Energy-saving system window with external intelligent sunshade mechanism
By designing external intelligent sunshade mechanism, flushing mechanism, transfer mechanism and locking components on the system window, the problem that the system window cannot adjust in real time and the cleaning effect is not ideal according to the external temperature environment, and the functions of sunshade, cleaning, protection and efficient cleaning are achieved.
Patent Information
- Application Number
- CN202510154055.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing system windows cannot be effectively adjusted in real time according to the external temperature environment, and have limitations and undesirable effects in terms of cleaning.
An energy-saving system window with an external intelligent sunshade mechanism is designed, including a sunshade mechanism, a flush mechanism, a transfer mechanism and a locking component. Through the coordinated work of these components, the sunshade, cleaning, protection and cleaning functions are realized.
The sunshade mechanism realizes the shading and cleaning of the system window, switches the operating status according to the environment, improves the sealing strength and wind resistance; improves the cleaning effect of the form glass through the flushing mechanism and the cleaning tray.
Smart Images

Figure CN119981599A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of system windows, and in particular to an energy-saving system window with an external intelligent sunshade mechanism. Background Art
[0002] System windows are high-performance window products that combine a variety of materials and technologies through a systematic design and manufacturing process to achieve better insulation, sound insulation, safety and durability. System windows are usually made of advanced materials such as high-strength aluminum alloy, PVC, and steel, which have excellent corrosion resistance, durability and thermal insulation performance. Structurally, system windows use thermal insulation strips to separate aluminum alloys to improve thermal insulation performance.
[0003] Although some system windows are currently equipped with intelligent control systems to achieve functions such as remote control and automatic sensing, which improves the user experience and convenience, the overall external functions are relatively weak. The existing system windows cannot be better adjusted in real time according to the external temperature environment. When the external temperature is high, the external temperature and light will still enter the room through the window, and cannot be processed by the window itself. In addition, there are many limitations in the cleaning of the system windows, which still needs to be completed by personnel using cleaning facilities, and the cleaning effect is not ideal;
[0004] Therefore, the present application proposes an energy-saving system window with an external intelligent shading mechanism. Summary of the invention
[0005] In view of the deficiencies in the prior art, the present invention provides an energy-saving system window with an external intelligent sunshade mechanism, which solves the problems mentioned in the background technology.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions:
[0007] An energy-saving system window with an external intelligent sunshade mechanism comprises a window body, a first side window panel and a second side window panel are fixedly installed on both sides of the window body, a storage cavity is installed on the top of the first side window panel and the second side window panel together, a sunshade mechanism is installed inside the storage cavity, a front end shell is installed on the end of the sunshade mechanism, an extended adjustment mechanism is installed inside the front end shell, and the adjustment mechanism can be stored in the front end shell, a cleaning brush disc is installed on the extended end of the adjustment mechanism, and the cleaning brush disc and the adjustment mechanism are installed and connected by a docking head, locking components assembled and connected to the first side window panel and the second side window panel are installed on both sides of the bottom of the front end shell, and the storage cavity and the inside of the first side window panel are jointly installed The sunshade mechanism is equipped with a flushing mechanism; the sunshade mechanism includes a cleaning component, a telescopic component, and a rainproof cloth; the flushing mechanism includes a liquid supply component and a flushing component; the mobilization mechanism includes a lifting component, an extension component, and a moving component; the interior of the storage cavity is equipped with an extended telescopic component, the extended end of the telescopic component is installed and connected to the front end shell, the front end shell and the top of the storage cavity are jointly equipped with a cleaning component, the telescopic component is covered with a rainproof cloth, the interior of the storage cavity is equipped with a flushing component, the interior of the first side window panel is equipped with a liquid supply component, the interior of the front end shell is equipped with a moving component, the bottom of the moving component is docked with a lifting component, the interior of the lifting component is equipped with an extended extension component, and the cleaning brush plate is assembled at the end of the extension component through a docking joint.
[0008] Furthermore, the cleaning assembly includes a scraping plate, a first guide rail, an articulated telescopic rod, and an articulated seat. The first guide rail is fixedly installed on the top of the storage cavity, and the first guide rail extends to the top of the first side window panel and the adjustment mechanism. Two sets of scraping plates are slidably installed on the first guide rail, and articulated seats are fixedly installed on both sides of the top of the front end shell. An articulated telescopic rod is movably installed on the scraping plate, and the end of the articulated telescopic rod is movably connected to the articulated seat.
[0009] Furthermore, the telescopic assembly includes a telescopic frame, a first threaded rod, a mounting block, and a fifth motor. The telescopic frame is movably installed inside the storage cavity, the extending end of the telescopic frame is docked with a front end shell, and the telescopic frame is assembled and connected to the storage cavity and the front end shell through the mounting block, the fifth motor is fixedly installed on one side inside the storage cavity, and the output end of the fifth motor is docked with the first threaded rod, the first threaded rod passes through the mounting block, and is docked through a threaded structure.
[0010] Furthermore, the telescopic assembly also includes a first transmission member, a first motor, and a flip shaft. An installation chamber 2 is provided in the second side window panel, and a first motor is fixedly installed inside the installation chamber 2. The output end of the first motor is docked with a first transmission member, and flip shafts rotatably connected to the first side window panel and the second side window panel are docked with both sides of the storage cavity. One end of the flip shaft extends into the installation chamber 2, and the first motor is transmission-connected to the flip shaft through the first transmission member.
