Manufacturing method of integrated case

By integrating the cleaning mechanism, spray assembly and water squeezing mechanism into the barrier gate chassis, the problem of dust accumulation on the chassis surface is solved, and the effects of efficient cleaning and extended service life are achieved.

CN120696115APending Publication Date: 2025-09-26ZHEJIANG TIANSHENG MACHINERY
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Patent Information

Application Number
CN202510904442.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2025-09-26

AI Technical Summary

Technical Problem

Due to long-term exposure to the outdoors, the existing barrier gate chassis has accumulated dust and impurities on the surface of the camera, sensor, LCD screen and fill light, affecting the working sensitivity and service life, and is difficult to clean effectively.

Method used

An integrated chassis is designed, integrating a cleaning mechanism, a spray assembly and a water squeezing mechanism. The shell and back panel are formed by stamping, and a lifting plate, guide rails, a nozzle and a motor are installed to achieve automatic cleaning of the camera, sensor, LCD screen and fill light.

Benefits of technology

The working efficiency of the chassis is improved, the service life is extended, and the stability and cleaning effect of the cleaning mechanism are improved through the design of the card slot, slide slot and booster block.

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Abstract

The invention discloses a manufacturing method of an integrated case. The manufacturing method comprises the following steps: S1, processing a shell; s2, processing a back plate; s3, mounting a cleaning mechanism; s4, a spraying assembly is installed; s5, mounting a placing groove; and S6, cleaning, spraying and carrying out trial operation. According to the integrated case for the barrier gate, manufacturing and processing of the integrated case for the barrier gate are facilitated, the cleaning mechanism, the spraying assembly and the water squeezing mechanism can be installed on the shell, glass on the outer sides of the camera, the sensor, the LCD screen and the light supplementing lamp can be effectively cleaned, the working efficiency of the case is improved, and the service life of the case is prolonged.
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Description

Technical Field

[0001] The present invention relates to the technical field of barrier gates, and in particular to a method for manufacturing an integrated chassis. Background Art

[0002] A barrier gate, also known as a vehicle blocker, is an entrance and exit management device specifically used to restrict the travel of motor vehicles on roads. It is widely used in highway toll stations and parking lot systems to manage vehicle passages and to manage the entry and exit of vehicles.

[0003] The chassis is a crucial component of a barrier gate, protecting the electronic components within. Existing barrier gate chassis, exposed to the elements for extended periods, accumulate dust and impurities on the camera, sensor, LCD screen, and fill light. This affects the sensitivity and lifespan of the barrier gate, and prevents effective cleaning, impacting its efficiency. Summary of the Invention

[0004] The purpose of the present invention is to provide a technical solution for the manufacturing method of an integrated chassis to address the shortcomings of the existing technology. It not only facilitates the manufacturing and processing of the integrated chassis for the barrier, but also allows the cleaning mechanism, spray assembly and water squeezing mechanism to be installed on the shell, which can effectively clean the outer glass of the camera, sensor, LCD screen and fill light, thereby improving the working efficiency of the chassis and extending its service life.

[0005] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0006] The manufacturing method of the integrated chassis is characterized by comprising the following steps:

[0007] S1. Shell processing

[0008] a. First, the required housing is formed by stamping according to the design requirements, and the camera mounting holes, sensor mounting holes, panel slots and fill light mounting slots are opened along the housing;

[0009] b. Then install the LCD screen glass and fill light glass along the panel groove and fill light installation groove respectively;

[0010] c. Then, buckle grooves and positioning holes are opened along the back of the shell. The buckle grooves are distributed along the sides and top surface of the shell, and the positioning holes are located at the bottom of the shell;

[0011] S2. Backplane processing

[0012] The size of the back plate is determined according to the size of the shell, and the required back plate is formed by stamping. The sides and top surface of the back plate are folded to form folded edges that match the buckle grooves, and positioning columns that match the positioning holes are installed along the bottom surface of the back plate;

[0013] S3. Installation of cleaning mechanism

[0014] a. First, select a suitable guide rail according to the height of the housing, and open a slide groove along one side of the guide rail. The interior of the guide rail is a hollow structure, and the bottom penetrates the bottom surface of the guide rail. Install the processed guide rails parallel and symmetrically on both sides of the housing, with the side with the slide groove facing outward;

[0015] b. Then make a suitable lifting plate according to the design requirements and install the lifting plate on the guide rail so that the lifting plate is at the bottom of the slide;

