Intelligent climbing frame with cleaning function
By introducing high load-bearing capacity, shock absorption, and self-cleaning mechanisms into the intelligent climbing scaffold, the problems of insufficient load-bearing capacity and inconvenient cleaning are solved, achieving a higher level of safety and automation.
Patent Information
- Application Number
- CN202520252046.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing intelligent climbing scaffolds have problems such as insufficient overall load-bearing capacity, lack of cushioning and shock absorption functions, and the need for manual cleaning of debris and dust.
A smart climbing frame with a self-cleaning function was designed, which includes a high load-bearing mechanism, a buffer and shock absorption mechanism, and a self-cleaning mechanism. The high load-bearing capacity, buffer and shock absorption and automatic cleaning are achieved by a servo motor driving the lead screw and the screw barrel.
It improves the load-bearing capacity and safety of the intelligent climbing scaffold, extends the service life of the climbing frame, and enables automated cleaning, thus enhancing the level of automation during use.
Smart Images

Figure CN223867604U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to intelligent climbing frame technical field, concretely is a kind of intelligent climbing frame with cleaning function. BACKGROUND
[0002] Climbing frame is also called lifting frame, can be divided into hydraulic type, electric type, manpower hand-pulled type according to its power source, is the new type scaffold system developed in recent years, mainly applied to high-rise shear wall type building, can climb up or descend along building, with the development of construction industry, the climbing frame equipment needed is increasing, widely distributed, therefore present needs a kind of intelligent climbing frame with cleaning function.
[0003] The existing intelligent climbing frame cannot prevent falling when using the lifting frame, thereby reducing the safety degree of the intelligent climbing frame when using, and the intelligent climbing frame is prone to falling when using, in addition, the overall bearing capacity of the existing intelligent climbing frame when using is not good, which makes the inside of the climbing frame when using cannot bear heavier objects, thereby reducing the safety degree of the intelligent climbing frame when using; the intelligent climbing frame will collide when resetting, the existing intelligent climbing frame usually does not have the function of buffering and damping the climbing frame, which reduces the service life of the climbing frame when using; the intelligent climbing frame will generate some object debris and dust when using, the existing intelligent climbing frame needs manual cleaning of object debris and dust when using, which reduces the automation degree of the intelligent climbing frame when using. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing an intelligent climbing frame with cleaning function to solve the problem of insufficient overall bearing capacity of the intelligent climbing frame when using, no function of buffering and damping the climbing frame and the need for manual cleaning of object debris and dust in the background technology.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a smart climbing frame with a self-cleaning function, comprising a climbing frame base, support frames mounted on the top surface of the climbing frame base, control buttons mounted on the surface of the support frames, a climbing frame located at the top of the climbing frame base, the climbing frame positioned between the support frames, a holding box inside the support frames, a first lead screw inside the holding box, the first lead screw rotatingly engaging with the inner wall of the holding box, an adjusting screw threaded onto the surface of the first lead screw, guide grooves provided on the inner walls of the support frames, the guide grooves slidingly engaging with the surface of the adjusting screw, and the adjusting screw... A connecting frame is installed on the surface of the cylinder, one end of which contacts the surface of the climbing frame. A discharge port is opened on the inner wall of the climbing frame, and the discharge port is connected to the interior of the climbing frame. Both the connecting frame and the surface of the climbing frame are provided with high load-bearing mechanisms. The interior of the high load-bearing mechanism includes a rotating screw, a fixed plate, and a high load-bearing component. A buffer and shock-absorbing mechanism is provided on the surface at the top of the climbing frame base. The interior of the buffer and shock-absorbing mechanism includes a fixed frame, a buffer plate, a protective plate, a rubber plate, a spring, and a shock-absorbing spring. The surface of the climbing frame is provided with a self-cleaning mechanism. The interior of the self-cleaning mechanism includes a second servo motor, a rotating screw, and a self-cleaning component.
[0006] Preferably, the inner wall of the support frame is provided with a groove, and the groove slides in contact with the surface of the connecting frame. The bottom surface of the climbing frame base is equipped with a sturdy base column to enhance the stability of the climbing frame base. The container box is equipped with a first servo motor. The input end of the first servo motor is electrically connected to the output end of the control button. The output end of the first servo motor is equipped with a rotating shaft through a coupling, and one end of the rotating shaft is fixed to the surface of the first lead screw.