[0011] Furthermore, the liquid supply assembly includes a liquid supply box, a detachable joint, and a liquid supply pipe. A placement chamber is provided on the back side of the first side window panel, a pipeline is provided on the top of the placement chamber, a liquid supply box is placed inside the placement chamber, a detachable joint is fixedly installed on the top of the liquid supply box, the liquid supply box is docked with a liquid supply pipe via the detachable joint, the liquid supply pipe extends into the storage cavity through the pipeline, and the liquid supply box is installed and connected to the flushing assembly via the liquid supply pipe.
[0012] Furthermore, the flushing component includes a second motor, a rotating shaft 1, a cover plate, a toothed joint 1, a flushing head, a rotating shaft 2, a first gear, and a liquid guiding cavity. An exploration port is provided at the bottom of the storage cavity, and a rotating shaft 1 is fixedly installed on both sides of the storage cavity, and a toothed joint 1 is installed through the rotating shaft 1. A cover plate is fixedly installed on the bottom of the toothed joint 1, and the cover plate is located in the exploration port. A liquid guiding cavity is fixedly installed on the top of the cover plate, and a connected flushing head is evenly distributed on the back of the liquid guiding cavity. A rotating shaft 2 is installed in the interior of the storage cavity, and a first gear meshing with the toothed joint 1 is fixedly installed on the rotating shaft 2. An installation chamber 1 is provided in the first side window panel, and a second motor is fixedly installed in the interior of the installation chamber 1, and the output end of the second motor is installed and connected to the rotating shaft 2.
[0013] Furthermore, the locking assembly includes a positioning hole, a plug connector, a positioning pin, and a first electric telescopic cylinder. Plug connectors are fixedly installed on both sides of the bottom of the front end shell, and the plug connectors are provided with positioning holes. Locking chambers are provided in the first side window panel and the second side window panel. Positioning ports connected to the locking chambers are provided on the front sides of the first side window panel and the second side window panel. The first electric telescopic cylinder is fixedly installed on the top of the locking chamber, and the positioning pin is fixedly installed on the bottom of the first electric telescopic cylinder. The plug connector is inserted into the locking chamber through the positioning port, and the positioning pin is inserted into the positioning hole for positioning by the first electric telescopic cylinder.
[0014] Furthermore, the moving assembly includes a driving chamber, a third electric telescopic cylinder, a gear joint 2, a dual-axis motor, a driving member, a gear plate, and a third guide rail. The interior of the front end shell is slidably equipped with a driving chamber through the third guide rail, and the interior of the driving chamber is docked with a gear joint 2. A third electric telescopic cylinder is fixedly installed on one side of the driving chamber, and the output end of the third electric telescopic cylinder extends into the driving chamber. A gear plate is docked with the output end of the third electric telescopic cylinder, and the gear plate and the tooth end of the gear joint 2 are meshed with each other. The bottom of the gear joint 2 is installed and connected to the top of the lifting assembly, and a dual-axis motor is fixedly installed on the top of the driving chamber, and the output end of the dual-axis motor is equipped with a driving member that cooperates with the front end shell for transmission.
[0015] Furthermore, the lifting assembly includes an adjusting arm, a transmission shaft, a second transmission member, a guide port, a bevel gear set, a second threaded rod, and a third motor. The adjusting arm is fixedly installed at the bottom of the tooth joint 2, and the second threaded rod is butt-jointedly installed at the top inside the adjusting arm. The second threaded rod penetrates the moving assembly through a threaded structure and drives the moving assembly. The third motor and a transmission shaft are fixedly installed at the top inside the adjusting arm, and the second transmission member is butt-jointedly installed at the output end of the third motor, and the third motor is connected to the transmission shaft through the second transmission member. The end of the transmission shaft is equipped with a bevel gear set connected to the second threaded rod, and a guide port is provided on one side of the adjusting arm.
[0016] Furthermore, the extension component includes an outer rod, a second electric telescopic cylinder, an inner rod, a connector, a mounting cover, a fourth motor, and a second guide rail. The interior of the adjustment arm is slidably mounted with a mounting cover via the second guide rail. The mounting cover is movably mounted with an outer rod extending out of the guide opening. The inner rod extending out of the guide opening is butt-jointedly mounted inside the outer rod. The second electric telescopic cylinder is fixedly mounted inside the outer rod, and the output end of the second electric telescopic cylinder is mounted and connected to the inner end of the inner rod. A connector is butt-jointedly mounted on the end of the inner rod. A socket is provided at the bottom of the positioning opening, and the connector is butt-jointedly matched with the socket. The fourth motor is fixedly mounted inside the mounting cover, and the output end of the fourth motor is mounted and connected to the rotating member of the outer rod. The mounting cover is penetrated by a second threaded rod through a thread.
