A cleaning device for aluminum alloy door and window processing and use method thereof

By designing cleaning equipment for aluminum alloy doors and windows processing, and using mobile components and locking components to achieve comprehensive cleaning of doors and windows, the problem that existing equipment cannot clean the sides and lower frames is solved, and the cleaning efficiency and effect are improved.

CN119565979BActive Publication Date: 2025-05-23ANXIN JIAHE (SHANDONG) CONSTR DEV CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202510114545.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-05-23
Estimated Expiration
2045-01-24

AI Technical Summary

Technical Problem

Existing aluminum alloy door and window cleaning equipment cannot effectively clean the sides and lower frames of doors and windows, resulting in residual impurities and affecting the cleaning effect.

Method used

设计了一种铝合金门窗加工用清洗设备,采用移动组件和锁紧组件,通过调节连接架的位置和角度,实现对门窗的上、下和侧边的全面清洗。

Benefits of technology

It has achieved cleaning of all sides of doors and windows, improving cleaning efficiency and effect, and ensuring that the surface of doors and windows is clean and tidy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119565979B_ABST
    Figure CN119565979B_ABST
Patent Text Reader

Abstract

A cleaning device for aluminum alloy door and window processing and a method of using the same relate to the technical field of aluminum alloy door and window cleaning. The technical solution is: comprising a water tank, two support frames are connected to the side wall of the water tank, two mounting beams are slidably connected between the two support frames, two connecting frames are arranged between the two mounting beams, and the two sides of the two connecting frames are connected to second moving blocks through rotating shafts. The beneficial effect of the technical solution is: through the first moving block, the second moving block moving assembly and the locking assembly, the second moving block can be adjusted to move, and the upper frame of the door and window can be cleaned. After that, the first moving block is adjusted so that the connecting frame changes from a horizontal state to a vertical state. The hydraulic cylinder controls the crossbeam to move downward, and the two side edges of the door and window are cleaned. The third electric push rod controls the first cleaning frame to reciprocate, and the lower frame of the door and window is cleaned, thereby achieving the cleaning of all four sides of the door and window, improving the cleaning efficiency, and achieving a good cleaning effect.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of aluminum alloy door and window cleaning, and in particular to a cleaning device for aluminum alloy door and window processing and a use method thereof. Background Art

[0002] Aluminum alloy doors and windows are windows with frame and sash structures made of aluminum alloy architectural profiles. They are divided into ordinary aluminum alloy doors and windows and thermally insulated aluminum alloy doors and windows. Aluminum alloy windows are beautiful, sealed, and have high strength. They are widely used in the field of construction engineering. In home decoration, aluminum alloy doors and windows are often used to encapsulate balconies. The surface of the aluminum alloy is oxidized to be smooth and shiny. The window sash frame is large and can be inlaid with a larger area of ​​glass, allowing sufficient and bright light in the room, enhancing the virtual and real contrast between the indoor and outdoor facades, making the room more layered. The aluminum alloy itself is easy to extrude, the cross-sectional dimensions of the profile are precise, and the processing accuracy is high.

[0003] Application No. 202311258863.4 discloses a cleaning device for the production of aluminum alloy doors and windows, specifically comprising: a cleaning pool, the cleaning pool having a square cleaning chamber, and a conveyor belt arranged on one side of the cleaning pool, the conveyor belt is fixedly connected to the side of the cleaning pool through a bracket, the cleaning pool is rotatably connected to a rotating shaft, the rotating shaft is sleeved and fixedly connected with a cleaning device, and one side of the rotating shaft is fixedly connected to a driving shaft of a driving motor. The present application can perform different treatments on multiple groups of workpieces at the same time, which is convenient for improving the treatment and cleaning efficiency, and is convenient for flushing away dirty water on the workpieces, which can avoid dirty water remaining on the workpieces, and the cleanliness is relatively high.

[0004] During cleaning, the electric brush head of this patent only cleans the upper and lower surfaces of the doors and windows, and cannot clean the sides of the doors and windows. This means that during the cleaning process, although the main surfaces can be effectively brushed, impurities such as dust and stains on the sides of the door and window frames may still remain and cannot be completely removed by the electric brush head. Although the cleaning nozzle used later can spray water to rinse the surface, impurities on the surface of the doors and windows, especially at the corners, cannot be completely rinsed, and water cannot rinse the lower surface of the lower frame of the doors and windows, resulting in a cleaning effect that is not as ideal as expected. Summary of the invention

[0005] The purpose of the present invention is to overcome the shortcomings that the current doors and windows cannot clean multiple surfaces, resulting in accumulation of impurities on the surfaces of the doors and windows, affecting the appearance quality of the doors and windows, and to propose a cleaning device for aluminum alloy door and window processing and a method of using the same.

[0006] In order to achieve the above object, the present invention adopts the following technical solutions:

[0007] A cleaning device for processing aluminum alloy doors and windows comprises a water tank, two supporting frames are connected to the side walls of the water tank, two mounting beams are slidably connected between the two supporting frames, two connecting frames are arranged between the two mounting beams, two side surfaces of the two connecting frames are connected to second moving blocks through rotating shafts, second slide grooves are arranged on the two mounting beams, the second moving block is slidably connected to the second slide groove, the groove bottom of the second slide groove is through-arranged, moving components are arranged on the two mounting beams, two first moving blocks are arranged on the moving components, push rods are hinged on the upper surfaces of the two first moving blocks, one end of the push rod away from the first moving block is hinged on the connecting frame, a locking component is arranged on the first moving block, and the locking component can pass through the second slide groove to connect the first moving block and the second moving block; two water spraying frames and a second cleaning frame are slidably connected to the connecting frame, and the second cleaning frame is located between the two water spraying frames.

