Alloy door and window machining and cleaning device

By using the spray assembly and limit rod structure of the alloy door and window processing and cleaning device, the problems of time-consuming and labor-intensive cleaning of alloy doors and windows and scratches have been solved, achieving efficient and safe automatic cleaning results.

CN224114699UActive Publication Date: 2026-04-14XINGTAI DONGSHENG BUILDING & DECORATION ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Cleaning alloy doors and windows after processing is time-consuming and labor-intensive, and manual brushing can easily cause the alloy doors and windows to slip and scratch.

Method used

An alloy door and window processing and cleaning device was designed, which adopts a spray assembly and a limiting rod structure. The spray assembly sprays clean water and cleaning fluid for automatic cleaning, and the limiting rod fixes the profile frame and glass to prevent side slippage and scratches.

Benefits of technology

It achieves efficient and safe cleaning of alloy doors and windows, reduces fatigue and injury risks from manual operation, and improves cleaning efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of door and window cleaning, and discloses an alloy door and window machining and cleaning device which comprises a bottom plate capable of being connected with the ground, vertical plates are arranged on the left side and the right side of the top of the bottom plate respectively, a rotary roller is arranged between the two vertical plates, a moving block is placed on the radial surface of the roller, and a limiting rod is connected to the top of the moving block. Glass is arranged in the profile frame, a limiting groove is formed in the outer side of the profile frame, the width of the limiting groove is the same as the diameter of the limiting rod, and spraying assemblies are arranged at the positions, corresponding to the two sides of the glass, of the top of the bottom plate. The spraying assembly sprays the sectional material frame and the glass in the sectional material frame, the cleaning effect is achieved, the limiting rod can clamp the limiting groove of the sectional material frame, an alloy door or an alloy window composed of the sectional material frame and the glass can be fixed conveniently, the alloy door or the alloy window is not prone to toppling over, and the service life of the alloy door or the alloy window is prolonged. And the spraying assemblies on the two sides are used for spraying, so that uneven stress caused by single-side spraying can be counteracted.
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Description

Technical Field

[0001] This utility model relates to the field of door and window cleaning technology, and in particular to an alloy door and window processing and cleaning device. Background Technology

[0002] Cleaning after alloy door and window processing is crucial. It not only thoroughly removes residual cutting fluid, oil, metal dust, and oxide layers from the surface, but also significantly improves the adhesion of subsequent processes such as spraying, anodizing, or electrophoretic coating, ensuring a uniform and durable coating and avoiding defects such as blistering and peeling. Cleaning can effectively prevent processing residues from corroding the metal surface, extending the service life of doors and windows, while also improving the product's appearance quality, making it smooth, uniform in color, and meeting the needs of high-end architectural decoration.

[0003] In the current technology, the cleaning of alloy doors and windows after processing is usually done manually with brushes. This method is time-consuming and labor-intensive. After a day of brushing, workers will feel tired. At the same time, workers need to change the brush surface of the alloy doors and windows during brushing. When moving and adjusting, the alloy doors and windows are prone to slipping, which may cause them to fall and break or injure workers. The dust and particles carried by the brush may have strong hardness and can easily scratch the surface of the alloy doors and windows. Utility Model Content

[0004] To overcome the problems of time-consuming and labor-intensive cleaning of alloy doors and windows after processing in existing technologies, the tendency for side slippage to occur when changing the cleaning surface of doors and windows, and the easy scratching of alloy doors and windows by brushes that carry dust and particles.

[0005] The technical solution of this utility model is as follows: an alloy door and window processing and cleaning device, including a base plate that can be connected to the ground, upright plates on the left and right sides of the top of the base plate, a rotating roller between the two upright plates, a movable block placed on the radial surface of the roller, limit rods spirally engaged on the front and rear sides of the top of the movable block, a profile frame that can be placed on the top of the movable block, glass that is placed inside the profile frame, a positioning groove that is provided on the outer side of the profile frame, the groove width of the positioning groove being the same as the diameter of the limit rod, the plane formed by the axes of the two limit rods on the top of the movable block being perpendicular to the axis of the roller, and spraying components on the top of the base plate corresponding to the two sides of the glass.

