A loading device for processing putty powder to prevent dust from flying
By designing dust-proof and coating components, the health and environmental problems caused by fly-through putty powder are solved, and the putty powder is moistened, mixed, and evenly applied, improving construction efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIANGSU SHUNLICHENG NEW BUILDING MATERIALS CO LTD
- Filing Date
- 2023-11-25
- Publication Date
- 2026-04-24
AI Technical Summary
During the exterior wall decoration process, the flying putty powder causes respiratory hazards to workers and environmental pollution.
A dust-proof feeding device for putty powder processing was designed, including a dust-proof component and a coating component. The device uses a spray nozzle to atomize water flow to wet the putty powder, a conical dustproof plate to block dust, a stirring blade to stir the mixture, and a threaded geared motor and a coating motor to achieve uniform application and drying of the putty powder.
It effectively reduces putty powder flying, protects the health of workers, reduces environmental pollution, and improves application efficiency and construction quality.
Smart Images

Figure CN117563449B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of feeding device technology, specifically to a feeding device for putty powder processing that prevents dust from escaping. Background Technology
[0002] Putty powder is a type of building decoration material. Its main components are talc powder, heavy calcium carbonate powder, and glue. It is generally used as a base material for repairing and leveling walls, laying a good foundation for the next step of decoration (painting, wallpapering, etc.); it can also be used as a base material to make other decorative materials.
[0003] However, in the current technology, when applying putty powder for exterior wall decoration, workers need to mix the putty powder and glue to form a decorative material for application to the wall surface. However, when workers pour the putty powder, the putty powder will fly around with the wind, which will harm the workers' respiratory tract and will also have an impact on the environment and pollute the air quality over a long period of time. Therefore, there is a need to propose a material feeding device for putty powder processing that prevents dust from flying out. Summary of the Invention
[0004] The purpose of this invention is to provide a dust-preventing feeding device for putty powder processing, in order to solve the problem mentioned in the background art where, when applying putty powder for exterior wall decoration, workers need to mix putty powder and glue to form a decorative material for application to the wall surface. However, when workers pour the putty powder, it flies away with the wind, causing harm to the workers' respiratory tract and polluting the environment and air quality over a long period of time.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a loading device for putty powder processing that prevents dust spillage, comprising a side mounting frame for a suspended basket, wherein the side mounting frame is installed on the side of the suspended basket, and two sets of fixing seats are symmetrically installed at the left and right ends of the side of the side mounting frame, each set of fixing seats consisting of a fixing pin and a connecting clamping seat, a dust-proof component is installed at the center end of the side mounting frame, a transmission component is fastened to the side of the two sets of fixing seats, and a brushing component is fastened to the bottom of the dust-proof component;
[0006] The dustproof assembly includes a connecting seat. A discharge pipe is installed inside the upper and lower end grooves of the connecting seat. A material bucket is connected through the side of the discharge pipe. A rotating shaft is hinged to the connecting end of the material bucket and the connecting seat. A conical dustproof plate is hinged to the outer periphery of the rotating shaft. A fitting plate is fastened to the bottom side of the conical dustproof plate. A fitting groove is formed on the surface of the fitting plate. A spray end is inserted into the surface of the fitting plate. A distributor is connected to the top of the spray end. A water supply pipe is connected to the side end of the distributor. Side chambers are symmetrically installed at the left and right ends of the material bucket. A stirring DC motor is mounted on the outer side of each side chamber. A rotating shaft is connected to the output end of the stirring DC motor. Stirring blades are equidistantly fitted on the outer periphery of the rotating shaft. The side chambers, stirring DC motor, rotating shaft, and stirring blades are arranged at an oblique angle. Under the action of the rotating shaft, the fitting plate drives the conical dustproof plate to form a cover at the top of the material bucket, and the fitting groove and discharge pipe are fitted together.
[0007] Preferably, the coating assembly includes a connecting structure, a connecting plate is fastened to the center end of the connecting structure, the top of the connecting plate is fastened to the bottom of the material hopper, and reinforcing frames are fastened to both the connecting plate and the sides of the connecting structure, with threaded reduction motors mounted on the sides of the reinforcing frames.