[0008] When the locking assembly connects the first moving block and the second moving block, the moving assembly can drive the second moving block to move together through the first moving block, thereby driving the connecting frame to move, and controlling the connecting frame to move along the length direction of the upper frame of the doors and windows to clean the upper frame of the doors and windows. When the locking assembly does not connect the first moving block and the second moving block, the movement of the first moving block will control the connecting frame to rotate on the second moving block, so that the connecting frame is changed from a horizontal setting to a vertical setting. Two water spray frames, one water spray frame can be set with cleaning liquid, and the other water spray frame can be set with clean water.

[0009] Preferably, the moving component includes two mounting rods arranged on the mounting beam, the two mounting rods are connected by forward and reverse threaded rods, one of the mounting rods is connected to a first motor, the output shaft of the first motor is connected to one end of the forward and reverse threaded rods, two first moving blocks are respectively connected to the two ends of the forward and reverse threaded rods, two L-shaped sliding rods are respectively arranged on the upper surfaces of the two first moving blocks, first sliding grooves are respectively arranged on the two side surfaces of the crossbeam, and the two L-shaped sliding rods are respectively installed in the two first sliding grooves.

[0010] The moving assembly controls the movement of the two first moving blocks, and the horizontal section of the L-shaped sliding rod is slidably arranged in the first sliding groove, and the L-shaped sliding rod facilitates the sliding of the first moving blocks.

[0011] Preferably, the locking assembly includes a fixed rod arranged on the first movable block, the upper end of the fixed rod extends into the second sliding groove, the upper end of the fixed rod is provided with a placement groove, the bottom of the placement groove is connected with a spring, the end of the spring away from the fixed rod is connected with a protrusion, and the lower surface of the second movable block is provided with a connecting groove, the side walls at both ends of the connecting groove are both inclined, and a connecting hole is provided in the middle of the connecting groove, and the two side walls of the connecting hole are both inclined.

[0012] When the second moving block is not fixed, the setting of the fixing rod and the protrusion can push the second moving block to slide together. When the second moving block is limited, when the fixing rod and the protrusion move, the protrusion will first abut against the inclined side wall of the connecting hole. As the first moving block drives the fixing rod to move, the protrusion will squeeze the spring, and then the fixing rod and the protrusion will move out of the connecting hole.

[0013] Preferably, a top plate is provided on the support frame, and two hydraulic cylinders are provided on the top plate, and piston rods of the two hydraulic cylinders are respectively connected to the two cross beams.

[0014] The hydraulic cylinder controls the crossbeam to move downward, and the crossbeam controls the two mounting beams to move together, so that the connecting frame cleans the frames of the doors and windows.

[0015] Preferably, the upper end of the mounting rod is connected to a fixing plate, the upper surface of the fixing plate is connected to the first electric push rod, and a limiting hole is provided on the second moving block, and the limiting hole is provided corresponding to the first electric push rod.

[0016] The end of the first electric push rod extends into the limiting hole, thereby limiting the second moving block

[0017] Preferably, a placing rack is installed on the surface of the connecting rack, and the placing rack is connected to a second motor, a connecting disk is connected to the output shaft of the second motor, a plurality of half teeth are connected to one side of the connecting disk, a rotating shaft is rotatably connected to the placing rack, two gears are connected to the upper end of the rotating shaft, one of the gears is meshed with the half teeth on the connecting disk, the lower end of the rotating shaft passes through the connecting rack and extends to the bottom of the connecting rack, a turntable is connected to the lower end of the rotating shaft, two adjusting rods are connected to the surface of the turntable, a moving rod is rotatably connected to the adjusting rod, and one end of the moving rod away from the adjusting rod is rotatably connected to the water spray rack, and the second cleaning rack is located below the turntable, and one of the water spray racks is connected to the second cleaning rack by a cross bar.

[0018] The arrangement of the connecting plate, the two gears and the rotating plate can control the two water spray racks to perform reciprocating motion. When the second moving block moves, one position can be cleaned multiple times, thereby improving the cleaning efficiency.

[0019] Preferably, two second electric push rods are connected to the two side surfaces of the support frame, one end of the two second electric push rods passes through the side wall of the support frame and is connected to a limiting plate, and notches are provided on the opposite sides of the two beams, and the notches are correspondingly arranged with the limiting plates.

[0020] The second electric push rod controls the movement of the limit plate, which limits the two frames of the doors and windows. When the beam moves to the side of the limit plate, the limit plate moves into the notch to facilitate the vertical movement of the beam.

[0021] Preferably, the side wall of the water tank is connected to a placement plate, the placement plate is connected to a third electric push rod, one end of the third electric push rod passes through the side wall of the water tank and is connected to a first cleaning rack, and the first cleaning rack is slidably connected to the two side walls of the water tank.

[0022] The third electric push rod controls the first cleaning frame to perform reciprocating motion to clean the lower frames of the doors and windows.

[0023] Preferably, a movable plate is arranged below the second movable block, and the upper surface of the movable plate is respectively connected to the fourth electric push rod and the mounting plate, a connecting rod is connected to one side of the second movable block, the upper end of the fourth electric push rod is connected to the connecting rod, the second movable block is slidably connected to the mounting plate, an opening is arranged on the movable plate, and the second movable block is located above the opening.

[0024] According to the size of the upper frame of the door and window, the second moving block can be connected to the first moving block at any time.