[0016] c. Next, select a suitable rotating shaft based on the length and size of the guide rail, insert the rotating shaft into the guide rail, and thread it into the lifting plate. The top of the rotating shaft is rotatably connected to the top of the guide rail. Select a suitable transmission shaft based on the width of the housing, horizontally pass the transmission shaft through both sides of the housing, and extend it into the guide rails on both sides. Connect the transmission shaft to the rotating shaft through a bevel gear set, and install the second motor along one side of the rotating shaft;

[0017] d. Finally, a suitable cleaning roller is selected according to the distance between the two lifting plates, and the cleaning roller is installed between the two lifting plates. A first motor is installed on the outer side of one lifting plate, and the output shaft of the first motor is connected to the cleaning roller;

[0018] S4. Spray assembly installation

[0019] a. First, select a suitable crossbar according to the distance between the two lifting plates, connect the crossbar to the lifting plates through the columns, and install the nozzle on the crossbar;

[0020] b. Then select a suitable water tank, install a water pump in the water tank, install a straight pipe on the top of the water tank, connect the straight pipe to the water tank, and connect the straight pipe to the column through a water hose;

[0021] S5. Placement slot installation

[0022] a. First, make a suitable placement groove according to the width of the shell, open drainage holes along the bottom of the placement groove, and install the placement groove on the front bottom of the shell;

[0023] b. Then install the water squeezing mechanism in the placement tank;

[0024] S6. Cleaning and spraying trial run

[0025] a. First, install the camera, sensor, LCD screen, and fill light inside the camera mounting hole, sensor mounting hole, panel slot, and fill light mounting slot respectively. Then connect the camera, sensor, LCD screen, and fill light to the control system. The control system is connected to the display terminal, and the clarity is observed through the display terminal.

[0026] b. Dust and impurities are then smeared on the outer surfaces of the camera, sensor, LCD screen, and fill light. The control system controls the cleaning mechanism to move upward along the guide rail, and simultaneously activates the first motor, the second motor, and the water pump. The spray assembly sprays water onto the housing and the cleaning roller, while the cleaning roller cleans the front side of the housing. After cleaning, the cleaning roller is stored in the placement slot, and the water is squeezed out of the cleaning roller by the water squeezing mechanism.

[0027] c. Observe the clarity again through the display terminal.

[0028] This manufacturing method has simple steps, which not only facilitates the manufacture and processing of the integrated chassis for the barrier, but also allows the cleaning mechanism, spray assembly and water squeezing mechanism to be installed on the shell, which can effectively clean the outer glass of the camera, sensor, LCD screen and fill light, thereby improving the working efficiency of the chassis and extending its service life.

[0029] Furthermore, a slot is provided on the lifting plate in step S3, and the slot matches the guide rail. The lifting plate is fixedly connected to a booster block through a connecting block. The booster block is provided with a threaded hole. The booster block is located on the inner side of the slot, and the connecting block slides along the slide groove. The booster block slides along the inner side of the guide rail. Through the design of the slot, slide groove, booster block and connecting block, the stability and reliability of the lifting plate during movement along the guide rail can be improved, and the stability of the cleaning roller and the spray assembly during movement can be further improved, and the cleaning effect can be improved. The booster block and the rotating shaft are connected by threads, which makes it convenient for the rotating shaft to drive the booster block to move up and down.

[0030] Furthermore, a brush is provided on the outer side of the cleaning roller in step S3, and the brush can continuously clean the surface of the shell to reduce wear during the cleaning process.

[0031] Furthermore, the nozzles in step S4 include a first nozzle and a second nozzle. The first nozzle is distributed along the side of the cross bar toward the shell, and the second nozzle is distributed along the bottom surface of the cross bar toward the cleaning roller. The first nozzle can directly spray the surface of the shell, and the second nozzle can spray the cleaning roller. The shell and the cleaning roller can be flushed with water respectively through the first nozzle and the second spray, which is not only beneficial to cleaning the surface of the shell, but also can clean the cleaning roller, thereby improving the cleaning effect.

[0032] Furthermore, the horizontal distance between the first nozzle and the front side of the shell is 10 to 20 cm.

[0033] Furthermore, the vertical distance between the second nozzle and the cleaning roller is 5 to 10 cm.

[0034] Furthermore, the water storage tank in step S4 is connected to the external water supply pipe, which is conducive to replenishing water into the water storage tank.