[0017] The present invention provides an energy-saving system window with an external intelligent sunshade mechanism. Compared with the prior art, it has the following beneficial effects:
[0018] The shading mechanism can not only utilize its outward extension to realize the shading operation of the system windows, but also shade the system windows in summer or when the light intensity is high. When entering the shading process, the impurities and foreign objects on the top of the system windows can be cleaned, and the mechanism can switch its operating state again according to the environmental conditions, so that the mechanism switches from the shading state to the protection state, and cooperates with the locking component to realize its own state locking. The system windows in the protection state can better cope with strong winds, reduce the impact of external airflow on the system windows, and improve the sealing strength of the system windows. Through the mutual cooperation between the mobilization mechanism and the cleaning brush plate, the system windows can enter the cleaning state, and the real-time mobilization of the components outside the window can realize the cleaning of the outer surface of the window. The flushing mechanism can flush the cleaning liquid on the outer surface of the window, and the cleaning brush plate can improve the cleaning effect of the window glass. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0020] Figure 1 A schematic diagram of the first viewing angle structure of the system window of the present invention is shown;
[0021] Figure 2 A schematic diagram of the second viewing angle structure of the system window of the present invention is shown;
[0022] Figure 3 A schematic diagram of the structure of the system window of the present invention from a third viewing angle is shown;
[0023] Figure 4 A schematic diagram of the sunshade structure of the present invention is shown;
[0024] Figure 5 A schematic diagram of the assembly structure of the storage cavity and the flushing mechanism of the present invention is shown;
[0025] Figure 6 A schematic diagram of the assembly structure of the liquid supply component and the flushing component of the present invention is shown;
[0026] Figure 7 A schematic diagram of the assembly structure of the transfer mechanism of the present invention is shown;
[0027] Figure 8 A schematic diagram of the assembly structure of the lifting assembly and the moving assembly of the present invention is shown;
[0028] Fig. 9 A schematic diagram of the assembly structure of the extension assembly of the present invention is shown;
[0029] Fig.10 A schematic diagram of the assembly structure of the mobile assembly of the present invention is shown;
[0030] Fig.11 A schematic diagram of the assembly structure of the extension assembly and the side window panel of the present invention is shown;
[0031] Fig.12 A schematic diagram of the assembly structure of the first side window plate, the liquid supply assembly and the locking assembly of the present invention is shown;
[0032] As shown in the figure: 1. Window; 2. First side window panel; 21. Placement chamber; 22. Locking chamber; 23. Pipe; 24. Positioning port; 25. Socket; 26. Installation chamber 1; 3. Storage cavity; 31. Exploration port; 4. Sunshade mechanism; 41. Cleaning assembly; 411. Scraping plate; 412. First guide rail; 413. Articulated telescopic rod; 414. Articulated seat; 42. Telescopic assembly; 421. Telescopic frame; 422. First transmission member; 423. First motor; 424, first threaded rod; 425, mounting block; 426, fifth motor; 427, flip shaft; 43, rainproof cloth; 5, flushing mechanism; 51, liquid supply assembly; 511, liquid supply box; 512, detachable joint; 513, liquid supply pipe; 52, flushing assembly; 521, second motor; 522, rotating shaft 1; 523, cover plate; 524, tooth joint 1; 525, flushing head; 526, rotating shaft 2; 527, first gear ; 528, liquid guide cavity; 6, front end shell; 7, cleaning brush plate; 71, docking joint; 8, locking assembly; 81, positioning hole; 82, plug joint; 83, positioning latch; 84, first electric telescopic cylinder; 9, maneuvering mechanism; 91, lifting assembly; 911, maneuvering arm; 912, transmission shaft; 913, second transmission member; 914, guide port; 915, bevel gear set; 916, second threaded rod; 917, third motor; 92, extension group Parts; 921, outer sleeve rod; 922, second electric telescopic cylinder; 923, inner sleeve rod; 924, connector; 925, installation cover; 926, fourth motor; 927, second guide rail; 93, moving assembly; 931, drive chamber; 932, third electric telescopic cylinder; 933, tooth joint 2; 934, dual-axis motor; 935, drive member; 936, tooth plate; 937, third guide rail; 10, second side window panel; 101, installation chamber 2. DETAILED DESCRIPTION
[0033] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0034] Embodiment 1
[0035] In order to solve the technical problems in the background technology, the following energy-saving system window with an external intelligent sunshade mechanism is provided:
[0036] Combination Figure 1-Figure 12As shown, the energy-saving system window of the external intelligent sunshade mechanism provided by the present invention comprises a window body 1, a first side window panel 2 and a second side window panel 10 are fixedly installed on both sides of the window body 1, a storage cavity 3 is installed on the top of the first side window panel 2 and the second side window panel 10, a sunshade mechanism 4 is installed inside the storage cavity 3, a front end shell 6 is installed at the end of the sunshade mechanism 4, an extended adjustment mechanism 9 is installed inside the front end shell 6, and the front end shell 6 can store the adjustment mechanism 9, a cleaning brush plate 7 is installed at the extended end of the adjustment mechanism 9, and the cleaning brush plate 7 and the adjustment mechanism 9 are installed and connected by a docking head 71, locking components 8 assembled and connected with the first side window panel 2 and the second side window panel 10 are installed on both sides of the bottom of the front end shell 6, and a flushing mechanism 5 is installed inside the storage cavity 3 and the first side window panel 2;
[0037] During this period, the window body 1 can not only jointly bear the external components through the first side window panel 2 and the second side window panel 10 on both sides, but also further increase the structural strength of the window body 1. The storage cavity 3 realizes the built-in installation of the sunshade mechanism 4 and realizes the storage of the sunshade mechanism 4. The sunshade mechanism 4 can not only utilize its own outward extension to realize the sunshade operation of the system window, but also can shade the system window in summer or when the light intensity is high. When entering the sunshade process, the impurities and foreign objects on the top of the system window can be cleaned, and the mechanism can switch its operating state again according to the environmental conditions. The mechanism is switched from the shading state to the protection state, and cooperates with the locking component 8 to realize its own state locking. The system window in the protection state can better cope with strong winds, reduce the impact of external airflow on the system window, and improve the sealing strength of the system window. The system window can enter the cleaning state through the mutual cooperation between the mobilization mechanism 9 and the cleaning brush plate 7. The cleaning treatment of the outer surface of the window 1 is realized through the real-time mobilization of the components outside the window 1. The flushing mechanism 5 can be used to flush the cleaning liquid on the outer surface of the window 1, and the cleaning effect of the window 1 glass can be improved by cooperating with the cleaning brush plate 7.