[0025] A method for using a cleaning device for processing aluminum alloy doors and windows, using the cleaning device for processing aluminum alloy doors and windows as described above, comprising the following steps:

[0026] S1: First, the doors and windows to be cleaned are placed between the support frames, with the lower part of the doors and windows located on the upper surface of the first cleaning frame. The four second electric push rods push the limit plates to move, and the four limit plates respectively limit the two sides of the doors and windows;

[0027] S2: The telescopic end of the first electric push rod extends into the limiting hole on the corresponding second moving block to limit the second moving block. Then the first motor controls the positive and negative threaded rods to rotate, so that the two first moving blocks move in opposite directions. The two first moving blocks drive the fixed rod to move. Since the side wall of the connecting hole is inclined, the second moving block is restricted. When the fixed rod moves, the protrusion squeezes the spring. As the first moving block moves, the protrusion moves out of the connecting groove. In this way, the first moving block continues to move, causing the push rod to push the connecting frame, so that the connecting frame changes from a vertical state to a horizontal state.

[0028] S3: The hydraulic cylinder controls the crossbeam to move downward, and the crossbeam drives the two mounting beams to move downward together, so that the second cleaning frame on the connecting frame is located on the upper surface of the door and window;

[0029] S4: The first motor controls the forward and reverse threaded rods to reverse, and controls the two first moving blocks to move toward each other, so that the fixed rod drives the protrusion to move into the connecting hole, and then the first electric push rod is reset, and the first motor continues to rotate, controlling the two first moving blocks to continue to move, and the protrusion and the fixed rod drive the second moving block to move together, and the second moving block drives the corresponding connecting frame to move, so as to clean the upper frame of the entire door and window;

[0030] S5: The second motor drives the connecting plate to rotate, and the half teeth on the connecting plate first mesh with a gear to control the rotation of the rotating shaft, and the rotating shaft drives the rotating disk below to rotate. The rotating disk drives the corresponding water spray rack to move first through two adjusting rods and a moving rod. As the connecting plate rotates, the half teeth on the connecting plate will mesh with another gear, thereby controlling the rotating shaft to reverse, so that the rotating plate is reset, and the water spray rack is reset again, so that the water spray rack and the second adjusting rod reciprocate, and one water spray rack sprays water on the doors and windows that need to be cleaned first, and at the same time, the second adjusting rod in the middle position cleans the side walls of the doors and windows, and the other water spray rack sprays water on the surface of the cleaned doors and windows, so that the three surfaces of the upper frames of the doors and windows are cleaned;

[0031] S6: After the upper frame of the door and window is cleaned, the first motor and the positive and negative threaded rods control the two first moving blocks to reset, and the first electric push rod limits the corresponding second moving block again, and then the first motor and the positive and negative threaded rods control the two first moving blocks to move again so that the protrusion moves out of the connecting groove, and then the first moving block continues to move so that the connecting frame changes from a horizontal state to a vertical state;

[0032] S7: The two hydraulic cylinders push the two beams to move downward, and the beams drive the mounting beams to move downward, so that the connecting frame moves downward along the frame of the door and window, so that the two water spraying frames and the first cleaning frame move downward together to clean the frame of the door and window;

[0033] S8: When the crossbeam moves to the side of the limit plate, the two second electric push rods located above control the limit plate to reset. When the crossbeam moves downward, the notch on the crossbeam facilitates the limit plate to pass through the notch. Then the crossbeam controls the installation beam to continue moving until it moves to the bottom of the door and window frame.

[0034] S9: The third electric push rod controls the first cleaning frame to move to clean the lower frame of the doors and windows.

[0035] Compared with the prior art, the beneficial effects of the present invention are as follows: through the first moving block, the second moving block moving assembly and the locking assembly, the second moving block can be adjusted to move to clean the upper frame of the doors and windows, and then the first moving block is adjusted to change the connecting frame from a horizontal state to a vertical state, and the hydraulic cylinder controls the crossbeam to move downward to clean the two side edges of the doors and windows, and the third electric push rod controls the first cleaning frame to reciprocate to clean the lower frame of the doors and windows, thereby achieving cleaning of all four sides of the doors and windows, improving the cleaning efficiency, and achieving a good cleaning effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the technical solution of the present invention, the accompanying drawings required for use in the description will be briefly introduced below. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For ordinary technicians in this field, other accompanying drawings can be obtained based on these accompanying drawings without paying creative work.

[0037] Figure 1 It is a front view of a specific embodiment of the present invention.

[0038] Figure 2 It is a side view of a specific embodiment of the present invention.

[0039] Figure 3 It is a top view on the installation beam in a specific embodiment of the present invention.

[0040] Figure 4 It is a schematic diagram of the structure of the installation beam in a specific implementation manner of the present invention.

[0041] Figure 5 for Figure 1 Enlarged view of point A.

[0042] Figure 6 It is a schematic diagram of the structure inside the connecting frame in a specific implementation manner of the present invention.

[0043] Figure 7 It is a schematic structural diagram of a connecting frame in a specific implementation manner of the present invention.

[0044] Figure 8 It is a schematic structural diagram of the first moving block in a specific implementation manner of the present invention.

[0045] Fig. 9 It is a schematic diagram of the structure of the connecting groove on the second moving block in a specific implementation manner of the present invention.

[0046] Fig.10 It is a schematic diagram of the structure of the second moving block in a specific implementation manner of the present invention.

[0047] Fig.11 It is a schematic structural diagram of a water spray rack in a specific implementation manner of the present invention.

[0048] Fig.12 It is a schematic diagram of the structure of the cleaning frame in a specific implementation manner of the present invention.

[0049] Fig.13 It is a schematic diagram of the structure of the second moving block in the specific implementation mode 2 of the present invention.

