Environment-friendly real stone paint anti-fog type real stone paint spraying equipment and using method
By introducing a pipe storage module and a vertical detection module into the stone paint spraying equipment, the problems of wasted construction time and uneven spraying caused by pipe blockage in stone paint have been solved, enabling rapid replacement and improved spraying quality.
Patent Information
- Application Number
- CN202511691470.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-18
- Publication Date
- 2026-02-06
AI Technical Summary
Existing stone paint spraying equipment requires manual searching or purchasing of new pipes when the stone paint pipes become clogged, resulting in wasted construction time. Furthermore, the lack of a vertical detection module for the spray nozzles leads to uneven spraying, causing material waste and reduced adhesion.
A pipe storage module was designed for quick replacement of the stone paint pipes. A vertical detection module and a distance limiting module were set up to ensure that the nozzle is perpendicular to the wall. Components such as sliding blocks, rotating wheels, and alarms were included to enable rapid adjustment and detection.
It reduces construction time wasted due to pipe blockage, ensures spraying quality, reduces material waste and adhesion degradation, and improves construction efficiency.
Smart Images

Figure CN121473544A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of stone paint spraying equipment technology, and in particular to an environmentally friendly anti-fog stone paint spraying equipment and its usage method. Background Technology
[0002] Stone paint spraying equipment is a professional tool used for spraying stone paint. It mainly includes air compressors, spray guns, nozzles, etc. Stone paint spraying equipment is an important tool for improving the efficiency and quality of stone paint construction. With the advancement of technology, its functions and performance are also constantly being optimized.
[0003] A type of anti-fog stone paint spraying device for exterior wall beautification, disclosed in Chinese invention patent application publication number CN111519875B, allows for manual rotation of a pressure plate when the stone paint is sprayed onto the wall. This rotates a disc within a protective cover, creating a closed space to prevent accidental spraying of the stone paint onto the user, thus ensuring user safety. However, in daily use, if the pipe used to transport the stone paint becomes blocked, it is necessary to manually find or purchase a new pipe and install it. Finding or purchasing a new pipe requires... The process takes time, which undoubtedly wastes construction time and may prolong the completion time. When using the real stone paint spraying equipment, the user needs to hold the nozzle perpendicular to the building surface, and the distance between the nozzle and the building surface should not be greater or less than a certain distance. However, the above-mentioned device does not have a module that can meet the above requirements. This causes the real stone paint to either be too thick and cause drips, or the paint mist to disperse and cause material waste, and the adhesion to decrease. Therefore, this application provides an environmentally friendly real stone paint anti-fog spraying equipment and its usage method to meet the needs. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides an environmentally friendly anti-fogging stone paint spraying device and its usage method. It solves the problem of wasted time caused by manually searching for or purchasing new stone paint pipes when old ones become clogged, which extends the construction completion time. The device also lacks modules that correspond to the handheld specifications of the stone paint spraying device, which can easily lead to excessively thick stone paint or dispersed paint mist during spraying.
[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution: An environmentally friendly anti-fogging stone paint spraying equipment includes a tank. The top of the tank is provided with a top cover, which is threadedly connected to the tank via top cover bolts. A rigid pipe is fixedly connected to the surface of the tank. One end of the rigid pipe is threadedly connected to a pipe storage module. One end of the pipe storage module is threadedly connected to a switch valve. The surface of the switch valve is provided with a vertical detection module. One end of the switch valve is threadedly connected to a nozzle. The surface of the nozzle is provided with a distance limiting module.
[0006] Preferably, the pipe storage module includes a first cylindrical sleeve and a second cylindrical sleeve. The inner walls of both the first cylindrical sleeve and the second cylindrical sleeve are equipped with rotating shafts. A first single plate is fixedly connected to the upper surface of the first cylindrical sleeve. A threaded connecting pipe is fixedly connected to the top of the first single plate. A hand-held cylinder is fixedly connected to the lower surface of the first cylindrical sleeve.
[0007] Preferably, a second single plate is fixedly connected to the upper surface of the second cylindrical sleeve, and a plug hole is opened on the side of the second single plate. A threaded plug is installed on the inner wall of the plug hole. A single plate accessory is installed on the second single plate through the threaded plug. A threaded fastening ring is threadedly connected to one end of the threaded plug, and a rigid tube is fixedly connected to the top of the single plate accessory.
[0008] Preferably, a rotating rod is installed on the inner wall of the rotating shaft, an elastic retaining ring is fixedly connected to the surface of the rotating rod, a real stone paint tube is installed on the inner wall of the elastic retaining ring, a circular baffle is fixedly connected to both ends of the real stone paint tube, a plug is fixedly connected to one end of the circular baffle, a threaded cap is provided on the surface of the real stone paint tube, a paint tube hole is opened at one end of the threaded cap, and the paint tube hole and the real stone paint tube are mutually compatible.
[0009] Preferably, the vertical detection module includes a column, a base plate is fixedly connected to the top of the column, an alarm base is provided on the top of the base plate, the alarm base is threadedly connected to the base plate by alarm base bolts, an alarm is fixedly connected to the top of the alarm base, and the top of the alarm is provided with a horn.
[0010] Preferably, a battery compartment is fixedly connected to one side of the alarm, a battery is installed on the inner wall of the battery compartment, a battery compartment cover is installed on one side of the battery compartment, the battery compartment cover is threadedly connected to the battery compartment via a cover bolt, a threaded head is fixedly connected to the inner wall of the alarm, and a thin-film trigger is provided at one end of the threaded head.
[0011] Preferably, one end of the thin-film trigger is fixedly connected to a spring, one end of the spring is fixedly connected to a trigger rod base plate, one end of the trigger rod base plate is fixedly connected to a trigger rod, the trigger rod and the spring are mutually adapted, the surface of the threaded head is threadedly connected to a threaded head adapter, one end of the threaded head adapter is fixedly connected to a water injection container, the surface of the water injection container is fixedly connected to a water injection end, and the inner wall of the water injection end is threadedly connected to a threaded sealing plug.
[0012] Preferably, the distance limiting module includes a sliding block, a rotating wheel groove is provided on one side of the sliding block, a rotating wheel rod hole is provided on the top of the sliding block, a rotating wheel rod is installed on the inner wall of the rotating wheel rod hole, a rotating wheel is fixedly connected to one end of the rotating wheel rod, the rotating wheel and the rotating wheel groove are adapted to each other, and a sliding groove plate is installed on the surface of the sliding block.
[0013] Preferably, a sliding plate groove is provided on one side of the sliding groove plate, and the sliding plate groove and the sliding block are adapted to each other. A limiting threaded hole is provided on the other side of the sliding groove plate, and a limiting bolt is threadedly connected to the inner wall of the limiting threaded hole. The sliding groove plate is threadedly connected to the sliding block through the limiting bolt, and a nozzle is fixedly connected to one side of the sliding block.