[0007] Preferably, the high load-bearing component is disposed on the surface of the connecting frame and the climbing frame. The high load-bearing component consists of an anti-detachment plate, an anti-detachment suction cup, and a holding groove. Fixing plates are installed on both sides of the connecting frame. A rotating screw is threadedly connected to the surface of the fixing plate. One end of the rotating screw passes through the fixing plate and extends to the inner side of the fixing plate.
[0008] Preferably, an anti-detachment plate is provided on the inner side of the fixing plate. The surface of the anti-detachment plate rotates and engages with the surface of the rotating screw. The inner wall of the anti-detachment plate is in contact with the surface of the climbing frame. Each inner wall of the anti-detachment plate has a holding groove. An anti-detachment suction cup for preventing the climbing frame from loosening is installed inside the holding groove. The anti-detachment suction cup is a high-strength rubber suction cup, and the surface of the anti-detachment suction cup is in contact with the surface of the climbing frame.
[0009] Preferably, the top of the climbing frame base is provided with a rubber plate for protecting the bottom of the climbing frame, the surface of the top of the rubber plate is provided with a protection plate, the protection plate and the rubber plate are located below the climbing frame respectively, the surface of the top of the climbing frame base is provided with a fixed frame, the inside of the fixed frame is provided with a buffer plate, the buffer plate and the inner wall of the fixed frame are slidably connected, and the surface of the top of the buffer plate is fixed to the surface of the bottom of the rubber plate.
[0010] Preferably, the inside of the fixed frame is provided with a damping spring, the top of the damping spring is fixed to the surface of the bottom of the buffer plate, the surface of the top of the climbing frame base is provided with an equal-interval spring, and the top of the spring is fixed to the surface of the bottom of the rubber plate.
[0011] Preferably, the self-cleaning assembly is arranged on the surface of the climbing frame, the self-cleaning assembly is composed of a scraping plate, a second lead screw, a blocking plate and an electric push rod, the surface of the climbing frame is provided with the electric push rod, the input end of the electric push rod is electrically connected with the output end of the control button, the surface of the climbing frame is provided with the blocking plate for blocking the surface of the discharge port, the diameter of the blocking plate is greater than the diameter of the discharge port, the output end of the electric push rod is fixed to the surface of the blocking plate, the inside of the climbing frame is provided with the second lead screw, and the second lead screw and the inner wall of the climbing frame are rotationally connected.
[0012] Preferably, the surface of the second lead screw is threadedly connected with a rotating screw cylinder, the rotating screw cylinder and the inner wall of the climbing frame are slidably connected, the surface of the rotating screw cylinder is provided with the scraping plate for cleaning the bottom of the climbing frame, the scraping plate and the inner wall of the climbing frame are slidably connected, the inside of the climbing frame is provided with the second servo motor, the input end of the second servo motor is electrically connected with the output end of the control button, the output end of the second servo motor is provided with the shaft through the shaft coupling, and one end of the shaft is fixed to the surface of the second lead screw.
[0013] Compared with the prior art, the self-cleaning intelligent climbing frame has the advantages that the inside of the climbing frame can bear heavier objects when the intelligent climbing frame is used, the safety degree of the intelligent climbing frame is higher when the intelligent climbing frame is used, the intelligent climbing frame will not collide with the surface of the climbing frame base when the intelligent climbing frame is reset, the service life of the climbing frame is longer when the intelligent climbing frame is used, the inside of the climbing frame can be automatically cleaned when the intelligent climbing frame is used, and the automation degree of the intelligent climbing frame is higher when the intelligent climbing frame is used.