[0050] In the figure: 1, water tank, 2, support frame, 3, top plate, 4, hydraulic cylinder, 5, cross bar, 6, spring, 7, fixing rod, 8, limit hole, 9, bump, 10, first electric push rod, 11, cross beam, 12, push rod, 13, L-shaped slide bar, 14, first moving block, 15, positive and negative threaded rod, 16, connecting hole, 17, connecting frame, 18, first slide groove, 19, mounting beam, 20, mounting rod, 21, first motor, 22, second electric push rod, 23, limit plate, 24, third electric push rod, 25, release Placement plate, 26, first cleaning frame, 27, rotating shaft, 28, half teeth, 29, connecting groove, 30, second motor, 31, connecting plate, 32, notch, 33, fixed plate, 34, second slide groove, 35, placement frame, 36, gear, 37, second moving block, 38, water spray frame, 39, slider, 40, nozzle, 41, second cleaning frame, 42, adjusting rod, 43, moving rod, 44, turntable, 45, fourth electric push rod, 46, moving plate, 47, opening, 48, mounting plate, 49, connecting rod. DETAILED DESCRIPTION

[0051] In order to make the purpose, features and advantages of the present invention more obvious and easy to understand, the technical scheme of the present invention will be clearly and completely described below in conjunction with the drawings in this specific embodiment. Obviously, the embodiments described below are only part of the embodiments of the present invention, not all of them. Based on the embodiments in this patent, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this patent. Example 1

[0052] Reference Figure 1 - Fig.12A cleaning device for processing aluminum alloy doors and windows includes a water tank 1. Two support frames 2 are connected to the side walls of the water tank 1. The support frame 2 is composed of four support columns. A horizontal column is connected between two adjacent support columns. Two horizontal beams 11 are slidably connected to the corresponding support columns respectively. Two mounting beams 19 are slidably connected between the two support frames 2. The mounting beams 19 can move vertically up and down along the support frames 2. Two connecting frames 17 are arranged between the two mounting beams 19. The two sides of the two connecting frames 17 are connected to second moving blocks 37 through rotating shafts. The connecting frames 17 can rotate on the two second moving blocks 37. The connecting frames 17 can be changed from a horizontal state to a vertical state to move the door After cleaning the upper frame of the window, clean the two frames of the door and window. The two mounting beams 19 are provided with a second slide groove 34, and the second moving block 37 is slidably connected to the second slide groove 34. The second slide groove 34 facilitates the sliding of the second moving block 37. The bottom of the second slide groove 34 is a through setting. The two mounting beams 19 are provided with a moving assembly, and the moving assembly is provided with two first moving blocks 14. The upper surfaces of the two first moving blocks 14 are hinged with push rods 12, and the end of the push rod 12 away from the first moving block 14 is hinged on the connecting frame 17. The first moving block 14 is provided with a locking assembly. The connecting frame 17 includes a horizontal section and two vertical sections. The horizontal section of the connecting frame 17 is connected to the The two push rods 12 are hingedly arranged, and the two vertical sections are located between the hinges of the two push rods 12 and the connecting frame 17. The two water spray frames 38 and the second cleaning frame 41 are slidably connected to the two vertical sections of the connecting frame 17. The locking assembly can pass through the second slide groove 34 to connect the first moving block 14 and the second moving block 37; the connecting frame 17 is slidably connected to the two water spray frames 38 and the second cleaning frame 41, which are slidably connected to the connecting frame 17 through the slider 39, and the second cleaning frame 41 is located between the two water spray frames 38. One water spray frame 38 first sprays cleaning liquid or water, and the second cleaning frame 41 rubs the surface of the doors and windows to remove the oil attached to the surface of the doors and windows. Dirt and the like are forcibly scraped off, and then another water spraying frame 38 sprays clean water to clean away impurities such as oil and dirt. The first cleaning frame 26, the second cleaning frame 41 and the two water spraying frames 38 are all U-shaped, and the three sides of the two water spraying frames 38 are all provided with nozzles 40, and the three sides of the first cleaning frame 26 and the second cleaning frame 41 are all provided with cleaning brushes. In order to consider the transition of the connecting frame 17 from vertical to horizontal, the two side edges of the first cleaning frame 26 and the second cleaning frame 41 are slidingly arranged and connected by an electric push rod. In this way, according to the thickness of the doors and windows, the positions of the two side edges are adjusted to clean the surfaces of the doors and windows. In this way, the three surfaces of the doors and windows can be cleaned at the same time during processing, thereby improving the cleaning effect;When in use, the connecting frame 17 is first set horizontally, and the locking assembly first limits the second moving block 37. At this time, when the moving assembly controls the second moving block 37 to move, the second moving block 37 controls the connecting frame 17 to be horizontal, so as to clean the upper frame surface of the door and window. After the upper frame of the door and window is cleaned, the locking assembly is removed from the second moving block 37, and the movement of the moving assembly controls the movement of the second moving block 37, thereby controlling the connecting frame 17 to be in a vertical state, so as to clean the two frames of the door and window. ;

[0053] Reference Figure 1 , Figure 3 and Figure 4 The moving assembly includes two mounting rods 20 arranged on the mounting beam 19, and the two mounting rods 20 are connected by a forward and reverse threaded rod 15, and a first motor 21 is connected to one of the mounting rods 20, and an output shaft of the first motor 21 is connected to one end of the forward and reverse threaded rod 15, and two first moving blocks 14 are respectively connected to the two ends of the forward and reverse threaded rod 15, and two L-shaped sliding rods 13 are arranged on the upper surfaces of the two first moving blocks 14, and first sliding grooves 18 are arranged on the two side surfaces of the crossbeam 11, and the two L-shaped sliding rods 13 are respectively installed in the two first sliding grooves 18, and the two L-shaped sliding rods 13 support the first moving block 14 and facilitate the movement of the first moving block 14, and the first The motor 21 controls the rotation of the forward and reverse threaded rods 15, thereby controlling the sliding of the first moving block 14. When the locking assembly connects the first moving block 14 and the second moving block 37, the movement of the first moving block 14 controls the movement of the second moving block 37. The second moving block 37 drives the connecting frame 17 to move along the straight line of the upper frame of the doors and windows to clean the upper frame of the doors and windows. When the angle of the connecting frame 17 needs to be adjusted, the first motor 21 and the forward and reverse threaded rods 15 control the corresponding movement of the first moving block 14, and the locking assembly controls the separation of the first moving block 14 and the second moving block 37. In this way, the direction of movement of the first moving block 14 is adjusted according to on-site requirements, thereby making the connecting frame 17 rotate in a certain direction.

