first limiting platform 136 and the first boss are integrally injection molded with the face plate 100.
[0099] In the embodiment, as shown in Figure 11 Figure 23 The air deflector driven assembly 800 comprises a driven cover plate 810, a plug-in plate 820 and a second positioning plate 850. The fourth mounting portion 140 comprises a second screw hole 141, a first plug-in groove 142 and a second mounting groove 143. The plug-in plate 820 and the second positioning plate 850 are arranged on the two sides of the driven cover plate 810 respectively. The plug-in plate 820 is used for plug-in assembly with the first plug-in groove 142. The second positioning plate 850 is provided with a fourth screw hole, which is arranged correspondingly with the second screw hole 141, and is used for fixed connection of the air deflector driven assembly 800 with the fourth mounting portion 140. The driven cover plate 810 is provided with a connecting groove 840, which is used for forming a rotating space with the second mounting groove 143. The driven rotating shaft of the air deflector 400 is rotatably arranged in the rotating space. Through the above arrangement, one side of the air deflector driven assembly 800 is positioned by plug-in assembly, and the other side is fixedly connected by screwing. The air deflector driven assembly 800 can be quickly mounted. Specifically, during the mounting, the driven rotating shaft can be arranged in the second mounting groove 143 first, then the plug-in plate 820 is plug-in assembled with the first plug-in groove 142, and then the driven cover plate 810 is arranged on the driven rotating shaft. At this time, the connecting groove 840 forms a rotating space with the second mounting groove 143, and the second positioning plate 850 is attached to the face plate 100. After the fourth screw hole is aligned with the second screw hole 141, the air deflector driven assembly 800 is fixedly screwed with the fourth mounting portion 140.
[0100] As one of the preferred embodiments, as shown in Figure 23 As shown, a stop plate 830 is provided on one side of the plug-in plate 820. The stop plate 830 is used to limit the engagement between the plug-in plate 820 and the first plug-in groove 142. The stop plate 830 can abut against the end wall of the first plug-in groove 142, thereby limiting the depth of the plug-in plate 820 entering the first plug-in groove 142. When the stop plate 830 abuts against the end wall of the first plug-in groove 142, the fourth screw hole and the second screw hole 141 are aligned. This setting can realize the automatic alignment of the fourth screw hole and the second screw hole 141, thereby saving the time of aligning screw holes during installation and improving assembly efficiency. It should be noted that the first plug-in groove 142 is provided on the second boss, and the abutment of the stop plate 830 against the end wall of the first plug-in groove 142 can also be regarded as the abutment of the stop plate 830 against the side wall of the second boss.
[0101] As one of the preferred embodiments, such as Figure 1 , Figures 9-11 As shown, four air guide plates 400 are arranged near the four sides of the panel 100. The air guide drive assemblies 700 corresponding to two adjacent air guide plates 400 are located near the first corner, and the air guide drive assemblies 700 corresponding to the other two air guide plates 400 are located diagonally opposite the first corner. Figure 10 Taking the first angle as an example, Figure 9 The corners in the diagram are arranged clockwise as the second, third, and fourth corners. Two air guide vanes 400 have their corresponding air guide drive assemblies 700 positioned near the first corner, with the third corner being diagonally opposite. The other two air guide vanes 400 have their corresponding air guide drive assemblies 700 positioned near the third corner. In this configuration, the four air guide vanes 400 have their corresponding air guide driven assemblies 800 positioned in pairs near the second and fourth corners. This arrangement ensures that the air guide drive assemblies 700 are paired diagonally, and that the air guide driven assemblies 800 are paired in another pair at the opposite corner. Since the air guide driven assemblies 800 do not include the drive component 770, their size is smaller, thus occupying less installation space. Concentrating them in pairs near the same corner saves more installation space for other components.
[0102] Example 2
[0103] The embodiment discloses a ceiling machine, comprising a panel 100 and a shell 200, the panel 100 and the shell 200 are installed by using the mounting structure of the ceiling machine panel and the shell as described in embodiment 1, and a detachable corner cover plate 300 is arranged at the four corners of the panel 100, when the corner cover plate 300 is assembled to the panel 100, the mounting structure of the ceiling machine panel and the shell is covered. Wherein, the corner cover plate 300 can cover the mounting structure of the baffle 400 driving device in addition to covering the mounting structure of the ceiling machine panel and the shell. The connection mode of the corner cover plate 300 and the panel 100 adopts clamping or screwing, etc., and specific reference can be made to the prior art, which will not be repeated here. The corner cover plate 300 is arranged to cover the corresponding mounting structure, and can play a role of decoration after installation.
[0104] The ceiling machine provided by the embodiment has the same advantages as the mounting structure of the ceiling machine panel and the shell provided by embodiment 1 relative to the prior art, which will not be repeated here.
[0105] It should be noted that the ceiling machine also comprises a heat exchanger, a water pan and other conventional components of the ceiling machine, and the specific structure and connection relationship can refer to the existing technical solutions, which will not be limited and repeated here.
[0106] Although the present application is disclosed as above, the present application is not limited thereto. In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present application, therefore the protection scope of the present application should be subject to the scope defined by the claims.