[0014] The operating method of the environmentally friendly anti-fog stone paint spraying equipment includes the following steps: Step 1: When using the stone paint spraying equipment, put the treated stone paint into the tank. Then, the user needs to move the entire device to the building wall. At this time, the nozzle needs to be raised. Then, according to the stone paint spraying pressure, select the distance between the nozzle and the building wall. Then, the user needs to unscrew the limiting bolt. At this time, the movement restriction of the sliding block of the distance limiting module is removed. The sliding block can now slide in the sliding groove of the sliding plate. When the sliding block slides, it will also drive the nozzle to move forward or backward. Before the sliding block is ready to slide, the sliding plate needs to be pressed against the building wall. When the sliding block and the nozzle reach the ideal distance, the user screws the limiting bolt back into the limiting thread hole of the sliding plate and finally into the sliding block. The sliding block's movement is driven by the rotation of the wheel in the wheel groove. The operation is completed. Step Two: After determining the distance between the nozzle and the building wall using the distance limiting module, the user needs to gradually adjust the horizontal angle of the nozzle using the vertical detection module to ensure the nozzle is perpendicular to the building wall. When using the vertical detection module, the user needs to unscrew the battery compartment cover bolts to separate the cover from the battery compartment. Then, the user inserts the battery into the battery compartment and replaces the cover, securing them together with the cover bolts. The water injection container is then passed through the trigger rod base plate, spring, membrane trigger, and threaded head. The threaded head adapter on the water injection container is then screwed onto the threaded head, and water is then introduced. Water is injected into the water injection container through the injection end. Then, the threaded sealing plug is screwed back onto the injection end to reseal it. When the nozzle is lifted, if the horizontal angle of the nozzle is not balanced, the water in the water injection container will move to the lower end. At this time, the downward pressure of the water at that end will increase. The trigger rod base plate will be pressed down, and the trigger rod will also be pressed down. When the trigger rod touches the membrane trigger, the membrane trigger will drive the alarm to sound. The alarm buzzer will be released through the horn. The user should adjust the nozzle in time according to the location of the buzzer. After adjusting slowly, the buzzer will disappear completely, and then normal spraying operation can be carried out to complete the operation. Step 3: During normal spraying operations, the equipment may become clogged due to inadequate routine maintenance and cleaning, leading to blockages in the pipes supplying the stone paint. In this case, the user needs to use the pipe storage module to quickly replace the stone paint pipe. First, the user needs to unscrew the threaded caps on the old, clogged stone paint pipe from both the threaded connection pipe and the rigid pipe. Because the stone paint pipe is flexible, the user can manually pull out the connectors inside the threaded connection pipe and the rigid pipe. Then, the user manually pushes the rotating rod to rotate the shaft. As the rod rotates, the elastic retaining ring will also rotate, releasing the stone paint pipe from the elastic retaining ring. The flexible retaining ring will also move the connector between the threaded pipe and the rigid pipe. The user inserts the connector into the threaded pipe and the rigid pipe respectively, and then screws the threaded cap onto the threaded pipe and the rigid pipe. This allows for a quick replacement of the stone paint pipe. It should be noted that the round baffle is used to seal the ends of the threaded pipe and the rigid pipe after the connector enters them. It also limits the rotation distance of the threaded cap to prevent it from being rotated too much, which could damage the threads of the threaded cap and reduce its service life. This completes the operation.
[0015] Compared with the prior art, the present invention has at least the following beneficial effects: In the above solution, the device can store a certain number of stone paint pipes in advance through the pipe storage module. When the old pipe is blocked, the user can manually remove the old pipe and then rotate the lever to install the new stone paint pipe on the elastic retaining ring. This saves the time of finding or purchasing new stone paint pipes, reduces the waste of time in finding or purchasing new stone paint pipes, and also ensures the construction completion time and the normal progress of construction.
[0016] By incorporating a vertical detection module and a distance limiting module, users can first limit the distance between the nozzle and the building surface using the distance limiting module. Then, based on the real-time detection results from the vertical detection module, they can gradually adjust the horizontal angle of the nozzle until it is horizontal and perpendicular to the building surface. The use of these modules ensures that the user's operation complies with the usage specifications of the stone paint spraying device. This can, to some extent, reduce the possibility of dripping or wasting material due to excessively thick stone paint, or reduced adhesion caused by paint mist dispersion.
[0017] In summary, the present invention has the advantages of pre-storing a certain number of stone paint tubes, which can be quickly replaced after the old tubes become blocked, reducing the time wasted in finding or purchasing new tubes, ensuring construction progress, and ensuring that the device is set up with modules that correspond to the specifications of the stone paint spraying device. This reduces the possibility of the sprayed stone paint being too thick, causing drips, or the paint mist being dispersed, resulting in material waste and decreased adhesion. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the environmentally friendly anti-fog stone paint spraying equipment of the present invention; Figure 2 This is a schematic diagram of the first component of the planar pipe storage module of the environmentally friendly anti-fog stone paint spraying equipment of the present invention. Figure 3 This is a schematic diagram of the second part of the planar pipe storage module of the environmentally friendly anti-fog stone paint spraying equipment of the present invention. Figure 4 for Figure 3 Enlarged schematic diagram of a local structure; Figure 5 This is a schematic diagram of the third component of the planar pipe storage module of the environmentally friendly anti-fog stone paint spraying equipment of the present invention. Figure 6 This is a schematic diagram of the fourth component of the planar pipe storage module of the environmentally friendly anti-fog stone paint spraying equipment of the present invention. Figure 7This is a schematic diagram of the first part of the planar vertical detection module of the environmentally friendly anti-fog stone paint spraying equipment of the present invention. Figure 8 This is a schematic diagram of the second part of the vertical detection module of the environmentally friendly anti-fog stone paint spraying equipment of the present invention. Figure 9 for Figure 7 Enlarged schematic diagram of a local structure in Part A; Figure 10 for Figure 8 Enlarged schematic diagram of a local structure in Part B; Figure 11 This is a schematic diagram of the distance limiting module of the environmentally friendly anti-fog stone paint spraying equipment of the present invention; Figure 12 for Figure 11 C. Enlarged schematic diagram of local structure; Figure 13 for Figure 11 D. Enlarged schematic diagram of a local structure.