[0054] Reference Figure 1 , Figure 3 , Figure 4 , Figure 8 , Fig. 9 and Fig.10, the locking assembly includes a fixed rod 7 provided on the first moving block 14. The upper end of the fixed rod 7 extends into the second sliding groove 34. A placement groove is provided at the upper end of the fixed rod 7. A spring 6 is connected to the bottom of the placement groove. One end of the spring 6 away from the fixed rod 7 is connected to a convex block 9. The upper end of the convex block 9 extends above the placement groove. The upper end of the convex block 9 is arc-shaped. The upper end of the convex block 9 is correspondingly arranged with the inclined side walls of the connecting groove 29 and the connecting hole 16. A connecting groove 29 is provided on the lower surface of the second moving block 37. The side walls at both ends of the connecting groove 29 are both inclined. A connecting hole 16 is provided in the middle of the connecting groove 29. The two side walls of the connecting hole 16 are both inclined. When the convex block 9 abuts against the inclined side wall of the connecting hole 16 or the connecting groove 29, the spring 6 will be compressed, causing the convex block 9 to move downward and the first moving block 14 to move, thereby controlling the convex block 9 to move into the connecting hole 16 on the lower surface of the second moving block 37;

[0055] The upper end of the mounting rod 20 is connected to a fixed plate 33. The upper surface of the fixed plate 33 is connected to a first electric push rod 10. A limiting hole 8 is provided on the second moving block 37. The limiting hole 8 is correspondingly arranged with the first electric push rod 10. The end of the first electric push rod 10 extends into the limiting hole 8, which can limit the second moving block 37. At this time, the convex block 9 is located in the connecting hole 16. When the first moving block 14 drives the fixed rod 7 to move, the convex block 9 at the upper end of the fixed rod 7 will move out of the connecting hole 16; when it is necessary to clean the upper frame of the door or window, when the first electric push rod 10 does not limit the second moving block 37, when the first moving block 14 moves, it will drive the fixed rod 7 to move, and the fixed rod 7 and the convex block 9 will drive the second moving block 37 to move, thereby controlling the second moving block 37 to move along the length direction of the upper frame of the door or window.

[0056] Refer to Figure 1 and Figure 2 , a top plate 3 is provided on the support frame 2. Two hydraulic cylinders 4 are provided on the top plate 3. The piston rods of the two hydraulic cylinders 4 are respectively connected to the two cross beams 11. When the connecting frame 17 changes from horizontal to vertical, the hydraulic cylinders 4 control the two cross beams 11 to move downward, and the two cross beams 11 drive the mounting beam 19 to move downward, thereby controlling the second cleaning frame 41 and the two water spraying frames 38 on the connecting frame 17 to clean the frame of the door or window.

[0057] Refer to Figure 1 , Figure 3 , Figure 5 and Figure 6A placement frame 35 is installed on the surface of the connecting frame 17, and a second motor 30 is connected to the placement frame 35. A connecting plate 31 is connected to the output shaft of the second motor 30, and a plurality of half teeth 28 are connected to one side of the connecting plate 31. A rotating shaft 27 is rotatably connected to the placement frame 35, and two gears 36 are connected to the upper end of the rotating shaft 27, one of which is meshed with the half teeth 28 on the connecting plate 31. The lower end of the rotating shaft 27 passes through the connecting frame 17 and extends to the bottom of the connecting frame 17. A rotating disk 44 is connected to the lower end of the rotating shaft 27. Two adjusting rods 42 are connected to the surface of the rotating disk 44. A moving rod 43 is rotatably connected to the adjusting rod 42, and one end of the moving rod 43 away from the adjusting rod 42 is rotatably connected to the water spray frame 38. The second cleaning frame 41 is located below the rotating disk 44, and one of the water spray frames 38 is connected to the second cleaning frame 41 through a cross bar 5. The second motor 30 The connecting disk 31 is controlled to rotate, and the connecting disk 31 drives the half-tooth 28 to rotate. The half-tooth 28 first drives the corresponding gear 36 to rotate. The gear 36 controls the corresponding rotating shaft 27 to rotate in one direction first for forward rotation. As the connecting disk 31 rotates, the half-tooth 28 on the connecting disk 31 will rotate with the other gear 36, so that the rotating shaft 27 is reversed. The forward and reverse rotation of the rotating shaft 27 will control the forward and reverse rotation of the turntable 44 below. The turntable 44 drives the two water spray frames 38 to move toward the turntable 44 first through the adjusting rod 42 and the moving rod 43, and then moves away from the turntable 44. One of the water spray frames 38 drives the second cleaning frame 41 to reciprocate through the cross bar 5. In this way, when the connecting frame 17 moves, the two water spray frames 38 and the second cleaning frame 41 can simultaneously clean the positions of the doors and windows that need to be cleaned for multiple times to ensure the cleaning efficiency.