[0006] Preferably, the spray components on the front and rear sides of the top of the base plate can spray clean water, and the spray component in the middle can spray cleaning liquid. The spray components include a spray pipe, a nozzle is provided on the side of the spray pipe near the glass, and a water inlet pipe is provided on the side of the spray pipe away from the glass. An electrically controlled valve is provided on the water inlet pipe.

[0007] Preferably, the side of the upright plate facing the glass is provided with a baffle, the bottom of which can fit against the top of the movable block.

[0008] Preferably, two synchronous pulleys are rotatably connected between the two vertical plates. The synchronous belt can be attached to the synchronous pulleys. The roller is located between the two synchronous pulleys. The front and rear sides of the top of the moving block are provided with toothed plates corresponding to the synchronous belt. The synchronous belt has a disconnected structure. The teeth at one end of the synchronous belt are attached to the toothed plate on the front side of the top of the moving block, and the teeth at the other end of the synchronous belt are attached to the toothed plate on the rear side of the moving block. A pressure plate for pressing the synchronous belt is provided above the toothed plate.

[0009] Preferably, a waterproof motor is installed on one of the vertical plates on the side away from the synchronous pulley, and the output shaft of the waterproof motor is fixedly connected to one of the synchronous pulleys.

[0010] Preferably, the top of the movable block is provided with a screw hole, the lower part of the outer diameter of the limiting rod is provided with a threaded surface that meshes with the screw hole, and the top of the limiting rod is provided with a hexagonal hole.

[0011] Preferably, the left side of the upright plate has a through adjustment hole, and the adjustment hole contains a fixed shaft that moves up and down. The outer diameter of the fixed shaft has a rotating cylinder. The left side of the rotating cylinder is in contact with the left upright plate, and the right side of the rotating cylinder is in contact with the right upright plate. A screw is helically engaged at the top of the base plate. The top of the screw has a hexagonal block for supporting the fixed shaft. The top of the hexagonal block has a smooth rod that passes through the fixed shaft in the radial direction. The diameter of the smooth rod is smaller than the diameter of the fixed shaft. The fixed shaft has a limiting hole corresponding to the smooth rod. A nut can be engaged at the outer diameter of the screw, and the bottom of the nut can be in contact with the top of the base plate.

[0012] The beneficial effects of this utility model are:

[0013] 1. The spray assembly sprays water onto the profile frame and the internal glass to achieve a cleaning effect. The limiting rod can lock into the limiting groove of the profile frame, making it easy to fix the alloy door or alloy window composed of the profile frame and glass, so that it is not easy to tip over.

[0014] 2. Spraying from both sides helps to counteract the uneven force on the ground caused by spraying from one side. At the same time, using only the spraying components avoids scratching the alloy doors and windows by trapping stone particles when brushing.

[0015] 3. The position of the fixed axis is adjusted on the side of the upright plate to reduce the trouble of adjusting at the bottom of the base plate, reduce the overall height of the device, and facilitate the installation of alloy doors and windows. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the limiting rod structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the pressure plate structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the limiting groove structure of this utility model;

[0020] Figure 5 This is a schematic diagram of the fixed shaft structure of this utility model.

[0021] Explanation of reference numerals in the attached drawings: 1. Base plate; 11. Vertical plate; 111. Baffle; 112. Adjustment hole; 21. Spray pipe; 211. Spray head; 212. Water inlet pipe; 2121. Electrically controlled valve; 31. Glass; 32. Profile frame; 321. Limiting groove; 41. Synchronous belt; 42. Roller; 43. Waterproof motor; 44. Synchronous pulley; 442. Pressure plate; 5. Moving block; 501. Screw hole; 51. Limiting rod; 511. Hexagonal hole; 61. Fixed shaft; 611. Limiting hole; 62. Rotating cylinder; 63. Hexagonal block; 631. Smooth rod; 632. Screw; 633. Nut. Detailed Implementation