[0014] 1. By setting up high bearing mechanism, the user tightens the rotating screw on the surface of the fixed plate, so that the rotating screw drives the anti-off plate to move to contact with the surface of the climbing frame, at this time, the anti-off suction cups inside the holding tank move to contact with the surface of the climbing frame, under the action of the anti-off suction cups inside the holding tank, the firmness between the climbing frame and the connecting frame is higher, so that the climbing frame can bear higher weight objects, realizing the function of high bearing of intelligent climbing frame, so that the inside of the climbing frame can bear heavier objects when the intelligent climbing frame is used, and the safety degree of the intelligent climbing frame when used is higher;
[0015] 2. By setting up the buffer damping mechanism, when the bottom of the climbing frame moves downward to contact with the surface of the protective plate, the protective plate presses the rubber plate downward, so that the rubber plate drives the buffer plate to slide in the inside of the fixed frame, at this time, the buffer plate extrudes the damping spring in the inside of the fixed frame, under the joint action of the damping spring and the spring device, the impact force received by the protective plate and the rubber plate is unloaded and buffered, under the joint action of the protective plate and the rubber plate, the bottom of the climbing frame is protected, realizing the function of buffer damping of the intelligent climbing frame to the climbing frame, so that the intelligent climbing frame will not collide with the surface of the climbing base when resetting, and the service life of the climbing frame when used is longer;
[0016] 3. By setting up the self-cleaning mechanism, the second servo motor inside the climbing frame is controlled to work, under the action of the second servo motor, the second lead screw rotates in the inside of the climbing frame, under the thread cooperation of the second lead screw and the rotating screw cylinder, the rotating screw cylinder moves in the inside of the climbing frame, at this time, when the rotating screw cylinder moves in the inside of the climbing frame, the rotating screw cylinder drives the scraping plate to reciprocate left and right in the inside of the climbing frame, the blocking plate under normal state blocks the surface of the discharge port, when the user needs to clean the inside of the climbing frame, the blocking plate is away from the surface of the discharge port, under the action of the scraping plate, the debris and dust on one side of the discharge port are removed, so that the debris and dust can be discharged from the inside of the climbing frame through the discharge port, the inside of the climbing frame is self-cleaned, realizing the self-cleaning function of the intelligent climbing frame, so that the intelligent climbing frame can automatically clean the debris and dust of the objects in the inside of the climbing frame when used, and the automation degree of the intelligent climbing frame when used is higher. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a three-dimensional appearance structure schematic diagram of the utility model;
[0018] Figure 2 It is a front view cross section structure schematic diagram of the utility model;
[0019] Figure 3 It is a side view cross section enlarged structure schematic diagram of the utility model;
[0020] Figure 4 For the utility model Figure 2 The amplification structure schematic view of high and medium weight bearing mechanism;
[0021] Figure 5 For the utility model Figure 2 The amplification structure schematic view of high and medium buffer damping mechanism;
[0022] Figure 6 For the utility model Figure 3 The amplification structure schematic view of high and medium buffer damping mechanism;
[0023] Figure: 1, the climbing frame base;101, support frame;102, climbing frame;103, control button;104, first screw;105, containing box;106, adjusting screw cylinder;107, guide groove;108, first servo motor;109, groove body;110, connecting frame;111, stable bottom column;112, discharge port;2, high weight bearing mechanism;21, rotating screw;22, fixed plate;23, high weight bearing assembly;231, anti-off plate;232, anti-off suction disc;233, containing groove;3, buffer damping mechanism;31, fixed frame;32, buffer plate;33, protection plate;34, rubber plate;35, springer;36, shock absorbing spring;4, self-cleaning mechanism;41, second servo motor;42, rotating screw cylinder;43, self-cleaning assembly;431, scraping plate;432, second screw;433, baffle;434, electric push rod. Specific embodiments
[0024] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0025] The structure of the intelligent climbing frame with cleaning function provided by the utility model is as shown in Figure 1 and Figure 2As shown, the system includes a climbing frame base 1. Support frames 101 are mounted on the top surface of the climbing frame base 1. Control buttons 103 (LA series) are mounted on the surface of each support frame 101. A climbing frame 102 is located on the top of the climbing frame base 1, positioned between the support frames 101. A holding box 105 is located inside the support frame 101. A first lead screw 104 is installed inside the holding box 105, rotating in relation to the inner wall of the holding box 105. An adjusting screw cylinder 106 is threaded onto the surface of the first lead screw 104. Guide grooves 107 are provided on the inner wall of each support frame 101, slidingly engaging with the surface of the adjusting screw cylinder 106. A connecting frame 110 is mounted on the surface of the adjusting screw cylinder 106. One end of the connecting frame 110 contacts the surface of the climbing frame 102. The inner wall of the support frame 101 is provided with a groove 109, which slides in cooperation with the surface of the connecting frame 110. The bottom surface of the climbing frame base 1 is equipped with a stable base column 111 to enhance the stability of the climbing frame base 1. The container 105 is equipped with a first servo motor 108, which can be an S series model. The input end of the first servo motor 108 is electrically connected to the output end of the control button 103. The output end of the first servo motor 108 is equipped with a rotating shaft through a coupling, and one end of the rotating shaft is fixed to the surface of the first lead screw 104. The inner wall of the climbing frame 102 is provided with a discharge port 112, which is connected to the interior of the climbing frame 102.