[0058] Reference Figure 1 and Figure 2, two side surfaces of the support frame 2 are connected to two second electric push rods 22, one end of the two second electric push rods 22 passes through the side wall of the support frame 2 and is connected to the limiting plate 23, the side wall of the water tank 1 is connected to a placing plate 25, and the placing plate 25 is connected to a third electric push rod 24, one end of the third electric push rod 24 passes through the side wall of the water tank 1 and is connected to a first cleaning frame 26, the first cleaning frame 26 is slidably connected to the two side walls of the water tank 1, the third electric push rod 24 controls the first cleaning frame 26 to reciprocate, and scrubs the lower frame of the doors and windows, and water is provided in the water tank 1, so that the lower frame of the doors and windows can be directly scrubbed; the first cleaning frame 26 and the second cleaning frame 41 are both U-shaped, and when the doors and windows are placed, the lower frame of the doors and windows first presses against the It is connected to the top of the first cleaning frame 26 to support the doors and windows, and then the four second electric push rods 22 push the corresponding limit plates 23 to move. The four limit plates 23 limit the four sides of the doors and windows. The two opposite sides of the two beams 11 are each provided with a notch 32, and the notch 32 is corresponding to the limit plates 23. When the connecting frame 17 is vertically set and moves downward, the second electric push rod 22 controls the limit plates 23 to reset. At this time, when the beam 11 moves downward, the limit plates 23 are located in the notch 32. After the beam 11 moves downward, the second electric push rod 22 controls the limit plates 23 to limit the frames of the doors and windows again. The second electric push rod 22 and the limit plates 23 below adopt the same steps until the beam 11 moves to the bottom of the door and window frames.

[0059] A method for using a cleaning device for processing aluminum alloy doors and windows, using the cleaning device for processing aluminum alloy doors and windows as described above, comprising the following steps:

[0060] S1: First, the doors and windows to be cleaned are placed between the support frames 2, and the lower part of the doors and windows is located on the upper surface of the first cleaning frame 26. The four second electric push rods 22 push the limit plates 23 to move, and the four limit plates 23 respectively limit the two sides of the doors and windows;

[0061] S2: The telescopic end of the first electric push rod 10 extends into the limiting hole 8 on the corresponding second moving block 37 to limit the second moving block 37. Then the first motor 21 controls the forward and reverse threaded rods 15 to rotate, so that the two first moving blocks 14 move in opposite directions. The two first moving blocks 14 drive the fixed rod 7 to move. Since the side wall of the connecting hole 16 is inclined, the second moving block 37 is restricted. When the fixed rod 7 moves, the protrusion 9 squeezes the spring 6. As the first moving block 14 moves, the protrusion 9 moves out of the connecting groove 29. In this way, the first moving block 14 continues to move so that the push rod 12 pushes the connecting frame 17, so that the connecting frame 17 changes from a vertical state to a horizontal state.

[0062] S3: The hydraulic cylinder 4 controls the cross beam 11 to move downward, and the cross beam 11 drives the two mounting beams 19 to move downward together, so that the second cleaning frame 41 on the connecting frame 17 is located on the upper surface of the door and window;

[0063] S4: The first motor 21 controls the forward and reverse threaded rods 15 to reverse, and controls the two first moving blocks 14 to move toward each other, so that the fixed rod 7 drives the protrusion 9 to move into the connecting hole 16, and then the first electric push rod 10 is reset, and the first motor 21 continues to rotate, controlling the two first moving blocks 14 to continue to move, and the protrusion 9 and the fixed rod 7 drive the second moving block 37 to move together, and the second moving block 37 drives the corresponding connecting frame 17 to move, so as to clean the upper frame of the entire door and window;

[0064] S5: The second motor 30 drives the connecting disk 31 to rotate, and the half teeth 28 on the connecting disk 31 first mesh with a gear 36 to control the rotation of the rotating shaft 27. The rotating shaft 27 drives the rotating disk 44 below to rotate. The rotating disk 44 drives the corresponding water spray rack 38 to move first through two adjusting rods 42 and a moving rod 43. As the connecting disk 31 rotates, the half teeth 28 on the connecting disk 31 will mesh with another gear 36, thereby controlling the rotating shaft 27 to reverse, so that the rotating disk 44 is reset, so that the water spray rack 38 is reset again, so that the water spray rack 38 and the second adjusting rod 42 reciprocate, and one water spray rack 38 sprays water on the doors and windows that need to be cleaned first, and at the same time, the second adjusting rod 42 in the middle position cleans the side walls of the doors and windows, and the other water spray rack 38 sprays water on the surfaces of the doors and windows after cleaning, so as to clean the three surfaces of the upper frames of the doors and windows;

[0065] S6: After the upper frame of the door and window is cleaned, the first motor 21 and the forward and reverse threaded rod 15 control the two first moving blocks 14 to reset, and the first electric push rod 10 limits the corresponding second moving block 37 again, and then the first motor 21 and the forward and reverse threaded rod 15 control the two first moving blocks 14 to move again so that the protrusion 9 moves out of the connecting groove 29, and then the first moving block 14 continues to move, so that the connecting frame 17 changes from a horizontal state to a vertical state;

[0066] S7: The two hydraulic cylinders 4 push the two crossbeams 11 to move downward, and the crossbeams 11 drive the mounting beams 19 to move downward, so that the connecting frame 17 moves downward along the frame of the door and window, so that the two water spraying frames 38 and the first cleaning frame 26 move downward together to clean the frame of the door and window;

[0067] S8: When the cross beam 11 moves to the side of the limit plate 23, the two second electric push rods 22 located above control the limit plate 23 to reset. When the cross beam 11 moves downward, the notch 32 on the cross beam 11 facilitates the limit plate 23 to pass through the notch 32. Then, the cross beam 11 controls the mounting beam 19 to continue moving until it moves to the bottom of the door and window frame.