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] Please see Figure 1 - Figure 5 This utility model provides an embodiment of an alloy door and window processing and cleaning device, including a base plate 1 that can be connected to the ground, upright plates 11 on the left and right sides of the top of the base plate 1, a rotating roller 42 between the two upright plates 11, a movable block 5 placed on the radial surface of the roller 42, and a limiting rod 51 spirally engaged on the front and rear sides of the top of the movable block 5, a profile frame 32 can be placed on the top of the movable block 5, a glass 31 is provided inside the profile frame 32, and a limiting groove 321 for positioning is provided on the outer side of the profile frame 32, the groove width of the limiting groove 321 being the same as the diameter of the limiting rod 51, and the two sides of the top of the movable block 5... The plane formed by the axis of the limiting rod 51 is perpendicular to the axis of the roller 42. Spraying components are provided on both sides of the top of the base plate 1 corresponding to the glass 31. The spraying components spray the profile frame 32 and the glass 31 inside to achieve the cleaning effect. The limiting rod 51 can lock the limiting groove 321 of the profile frame 32, which makes it easy to fix the alloy door or alloy window composed of the profile frame 32 and the glass 31, so that it is not easy to tip over. The spraying components on both sides help to offset the uneven force caused by spraying on one side. At the same time, using only the spraying components avoids the scratches on the alloy door and window caused by stone particles being caught when brushing.

[0024] Please see Figure 1 - Figure 4In this embodiment, the spray assemblies on the front and rear sides of the top of the base plate 1 can spray clean water, and the spray assembly in the middle can spray cleaning liquid. The spray assembly includes a spray pipe 21, with a nozzle 211 on the side of the spray pipe 21 closest to the glass 31 and a water inlet pipe 212 on the side of the spray pipe 21 furthest from the glass 31. An electrically controlled valve 2121 is installed on the water inlet pipe 212. The front spray assembly wets the alloy door and window, and the middle spray assembly sprays cleaning liquid, allowing the surfactant in the cleaning liquid to coat the dirt particles, reducing the adhesion of the dirt, and also decomposing the oil stains after processing. The electrically controlled valve 2121 facilitates the control of the spray assembly to achieve the established standard cleaning specifications. A baffle 111 is provided on the side of the upright plate 11 facing the glass 31. The bottom of the baffle 111 can fit against the top of the moving block 5. By fitting the top of the moving block 5 against the baffle 111, the top of the moving block 5 is prevented from being damaged by the baffle. To prevent the alloy doors and windows from tipping over due to their high center of gravity and to ensure the stability of the moving block 5, two synchronous pulleys 44 are rotatably connected between the two upright plates 11. The synchronous pulleys 44 can be fitted with the synchronous belt 41. A roller 42 is located between the two synchronous pulleys 44. The front and rear sides of the top of the moving block 5 are provided with toothed plates corresponding to the synchronous belt 41. The synchronous belt 41 has a disconnected structure. The teeth at one end of the synchronous belt 41 are fitted with the toothed plate on the front side of the top of the moving block 5, and the teeth at the other end of the synchronous belt 41 are fitted with the toothed plate on the rear side of the moving block 5. A pressure plate 442 is provided above the toothed plate to press the synchronous belt 41. Through the cooperation of the two synchronous pulleys 44 and the synchronous belt 41, the synchronous belt 41 can pull the moving block 5 to move. The toothed plates and the teeth of the synchronous belt 41 cooperate to reduce the slippage of the synchronous belt 41 relative to the moving block 5. The pressure plate 442 can press the synchronous belt 41 to the top of the moving block 5, increasing the stability of the connection.