[0008] Preferably, the output end of the threaded geared motor is connected to a threaded rod, both ends of which are meshed with threaded rotating teeth. A rotating seat is fastened to the outside of the threaded rotating teeth. An automatic shaft arm is installed inside the rotating seat. A material conveying pipe is installed on the upper side of the automatic shaft arm. A connecting rotating seat is provided at the side end of the automatic shaft arm and the material conveying pipe. A paint shaft is installed inside the connecting rotating seat. A paint motor is mounted on the side end of the paint shaft.
[0009] Preferably, a paint roller is sleeved on the outside of the paint shaft, and automatic extruders are symmetrically sleeved on the left and right ends of the paint shaft. An extrusion tube is connected around the outer periphery of the automatic extruder, and the side end of the extrusion tube is connected to the paint roller. A discharge end connected to the extrusion tube is opened through the outer periphery of the paint roller. A soft brush is provided on the outside of the paint roller. A connecting short block is fastened to the side end of the reinforcing frame, and a soft rubber anti-material sheet is fastened to the side end of the connecting short block.
[0010] Preferably, the transmission assembly includes a load-bearing mounting base, a buffer relief spring frame is mounted on the side of the load-bearing mounting base, and abutment rollers are installed at the upper and lower ends of the buffer relief spring frame. A splash guard is tightly attached to the side of the load-bearing mounting base, and a drying fan is installed on the surface of the splash guard.
[0011] Preferably, a water injection tank is connected to the side end of the water supply pipe, a feed pump is installed at the bottom of the water injection tank, and a water pumping pipe is connected to the side of the water injection tank.
[0012] Preferably, the side end of the conveying pump is connected to a material extraction pipe, and the side end of the material extraction pipe is connected to the putty powder bucket on the hanging basket.
[0013] Preferably, a peristaltic pump is connected to the side end of the material hopper, a peristaltic conveying pipe is connected to the side end of the peristaltic pump, and the side end of the peristaltic conveying pipe is connected to the surface of the receiving hopper.
[0014] Preferably, a hanging extraction pipe is connected to the bottom side of the material hopper, and a press-type discharge control end is installed on the side of the hanging extraction pipe. The hanging extraction pipe and the press-type discharge control end are fixed to the frame of the hanging basket by a fixing strap.
[0015] Preferably, the left and right ends of the side mounting bracket of the suspended basket are provided with mounting pin openings, and the interior of the mounting pin openings is fixedly connected to the basket frame by pins.
[0016] Compared with the prior art, the beneficial effects of the present invention are:
[0017] 1. In this invention, with the assistance of a dust-proof component, while the putty powder material is being conveyed from the discharge pipe, water in the water supply pipe forms multiple water streams at the distributor and is delivered to the spray end. Pressure is applied at the spray end, and simultaneously, airflow is typically introduced. This airflow helps to spray the liquid out and form it into fine droplets. Then, influenced by the nozzle structure and airflow inside the spray end, the liquid is atomized into tiny droplets, thus forming a spray that wets and bonds the putty powder falling into the material bucket from the discharge pipe, reducing... The presence of putty dust poses a risk to workers' respiratory system. When the putty powder is injected to the preset depth, a rotating shaft manually rotates the conical dustproof plate and the interlocking plate, causing the conical dustproof plate to cover the top of the bucket and the interlocking groove to engage with the discharge pipe. Then, an external controller starts the mixing DC motor, causing the rotating shaft and mixing blades, which form an angled connection on both sides, to mix the materials inside the bucket. The conical dustproof plate effectively blocks the dust generated during mixing, preventing it from flying and polluting the surrounding air.