[0019] In the diagram, 1. Tank body; 2. Top cover; 3. Rigid pipe; 4. Pipeline storage module; 401. First cylindrical sleeve; 402. Second cylindrical sleeve; 403. Rotating shaft; 404. First single plate; 405. Threaded connecting pipe; 406. Hand-held cylinder; 407. Second single plate; 408. Threaded plug; 409. Single plate accessory; 410. Threaded fastening ring; 411. Rotating rod; 412. Elastic retaining ring; 413. Stone paint pipe; 414. Circular baffle; 415. Insertion nozzle; 416. Threaded cap; 5. Switch valve; 6. Vertical detection module; 601. Column; 6 02. Base plate; 603. Alarm base; 604. Alarm; 605. Horn mouth; 606. Battery compartment; 607. Battery; 608. Battery compartment cover; 609. Threaded head; 610. Membrane trigger; 611. Spring; 612. Trigger rod base plate; 613. Trigger rod; 614. Threaded head adapter; 615. Water inlet container; 616. Water inlet end; 617. Threaded sealing bolt; 7. Nozzle; 8. Distance limiting module; 801. Sliding block; 802. Rotating wheel rod; 803. Rotating wheel; 804. Sliding groove plate; 805. Limiting bolt.
[0020] As shown in the figure, specific structures and devices are marked in the figure to clearly illustrate the structure of the embodiments of the present invention. However, this is only for illustrative purposes and is not intended to limit the present invention to this specific structure, device and environment. Those skilled in the art can adjust or modify these devices and environments according to specific needs. Detailed Implementation
[0021] The environmentally friendly anti-fogging stone paint spraying equipment and its usage method provided by the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. It should also be noted that, to make the embodiments more detailed, the following embodiments are the best and preferred embodiments, and those skilled in the art can use other alternative methods to implement some known technologies; moreover, the accompanying drawings are only for more specific description of the embodiments and are not intended to specifically limit the present invention.
[0022] Example 1, such as Figure 1 As shown, the embodiment of the present invention provides an environmentally friendly anti-fog stone paint spraying device, including a tank 1, a top cover 2 on the top of the tank 1, the top cover 2 being threadedly connected to the tank 1 by a top cover bolt, a rigid pipe 3 being fixedly connected to the surface of the tank 1, a pipe storage module 4 being threadedly connected to one end of the rigid pipe 3, a switch valve 5 being threadedly connected to one end of the pipe storage module 4, a vertical detection module 6 being provided on the surface of the switch valve 5, a nozzle 7 being threadedly connected to one end of the switch valve 5, and a distance limiting module 8 being provided on the surface of the nozzle 7.
[0023] Install the top cover 2 onto the top of the tank body 1 using top cover bolts, weld the rigid pipe 3 to the surface of the tank body 1, install the pipe storage module 4 between the rigid pipe 3 and the switch valve 5, weld the vertical detection module 6 to the upper surface of the switch valve 5, screw the nozzle 7 onto one end of the switch valve 5, and weld the distance limiting module 8 to both sides of the nozzle 7 to complete the assembly.
[0024] In use, the user first puts the treated stone paint into the tank 1, and then installs the top cover 2 onto the tank 1 using the top cover bolts. The top cover 2 is connected to an external compressor. The user needs to move the entire device to the building wall. Then, the user first uses the distance limiting module 8 to determine the distance between the nozzle 7 and the building wall, and then slowly adjusts the level of the nozzle 7 through the vertical detection module 6 until the nozzle 7 is perpendicular to the building wall. Then, the external compressor is started. The compressor releases pressure and sends the stone paint inside the tank 1 through the rigid tube 3 into one of the stone paint pipes 413 of the pipeline storage module 4, and then into the switch valve 5. When the user is ready, the user opens the switch valve 5, and the stone paint is released from the switch valve 5 and finally sprayed onto the building wall through the nozzle 7, completing the operation.
[0025] Example 2, as Figure 2 and Figure 3As shown, in this embodiment, the pipe storage module 4 includes a first cylindrical sleeve 401 and a second cylindrical sleeve 402. The inner walls of both the first cylindrical sleeve 401 and the second cylindrical sleeve 402 are equipped with rotating shafts 403. A first single plate 404 is fixedly connected to the upper surface of the first cylindrical sleeve 401. A threaded connecting pipe 405 is fixedly connected to the top of the first single plate 404. A hand-held cylinder 406 is fixedly connected to the lower surface of the first cylindrical sleeve 401.
[0026] The upper surface of the second cylindrical sleeve 402 is fixedly connected to the second single plate 407. The side of the second single plate 407 is provided with a plug hole. A threaded plug 408 is installed on the inner wall of the plug hole. The second single plate 407 is installed with a single plate accessory 409 through the threaded plug 408. One end of the threaded plug 408 is threadedly connected to a threaded fastening ring 410. The top of the single plate accessory 409 is fixedly connected to a rigid tube 3.
[0027] A rotating rod 411 is installed on the inner wall of the rotating shaft 403. An elastic retaining ring 412 is fixedly connected to the surface of the rotating rod 411. A real stone paint tube 413 is installed on the inner wall of the elastic retaining ring 412. Circular baffles 414 are fixedly connected to both ends of the real stone paint tube 413. A plug 415 is fixedly connected to one end of the circular baffle 414. A threaded cap 416 is provided on the surface of the real stone paint tube 413. A paint tube hole is opened at one end of the threaded cap 416. The paint tube hole and the real stone paint tube 413 are mutually compatible.
[0028] The second single plate 407 is welded to the second cylindrical sleeve 402, while the single plate fitting 409 is welded to the bottom of the rigid tube 3. The second single plate 407 is placed inside the single plate fitting 409, and then the two are fixed using a threaded bolt 408. Then, the threaded fastening ring 410 is screwed onto the threaded bolt 408. The first single plate 404 is welded between the first cylindrical sleeve 401 and the threaded connecting tube 405. The hand-held cylinder 406 is welded to the bottom of the first cylindrical sleeve 401. The rotating shaft 403 is installed inside the first cylindrical sleeve 401 and the second cylindrical sleeve 402, while the elastic retaining ring 412 is welded to the surface of the rotating rod 411. It should be noted that the rotating... The rod 411 is composed of a thicker cylinder in the middle and thinner cylinders at both ends, which together form a component of the rotating rod 411. The elastic retaining ring 412 is welded to the thicker cylinder in the middle of the rotating rod 411 component. The circular baffle 414 is welded to both ends of the real stone paint pipe 413. The plug 415 is welded to the circular baffle 414. The threaded cap 416 is installed on the real stone paint pipe 413 before the circular baffle 414 and the plug 415 are welded. The assembled real stone paint pipe 413 is installed on the elastic retaining ring 412, and then the assembled rotating rod 411 is placed into the rotating shaft 403 to complete the assembly.