[0035] Furthermore, the water squeezing mechanism in step S5 includes a cylinder, a water squeezing plate and a guide rod. The guide rod is arranged on the inner side of the placement groove, and the cylinder is arranged on the outer side of the placement groove. The cylinder is connected to the water squeezing plate through a piston rod. The water squeezing plate moves horizontally along the guide rod. When the cleaning mechanism is not working, it can be lowered into the placement groove for storage. The water squeezing plate is driven by the cylinder to move to squeeze the cleaning roller and squeeze out water. The guide rod improves the stability and reliability of the water squeezing plate when moving. The water on the cleaning roller can be discharged through the drainage hole to reduce bacterial growth.

[0036] Furthermore, gripping portions are installed along the shell and the back plate to facilitate the overall transportation of the chassis.

[0037] Furthermore, array holes are provided along the side of the shell to facilitate heat dissipation.

[0038] The present invention has the following beneficial effects due to the adoption of the above technical solution:

[0039] 1. The manufacturing method of the present invention has simple steps, which not only facilitates the manufacturing and processing of the integrated chassis for the barrier, but also allows the cleaning mechanism, spray assembly and water squeezing mechanism to be installed on the shell, which can effectively clean the outer glass of the camera, sensor, LCD screen and fill light, thereby improving the working efficiency of the chassis and extending its service life.

[0040] 2. Through the design of the card slot, slide, booster block and connecting block, the stability and reliability of the lifting plate during movement along the guide rail can be improved, the stability of the cleaning roller and spray assembly during movement can be further improved, and the cleaning effect can be improved. The booster block and the rotating shaft are connected by a threaded connection to facilitate the rotating shaft to drive the booster block up and down.

[0041] 3. The shell and the cleaning roller can be flushed with water respectively through the first nozzle and the second spray, which is not only beneficial to cleaning the shell surface, but also to cleaning the cleaning roller, thereby improving the cleaning effect.

[0042] 4. When the cleaning mechanism is not working, it can be lowered into the storage tank for storage. The water squeezing plate is driven by the cylinder to move to squeeze the cleaning roller and squeeze out the water. The guide rod improves the stability and reliability of the water squeezing plate during movement. The water on the cleaning roller can be discharged through the drainage hole to reduce bacterial growth. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] The present invention will be further described below in conjunction with the accompanying drawings:

[0044] Figure 1 is a flow chart of a method for manufacturing an integrated chassis of the present invention;

[0045] Figure 2 It is a structural schematic diagram of the chassis in the present invention;

[0046] Figure 3 Schematic diagram of the structure of the shell in the present invention;

[0047] Figure 4 for Figure 3 Schematic diagram of the structure in the A direction;

[0048] Figure 5 Schematic diagram of the structure of the back plate in the present invention;

[0049] Figure 6 Schematic diagram of the connection between the driving assembly, cleaning mechanism and spray assembly in the present invention;

[0050] Figure 7 Schematic diagram of the structure of the spray assembly in the present invention;

[0051] Figure 8 Schematic diagram of the structure of the lifting plate in the present invention;

[0052] Figure 9 Schematic diagram of the connection between the placement slot and the guide rail in the present invention.

[0053] In the figure: 1-housing; 2-LCD screen glass; 3-sensor mounting hole; 4-fill light glass; 5-grabbing part; 6-cleaning mechanism; 7-water supply hose; 8-straight pipe; 9-water storage tank; 10-placement slot; 11-camera mounting hole; 12-panel slot; 13-buckle slot; 14-positioning hole; 15-array hole; 16-back plate; 17-positioning column; 18-folding edge; 19-guide rail; 20-slide; 21-lifting plate; 22-first motor; 23-spraying assembly; 24-second motor; 25-drive shaft; 26-cross bar; 27-post; 28-first nozzle; 29-second nozzle; 30-card slot; 31-connecting block; 32-boost block; 33-threaded hole; 34-drainage hole; 35-cleaning roller; 36-cylinder; 37-piston rod; 38-water squeezing plate; 39-guide rod. DETAILED DESCRIPTION

[0054] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0055] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of the present invention.

[0056] It should be noted that the terms "first," "second," and so on in the description and claims of the present invention and the accompanying drawings are used to distinguish similar items and are not necessarily used to describe a specific order or precedence. Furthermore, the terms "including," "having," and any variations thereof are intended to cover non-exclusive inclusions.