[0038] The sunshade mechanism 4 includes a cleaning component 41, a telescopic component 42, and a rainproof cloth 43; the flushing mechanism 5 includes a liquid supply component 51 and a flushing component 52; the mobilization mechanism 9 includes a lifting component 91, an extension component 92, and a moving component 93. The interior of the storage cavity 3 is equipped with an extended telescopic component 42, and the extended end of the telescopic component 42 is installed and connected to the front end shell 6. The front end shell 6 and the top of the storage cavity 3 are jointly equipped with a cleaning component 41, and the telescopic component 42 is covered with a rainproof cloth 43. The interior of the storage cavity 3 is equipped with a flushing component 52, the interior of the first side window panel 2 is equipped with a liquid supply component 51, and the interior of the front end shell 6 is equipped with a moving component 93. The bottom of the moving component 93 is docked with a lifting component 91, and the interior of the lifting component 91 is equipped with an extended extension component 92. The cleaning brush plate 7 is assembled at the end of the extension component 92 through a docking joint 71.
[0039] During this period, the telescopic component 42 and the rainproof cloth 43 on itself are unfolded, prompting the mechanism to enter the sunshade state, and when the telescopic component 42 is unfolded, it will synchronously pull the cleaning component 41, prompting the cleaning component 41 to enter the cleaning state, and clean the impurities and foreign objects on the storage cavity 3 and the side window plate to prevent them from being retained on the window 1, and the extension component 42 can also turn itself over according to the actual operation, prompting itself to enter the protection state, so that the sunshade faces the front of the window 1 for protection; when cleaning the window, the lifting component 91 is driven by the moving component 93 to prompt it Enter the downward extension state, and then switch its own operating state through the extension component 92, from the horizontal state to the right-angle state, and ensure that the end is close to the window 1. The personnel can open the window and assemble the cleaning brush plate 7 at the end of the extension component 92 through the docking joint 71, and then prepare to enter the cleaning state. When cleaning, the flushing component 52 inside the storage cavity 3 can be started, and the outside of the window 1 is flushed with cleaning liquid through the flushing component 52, and then the moving component 93 and the lifting component 91 are coordinated to complete the cleaning operation. During this period, the liquid supply component 51 supplies cleaning liquid to the flushing component 52.
[0040] Embodiment 2
[0041] like Figure 1 and Fig.12 As shown, based on the above embodiment, this embodiment further provides the following contents:
[0042] In this embodiment, the cleaning assembly 41 includes a scraper plate 411, a first guide rail 412, an articulated telescopic rod 413, and an articulated seat 414. The first guide rail 412 is fixedly installed on the top of the storage cavity 3, and the first guide rail 412 extends to the top of the first side window panel 2 and the adjustment mechanism 9. Two groups of scrapers 411 are slidably installed on the first guide rail 412, and articulated seats 414 are fixedly installed on both sides of the top of the front end shell 6. The scraper plate 411 is movably installed with an articulated telescopic rod 413, and the end of the articulated telescopic rod 413 is movably connected to the articulated seat 414.
[0043] During this period, when the telescopic component 42 performs the extension operation, the cleaning component 41 simultaneously enters the cleaning state;
[0044] The telescopic component 42 synchronously drives the front end shell 6 to push forward through telescoping, and synchronously pulls the hinged telescopic rod 413 through the hinged seat 414. When the hinged telescopic rod 413 reaches the longest telescopic point, it will synchronously pull the scraper plate 411, causing the scraper plate 411 to slide in the storage cavity 3 through the first guide rail 412. At this time, the scraper plate 411 can clean the impurities on the top of the storage cavity 3.
[0045] In this embodiment, the telescopic assembly 42 includes a telescopic frame 421, a first threaded rod 424, a mounting block 425, and a fifth motor 426. The telescopic frame 421 is movably installed inside the storage cavity 3, and the extending end of the telescopic frame 421 is docked with the front end shell 6, and the telescopic frame 421 is assembled and connected with the storage cavity 3 and the front end shell 6 through the mounting block 425. The fifth motor 426 is fixedly installed on one side inside the storage cavity 3, and the output end of the fifth motor 426 is docked with the first threaded rod 424, and the first threaded rod 424 passes through the mounting block 425 and is docked through a threaded structure.