[0029] During normal spraying operations, the equipment may become clogged due to inadequate routine maintenance and cleaning, leading to blockages in the pipes supplying the stone paint. In this case, the user needs to use the pipe storage module 4 to quickly replace the stone paint pipe 413. First, the user needs to unscrew the threaded cap 416 on the old, clogged stone paint pipe 413 from both the threaded connecting pipe 405 and the rigid pipe 3. Because the stone paint pipe 413 is flexible, the user can manually pull out the connector 415 inside the threaded connecting pipe 405 and the rigid pipe 3. Then, the user manually pushes the rotating rod 411 to rotate on the rotating shaft 403. When the rotating rod 411 rotates, the elastic retaining ring 412 will also rotate accordingly. At this time, the stone-painted tube 413 on the elastic retaining ring 412 will also be driven by the elastic retaining ring 412 to the space between the threaded connecting tube 405 and the rigid tube 3. The user inserts the connector 415 into the threaded connecting tube 405 and the rigid tube 3 respectively, and then screws the threaded cap 416 onto the threaded connecting tube 405 and the rigid tube 3. It is worth noting that after the old stone-painted tube 413 is removed, the new stone-painted tube 413 rotates on the elastic retaining ring 412 with the rotating rod 411 to the space between the threaded connecting tube 405 and the rigid tube 3. Then the user needs to remove the new stone-painted tube 413 from the elastic retaining ring 412, because the new stone-painted tube 413 and the old stone-painted tube 405 are connected. Since the stone paint pipe 413 is soft, the user needs to first bend the pipe body and insert the connector 415 on one end of the stone paint pipe 413 into the threaded connecting pipe 405. Then, similarly, the connector 415 on the other end of the stone paint pipe 413 needs to be inserted into the rigid pipe 3. Finally, the threaded caps 416 on both ends of the stone paint pipe 413 are screwed onto the threaded connecting pipe 405 and the rigid pipe 3, respectively. Because the stone paint pipe 413 is soft and its body needs to be bent during installation, the distance between the first cylindrical sleeve 401 and the second cylindrical sleeve 402 does not need to be increased, and the rotating rod 411 does not need to be... The first cylindrical sleeve 401 and the second cylindrical sleeve 402 are disengaged, ensuring that one end of the rotating rod 411 is supported and preventing overturning. This allows for quick replacement of the real stone paint tube 413. It should be noted that the circular baffle 414 is used to seal the ends of the threaded connecting tube 405 and the rigid tube 3 after the insertion nozzle 415 enters the threaded connecting tube 405 and the rigid tube 3. It also limits the rotational distance of the threaded cover 416, preventing excessive rotation of the threaded cover 416, which could damage the threads and reduce its service life. This completes the operation.
[0030] By using the pipe storage module 4, the device can store a certain number of stone paint pipes 413 in advance. When the old pipe is blocked, the user can manually remove the old pipe and then rotate the rotating rod 411 to install the new stone paint pipe 413 on the elastic retaining ring 412. This saves the time of finding or purchasing new stone paint pipes 413, reduces the waste of time in finding or purchasing new stone paint pipes 413, and also ensures the completion time of construction and the normal progress of construction.
[0031] Example 3, as Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8 As shown, in this embodiment, the vertical detection module 6 includes a column 601, a base plate 602 is fixedly connected to the top of the column 601, an alarm base 603 is provided on the top of the base plate 602, the alarm base 603 is threadedly connected to the base plate 602 by an alarm base bolt, an alarm 604 is fixedly connected to the top of the alarm base 603, and a horn 605 is provided on the top of the alarm 604.
[0032] A battery compartment 606 is fixedly connected to one side of the alarm 604. A battery 607 is installed on the inner wall of the battery compartment 606. A battery compartment cover 608 is installed on one side of the battery compartment 606. The battery compartment cover 608 is threadedly connected to the battery compartment 606 by a cover bolt. A threaded head 609 is fixedly connected to the inner wall of the alarm 604. A membrane trigger 610 is provided at one end of the threaded head 609.
[0033] One end of the membrane trigger 610 is fixedly connected to a spring 611, one end of the spring 611 is fixedly connected to a trigger rod base plate 612, one end of the trigger rod base plate 612 is fixedly connected to a trigger rod 613, the trigger rod 613 and the spring 611 are mutually compatible, the surface of the threaded head 609 is threadedly connected to a threaded head adapter 614, one end of the threaded head adapter 614 is fixedly connected to a water injection container 615, the surface of the water injection container 615 is fixedly connected to a water injection end 616, and the inner wall of the water injection end 616 is threadedly connected to a threaded sealing plug 617.
[0034] The column 601 is welded between the base plate 602 and the switch valve 5. The alarm base 603 is installed on the top of the base plate 602 by alarm base bolts. The alarm 604 is integrally connected to the alarm base 603. The horn 605, battery compartment 606, threaded head 609 and alarm 604 are integrally connected. The battery 607 is placed in the battery compartment 606, and then the battery compartment cover 608 is installed on the battery compartment 606 by cover bolts. The membrane trigger 610 is integrally connected to the threaded head 609. The spring 611 is welded between the membrane trigger 610 and the trigger rod base plate 612, and the trigger rod 613 is welded to the trigger rod base plate. On plate 612, trigger rod 613 is installed between springs 611. Water injection container 615 is passed through threaded head 609, membrane trigger 610, spring 611 and trigger rod base plate 612. Then, water injection container 615 is screwed onto threaded head 609 through threaded head adapter 614. Water injection end 616 is integrally connected to water injection container 615. Threaded sealing plug 617 is screwed into water injection end 616. It should be noted that threaded head adapter 614 is welded to both ends of water injection container 615 by welding. Threaded head adapter 614 is rotated onto threaded head 609 through the thread inside threaded head adapter 614 to complete assembly.
[0035] After the user determines the distance between the nozzle 7 and the building wall using the distance limiting module 8, the user needs to gradually adjust the horizontal angle of the nozzle 7 using the vertical detection module 6 to make the nozzle 7 perpendicular to the building wall. When using the vertical detection module 6, the user needs to unscrew the cover bolts to separate the battery compartment cover 608 from the battery compartment 606. Then, the user puts the battery 607 into the battery compartment 606, and then replaces the battery compartment cover 608 on the battery compartment 606, securing the two together with the cover bolts. Then, the user fills the water container... The device 615 passes through the trigger rod base plate 612, spring 611, membrane trigger 610, and threaded head 609. Then, using the threaded head adapter 614 on the water injection container 615, it is screwed onto the threaded head 609. Water is then injected into the water injection container 615 through the water injection end 616. The threaded sealing plug 617 is then screwed into the water injection end 616 to re-seal it. When the nozzle 7 is raised, if the horizontal angle of the nozzle 7 is not balanced, the water in the water injection container 615 will move to the lower end. At this time, the downward pressure of the water at that end will increase, and the trigger rod base plate 612 will be activated. The base plate 612 will be pressed down, and the trigger rod 613 will also be pressed down. When the trigger rod 613 touches the membrane trigger 610, the membrane trigger 610 will drive the alarm 604 to sound an alarm. The alarm buzzer will be released through the horn 605. The user should adjust the nozzle 7 according to the location of the buzzer. After adjusting slowly, once the buzzer has completely disappeared, normal spraying can be carried out. It should be noted that the water injection container 615 needs to maintain balance at both ends. If the balance at either end is broken, the water injection container 615 will be adjusted accordingly. The water inside will move towards the end where the balance is broken, thereby increasing the downward pressure of the water at that end. This will then press down the trigger rod base plate 612 at the corresponding end, triggering the thin film trigger 610 at the corresponding end. In other words, the module needs to be in a horizontal and balanced state as a whole. If either side or end loses balance, the thin film trigger 610 will be triggered, which will cause a beep to sound on the corresponding side or end, reminding the user to adjust the nozzle 7 on the corresponding side or end in time, so that the nozzle 7 reaches a horizontal and balanced state and the operation is completed.