[0057] like Figures 1 to 9 FIG. 1 is a method for manufacturing an integrated chassis according to the present invention, comprising the following steps:

[0058] S1, shell 1 processing

[0059] a. First, the required housing 1 is formed by stamping according to the design requirements, and a camera mounting hole 11, a sensor mounting hole 3, a panel slot 12, and a fill light mounting slot are opened along the housing 1;

[0060] b. Install the LCD screen glass 2 and the fill light glass 4 along the panel groove 12 and the fill light installation groove respectively;

[0061] c. Then, a buckle groove 13 and a positioning hole 14 are opened along the back of the housing 1. The buckle groove 13 is distributed along the two sides and top surface of the housing 1, and the positioning hole 14 is located at the bottom of the housing 1;

[0062] An array of holes 15 is provided along the side of the housing 1 to facilitate heat dissipation.

[0063] S2, back plate 16 processing

[0064] The size of the back panel 16 is determined according to the size of the shell 1, and the required back panel 16 is formed by stamping. The two sides and the top surface of the back panel 16 are folded to form folded edges 18 that match the buckle grooves 13, and positioning columns 17 that match the positioning holes 14 are installed along the bottom surface of the back panel 16; the grabbing part 5 is installed along the shell 1 and the back panel 16 to facilitate the overall transportation of the chassis.

[0065] S3, installation of cleaning mechanism 6

[0066] a. First, select a suitable guide rail 19 according to the height of the housing 1. Open a slide groove 20 along one side of the guide rail 19. The interior of the guide rail 19 is a hollow structure, and the bottom passes through the bottom surface of the guide rail 19. Install the processed guide rails 19 parallel and symmetrically on both sides of the housing 1, with the side with the slide groove 20 facing outward;

[0067] b. Then, make a suitable lifting plate 21 according to the design requirements and install the lifting plate 21 on the guide rail 19 so that the lifting plate 21 is located at the bottom of the slideway;

[0068] c. Next, select a suitable rotating shaft according to the length and size of the guide rail 19, insert the rotating shaft into the guide rail 19, and thread it into the lifting plate 21. The top of the rotating shaft is rotatably connected to the top of the guide rail 19. Select a suitable transmission shaft 25 according to the width of the housing 1, and horizontally pass the transmission shaft 25 through both sides of the housing 1 and extend into the guide rails 19 on both sides. Connect the transmission shaft 25 to the rotating shaft through a bevel gear set, and install the second motor 24 along one side of the rotating shaft;

[0069] d. Finally, select a suitable cleaning roller 35 according to the distance between the two lifting plates 21, install the cleaning roller 35 between the two lifting plates 21, and install a first motor 22 on the outer side of the lifting plate 21 on one side, and connect the output shaft of the first motor 22 to the cleaning roller 35;

[0070] The lifting plate 21 is provided with a slot 30, which matches the guide rail 19. The lifting plate 21 is fixedly connected to a booster block 32 through a connecting block 31. The booster block 32 is provided with a threaded hole 33. The booster block 32 is located on the inner side of the slot 30, and the connecting block 31 slides along the slide groove 20, and the booster block 32 slides along the inner side of the guide rail 19. Through the design of the slot 30, the slide groove 20, the booster block 32 and the connecting block 31, the stability and reliability of the lifting plate 21 during movement along the guide rail 19 can be improved, and the stability of the cleaning roller 35 and the spray assembly 23 during movement can be further improved, thereby improving the cleaning effect. The booster block 32 is threadedly connected to the rotating shaft, which facilitates the rotating shaft to drive the booster block 32 to move up and down.

[0071] A brush is provided on the outside of the cleaning roller 35 , and the brush can continuously clean the surface of the shell 1 to reduce wear during the cleaning process.