[0068] S9: The third electric push rod 24 controls the first cleaning frame 26 to move and clean the lower frame of the doors and windows. Example 2

[0069] Reference Fig.13 A moving plate 46 is provided below the second moving block 37, and a fourth electric push rod 45 and a mounting plate 48 are connected to the upper surface of the moving plate 46, respectively. A connecting rod 49 is connected to one side of the second moving block 37, and the upper end of the fourth electric push rod 45 is connected to the connecting rod 49. The second moving block 37 is slidably connected to the mounting plate 48. An opening 47 is provided on the moving plate 46, and the second moving block 37 is located above the opening 47. When the locking assembly is required to limit the first moving block 14 and the second moving block 37, the fourth electric push rod 45 controls the second moving block 37 to move downward, so that the lower surface of the second moving block 37 It passes through the opening 47 and is located below the opening 47. Then the moving assembly controls the fixing rod 7 and the protrusion 9 on the first moving block 14 to move together, so that the fixing rod 7 and the protrusion 9 are located in the connecting hole 16, and the first moving block 14 is connected to the second moving block 37. At this time, the two side walls of the connecting hole 16 can be set in a vertical state; when the first moving block 14 and the second moving block 37 need to be separated, the fourth electric push rod 45 controls the second moving block 37 to move upward, so that the protrusion 9 is separated from the second moving block 37. In this way, the moving assembly controls the movement of the first moving block 14 so that the connecting frame 17 changes from a horizontal state to a vertical state.

[0070] The above description of the disclosed embodiments enables one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A cleaning device for processing aluminum alloy door and window frames, characterized in that: The invention comprises a water tank (1), wherein two support frames (2) are connected to the side wall of the water tank (1), two mounting beams (19) are slidably connected to each other between the two support frames (2), two connecting frames (17) are arranged between the two mounting beams (19), two side surfaces of the two connecting frames (17) are connected to second moving blocks (37) via rotating shafts, the two mounting beams (19) are arranged with second slide grooves (34), the bottom of the second slide grooves (34) are through-set, the two mounting beams (19) are arranged with moving components, the moving components are arranged with two first moving blocks (14), and the two A push rod (12) is hingedly connected to the upper surface of the first moving block (14), and one end of the push rod (12) away from the first moving block (14) is hingedly connected to the connecting frame (17). A locking assembly is provided on the first moving block (14), and the locking assembly can pass through the second slide groove (34) to connect the first moving block (14) and the second moving block (37); two water spraying frames (38) and a second cleaning frame (41) are slidably connected to the connecting frame (17), and the second cleaning frame (41) is located between the two water spraying frames (38). The second cleaning frame (41) and the two water spraying frames (38) are both U-shaped. Two L-shaped slide bars (13) are provided on the upper surfaces of the two first moving blocks (14), first slide grooves (18) are provided on the two side surfaces of the mounting beam (19), and the two L-shaped slide bars (13) are respectively installed in the two first slide grooves (18); The locking assembly comprises a fixed rod (7) arranged on the first movable block (14), the upper end of the fixed rod (7) extending into the second sliding groove (34), the upper end of the fixed rod (7) being provided with a placement groove, the bottom of the placement groove being connected with a spring (6), the end of the spring (6) away from the fixed rod (7) being connected with a protrusion (9), the lower surface of the second movable block (37) being provided with a connecting groove (29), the side walls at both ends of the connecting groove (29) being inclined, the middle of the connecting groove (29) being provided with a connecting hole (16), the two side walls of the connecting hole (16) being inclined; The upper end of the mounting rod (20) is connected to a fixing plate (33), the upper surface of the fixing plate (33) is connected to a first electric push rod (10), a limiting hole (8) is provided on the second moving block (37), the limiting hole (8) is provided corresponding to the first electric push rod (10), and the second moving block (37) is slidably connected in the second slide groove (34).

2. The cleaning equipment for processing aluminum alloy door and window frames according to claim 1 is characterized in that: The moving assembly comprises two mounting rods (20) arranged on a mounting beam (19), the two mounting rods (20) being connected via a forward and reverse threaded rod (15), a first motor (21) being connected to one of the mounting rods (20), an output shaft of the first motor (21) being connected to one end of the forward and reverse threaded rod (15), and two first moving blocks (14) being respectively connected to both ends of the forward and reverse threaded rod (15).

3. The cleaning equipment for processing aluminum alloy door and window frames according to claim 2 is characterized in that: A top plate (3) is arranged on the support frame (2), and two hydraulic cylinders (4) are arranged on the top plate (3). The piston rods of the two hydraulic cylinders (4) are respectively connected to two cross beams (11). When in use, the cross beam (11) drives the two mounting beams (19) to move downward together.

4. The cleaning equipment for processing aluminum alloy door and window frames according to claim 3 is characterized in that: A placement frame (35) is mounted on the surface of the connecting frame (17), a second motor (30) is connected to the placement frame (35), a connection plate (31) is connected to the output shaft of the second motor (30), a plurality of half teeth (28) are connected to one side of the connection plate (31), a rotating shaft (27) is rotatably connected to the placement frame (35), two gears (36) are connected to the upper end of the rotating shaft (27), one of the gears (36) is meshed with the half teeth (28) on the connection plate (31), and the lower end of the rotating shaft (27) passes through The connecting frame (17) extends to the bottom of the connecting frame (17), the lower end of the rotating shaft (27) is connected to a rotating disk (44), the surface of the rotating disk (44) is connected to two adjusting rods (42), the adjusting rods (42) are rotatably connected to a moving rod (43), one end of the moving rod (43) away from the adjusting rod (42) is rotatably connected to the water spraying frame (38), the second cleaning frame (41) is located below the rotating disk (44), and one of the water spraying frames (38) and the second cleaning frame (41) is connected via a cross bar (5).