[0046] During this period, when the system window enters the sunshade state, the fifth motor 426 can be started, and by starting the first threaded rod 424, one end of the telescopic frame 421 is driven to retract through the mounting block 425, so as to prompt the telescopic frame 421 to expand outward, and prompt the mechanism to enter the sunshade state; it should be noted that the telescopic frame 421 adopts a scissors-type telescopic structure.
[0047] The telescopic assembly 42 also includes a first transmission member 422, a first motor 423, and a flip shaft 427. An installation chamber 2 101 is provided in the second side window panel 10. The first motor 423 is fixedly installed inside the installation chamber 2 101. The output end of the first motor 423 is docked with the first transmission member 422. The two sides of the storage cavity 3 are docked with flip shafts 427 that are rotatably connected to the first side window panel 2 and the second side window panel 10. One end of the flip shaft 427 extends into the installation chamber 2 101. The first motor 423 is transmission-connected to the flip shaft 427 through the first transmission member 422.
[0048] By combining the above contents, when the system window needs to be switched to the protection state, the drive switching can be completed through the cooperation of the first motor 423;
[0049] During this period, the first motor 423 is started, and the first motor 423 drives the flip shaft 427 through the first transmission member 422, and drives the storage cavity 3 to flip down between the first side window panel 2 and the second side window panel 1 through the flip shaft 427, so that the telescopic frame 421 and the rainproof cloth 43 enter the protection state, thereby realizing the protection and shielding of the front of the window 1.
[0050] Embodiment 3
[0051] like Figure 1-Figure 12 As shown, based on the above embodiment, this embodiment further provides the following contents:
[0052] In this embodiment, the liquid supply component 51 includes a liquid supply box 511, a detachable joint 512, and a liquid supply pipe 513. A placement chamber 21 is provided on the back side of the first side window panel 2, and a pipe 23 is provided on the top of the placement chamber 21. The liquid supply box 511 is placed inside the placement chamber 21, and a detachable joint 512 is fixedly installed on the top of the liquid supply box 511. The liquid supply pipe 513 is connected to the liquid supply box 511 through the detachable joint 512. The liquid supply pipe 513 extends into the storage cavity 3 through the pipe 23, and the liquid supply box 511 is installed and connected to the flushing component 52 through the liquid supply pipe 513.
[0053] The liquid supply component 51 supplies liquid to the flushing component 52; the liquid supply component 51 can be disassembled and separated to facilitate personnel to replenish the cleaning liquid;
[0054] During this period, personnel can place the replenished liquid supply box 511 in the placement chamber 21, and a sealing cover is set at the opening of the placement chamber 21, and then connect the liquid supply box 511 with the liquid supply pipe 513 through the detachable joint 512, so that the mechanism enters the liquid supply state; it should be noted that the liquid supply box 511 is equipped with a liquid pump inside, and the output end of the liquid pump is connected to the detachable joint 512 through a lifting pipe, so that the cleaning liquid can be directly transported to the liquid supply pipe 513.
[0055] In this embodiment, the flushing assembly 52 includes a second motor 521, a rotating shaft 522, a cover plate 523, a toothed joint 524, a flushing head 525, a rotating shaft 526, a first gear 527, and a liquid guide cavity 528. The bottom of the storage cavity 3 is provided with an exploration port 31, and the two sides of the storage cavity 3 are fixedly installed with a rotating shaft 522, and a toothed joint 524 is installed through the rotating shaft 522. The bottom of the toothed joint 524 is fixedly installed with a cover plate 523, and the cover plate 523 is positioned at the bottom of the storage cavity 3. In the exploration port 31, a liquid guiding cavity 528 is fixedly installed on the top of the cover plate 523, and the back of the liquid guiding cavity 528 is evenly distributed with connected flushing heads 525, and a second rotating shaft 526 is dockedly installed inside the storage cavity 3, and a first gear 527 meshing with a tooth joint 524 is fixedly installed on the second rotating shaft 526, and an installation chamber 26 is provided in the first side window plate 2, and a second motor 521 is fixedly installed inside the installation chamber 26, and the output end of the second motor 521 is installed and connected to the second rotating shaft 526.
[0056] By combining the above contents, when the system window enters the cleaning state, the second motor 521 can be started, and the output end of the second motor 521 drives the second shaft 526 to rotate, and then the first gear 527 on the second shaft 526 synchronously drives the tooth joint 1 524 to rotate, and then the tooth joint 1 524 uses the shaft 1 522 as a rotation point to realize the downward flipping movement;
[0057] The cover plate 523 is synchronously driven to flip down through the tooth joint 1 524, so that the flushing head 525 on the cover plate 523 will be tilted downward, causing the port of the flushing head 525 to face the outside of the window 1;
[0058] During this period, after the cleaning liquid enters the liquid guiding cavity 528, it will be sprayed out through the flushing head 525, and the flushing head 525 will spray the cleaning liquid to the top of the window 1, so that the cleaning liquid will flow down from top to bottom, covering the entire surface of the window 1, achieving the purpose of flushing.