[0072] S4, installation of spray assembly 23

[0073] a. First, select a suitable crossbar 26 according to the distance between the two lifting plates 21, connect the crossbar 26 to the lifting plates 21 through the columns 27, and install the nozzle on the crossbar 26;

[0074] b. Then select a suitable water tank 9, install a water pump in the water tank 9, install a straight pipe 8 on the top of the water tank 9, connect the straight pipe 8 to the water tank 9, and connect the straight pipe 8 to the column 27 through the water hose 7;

[0075] The nozzles include a first nozzle 28 and a second nozzle 29. The first nozzle 28 is distributed along the side of the crossbar 26 facing the housing 1, and the second nozzle 29 is distributed along the bottom surface of the crossbar 26 facing the cleaning roller 35. The first nozzle 28 can directly spray the surface of the housing 1, and the second nozzle 29 can spray the cleaning roller 35. The first nozzle 28 and the second nozzle can respectively flush the housing 1 and the cleaning roller 35, which is not only conducive to cleaning the surface of the housing 1, but also can clean the cleaning roller 35, improving the cleaning effect. The horizontal distance between the first nozzle 28 and the front side of the housing 1 is 10 to 20 cm. The vertical distance between the second nozzle 29 and the cleaning roller 35 is 5 to 10 cm.

[0076] The water storage tank 9 is connected to the water supply pipe on the outside, which is conducive to replenishing water into the water storage tank 9.

[0077] S5, Placement slot 10 installation

[0078] a. First, make a suitable placement groove 10 according to the width of the housing 1, open a drainage hole 34 along the bottom of the placement groove 10, and install the placement groove 10 on the front bottom of the housing 1;

[0079] b. Then install a water squeezing mechanism in the placement tank 10; the water squeezing mechanism includes a cylinder 36, a water squeezing plate 38 and a guide rod 39. The guide rod 39 is arranged on the inner side of the placement tank 10, and the cylinder 36 is arranged on the outer side of the placement tank 10. The cylinder 36 is connected to the water squeezing plate 38 through a piston rod 37. The water squeezing plate 38 moves horizontally along the guide rod 39. When the cleaning mechanism 6 is not working, it can be lowered into the placement tank 10 for storage. The water squeezing plate 38 is driven by the cylinder 36 to move, thereby squeezing the cleaning roller 35 and squeezing out water. The guide rod 39 improves the stability and reliability of the water squeezing plate 38 when moving. The water on the cleaning roller 35 can be discharged through the drainage hole 34 to reduce the growth of bacteria.

[0080] S6. Cleaning and spraying trial run

[0081] a. First, install the camera, sensor, LCD screen, and fill light inside the camera mounting hole 11, sensor mounting hole 3, panel slot 12, and fill light mounting slot respectively. Connect the camera, sensor, LCD screen, and fill light to the control system. The control system is connected to a display terminal, and the clarity is observed through the display terminal.

[0082] b. Dust and impurities are then smeared on the outer surfaces of the camera, sensor, LCD screen, and fill light. The control system controls the cleaning mechanism 6 to move upward along the guide rail 19, and simultaneously activates the first motor 22, the second motor 24, and the water pump. The spray assembly 23 sprays water toward the housing 1 and the cleaning roller 35, while the cleaning roller 35 cleans the front side of the housing 1. After cleaning, the cleaning roller 35 is stored in the placement slot 10, and the water is squeezed out of the cleaning roller 35 by the water squeezing mechanism.

[0083] c. Observe the clarity again through the display terminal.

[0084] The manufacturing method has simple steps, which not only facilitates the manufacturing and processing of the integrated chassis for the barrier, but also allows the cleaning mechanism 6, the spray assembly 23 and the water squeezing mechanism to be installed on the shell 1, and can effectively clean the outer glass of the camera, sensor, LCD screen and fill light, thereby improving the working efficiency of the chassis and extending its service life.

[0085] The above are only specific embodiments of the present invention, but the technical features of the present invention are not limited thereto. Any simple changes, equivalent replacements, or modifications based on the present invention to achieve substantially the same technical effects are all within the scope of protection of the present invention.