Claims
1. A mounting structure of a ceiling panel and a housing of a ceiling machine, characterized by, The utility model relates to a ceiling panel (100) and a shell (200) are connected through a first installation part (110) and a first pull slide (600), and the first installation part (110) is provided with a first installation hole (112) and the first pull slide (600) is provided with a gourd hole, the first installation hole (112) and the gourd hole are matched with the installation bolt (220) and the first pull slide (600) respectively, and the first pull slide (600) can be moved to the through position and the fixed position in the first installation hole (112) and the gourd hole. The utility model relates to a ceiling panel (100) and a shell (200) are connected through a first installation part (110) and a first pull slide (600), and the first installation part (110) is provided with a first installation hole (112) and the first pull slide (600) is provided with a gourd hole, the first installation hole (112) and the gourd hole are matched with the installation bolt (220) and the first pull slide (600) respectively, and the first pull slide (600) can be moved to the through position and the fixed position in the first installation hole (112) and the gourd hole. The utility model relates to a ceiling panel (100) and a shell (200) are connected through a first installation part (110) and a first pull slide (600), and the first installation part (110) is provided with a first installation hole (112) and the first pull slide (600) is provided with a gourd hole, the first installation hole (112) and the gourd hole are matched with the installation bolt (220) and the first pull slide (600) respectively, and the first pull slide (600) can be moved to the through position and the fixed position in the first installation hole (112) and the gourd hole. The utility model relates to a ceiling panel (100) and a shell (200) are connected through a first installation part (110) and a first pull slide (600), and the first installation part (110) is provided with a first installation hole (112) and the first pull slide (600) is provided with a gourd hole, the first installation hole (112) and the gourd hole are matched with the installation bolt (220) and the first pull slide (600) respectively, and the first pull slide (600) can be moved to the through position and the fixed position in the first installation hole (112) and the gourd hole. The utility model relates to a ceiling panel (100) and a shell (200) are connected through a first installation part (110) and a first pull slide (600), and the first installation part (110) is provided with a first installation hole (112) and the first pull slide (600) is provided with a gourd hole, the first installation hole (112) and the gourd hole are matched with the installation bolt (220) and the first pull slide (600) respectively, and the first pull slide (600) can be moved to the through position and the fixed position in the first installation hole (112) and the gourd hole. The utility model relates to a ceiling panel (100) and a shell (200) are connected through a first installation part (110) and a first pull slide (600), and the first installation part (110) is provided with a first installation hole (112) and the first pull slide (600) is provided with a gourd hole, the first installation hole (112) and the gourd hole are matched with the installation bolt (220) and the first pull slide (600) respectively, and the first pull slide (600) can be moved to the through position and the fixed position in the first installation hole (112) and the gourd hole. 2. The mounting structure of a ceiling panel and a housing according to claim 1, wherein 3. The mounting structure of a ceiling panel and a housing according to claim 2, wherein The first guide structure comprises a first screw hole (114), a first limiting screw (111) and a first guide slot (611), the first limiting screw (111) is connected with the first screw hole (114) after passing through the first guide slot (611), and a first nut diameter of the first limiting screw (111) is greater than a width of the first guide slot (611).
4. The mounting structure of a ceiling panel and a housing according to claim 1, wherein The elastic buckle (113) is arranged on the first mounting portion (110), and the first limiting portion (612) and the second limiting portion (613) are arranged on the first pull slide (600).
5. The mounting structure of a ceiling panel and a housing according to claim 1, wherein The elastic buckle (113) comprises an elastic buckle slot (1131) and an elastic strip (1132), the elastic strip (1132) is arranged in the elastic buckle slot (1131), and the elastic strip (1132) partially protrudes from the elastic buckle slot (1131), the protruding part of the elastic strip (1132) can be compressed and deformed to shrink in the direction of the elastic buckle slot (1131) when the first pull slide (600) moves, and the protruding part of the elastic strip (1132) is elastically buckled out when the first pull slide (600) reaches a predetermined working position, and is limited in cooperation with the first limiting portion (612) or the second limiting portion (613).
6. The mounting structure of the ceiling panel and the housing according to any one of claims 1 to 5, wherein The first limiting portion (612) is one of a limiting hole, a limiting slot, a limiting protrusion; and the second limiting portion (613) is one of a limiting hole, a limiting slot, a limiting protrusion, a limiting edge plate.
7. The mounting structure of a ceiling panel and a housing according to claim 1, wherein The first pull slide (600) comprises a first pull slide main body (610), a first folding portion (620) is arranged at one end of the first pull slide main body (610), the first folding portion (620) is folded away from the first mounting portion (110), and the first folding portion (620) is used for pulling the first pull slide (600) to move.
8. A pinball machine characterized by The ceiling machine comprises the mounting structure of the ceiling machine panel and the shell as claimed in any one of claims 1-7, and detachable corner cover plates (300) are arranged at four corners of the panel (100), and the mounting structure of the ceiling machine panel and the shell is covered when the corner cover plates (300) are assembled to the panel (100).
Citation Information
Patent Citations
Ceiling machine panel and shell mounting structure and ceiling machine with same
CN221098957U