[0059] In this embodiment, the locking assembly 8 includes a positioning hole 81, a plug connector 82, a positioning pin 83, and a first electric telescopic cylinder 84. The plug connectors 82 are fixedly installed on both sides of the bottom of the front end shell 6, and the plug connectors 82 are provided with positioning holes 81. The first side window panel 2 and the second side window panel 10 are provided with locking chambers 22. The front of the first side window panel 2 and the second side window panel 10 is provided with a positioning port 24 connected to the locking chamber 22. The top of the locking chamber 22 is fixedly installed with a first electric telescopic cylinder 84, and the bottom of the first electric telescopic cylinder 84 is fixedly installed with a positioning pin 83. The plug connector 82 is inserted into the locking chamber 22 through the positioning port 24, and the positioning pin 83 is inserted and positioned by the first electric telescopic cylinder 84 to the positioning hole 81.
[0060] During this period, when the system window enters the protection state, the telescopic component 42 will synchronize with the front shell 6 to enter the downward flipping state, so that the telescopic component 42 and the front shell 6 can be fitted with the outer side of the window body 1, and then the locking component 8 enters the locking state;
[0061] In this state, the plug connector 82 will be synchronously inserted into the positioning port 24 and extend into the locking chamber 22, and then the first electric telescopic cylinder 84 will be started, which will drive the positioning pin 83 to descend, prompting the positioning pin 83 to be inserted into the positioning hole 81, thereby realizing the plug-in locking of the plug connector 82 and synchronously realizing the locking of the telescopic assembly 42 and the front end shell 6.
[0062] In this embodiment, the moving assembly 93 includes a driving chamber 931, a third electric telescopic cylinder 932, a toothed joint 933, a dual-axis motor 934, a driving member 935, a toothed plate 936, and a third guide rail 937. The interior of the front end shell 6 is slidably equipped with the driving chamber 931 through the third guide rail 937. The interior of the driving chamber 931 is docked with the toothed joint 933. The third electric telescopic cylinder 932 is fixedly installed on one side of the driving chamber 931, and the output end of the third electric telescopic cylinder 932 extends into the driving chamber 931. The output end of the third electric telescopic cylinder 932 is docked with a toothed plate 936, and the toothed plate 936 is meshed with the tooth end of the toothed joint 933. The bottom of the toothed joint 933 is connected to the top of the lifting assembly 91. The dual-axis motor 934 is fixedly installed on the top of the driving chamber 931, and the output end of the dual-axis motor 934 is equipped with a driving member 935 that cooperates with the front end shell 6 for transmission.
[0063] When in the cleaning state, the cleaning components can be mobilized by the moving assembly 93 to perform real-time movement adjustment to achieve a comprehensive cleaning operation on the window 1;
[0064] The mobile assembly 93 performs a two-stage maneuvering operation:
[0065] In the first stage, the output end of the third electric telescopic cylinder 932 drives the tooth plate 936 to reciprocate, and then the tooth plate 936 drives the meshing tooth joint 2 933 to rotate and swing around the installation point, so that the lifting assembly 91 can be driven by the tooth joint 2 933 to adjust the movement, so that the lifting assembly 91 enters or exits the storage state;
[0066] In the second stage, the dual-axis motor 934 is started, and the dual-axis motor 934 drives the driving member 935, causing the driving cavity 931 to move linearly in the front end housing 6 through the third guide rail 937, thereby driving the synchronous movement of the lower end assembly;
[0067] It should be noted that the driving member 935 is composed of a gear and a rack. The rack is fixedly installed on the top of the front end shell 6, and the gear is assembled on the output end of the dual-axis motor 934. Through the meshing drive of the two, the driving cavity 931 is driven to achieve the purpose of movement.
[0068] The lifting assembly 91 includes an adjusting arm 911, a transmission shaft 912, a second transmission member 913, a guide port 914, a bevel gear set 915, a second threaded rod 916, and a third motor 917. The adjusting arm 911 is fixedly installed at the bottom of the tooth joint 933, and the second threaded rod 916 is butt-jointedly installed at the top inside the adjusting arm 911. The second threaded rod 916 penetrates the moving assembly 92 through a threaded structure and drives the moving assembly 92. The third motor 917 and the transmission shaft 912 are fixedly installed at the top inside the adjusting arm 911. The second transmission member 913 is butt-jointedly installed at the output end of the third motor 917, and the third motor 917 is transmission-connected to the transmission shaft 912 through the second transmission member 913. The end of the transmission shaft 912 is equipped with a bevel gear set 915 transmission-connected to the second threaded rod 916, and a guide port 914 is provided on one side of the adjusting arm 911.
[0069] By combining the above contents, when the purpose of the lifting assembly 91 is to drive the extension assembly 92 to perform real-time lifting operations;
[0070] During this period, the third motor 917 is started, and the output end of the third motor 917 drives the second transmission member 913 to transmit, drives the transmission shaft 912 to rotate, and then drives the second threaded rod 916 to rotate through the direction change drive of the bevel gear set 915. Since the extension component 92 is limited by the adjustment arm 911 and is driven by the driving force of the second threaded rod 916, the linear drive of the extension component 92 is completed, so that the extension component 92 is prompted to perform lifting movement in the adjustment arm 911;
[0071] It should be noted that the transmission member 913 is composed of a worm gear, and the motor drives the worm gear to rotate to drive the worm gear.