[0026] Furthermore, such as Figure 2 and Figure 4 As shown, both the connecting frame 110 and the climbing frame 102 are equipped with high load-bearing mechanisms 2. The high load-bearing mechanism 2 contains a rotating screw 21, a fixing plate 22, and a high load-bearing component 23. The high load-bearing component 23 is installed on the surfaces of the connecting frame 110 and the climbing frame 102. The high load-bearing component 23 consists of an anti-detachment plate 231, an anti-detachment suction cup 232, and a holding groove 233. Fixing plates 22 are installed on both sides of the connecting frame 110. The rotating screw 21 is threadedly connected to the surface of the fixing plate 22. One end of the rotating screw 21 passes through and is fixed. Plate 22 extends to the inner side of fixed plate 22. An anti-detachment plate 231 is provided on the inner side of fixed plate 22. The surface of anti-detachment plate 231 rotates and engages with the surface of rotating screw 21. The inner wall of anti-detachment plate 231 contacts the surface of climbing frame 102. Each inner wall of anti-detachment plate 231 is provided with a holding groove 233. An anti-detachment suction cup 232 for preventing the climbing frame 102 from loosening is installed inside the holding groove 233. The anti-detachment suction cup 232 is a strong rubber suction cup. The surface of anti-detachment suction cup 232 contacts the surface of climbing frame 102.
[0027] During implementation, the user tightens the rotating screw 21 on the surface of the fixing plate 22, causing the rotating screw 21 to drive the anti-detachment plate 231 to move until it contacts the surface of the climbing frame 102. At this time, the anti-detachment suction cups 232 inside the holding slot 233 move to contact the surface of the climbing frame 102. Under the action of the anti-detachment suction cups 232 inside the holding slot 233, the firmness between the climbing frame 102 and the connecting frame 110 is higher, enabling the climbing frame 102 to bear heavier objects, thus realizing the high load-bearing capacity function of the intelligent climbing frame.
[0028] Furthermore, such as Figure 2 and Figure 5 As shown, a buffer and shock-absorbing mechanism 3 is provided on the surface of the top position of the climbing frame base 1. The buffer and shock-absorbing mechanism 3 includes a fixed frame 31, a buffer plate 32, a protective plate 33, a rubber plate 34, a spring 35, and a shock-absorbing spring 36. A rubber plate 34 for protecting the bottom of the climbing frame 102 is provided on the top of the climbing frame base 1. A protective plate 33 is installed on the surface of the top position of the rubber plate 34. The protective plate 33 and the rubber plate 34 are respectively located below the climbing frame 102. The surface of the top position of the climbing frame base 1 is equipped with a buffer and shock-absorbing mechanism 3. The fixed frame 31 has a buffer plate 32 inside. The buffer plate 32 slides with the inner wall of the fixed frame 31. The surface of the top of the buffer plate 32 is fixed to the surface of the bottom of the rubber plate 34. The fixed frame 31 is equipped with shock-absorbing springs 36. The top of the shock-absorbing springs 36 is fixed to the surface of the bottom of the buffer plate 32. The top surface of the climbing frame base 1 is equipped with evenly spaced elastic devices 35. The top of the elastic devices 35 is fixed to the surface of the bottom of the rubber plate 34.
[0029] During implementation, when the bottom of the climbing frame 102 moves downward to contact the surface of the protective plate 33, the protective plate 33 presses down on the rubber plate 34, causing the rubber plate 34 to drive the buffer plate 32 to slide inside the fixed frame 31. At this time, the buffer plate 32 presses down on the shock-absorbing spring 36 inside the fixed frame 31. Under the combined action of the shock-absorbing spring 36 and the elastic device 35, the impact force on the protective plate 33 and the rubber plate 34 is buffered and de-stressed. Under the combined action of the protective plate 33 and the rubber plate 34, the bottom of the climbing frame 102 is protected, so as to realize the function of the intelligent climbing frame in buffering and shock-absorbing the climbing frame 102.