[0036] The distance limiting module 8 includes a sliding block 801. A rotary groove is provided on one side of the sliding block 801, and a rotary rod hole is provided on the top of the sliding block 801. A rotary rod 802 is installed on the inner wall of the rotary rod hole, and a rotary wheel 803 is fixedly connected to one end of the rotary rod 802. The rotary wheel 803 and the rotary groove are mutually adapted to each other, and a sliding groove plate 804 is installed on the surface of the sliding block 801.
[0037] A sliding plate groove is provided on one side of the sliding groove plate 804. The sliding plate groove and the sliding block 801 are adapted to each other. A limiting threaded hole is provided on the other side of the sliding groove plate 804. A limiting bolt 805 is threadedly connected to the inner wall of the limiting threaded hole. The sliding plate 804 is threadedly connected to the sliding block 801 through the limiting bolt 805. A nozzle 7 is fixedly connected to one side of the sliding block 801.
[0038] The sliding block 801 is welded to both sides of the nozzle 7. The rotary wheel groove, rotary wheel rod hole and sliding block 801 are integrally formed. The rotary wheel rod 802 is placed into the rotary wheel rod hole, and then the rotary wheel 803 is placed into the rotary wheel groove. The rotary wheel rod 802 and the rotary wheel 803 are assembled by welding. The sliding plate groove and sliding plate 804 are integrally formed. The sliding plate 804 is placed on the sliding block 801 through the sliding plate groove. Finally, the limiting bolt 805 is screwed into the limiting thread hole of the sliding plate 804 and rotated until it is screwed into the sliding block 801 to complete the assembly.
[0039] When using the stone paint spraying equipment, the treated stone paint is placed into the tank 1. The user then moves the entire device to the building wall. At this point, the nozzle 7 needs to be lifted. The distance between the nozzle 7 and the building wall is selected according to the stone paint spraying pressure. The user then unscrews the limiting bolt 805. At this point, the movement restriction of the sliding block 801 of the distance limiting module 8 is removed, and the sliding block 801 can slide in the sliding plate groove of the sliding groove plate 804. When the sliding block 801 slides, it will also drive the nozzle 7 to move forward or backward. Before the sliding block 801 is ready to slide, the sliding groove plate 804 needs to be pressed against the building wall. When the sliding block 801 carries the nozzle 7 to the ideal distance, the user screws the limiting bolt 805 back into the limiting threaded hole of the sliding groove plate 804 and finally into the sliding block 801. The sliding of the sliding block 801 is driven by the rotation of the rotating wheel 803 in the rotating wheel groove, thus completing the operation.
[0040] By using the vertical detection module 6 and the distance limiting module 8, the user can first limit the distance between the nozzle 7 and the building surface using the distance limiting module 8. Then, based on the real-time detection results of the vertical detection module 6, the user can gradually adjust the horizontal angle of the nozzle 7 until the nozzle 7 is horizontal and perpendicular to the building surface. Through the use of the vertical detection module 6 and the distance limiting module 8, the user's operation can comply with the usage specifications of the stone paint spraying device. This can, to a certain extent, reduce the possibility of the stone paint being sprayed too thickly, causing sagging, or the paint mist being dispersed, resulting in material waste and reduced adhesion.
[0041] Example 4: The method of using the environmentally friendly anti-fog stone paint spraying equipment includes the following steps; Step 1: When using the stone paint spraying equipment, put the treated stone paint into the tank 1. Then, the user needs to move the entire device to the building wall. At this time, the nozzle 7 needs to be lifted. Then, according to the stone paint spraying pressure, select the distance between the nozzle 7 and the building wall. Then, the user needs to unscrew the limiting bolt 805. At this time, the movement restriction of the sliding block 801 of the distance limiting module 8 is canceled. At this time, the sliding block 801 can slide in the sliding plate groove of the sliding groove plate 804. When the sliding block 801 slides, the sliding block 801 will also drive the nozzle 7 to move forward or backward. Before the sliding block 801 is ready to slide, the sliding groove plate 804 needs to be pressed against the building wall. When the sliding block 801 carries the nozzle 7 to the ideal distance, the user screws the limiting bolt 805 back into the limiting thread hole of the sliding groove plate 804 and finally screws it into the sliding block 801. The sliding of the sliding block 801 is driven by the rotation of the rotating wheel 803 in the rotating wheel groove to drive the sliding block 801 to move, thus completing the operation. Step Two: After the user determines the distance between the nozzle 7 and the building wall using the distance limiting module 8, the user needs to gradually adjust the horizontal angle of the nozzle 7 using the vertical detection module 6 to make the nozzle 7 perpendicular to the building wall. When using the vertical detection module 6, the user needs to unscrew the cover bolts to separate the battery compartment cover 608 from the battery compartment 606. Then, the user puts the battery 607 into the battery compartment 606, and then replaces the battery compartment cover 608 on the battery compartment 606, fixing the two together using the cover bolts. The water injection container 615 is then passed through the trigger rod base plate 612, spring 611, membrane trigger 610, and threaded head 609. Then, the threaded head adapter 614 on the water injection container 615 is screwed... Water is injected into the water container 615 through the water inlet 616 onto the threaded head 609. The threaded sealing plug 617 is then screwed onto the water inlet 616 to re-seal it. When the nozzle 7 is lifted, if the horizontal angle of the nozzle 7 is not balanced, the water in the water container 615 will move to the lower end. At this time, the downward pressure of the water at that end will increase, causing the trigger rod base plate 612 to be pressed down, and the trigger rod 613 will also be pressed down. When the trigger rod 613 touches the membrane trigger 610, the membrane trigger 610 will drive the alarm 604 to sound an alarm. The alarm buzzer will be released through the horn 605. The user should adjust the nozzle 7 according to the location of the buzzer. After gradual adjustment, the buzzer will completely disappear. After that, normal spraying operations can be carried out to complete the operation; Step 3: During normal spraying operations, the device may become clogged due to untimely routine maintenance and cleaning, resulting in blockage of the pipes conveying the stone paint. At this time, the user needs to use the pipe storage module 4 to quickly replace the stone paint pipe 413. The user needs to first unscrew the threaded cap 416 on the old clogged stone paint pipe 413 from the threaded connecting pipe 405 and the rigid pipe 3 respectively. Because the stone paint pipe 413 is soft, the user can manually pull out the plug 415 in the threaded connecting pipe 405 and the rigid pipe 3. Then, the user manually pushes the rotating rod 411 to rotate on the rotating shaft 403. When the rotating rod 411 rotates, the elastic retaining ring 412 will also rotate. At this time, the stone paint on the elastic retaining ring 412 will be removed. The stone paint tube 413 is also moved between the threaded connecting tube 405 and the rigid tube 3 by the elastic retaining ring 412. The user inserts the connector 415 into the threaded connecting tube 405 and the rigid tube 3 respectively, and then screws the threaded cap 416 onto the threaded connecting tube 405 and the rigid tube 3. This allows for a quick replacement of the stone paint tube 413. It should be noted that the circular baffle 414 is used to seal the ends of the threaded connecting tube 405 and the rigid tube 3 after the connector 415 enters them. It also limits the rotational distance of the threaded cap 416 to prevent it from being rotated too much, which could damage the threads of the threaded cap 416 and reduce its service life. This completes the operation.