Claims

1. A method for manufacturing an integrated chassis, characterized in that The steps include: S1. Shell processing a. First, the required housing is formed by stamping according to the design requirements, and the camera mounting holes, sensor mounting holes, panel slots and fill light mounting slots are opened along the housing; b. Then install the LCD screen glass and fill light glass along the panel groove and fill light installation groove respectively; c. Then, buckle grooves and positioning holes are opened along the back of the shell. The buckle grooves are distributed along the sides and top surface of the shell, and the positioning holes are located at the bottom of the shell; S2. Backplane processing The size of the back plate is determined according to the size of the shell, and the required back plate is formed by stamping. The sides and top surface of the back plate are folded to form folded edges that match the buckle grooves, and positioning columns that match the positioning holes are installed along the bottom surface of the back plate; S3. Installation of cleaning mechanism a. First, select a suitable guide rail according to the height of the housing, and open a slide groove along one side of the guide rail. The interior of the guide rail is a hollow structure, and the bottom penetrates the bottom surface of the guide rail. Install the processed guide rails parallel and symmetrically on both sides of the housing, with the side with the slide groove facing outward; b. Then make a suitable lifting plate according to the design requirements and install the lifting plate on the guide rail so that the lifting plate is at the bottom of the slide; c. Next, select a suitable rotating shaft based on the length and size of the guide rail, insert the rotating shaft into the guide rail, and thread it into the lifting plate. The top of the rotating shaft is rotatably connected to the top of the guide rail. Select a suitable transmission shaft based on the width of the housing, horizontally pass the transmission shaft through both sides of the housing, and extend it into the guide rails on both sides. Connect the transmission shaft to the rotating shaft through a bevel gear set, and install the second motor along one side of the rotating shaft; d. Finally, a suitable cleaning roller is selected according to the distance between the two lifting plates, and the cleaning roller is installed between the two lifting plates. A first motor is installed on the outer side of one lifting plate, and the output shaft of the first motor is connected to the cleaning roller; S4. Spray assembly installation a. First, select a suitable crossbar according to the distance between the two lifting plates, connect the crossbar to the lifting plates through the columns, and install the nozzle on the crossbar; b. Then select a suitable water tank, install a water pump in the water tank, install a straight pipe on the top of the water tank, connect the straight pipe to the water tank, and connect the straight pipe to the column through a water hose; S5. Placement slot installation a. First, make a suitable placement groove according to the width of the shell, open drainage holes along the bottom of the placement groove, and install the placement groove on the front bottom of the shell; b. Then install the water squeezing mechanism in the placement tank; S6. Cleaning and spraying trial run a. First, install the camera, sensor, LCD screen, and fill light inside the camera mounting hole, sensor mounting hole, panel slot, and fill light mounting slot respectively. Then connect the camera, sensor, LCD screen, and fill light to the control system. The control system is connected to the display terminal, and the clarity is observed through the display terminal. b. Dust and impurities are then smeared on the outer surfaces of the camera, sensor, LCD screen, and fill light. The control system controls the cleaning mechanism to move upward along the guide rail, and simultaneously activates the first motor, the second motor, and the water pump. The spray assembly sprays water onto the housing and the cleaning roller, while the cleaning roller cleans the front side of the housing. After cleaning, the cleaning roller is stored in the placement slot, and the water is squeezed out of the cleaning roller by the water squeezing mechanism. c. Observe the clarity again through the display terminal.

2. The method for manufacturing an integrated chassis according to claim 1, wherein: The lifting plate in step S3 is provided with a slot, and the slot matches the guide rail. The lifting plate is fixedly connected to a booster block through a connecting block. The booster block is provided with a threaded hole. The booster block is located on the inner side of the slot, and the connecting block slides along the slide groove, and the booster block slides along the inner side of the guide rail.

3. The method for manufacturing an integrated chassis according to claim 1, wherein: In step S3, a brush is provided on the outer side of the cleaning roller.

4. The method for manufacturing an integrated chassis according to claim 1, wherein: The nozzles in step S4 include a first nozzle and a second nozzle, wherein the first nozzle is distributed along a side of the cross bar toward the shell, and the second nozzle is distributed along a side of the bottom surface of the cross bar toward the cleaning roller.

5. The method for manufacturing an integrated chassis according to claim 4, wherein: The horizontal distance between the first nozzle and the front side of the shell is 10 to 20 cm.

6. The method for manufacturing an integrated chassis according to claim 4, wherein: The vertical distance between the second nozzle and the cleaning roller is 5 to 10 cm.

7. The method for manufacturing an integrated chassis according to claim 1, wherein: The water storage tank in step S4 is connected to the external water supply pipe.

8. The method for manufacturing an integrated chassis according to claim 1, wherein: The water squeezing mechanism in step S5 includes a cylinder, a water squeezing plate and a guide rod, the guide rod is arranged on the inner side of the placement groove, the cylinder is arranged on the outer side of the placement groove, the cylinder is connected to the water squeezing plate through a piston rod, and the water squeezing plate moves horizontally along the guide rod.

9. The method for manufacturing an integrated chassis according to claim 1, wherein: Grips are mounted along the housing and the back panel.

10. The method for manufacturing an integrated chassis according to claim 1, wherein: An array of holes is provided along the side surface of the shell.

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