[0030] Furthermore, such as Figure 3 and Figure 6As shown, a self-cleaning mechanism 4 is provided on the surface of the climbing frame 102. The self-cleaning mechanism 4 internally includes a second servo motor 41, a rotating screw 42, and a self-cleaning component 43. The self-cleaning component 43 is disposed on the surface of the climbing frame 102 and consists of a scraper 431, a second lead screw 432, a baffle plate 433, and an electric push rod 434. Electric push rods 434 are installed on the surface of the climbing frame 102. The electric push rod 434 can be of the DG series. The input end of the electric push rod 434 is electrically connected to the output end of the control button 103. A baffle plate 433 is provided on the surface of the climbing frame 102 to block the surface of the discharge port 112. The diameter of the baffle plate 433 is larger than the diameter of the discharge port 112. The output end of the electric push rod 434 is aligned with the surface of the baffle plate 433. The climbing frame 102 is fixed, and a second lead screw 432 is provided inside each of the climbing frames 102. The second lead screw 432 rotates with the inner wall of the climbing frame 102. A rotating screw cylinder 42 is threadedly connected to the surface of the second lead screw 432. The rotating screw cylinder 42 slides with the inner wall of the climbing frame 102. A scraper 431 for cleaning the bottom of the climbing frame 102 is installed on the surface of the rotating screw cylinder 42. The scraper 431 slides with the inner wall of the climbing frame 102. A second servo motor 41 is installed inside each of the climbing frames 102. The model of the second servo motor 41 can be S series. The input end of the second servo motor 41 is electrically connected to the output end of the control button 103. The output end of the second servo motor 41 is mounted with a shaft through a coupling, and one end of the shaft is fixed to the surface of the second lead screw 432.
[0031] During implementation, the second servo motor 41 inside the climbing frame 102 is controlled to operate. Under the action of the second servo motor 41, the second lead screw 432 is driven to rotate inside the climbing frame 102. The threaded engagement between the second lead screw 432 and the rotating screw 42 drives the rotating screw 42 to move inside the climbing frame 102. At this time, when the rotating screw 42 moves inside the climbing frame 102, it drives the scraper 431 to reciprocate left and right inside the climbing frame 102. Under normal conditions, the baffle 433 blocks the surface of the discharge port 112. When the user needs to adjust the climbing frame 102, the scraper 431 will move back and forth. When cleaning the inside of the lifting frame 102, the user operates the control button 103, which controls the electric push rod 434 on the surface of the lifting frame 102 to work. Under the action of the electric push rod 434, the baffle plate 433 is moved away from the surface of the discharge port 112. Under the action of the scraper plate 431, the debris and dust are directed to one side of the discharge port 112, so that the debris and dust can be discharged from the inside of the lifting frame 102 through the discharge port 112, thus performing self-cleaning treatment on the inside of the lifting frame 102 and realizing the self-cleaning function of the intelligent climbing frame.
[0032] Working principle: In use, first place the climbing frame base 1 in the designated position. The user places the climbing frame 102 between the support frames 101, so that the climbing frame 102 moves to contact the surface of the connecting frame 110. Then, the user tightens the rotating screw 21 on the surface of the fixing plate 22, so that the rotating screw 21 drives the anti-detachment plate 231 to move to contact the surface of the climbing frame 102. At this time, the anti-detachment suction cups 232 inside the holding slot 233 move to contact the surface of the climbing frame 102. Under the action of the anti-detachment suction cups 232 inside the holding slot 233, the firmness between the climbing frame 102 and the connecting frame 110 is higher, so that the climbing frame 102 can bear heavier objects, so as to realize the high load-bearing capacity of the intelligent climbing frame. Thus, when the intelligent climbing frame is used, the inside of the climbing frame 102 can bear heavier objects, so that the safety level of the intelligent climbing frame is higher.
[0033] Subsequently, the stability of the climbing frame base 1 is further enhanced by the stable base column 111. After the object to be lifted and transported is placed inside the climbing frame 102, the user operates the control button 103 on the surface of the support frame 101, causing the control button 103 to control the first servo motor 108 inside the holding box 105 to work. Under the action of the first servo motor 108, the first lead screw 104 is driven to rotate inside the holding box 105. Under the threaded engagement of the first lead screw 104 and the adjusting screw 106, the adjusting screw 106 is driven to move up and down inside the holding box 105. When the adjusting screw 106 moves, it slides inside the guide groove 107, which guides the adjusting screw 106. When the adjusting screw 106 moves up and down inside the holding box 105, it drives the connecting frame 110 and the climbing frame 102 to move up and down between the support frame 101, thereby lifting the object inside the climbing frame 102.