[0072] The extension assembly 92 includes an outer rod 921, a second electric telescopic cylinder 922, an inner rod 923, a connector 924, a mounting cover 925, a fourth motor 926, and a second guide rail 927. The mounting cover 925 is slidably mounted inside the maneuvering arm 911 through the second guide rail 927. The outer rod 921 extending from the guide port 914 is movably mounted on the mounting cover 925. The inner rod 923 extending from the outer rod 921 is docked and mounted inside. The second outer rod 921 is fixedly mounted inside. An electric telescopic cylinder 922, and the output end of the second electric telescopic cylinder 922 is installed and connected to the inner end of the inner sleeve rod 923, the end of the inner sleeve rod 923 is docked with a connector 924, a socket 25 is provided at the bottom of the positioning port 24, and the connector 924 is docked with the socket 25, a second rotating shaft 926 is fixedly installed inside the mounting cover 925, and the output end of the second rotating shaft 926 is installed and connected to the rotating part of the outer sleeve rod 921, and the mounting cover 925 is penetrated by the second threaded rod 916 through a thread.
[0073] The extension component 92 can not only drive the cleaning member to clean the window 1, but also enter the auxiliary support state;
[0074] The extension assembly 92 performs a two-stage maneuvering operation:
[0075] In the first stage, the fourth motor 926 in the mounting housing 925 drives the outer rod 921, so that the outer rod 921 is movable and adjusted; when cleaning, it is only necessary to adjust the outer rod 921 and the adjustment arm 911 to a right angle to ensure that the cleaning surface of the cleaning member corresponds to the glass of the window 1;
[0076] In the second stage, when sunshade is performed, the second threaded rod 916 is used to linearly drive the mounting cover 925 to cause the mounting cover 925 to be raised in height, and then the second electric telescopic cylinder 922 is started to push the inner sleeve rod 923 to extend, and ensure that the end of the inner sleeve rod 923 can be smoothly inserted into the socket 25 to achieve docking with the socket 25. In this way, a supporting structure is realized, and support for the front end shell 6 is achieved, thereby ensuring the stability of the sunshade mechanism during operation.
[0077] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the presence of other identical elements in the process, method, article or device including the elements.
[0078] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. Energy-saving system window with external intelligent sunshade mechanism, characterized by: The window frame comprises a window body, wherein a first side window panel and a second side window panel are respectively fixedly mounted on two sides of the window body, a storage cavity is jointly mounted on the top of the first side window panel and the second side window panel, a sunshade mechanism is installed inside the storage cavity, a front end shell is jointly mounted on the end of the sunshade mechanism, an extended adjustment mechanism is installed inside the front end shell, and the front end shell can store the adjustment mechanism, a cleaning brush disc is jointly mounted on the extended end of the adjustment mechanism, and the cleaning brush disc and the adjustment mechanism are installed and connected via a docking head, locking components assembled and connected with the first side window panel and the second side window panel are mounted on both sides of the bottom of the front end shell, a flushing mechanism is jointly mounted on the storage cavity and the inside of the first side window panel, and the; The sunshade mechanism includes a cleaning component, a telescopic component, and a rainproof cloth; the flushing mechanism includes a liquid supply component and a flushing component; the mobilization mechanism includes a lifting component, an extension component, and a moving component. The interior of the storage cavity is equipped with an extended telescopic component, the extended end of the telescopic component is installed and connected to the front end shell, the front end shell and the top of the storage cavity are jointly equipped with a cleaning component, the telescopic component is covered with a rainproof cloth, the interior of the storage cavity is equipped with a flushing component, the interior of the first side window panel is equipped with a liquid supply component, the interior of the front end shell is equipped with a moving component, the bottom of the moving component is docked with a lifting component, the interior of the lifting component is equipped with an extended extension component, and the cleaning brush plate is assembled at the end of the extension component through a docking joint.
2. The energy-saving system window with an external intelligent sunshade mechanism according to claim 1 is characterized in that: The cleaning assembly includes a scraping plate, a first guide rail, an articulated telescopic rod, and an articulated seat. The first guide rail is fixedly installed on the top of the storage cavity, and the first guide rail extends to the top of the first side window plate and the adjustment mechanism. Two groups of scraping plates are slidably installed on the first guide rail. Articulated seats are fixedly installed on both sides of the top of the front end shell. An articulated telescopic rod is movably installed on the scraping plate, and the end of the articulated telescopic rod is movably connected to the articulated seat.
3. The energy-saving system window with an external intelligent sunshade mechanism according to claim 2 is characterized in that: The telescopic assembly includes a telescopic frame, a first threaded rod, a mounting block, and a fifth motor. The telescopic frame is movably mounted inside the storage cavity, the extending end of the telescopic frame is docked with a front end shell, and the telescopic frame is assembled and connected to the storage cavity and the front end shell through the mounting block, the fifth motor is fixedly mounted on one side inside the storage cavity, and the output end of the fifth motor is docked with the first threaded rod, the first threaded rod passes through the mounting block, and is docked with the threaded structure.
4. The energy-saving system window with an external intelligent sunshade mechanism according to claim 3 is characterized in that: The telescopic assembly also includes a first transmission member, a first motor, and a flip shaft. An installation chamber 2 is provided in the second side window panel, and a first motor is fixedly installed inside the installation chamber 2. The output end of the first motor is docked with the first transmission member, and flip shafts rotatably connected to the first side window panel and the second side window panel are docked with both sides of the storage cavity. One end of the flip shaft extends into the installation chamber 2, and the first motor is transmission-connected to the flip shaft through the first transmission member.