[0025] Please see Figure 2 - Figure 5In this embodiment, a waterproof motor 43 is installed on the side of one of the upright plates 11 away from the synchronous pulley 44. The output shaft of the waterproof motor 43 is fixedly connected to one of the synchronous pulleys 44. The waterproof motor 43 can effectively prevent the liquid sprayed from the spray assembly from splashing, meeting the operating conditions. The waterproof motor 43 drives the synchronous pulley 44 to rotate, realizing the electric control movement of the moving block 5. The top of the moving block 5 is provided with a screw hole 501. The lower part of the outer diameter of the limiting rod 51 is provided with a threaded surface that meshes with the screw hole 501. The top of the limiting rod 51 is provided with a hexagonal hole 511. By connecting the limiting rod 51 to different screw holes 501, it is convenient to limit the profile frame 32 of various sizes. The left side of the upright plate 11 is provided with a through adjustment hole 112. The adjusting hole 112 is provided with a fixed shaft 61 that moves up and down. The outer diameter of the fixed shaft 61 is provided with a rotating cylinder 62. The left side of the rotating cylinder 62 is provided with a through adjustment hole 112. The left and right sides of the rotating cylinder 62 are attached to the left and right sides of the vertical plate 11, respectively. A screw 632 is spirally engaged on the top of the base plate 1. The top of the screw 632 is provided with a hexagonal block 63 for supporting the fixed shaft 61. The top of the hexagonal block 63 is provided with a smooth rod 631 that passes through the fixed shaft 61 in the radial direction. The diameter of the smooth rod 631 is smaller than the diameter of the fixed shaft 61. The fixed shaft 61 is provided with a limiting hole 611 corresponding to the smooth rod 631. A nut 633 can be engaged with the outer diameter of the screw 632. The bottom of the nut 633 can be attached to the top of the base plate 1. By adjusting the position of the fixed shaft 61 on the side of the vertical plate 11, the trouble of adjusting at the bottom of the base plate 1 is reduced, the overall height of the device is reduced, and the placement of alloy doors and windows is facilitated. The rotating cylinder 62 can press against the synchronous belt 41 to achieve the effect of tightening the synchronous belt 41.

[0026] During operation, the worker holds the alloy door / window and places it on top of the moving block 5, so that the limiting groove 321 of one side of the alloy door / window profile frame 32 engages with a limiting rod 51, locking the limiting rod 51 into the limiting groove 321. Then, another limiting rod 51 is taken from the other side of the profile frame 32 and screwed into the screw hole 501, ensuring that the other limiting rod 51 can be locked into the limiting groove 321 on the other side of the profile frame 32. This achieves the positioning of the alloy door / window. The screw hole 501 here is in the moving block 501. The specific position of the movable block 5 is determined by the actual size of the profile frame 32. Typically, one movable block 5 can accommodate three sizes of alloy doors and windows. When the limit rod 51 cannot be turned, an Allen wrench can be used with the hexagonal hole 511 to rotate the limit rod 51. After the alloy door and window are fixed, the waterproof motor 43 is driven to rotate. The waterproof motor 43 drives the synchronous wheel 44 to rotate, which in turn drives the synchronous belt 41 to rotate. The synchronous belt 41 drags the movable block 5, causing the movable block 5 to carry the alloy door and window from front to back. The alloy door and window reach the two spray groups in the first row. When the alloy doors and windows reach the two spray units in the second row, they will be sprayed with cleaning fluid. The formula of the cleaning fluid is existing technology. The alloy doors and windows sprayed with cleaning fluid will wait for one minute to allow the cleaning fluid to mix with the oil and impurities. Then, they will be carried by the moving block 5 to the two spray units in the third row. The two spray units in the third row will spray high-pressure clean water to clean the alloy doors and windows, causing the dirt on the alloy doors and windows to fall off with the water flow. The pipe connections at the nozzle 211, the electric control valve 2121, and the water inlet pipe 212 of the spray units are all... The working principle of the existing technology will not be elaborated here. When it is necessary to adjust the clamping force of the rotating cylinder 62 on the synchronous belt 41, use a wrench to turn the nut 633 to separate the nut 633 from the base plate 1. Then rotate the hexagonal block 63, and the hexagonal block 63 carries the fixed shaft 61 to move up and down, thereby realizing the up and down movement of the rotating cylinder 62. After the adjustment is completed, make the nut 633 fit tightly against the top of the base plate 1 again. The cleaning here refers to relative cleaning and cannot achieve complete sterility and dust-free conditions. For particularly stubborn stains, workers still need to manually polish the side of the device.

[0027] Through the above steps, the spray assembly sprays the profile frame 32 and the internal glass 31 to achieve the cleaning effect. The limiting rod 51 can lock the limiting groove 321 of the profile frame 32, which makes it easy to fix the alloy door or alloy window composed of the profile frame 32 and the glass 31, so that it is not easy to tip over. The spraying by the spray assembly on both sides helps to offset the uneven force caused by spraying on one side. At the same time, using only the spray assembly avoids the scratches on the alloy door and window caused by stone particles caught in the brush when brushing. This solves the problems of time-consuming and labor-intensive cleaning of alloy door and window after processing, easy side slip when changing the cleaning surface of the door and window, and easy scratching of alloy door and window by brushes that catch dust and particles.