[0034] Subsequently, when the climbing frame 102 moves downward to reset, it is prone to colliding with the surface of the climbing frame base 1, causing damage to the bottom of the climbing frame 102. At this time, when the bottom of the climbing frame 102 moves downward to contact the surface of the protective plate 33, the protective plate 33 presses down on the rubber plate 34, causing the rubber plate 34 to drive the buffer plate 32 to slide inside the fixed frame 31. At this time, the buffer plate 32 presses down on the shock-absorbing spring 36 inside the fixed frame 31. Under the combined action of the shock-absorbing spring 36 and the elastic device 35, the impact force on the protective plate 33 and the rubber plate 34 is buffered. Under the combined action of the protective plate 33 and the rubber plate 34, the bottom of the climbing frame 102 is protected, so as to realize the function of the intelligent climbing frame in buffering and shock absorption of the climbing frame 102. This prevents the intelligent climbing frame from colliding violently with the surface of the climbing frame base 1 when resetting, thus extending the service life of the climbing frame 102 during use.
[0035] Subsequently, after the object inside the climbing frame 102 is removed, debris and dust may easily accumulate inside. At this time, the user operates the control button 103 on the surface of the support frame 101, causing the control button 103 to control the second servo motor 41 inside the climbing frame 102 to work. Under the action of the second servo motor 41, the second lead screw 432 rotates inside the climbing frame 102. The threaded engagement between the second lead screw 432 and the rotating screw 42 drives the rotating screw 42 to move inside the climbing frame 102. At this time, when the rotating screw 42 moves inside the climbing frame 102, it drives the scraper 431 to move back and forth inside the climbing frame 102. Under normal conditions, the baffle 433 blocks the surface of the discharge port 112. When the user needs to adjust the climbing frame... When cleaning the inside of the climbing frame 102, the user operates the control button 103, which controls the electric push rod 434 on the surface of the climbing frame 102 to work. Under the action of the electric push rod 434, the baffle plate 433 moves away from the surface of the discharge port 112. Under the action of the scraper plate 431, the debris and dust are directed to one side of the discharge port 112, so that the debris and dust can be discharged from the inside of the climbing frame 102 through the discharge port 112. This performs self-cleaning treatment on the inside of the climbing frame 102, realizing the self-cleaning function of the intelligent climbing frame. This allows the intelligent climbing frame to automatically clean the debris and dust inside the climbing frame 102 during use, making the intelligent climbing frame more automated during use and ultimately completing the use of the intelligent climbing frame.
[0036] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A smart climbing frame with self-cleaning function, comprising a climbing frame base (1), characterized in that: Support frames (101) are installed on the surface of the top of the climbing frame base (1). Control buttons (103) are installed on the surface of the support frames (101). A climbing frame (102) is provided on the top of the climbing frame base (1). The climbing frame (102) is located between the support frames (101). A holding box (105) is opened inside the support frame (101). A first lead screw (104) is provided inside the holding box (105). The first lead screw (104) rotates with the inner wall of the holding box (105). An adjusting screw cylinder (106) is threaded on the surface of the first lead screw (104). Guide grooves (107) are opened on the inner wall of the support frame (101). The guide grooves (107) slide with the surface of the adjusting screw cylinder (106). A connecting frame (110) is installed on the surface of the adjusting screw cylinder (106). One end of the connecting frame (110) is connected to the climbing frame. The surfaces of the lifting frame (102) are in contact with each other. The inner wall of the lifting frame (102) is provided with a discharge port (112). The discharge port (112) is connected to the interior of the lifting frame (102). The surfaces of the connecting frame (110) and the lifting frame (102) are both provided with a high load-bearing mechanism (2). The interior of the high load-bearing mechanism (2) includes a rotating screw (21), a fixing plate (22), and a high load-bearing component (23). The surface of the top position of the climbing frame base (1) is provided with a buffer and shock-absorbing mechanism (3). The interior of the buffer and shock-absorbing mechanism (3) includes a fixing frame (31), a buffer plate (32), a protective plate (33), a rubber plate (34), a spring (35), and a shock-absorbing spring (36). The surface of the lifting frame (102) is provided with a self-cleaning mechanism (4). The interior of the self-cleaning mechanism (4) includes a second servo motor (41), a rotating screw (42), and a self-cleaning component (43).