5. The energy-saving system window with an external intelligent sunshade mechanism according to claim 4 is characterized in that: The liquid supply assembly includes a liquid supply box, a detachable joint, and a liquid supply pipe. A placement chamber is provided on the back of the first side window panel, a pipeline is provided on the top of the placement chamber, a liquid supply box is placed inside the placement chamber, a detachable joint is fixedly installed on the top of the liquid supply box, the liquid supply box is butt-connected with the liquid supply pipe via the detachable joint, the liquid supply pipe extends into the storage cavity through the pipeline, and the liquid supply box is installed and connected to the flushing assembly via the liquid supply pipe.
6. The energy-saving system window with an external intelligent sunshade mechanism according to claim 5, characterized in that: The flushing component includes a second motor, a rotating shaft 1, a cover plate, a toothed joint 1, a flushing head, a rotating shaft 2, a first gear, and a liquid guiding cavity. An exploration port is provided at the bottom of the storage cavity. The rotating shaft 1 is fixedly installed on both sides of the storage cavity, and a toothed joint 1 is installed through the rotating shaft 1. The bottom of the toothed joint 1 is fixedly installed with a cover plate, and the cover plate is located in the exploration port. The liquid guiding cavity is fixedly installed on the top of the cover plate, and the back of the liquid guiding cavity is evenly distributed with connected flushing heads. The interior of the storage cavity is butt-connected with the rotating shaft 2, and the first gear meshing with the toothed joint 1 is fixedly installed on the rotating shaft 2. An installation chamber 1 is provided in the first side window panel, and the interior of the installation chamber 1 is fixedly installed with the second motor, and the output end of the second motor is connected to the rotating shaft 2.
7. The energy-saving system window with an external intelligent sunshade mechanism according to claim 6, characterized in that: The locking assembly includes a positioning hole, a plug connector, a positioning latch, and a first electric telescopic cylinder. Plug connectors are fixedly installed on both sides of the bottom of the front end shell, and the plug connectors are provided with positioning holes. Locking chambers are provided in the first side window panel and the second side window panel. The front of the first side window panel and the second side window panel is provided with a positioning port connected to the locking chamber. The top of the locking chamber is fixedly installed with a first electric telescopic cylinder, and the bottom of the first electric telescopic cylinder is fixedly installed with a positioning latch. The plug connector is inserted into the locking chamber through the positioning port, and the positioning latch is inserted and positioned by the first electric telescopic cylinder to the positioning hole.
8. The energy-saving system window with an external intelligent sunshade mechanism according to claim 7, characterized in that: The moving assembly includes a driving chamber, a third electric telescopic cylinder, a gear joint 2, a dual-axis motor, a driving member, a gear plate, and a third guide rail. The interior of the front end shell is slidably equipped with a driving chamber through the third guide rail, and the interior of the driving chamber is docked with a gear joint 2. A third electric telescopic cylinder is fixedly installed on one side of the driving chamber, and the output end of the third electric telescopic cylinder extends into the driving chamber. A gear plate is docked with the output end of the third electric telescopic cylinder, and the gear plate and the tooth end of the gear joint 2 are meshed with each other. The bottom of the gear joint 2 is connected to the top of the lifting assembly, and a dual-axis motor is fixedly installed on the top of the driving chamber, and the output end of the dual-axis motor is equipped with a driving member that cooperates with the front end shell for transmission.
9. The energy-saving system window with an external intelligent sunshade mechanism according to claim 8, characterized in that: The lifting assembly includes an adjusting arm, a transmission shaft, a second transmission member, a guide port, a bevel gear set, a second threaded rod, and a third motor. The adjusting arm is fixedly installed at the bottom of the tooth joint 2, and the second threaded rod is butt-jointedly installed at the top inside the adjusting arm. The second threaded rod penetrates the moving assembly through a threaded structure and drives the moving assembly. The third motor and a transmission shaft are fixedly installed at the top inside the adjusting arm, and the second transmission member is butt-jointedly installed at the output end of the third motor, and the third motor is connected to the transmission shaft through the second transmission member. The end of the transmission shaft is equipped with a bevel gear set connected to the second threaded rod, and a guide port is provided on one side of the adjusting arm.
10. The energy-saving system window with an external intelligent sunshade mechanism according to claim 9, characterized in that: The extension assembly includes an outer rod, a second electric telescopic cylinder, an inner rod, a connector, a mounting cover, a fourth motor, and a second guide rail. The mounting cover is slidably mounted inside the adjustment arm via the second guide rail. The outer rod extending out of the guide port is movably mounted on the mounting cover. The inner rod extending out of the guide port is butt-jointedly mounted inside the outer rod. The second electric telescopic cylinder is fixedly mounted inside the outer rod, and the output end of the second electric telescopic cylinder is mounted and connected to the inner end of the inner rod. A connector is butt-jointedly mounted on the end of the inner rod. A socket is provided at the bottom of the positioning port, and the connector is butt-jointedly matched with the socket. The fourth motor is fixedly mounted inside the mounting cover, and the output end of the fourth motor is mounted and connected to the rotating member of the outer rod. The mounting cover is penetrated by a second threaded rod through a thread.