Claims

1. An alloy door and window processing and cleaning device, characterized in that: The device includes a base plate (1) that can be connected to the ground. The top of the base plate (1) has upright plates (11) on the left and right sides respectively. A rotating roller (42) is provided between the two upright plates (11). A movable block (5) is placed on the radial surface of the roller (42). The front and rear sides of the top of the movable block (5) are respectively connected by a limiting rod (51). A profile frame (32) can be placed on the top of the movable block (5). A glass (31) is provided inside the frame of the profile frame (32). A positioning groove (321) is provided on the outside of the profile frame (32). The groove width of the positioning groove (321) is the same as the diameter of the limiting rod (51). The plane formed by the axes of the two limiting rods (51) on the top of the movable block (5) is perpendicular to the axis of the roller (42). Spraying components are provided on the top of the base plate (1) on both sides corresponding to the glass (31).

2. The alloy door and window processing and cleaning device according to claim 1, characterized in that: The spray assembly on the front and rear sides of the top of the base plate (1) can spray out clean water, and the spray assembly in the middle can spray out cleaning liquid. The spray assembly includes a spray pipe (21). The spray pipe (21) has a nozzle (211) on the side close to the glass (31), and a water inlet pipe (212) on the side away from the glass (31). An electric control valve (2121) is provided on the water inlet pipe (212).

3. The alloy door and window processing and cleaning device according to claim 2, characterized in that: A baffle (111) is provided on the side of the upright plate (11) facing the glass (31), and the bottom of the baffle (111) can fit against the top of the movable block (5).

4. The alloy door and window processing and cleaning device according to claim 3, characterized in that: Two synchronous pulleys (44) are rotatably connected between the two upright plates (11). The synchronous belt (41) can be attached to the synchronous pulleys (44). The roller (42) is located between the two synchronous pulleys (44). The front and rear sides of the top of the moving block (5) are provided with toothed plates corresponding to the synchronous belt (41). The synchronous belt (41) is a disconnected structure. The teeth at one end of the synchronous belt (41) are attached to the toothed plate on the front side of the top of the moving block (5), and the teeth at the other end of the synchronous belt (41) are attached to the toothed plate on the rear side of the moving block (5). A pressure plate (442) for pressing the synchronous belt (41) is provided above the toothed plate.

5. The alloy door and window processing and cleaning device according to claim 4, characterized in that: A waterproof motor (43) is installed on one of the upright plates (11) away from the synchronous pulley (44), and the output shaft of the waterproof motor (43) is fixedly connected to one of the synchronous pulleys (44).

6. The alloy door and window processing and cleaning device according to claim 5, characterized in that: The top of the movable block (5) is provided with a screw hole (501), the lower part of the outer diameter of the limiting rod (51) is provided with a threaded surface that meshes with the screw hole (501), and the top of the limiting rod (51) is provided with a hexagonal hole (511).

7. The alloy door and window processing and cleaning device according to claim 6, characterized in that: An adjustment hole (112) is provided on the left side of the upright plate (11). A fixed shaft (61) that moves up and down is provided in the adjustment hole (112). A rotating cylinder (62) is provided at the outer diameter of the fixed shaft (61). The left side of the rotating cylinder (62) is in contact with the left upright plate (11), and the right side of the rotating cylinder (62) is in contact with the right upright plate (11). A screw (632) is screwed into the top of the bottom plate (1). The top of the screw (632) is provided with a support for the fixed shaft. (61) has a hexagonal block (63), and the top of the hexagonal block (63) is provided with a smooth rod (631) that passes through the fixed shaft (61) in the radial direction. The diameter of the smooth rod (631) is smaller than the diameter of the fixed shaft (61). The fixed shaft (61) is provided with a limiting hole (611) corresponding to the smooth rod (631). The outer diameter of the screw (632) can be engaged with a nut (633), and the bottom of the nut (633) can be attached to the top of the base plate (1).