[0042] The technical solution provided by this invention is as follows: When the stone paint spraying equipment is needed, the treated stone paint is placed into the tank 1. Then, the user needs to move the entire device to the building wall. At this time, the nozzle 7 needs to be lifted. Then, according to the stone paint spraying pressure, the distance between the nozzle 7 and the building wall is selected. Then, the user needs to unscrew the limiting bolt 805. At this time, the movement restriction of the sliding block 801 of the distance limiting module 8 is canceled. At this time, the sliding block 801 can slide in the sliding plate groove of the sliding groove plate 804. When the sliding block 801 slides, the sliding block 801 will also drive the nozzle 7 to move forward or backward. Before the sliding block 801 is ready to slide, the sliding groove plate 804 needs to be pressed against the building wall. When the sliding block 801... 1. Once the nozzle 7 reaches the desired distance, the user re-screws the limiting bolt 805 into the limiting threaded hole of the sliding groove plate 804, and finally into the sliding block 801. The sliding block 801 moves by rotating the wheel 803 within the wheel groove. After determining the distance between the nozzle 7 and the building wall using the distance limiting module 8, the user needs to gradually adjust the horizontal angle of the nozzle 7 using the vertical detection module 6 to ensure that the nozzle 7 is perpendicular to the building wall. When using the vertical detection module 6, the user needs to unscrew the cover bolt to separate the battery compartment cover 608 from the battery compartment 606. Then, the user inserts the battery 607 into the battery compartment 606 and closes the battery compartment cover 608. 08. Replace the battery compartment 606 with the cover and secure it together using the cover bolts. Pass the water injection container 615 through the trigger rod base plate 612, spring 611, membrane trigger 610, and threaded head 609. Then, screw the threaded head adapter 614 onto the threaded head 609 using the water injection container 615. Inject water into the water injection container 615 through the water injection end 616. Then, screw the threaded sealing plug 617 into the water injection end 616 to reseal it. When the nozzle 7 is lifted, if the horizontal angle of the nozzle 7 is not balanced, the water in the water injection container 615 will move to the lower end. At this time, the downward pressure of the water at that end will increase. At this time, the trigger rod base plate 612 will be pressed down, and the trigger rod 613 will also be pressed down. When the trigger rod is engaged... When the trigger 613 touches the membrane trigger 610, the membrane trigger 610 will activate the alarm 604, and the alarm sound will be released through the horn 605. The user should adjust the nozzle 7 according to the location of the alarm sound. After adjusting slowly, once the alarm sound has completely disappeared, normal spraying can begin. During normal spraying, the device may become clogged in the pipes that deliver the stone paint due to infrequent routine maintenance and cleaning. In this case, the user needs to use the pipe storage module 4 to quickly replace the stone paint pipe 413. The user needs to first unscrew the threaded cap 416 on the old, clogged stone paint pipe 413 from both the threaded connecting pipe 405 and the rigid pipe 3, as the stone paint pipe 413 is flexible.Therefore, the user can manually pull out the connector 415 from the threaded connecting pipe 405 and the rigid pipe 3. Then, the user manually pushes the rotating rod 411 to rotate the rotating shaft 403. When the rotating rod 411 rotates, the elastic retaining ring 412 will also rotate. At this time, the stone paint tube 413 on the elastic retaining ring 412 will also be driven between the threaded connecting pipe 405 and the rigid pipe 3. The user inserts the connector 415 into the threaded connecting pipe 405 and the rigid pipe 3 respectively, and then screws the threaded cap 416 to... The threaded connecting pipe 405 and the rigid pipe 3 allow for quick replacement of the stone paint pipe 413. It's important to note that the circular baffle 414 is used to seal the ends of the threaded connecting pipe 405 and the rigid pipe 3 after the connector 415 enters them. It also limits the rotational distance of the threaded cap 416, preventing excessive rotation that could damage the threads and reduce its lifespan.
[0043] The working principle of the vertical detection module is explained as follows: it explains that the change in water pressure caused by the tilt of the liquid surface, and details how the liquid will tilt to the lower end when the nozzle is not perpendicular to the wall, resulting in an increase in water pressure at that end, which in turn pushes the trigger rod down and triggers the alarm; the angle range is quantified: through experiments or theoretical calculations, the angle range of the nozzle perpendicular to the wall is determined to be ±5°. Specify the alarm type: Specify the type of alarm, indicating whether it will be triggered by a buzzer or an LED light.
[0044] Alarm accuracy assurance: Sensor calibration: This section explains how to calibrate the level sensor to ensure the accuracy of its measurements; level sensor calibration is a crucial step in ensuring the accuracy of its measurements.
[0045] Liquid level sensor calibration method: Zero point calibration: Purpose: To eliminate zero point offset in the sensor output signal, that is, the phenomenon that the sensor output signal is not zero when the liquid level is zero; Method: Place the sensor at the position where the liquid level is zero, and adjust the sensor parameters or circuit to make the sensor output signal zero.
[0046] Full-scale calibration: Purpose: To ensure that the sensor output signal is proportional to the liquid level change; Method: Place the sensor at the full-scale position and adjust the sensor parameters or circuit to make the sensor output signal reach the full-scale value; Temperature compensation: Explain how to perform temperature compensation to eliminate the influence of temperature changes on the liquid level sensor; Use a temperature compensation circuit: Add a temperature compensation circuit to the liquid level sensor circuit, such as using a thermistor or temperature sensor, to automatically adjust the output signal of the liquid level sensor according to temperature changes; Establish a relationship model between temperature and output signal: Establish a relationship model between temperature and liquid level sensor output signal through experiments or theoretical calculations, such as using linear regression or polynomial fitting methods; Assume that a capacitive liquid level sensor is used to measure the liquid level, and use a linear regression algorithm for temperature compensation.