5. The cleaning equipment for processing aluminum alloy door and window frames according to claim 4 is characterized in that: Two second electric push rods (22) are connected to both side surfaces of the support frame (2); one end of the two second electric push rods (22) passes through the side wall of the support frame (2) and is connected to a limit plate (23); and a notch (32) is provided on the opposite side of the two cross beams (11); the notch (32) and the limit plate (23) are arranged correspondingly.

6. The cleaning equipment for processing aluminum alloy door and window frames according to claim 5 is characterized in that: A placement plate (25) is connected to the side wall of the water tank (1), a third electric push rod (24) is connected to the placement plate (25), one end of the third electric push rod (24) passes through the side wall of the water tank (1) and is connected to a first cleaning frame (26), and the first cleaning frame (26) is slidably connected to the two side walls of the water tank (1).

7. The cleaning equipment for processing aluminum alloy door and window frames according to claim 1 is characterized in that: A moving plate (46) is provided below the second moving block (37); a fourth electric push rod (45) and a mounting plate (48) are respectively connected to the upper surface of the moving plate (46); a connecting rod (49) is connected to one side of the second moving block (37); the upper end of the fourth electric push rod (45) is connected to the connecting rod (49); the second moving block (37) is slidably connected to the mounting plate (48); an opening (47) is provided on the moving plate (46); and the second moving block (37) is located above the opening (47).

8. A method for using a cleaning device for processing aluminum alloy door and window frames, characterized in that: The cleaning equipment for processing aluminum alloy door and window frames according to claim 6 comprises the following steps: S1: firstly, the doors and windows to be cleaned are placed between the support frames (2), with the lower part of the doors and windows located on the upper surface of the first cleaning frame (26), and the four second electric push rods (22) push the limit plates (23) to move, and the four limit plates (23) respectively limit the two sides of the doors and windows; S2: The telescopic end of the first electric push rod (10) extends into the limiting hole (8) on the corresponding second moving block (37), limiting the second moving block (37), and then the first motor (21) controls the forward and reverse threaded rods (15) to rotate, so that the two first moving blocks (14) move in opposite directions, and the two first moving blocks (14) drive the fixed rod (7) to move. Since the side wall of the connecting hole (16) is inclined, the second moving block (37) is restricted. When the fixed rod (7) moves, the protrusion (9) squeezes the spring (6). As the first moving block (14) moves, the protrusion (9) moves out of the connecting groove (29), so that the first moving block (14) continues to move so that the push rod (12) pushes the connecting frame (17), so that the connecting frame (17) changes from a vertical state to a horizontal state; S3: The hydraulic cylinder (4) controls the crossbeam (11) to move downward, and the crossbeam (11) drives the two mounting beams (19) to move downward together, so that the second cleaning frame (41) on the connecting frame (17) is located on the upper surface of the door and window; S4: the first motor (21) controls the forward and reverse threaded rods (15) to reverse, and controls the two first moving blocks (14) to move toward each other, so that the fixed rod (7) drives the protrusion (9) to move into the connecting hole (16), and then the first electric push rod (10) is reset, and the first motor (21) continues to rotate, controlling the two first moving blocks (14) to continue to move, and the protrusion (9) and the fixed rod (7) drive the second moving block (37) to move together, and the second moving block (37) drives the corresponding connecting frame (17) to move, so as to clean the upper frame of the entire door and window; S5: The second motor (30) drives the connecting plate (31) to rotate. The half teeth (28) on the connecting plate (31) first mesh with a gear (36) to control the rotation of the rotating shaft (27). The rotating shaft (27) drives the rotating plate (44) below to rotate. The rotating plate (44) drives the corresponding water spraying frame (38) to move first through two adjustment rods (42) and a moving rod (43). As the connecting plate (31) rotates, the half teeth (28) on the connecting plate (31) mesh with another gear (36). (36) is meshed, thereby controlling the rotating shaft (27) to reverse, so that the rotating disk (44) is reset, thereby the water spraying frame (38) is reset again, so that the water spraying frame (38) and the second adjusting rod (42) reciprocate, one water spraying frame (38) first sprays water on the door and window to be cleaned, and at the same time, the second adjusting rod (42) in the middle position cleans the side wall of the door and window, and the other water spraying frame (38) sprays water on the surface of the door and window after cleaning, so as to clean the three surfaces of the upper frame of the door and window; S6: After the upper frame of the door and window is cleaned, the first motor (21) and the forward and reverse threaded rod (15) control the two first moving blocks (14) to reset, and the first electric push rod (10) again limits the corresponding second moving block (37). Then, the first motor (21) and the forward and reverse threaded rod (15) control the two first moving blocks (14) to move again so that the protrusion (9) moves out of the connecting groove (29), and then the first moving blocks (14) continue to move so that the connecting frame (17) changes from a horizontal state to a vertical state. S7: The two hydraulic cylinders (4) push the two crossbeams (11) to move downward, and the crossbeams (11) drive the mounting beams (19) to move downward, thereby causing the connecting frame (17) to move downward along the frame of the door and window, causing the two water spray frames (38) and the first cleaning frame (26) to move downward together, thereby cleaning the frame of the door and window; S8: When the cross beam (11) moves to the side of the limit plate (23), the two second electric push rods (22) located above control the limit plate (23) to reset. When the cross beam (11) moves downward, the notch (32) on the cross beam (11) facilitates the limit plate (23) to pass through the notch (32). Then, the cross beam (11) controls the mounting beam (19) to continue to move until it moves to the bottom of the door and window frame. S9: The third electric push rod (24) controls the first cleaning frame (26) to move and clean the lower frame of the door and window.

Citation Information

Patent Citations

  • A cleaning device for aluminum alloy door and window production

    CN116984295B

  • Cleaning device for aluminum alloy door and window production

    CN116984295A

  • Full-automatic self-cleaning type rotary cleaning device for water tank and using method thereof

    CN118142989A