2. The intelligent climbing frame with self-cleaning function according to claim 1, characterized in that: The inner wall of the support frame (101) is provided with a groove (109), and the groove (109) slides and engages with the surface of the connecting frame (110). The bottom surface of the climbing frame base (1) is equipped with a sturdy base column (111) to enhance the stability of the climbing frame base (1). The container (105) is equipped with a first servo motor (108). The input end of the first servo motor (108) is electrically connected to the output end of the control button (103). The output end of the first servo motor (108) is equipped with a rotating shaft through a coupling, and one end of the rotating shaft is fixed to the surface of the first lead screw (104).
3. The intelligent climbing frame with self-cleaning function according to claim 1, characterized in that: The high load-bearing component (23) is installed on the surface of the connecting frame (110) and the climbing frame (102). The high load-bearing component (23) consists of an anti-detachment plate (231), an anti-detachment suction cup (232), and a holding slot (233). Fixing plates (22) are installed on both sides of the connecting frame (110). A rotating screw (21) is threadedly connected to the surface of the fixing plate (22). One end of the rotating screw (21) passes through the fixing plate (22) and extends to the inside of the fixing plate (22).
4. The intelligent climbing frame with self-cleaning function according to claim 3, characterized in that: An anti-detachment plate (231) is provided on the inner side of the fixing plate (22). The surface of the anti-detachment plate (231) rotates and engages with the surface of the rotating screw (21). The inner wall of the anti-detachment plate (231) is in contact with the surface of the climbing frame (102). The inner wall of the anti-detachment plate (231) is provided with a holding groove (233). An anti-detachment suction cup (232) for preventing the climbing frame (102) from loosening is installed inside the holding groove (233). The anti-detachment suction cup (232) is a strong rubber suction cup. The surface of the anti-detachment suction cup (232) is in contact with the surface of the climbing frame (102).
5. The intelligent climbing frame with self-cleaning function according to claim 1, characterized in that: The top of the climbing frame base (1) is provided with a rubber plate (34) for protecting the bottom of the climbing frame (102). A protective plate (33) is installed on the surface of the top position of the rubber plate (34). The protective plate (33) and the rubber plate (34) are respectively located below the climbing frame (102). A fixed frame (31) is installed on the surface of the top position of the climbing frame base (1). A buffer plate (32) is provided inside the fixed frame (31). The buffer plate (32) and the inner wall of the fixed frame (31) slide against each other. The surface of the top position of the buffer plate (32) is fixed to the surface of the bottom position of the rubber plate (34).
6. The intelligent climbing frame with self-cleaning function according to claim 5, characterized in that: The fixed frame (31) is equipped with shock-absorbing springs (36) inside. The top of the shock-absorbing springs (36) is fixed to the surface at the bottom of the buffer plate (32). The surface at the top of the climbing frame base (1) is equipped with elastic devices (35) at equal intervals. The top of the elastic devices (35) is fixed to the surface at the bottom of the rubber plate (34).
7. The intelligent climbing frame with self-cleaning function according to claim 1, characterized in that: The self-cleaning component (43) is disposed on the surface of the climbing frame (102). The self-cleaning component (43) consists of a scraper (431), a second lead screw (432), a baffle plate (433), and an electric push rod (434). The surface of the climbing frame (102) is equipped with an electric push rod (434). The input end of the electric push rod (434) is electrically connected to the output end of the control button (103). The surface of the climbing frame (102) is provided with a baffle plate (433) for blocking the surface of the discharge port (112). The diameter of the baffle plate (433) is larger than the diameter of the discharge port (112). The output end of the electric push rod (434) is fixed to the surface of the baffle plate (433). The interior of the climbing frame (102) is provided with a second lead screw (432). The second lead screw (432) rotates and engages with the inner wall of the climbing frame (102).
8. The intelligent climbing frame with self-cleaning function according to claim 7, characterized in that: The second lead screw (432) is threadedly connected to a rotating screw cylinder (42), which slides against the inner wall of the climbing frame (102). The rotating screw cylinder (42) is mounted on the surface of the rotating screw cylinder (42) for cleaning the bottom of the climbing frame (102). The scraper (431) slides against the inner wall of the climbing frame (102). The climbing frame (102) is equipped with a second servo motor (41). The input end of the second servo motor (41) is electrically connected to the output end of the control button (103). The output end of the second servo motor (41) is mounted with a shaft through a coupling, and one end of the shaft is fixed to the surface of the second lead screw (432).