[0047] First, it is necessary to collect the output signal data of the liquid level sensor at different temperatures; then, the coefficients of the linear regression equation are calculated using the least squares method to obtain the relationship model between temperature and capacitance value; during measurement, the capacitance value is adjusted using this relationship model based on real-time temperature data to eliminate the influence of temperature changes.
[0048] Test data: Provide test data, such as the alarm's response at different angles, to demonstrate its accuracy.
[0049] The vertical detection module uses a capacitive liquid level sensor to determine the vertical angle between the nozzle and the wall by measuring the liquid level height. When the nozzle is not perpendicular to the wall, the liquid will tilt to the lower end, causing the liquid level at that end to rise, thereby changing the capacitance value. The sensor converts the capacitance value into an electrical signal, which is then processed by a software algorithm to determine whether the nozzle is vertical. If the nozzle is not perpendicular to the wall, a buzzer alarm is triggered to remind the user to make adjustments.
[0050] The experimental data is supplemented and improved to explain the adjustment range of the distance limiting module, using the following experimental data and methods. 1. Experimental Design and Data Acquisition: Test conditions: Under standard construction environment (temperature 25±2℃, humidity 60±5%), tests were conducted using real stone paint of different viscosities (low / medium / high viscosity); Measurement method: A laser rangefinder was used to simultaneously measure the actual distance between the nozzle and the wall, and the spraying effect at different positions of the sliding block was recorded; Experimental data results: ; 3. Basis for determining technical parameters: Minimum distance limit: Tests have shown that when the distance is less than 15cm, all viscosities of stone paint will experience sagging (>90% occurrence rate). Maximum distance limit: When the distance is >45cm, the spray coverage drops below 60% and the material waste rate exceeds 30%. Mechanical structure limitations: The sliding groove plate design allows for a physical adjustment range of 10-50cm; 4. Supplementary explanation of implementation methods: Scale markings: Add distance scale markings (one mark every 5cm) to the sliding groove plate; Limiting structure: A limiting structure is set on the limiting module to prevent it from exceeding the effective adjustment range; Pressure correlation: Supplementary explanation of the correspondence between spraying pressure (0.4-0.6MPa) and optimal distance; 5. Verification method: Adhesion test: The adhesion of the paint film was tested at different distances according to GB / T 9286 standard (the optimal distance range all reached the level 1 standard). Material utilization rate: Measured by weighing, the material utilization rate can reach 85-92% within the optimal distance range; Based on the experimental data and implementation details described above, the technical disclosure of the distance limiting module can be improved to meet the requirements of full disclosure under patent law.
[0051] The capacity of the pipeline storage module is explained through the following technical details and experimental data: 1. Structural capacity description: Shaft structure parameters: Specify the shaft diameter (Φ50-60mm recommended) and effective slot length (80-100mm recommended); Flexible retaining ring design: Each retaining ring can accommodate 3-4 standard stone paint tubes (Φ15mm), arranged in a staggered manner; 2. Experimental verification data: ; 3. Preferred Implementation Scheme: Commercial implementation: A 3-layer structure with a total storage capacity of 12 units (meeting the requirements for 8 hours of continuous operation). Space optimization: The center distance between adjacent paint tubes is ≥20mm to prevent compression deformation; Quick-change design: Simply rotate the lever 60° to switch to the next set of paint tubes; Additional notes: The elastic retaining ring (412) is arranged in a multi-layer spiral, with 3-4 retaining grooves in each layer; the diameter of the rotating shaft (403) is 50-60mm, and the effective working length is 80-100mm. 5. Verification of technical effectiveness: Construction efficiency test: Compared with traditional single-pipe replacement, the average replacement time is reduced by 85% (from 3 minutes to 25 seconds); Reliability testing: After 100 consecutive switching tests, the deformation of the retaining ring is <0.5mm; By supplementing the above structural parameters and experimental data, the actual capacity and technical advantages of the pipeline storage module can be clarified.
[0052] This invention encompasses any substitutions, modifications, equivalent methods, and solutions made within the spirit and scope of this invention. To provide the public with a thorough understanding of this invention, specific details are described in detail in the following preferred embodiments; however, those skilled in the art will fully understand the invention even without these details. Furthermore, to avoid unnecessary misunderstanding of the essence of this invention, well-known methods, processes, procedures, components, and circuits are not described in detail.
[0053] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. An environmentally friendly anti-fogging stone paint spraying equipment, characterized in that, The container includes a tank (1), a top cover (2) is provided on the top of the tank (1), the top cover (2) is threadedly connected to the tank (1) by a top cover bolt, a rigid tube (3) is fixedly connected to the surface of the tank (1), a pipe storage module (4) is threadedly connected to one end of the rigid tube (3), a switch valve (5) is threadedly connected to one end of the pipe storage module (4), a vertical detection module (6) is provided on the surface of the switch valve (5), a nozzle (7) is threadedly connected to one end of the switch valve (5), and a distance limiting module (8) is provided on the surface of the nozzle (7).
2. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 1, characterized in that, The pipeline storage module (4) includes a first cylindrical sleeve (401) and a second cylindrical sleeve (402). The inner walls of the first cylindrical sleeve (401) and the second cylindrical sleeve (402) are both equipped with a rotating shaft (403). The upper surface of the first cylindrical sleeve (401) is fixedly connected to a first single plate (404). The top of the first single plate (404) is fixedly connected to a threaded connecting pipe (405). The lower surface of the first cylindrical sleeve (401) is fixedly connected to a hand-held cylinder (406).
3. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 2, characterized in that, The upper surface of the second cylindrical sleeve (402) is fixedly connected to the second single plate (407). The side of the second single plate (407) is provided with a plug hole. The inner wall of the plug hole is equipped with a threaded plug (408). The second single plate (407) is equipped with a single plate accessory (409) through the threaded plug (408). One end of the threaded plug (408) is threadedly connected to a threaded fastening ring (410). The top of the single plate accessory (409) is fixedly connected to a rigid tube (3).
4. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 3, characterized in that, A rotating rod (411) is installed on the inner wall of the rotating shaft (403). An elastic retaining ring (412) is fixedly connected to the surface of the rotating rod (411). A real stone paint tube (413) is installed on the inner wall of the elastic retaining ring (412). A circular baffle (414) is fixedly connected to both ends of the real stone paint tube (413). A plug (415) is fixedly connected to one end of the circular baffle (414). A threaded cap (416) is provided on the surface of the real stone paint tube (413). A paint tube hole is opened at one end of the threaded cap (416). The paint tube hole and the real stone paint tube (413) are mutually compatible.
5. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 1, characterized in that, The vertical detection module (6) includes a column (601), a base plate (602) is fixedly connected to the top of the column (601), an alarm base (603) is provided on the top of the base plate (602), the alarm base (603) is threadedly connected to the base plate (602) by an alarm base bolt, an alarm (604) is fixedly connected to the top of the alarm base (603), and a horn (605) is provided on the top of the alarm (604).
6. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 5, characterized in that, A battery compartment (606) is fixedly connected to one side of the alarm (604). A battery (607) is installed on the inner wall of the battery compartment (606). A battery compartment cover (608) is installed on one side of the battery compartment (606). The battery compartment cover (608) is threadedly connected to the battery compartment (606) by a cover bolt. A threaded head (609) is fixedly connected to the inner wall of the alarm (604). A thin film trigger (610) is provided at one end of the threaded head (609).
7. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 6, characterized in that, One end of the thin-film trigger (610) is fixedly connected to a spring (611), one end of the spring (611) is fixedly connected to a trigger rod base plate (612), one end of the trigger rod base plate (612) is fixedly connected to a trigger rod (613), the trigger rod (613) and the spring (611) are mutually adapted, the surface of the threaded head (609) is threadedly connected to a threaded head adapter (614), one end of the threaded head adapter (614) is fixedly connected to a water injection container (615), the surface of the water injection container (615) is fixedly connected to a water injection end (616), and the inner wall of the water injection end (616) is threadedly connected to a threaded sealing plug (617).
8. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 1, characterized in that, The distance limiting module (8) includes a sliding block (801), a rotating wheel groove is provided on one side of the sliding block (801), a rotating wheel rod hole is provided on the top of the sliding block (801), a rotating wheel rod (802) is installed on the inner wall of the rotating wheel rod hole, a rotating wheel (803) is fixedly connected to one end of the rotating wheel rod (802), the rotating wheel (803) and the rotating wheel groove are adapted to each other, and a sliding groove plate (804) is installed on the surface of the sliding block (801).
9. The environmentally friendly anti-fogging stone paint spraying equipment according to claim 8, characterized in that, A sliding plate groove is provided on one side of the sliding groove plate (804), and the sliding plate groove and the sliding block (801) are adapted to each other. A limiting threaded hole is provided on the other side of the sliding groove plate (804), and a limiting bolt (805) is threadedly connected to the inner wall of the limiting threaded hole. The sliding plate (804) is threadedly connected to the sliding block (801) through the limiting bolt (805), and a nozzle (7) is fixedly connected to one side of the sliding block (801).
10. The method of using the environmentally friendly anti-fogging stone paint spraying equipment according to any one of claims 1-9, characterized in that, Includes the following steps: Step 1: When the real stone paint spraying equipment is needed, put the treated real stone paint into the tank (1). Then the user needs to move the entire device to the building wall. At this time, the nozzle (7) needs to be lifted. Then, according to the real stone paint spraying pressure, select the distance between the nozzle (7) and the building wall. Then the user needs to unscrew the limiting bolt (805). At this time, the movement restriction of the sliding block (801) of the distance limiting module (8) is canceled. At this time, the sliding block (801) can slide in the sliding plate groove of the sliding groove plate (804). 1) When sliding, the sliding block (801) will also drive the nozzle (7) to move forward or backward. Before the sliding block (801) is ready to slide, the sliding groove plate (804) needs to be pressed against the building wall. When the sliding block (801) and the nozzle (7) reach the ideal distance, the user screws the limiting bolt (805) back into the limiting thread hole of the sliding groove plate (804) and finally screws it into the sliding block (801). The sliding of the sliding block (801) is driven by the rotation of the wheel (803) in the wheel groove to complete the operation. Step 2: After the user determines the distance between the nozzle (7) and the building wall using the distance limiting module (8), the user needs to rely on the vertical detection module (6) to gradually adjust the horizontal angle of the nozzle (7) so that the nozzle (7) is perpendicular to the building wall. When using the vertical detection module (6), the user needs to unscrew the cover bolts so that the battery compartment cover (608) is separated from the battery compartment (606). Then the user puts the battery (607) into the battery compartment (606), and then puts the battery compartment cover (608) back on the battery compartment (606). At the same time, the cover bolts are used to fix the two together. The water injection container (615) is passed through the trigger rod base plate (612), spring (611), membrane trigger (610) and threaded head (609). Then the threaded head adapter (614) on the water injection container (615) is screwed onto the threaded head (609). 9) Then inject water into the water injection container (615) through the water injection end (616), and then screw the threaded sealing plug (617) into the water injection end (616) to reseal it. When the nozzle (7) is lifted, when the horizontal angle of the nozzle (7) is not balanced, the water in the water injection container (615) will move to the lower end. At this time, the downward pressure of the water at that end will increase. At this time, the trigger rod base plate (612) will be pressed down, and the trigger rod (613) will also be pressed down. When the trigger rod (613) touches the thin film trigger (610), the thin film trigger (610) will drive the alarm (604) to alarm. The alarm buzzer will be released through the horn (605). The user should adjust the nozzle (7) in time according to the position of the buzzer. After slowly adjusting, the buzzer will disappear completely, and then normal spraying operation can be carried out to complete the operation. Step 3: During normal spraying operations, the equipment may become clogged due to untimely routine maintenance and cleaning. In this case, the user needs to use the pipe storage module (4) to quickly replace the stone paint pipe (413). The user needs to first unscrew the threaded cap (416) on the old clogged stone paint pipe (413) from the threaded connecting pipe (405) and the rigid pipe (3). Since the stone paint pipe (413) is soft, the user can manually pull out the plug (415) inside the threaded connecting pipe (405) and the rigid pipe (3). Then, the user manually pushes the rotating rod (411) to rotate on the rotating shaft (403). When the rotating rod (411) rotates, the elastic retaining ring (412) will also rotate. At this time, the stone paint pipe (413) on the elastic retaining ring (412) will also be blocked by the elastic retaining ring (412). 412) Drive the threaded connecting pipe (405) and the rigid pipe (3) to the space between them. The user inserts the plug (415) into the threaded connecting pipe (405) and the rigid pipe (3) respectively, and then screws the thread cap (416) onto the threaded connecting pipe (405) and the rigid pipe (3). This allows for the quick replacement of the real stone paint pipe (413). It should be noted that the circular baffle (414) is used to seal the port of the threaded connecting pipe (405) and the rigid pipe (3) after the plug (415) enters the threaded connecting pipe (405) and the rigid pipe (3). At the same time, it can also limit the rotation distance of the thread cap (416) to prevent the thread cap (416) from being rotated too much, which would damage the threads of the thread cap (416) and reduce its service life. The operation is then completed.
Citation Information
Patent Citations
A type of anti-fog stone paint spraying equipment for exterior wall beautification
CN111519875B