[0018] 2. In this invention, by starting the threaded reduction motor in conjunction with the painting assembly, the angle is adjusted in conjunction with the threaded rod, threaded teeth, and rotating seat, thereby enabling the automatic shaft arm, conveying pipe, connecting rotating seat, paint shaft, and paint motor to perform synchronous angle adjustment operations. Then, an external controller is used to control and adjust the paint motor and automatic shaft arm, so that the automatic shaft arm can drive the connecting rotating seat, paint shaft, paint roller, automatic extruder, and extrusion pipe to extend and adhere to the building exterior wall. After that, the paint motor is started, which causes the paint shaft to drive the paint roller to rotate, thereby applying putty powder material to the wall. When the paint roller rotates, the automatic extruder extrudes the putty powder material conveyed in the conveying pipe from the discharge end to the soft brush on the outer surface of the paint roller in conjunction with the extrusion pipe for subsequent painting operations. A rotating check plate can be installed at the center end side plate of the connecting structure to facilitate the paint roller to turn and form a horizontal painting operation during subsequent construction operations.
[0019] 3. In this invention, with the cooperation of the transmission components and the action of the anti-splash plate, the splashed material generated during the paint roller application is prevented from sticking to the spring inside the buffer unloading spring frame, which could cause the spring to be obstructed and unable to perform its original function. With the action of the drying fan, the wall material after the paint roller application is dried under the action of the internal rotating structure, improving work efficiency and preventing wheel marks from forming on the surface of the wall material when the abutment roller is rolling, which would affect the overall building construction. Furthermore, with the cooperation of the hanging extraction pipe and the press-type material discharge control end, it is convenient for workers to manually use putty powder material. This allows workers to fill gaps and unevenness in the building wall surface during the paint roller application, ensuring the overall quality of the building plastering. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the main structure of a putty powder feeding device for preventing dust spillage according to the present invention;
[0021] Figure 2 This is a side view of the structure of a feeding device for preventing dust from escaping during putty powder processing according to the present invention;
[0022] Figure 3 This is a schematic diagram of the separation structure of the main body in a putty powder processing feeding device for preventing dust spillage according to the present invention;
[0023] Figure 4 This is a schematic diagram of the dust prevention component in a putty powder processing feeding device for preventing dust spillage according to the present invention;
[0024] Figure 5This is a schematic diagram of the transmission component in a putty powder feeding device for preventing dust spillage according to the present invention.
[0025] Figure 6 This is a schematic diagram of the coating component in a putty powder feeding device for preventing dust spillage according to the present invention.
[0026] Figure 7 This is a partial internal structural diagram of the coating component in a putty powder feeding device for preventing dust spillage according to the present invention.
[0027] Figure 8 This is a schematic diagram of the dust prevention component in a putty powder processing feeding device for preventing dust spillage according to the present invention.
[0028] In the diagram: 1. Side mounting bracket of the suspended basket; 2. Mounting pin port; 3. Fixed base; 5. Transmission assembly; 51. Bearing mounting base; 52. Buffer relief spring frame; 53. Abutment roller; 54. Anti-splash plate; 55. Drying fan; 6. Dustproof assembly; 61. Connecting seat; 62. Discharge pipe; 63. Material bucket; 64. Rotating shaft; 65. Spray end; 66. Conical dustproof plate; 67. Diverter; 68. Clamping plate; 69. Side chamber; 690. DC stirring motor; 691. Rotating shaft column; 692. Stirring blade; 693. Water supply pipe; 7. Coating assembly; 71. Connecting frame 72. Connecting plate; 73. Reinforcing frame; 74. Threaded geared motor; 75. Threaded rod; 76. Threaded rotating gear; 77. Connecting short block; 78. Soft rubber protective sheet; 79. Rotating seat; 790. Automatic shaft arm; 791. Conveying pipe; 792. Connecting rotating seat; 793. Paint motor; 794. Paint shaft; 795. Extrusion pipe; 796. Paint roller; 797. Automatic extruder; 8. Conveying pump; 9. Extraction pipe; 10. Water tank; 11. Water extraction pipe; 12. Peristaltic pump; 13. Peristaltic conveying pipe; 14. Hanging extraction pipe; 15. Press-type discharge control end. Detailed Implementation
[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0030] Reference Figures 1-8As shown: A dust-preventing feeding device for putty powder processing includes a side mounting bracket 1 for a suspended basket. The side mounting bracket 1 is installed on the side of the suspended basket. Two sets of fixing seats 3 are symmetrically installed at the left and right ends of the side of the side mounting bracket 1. Each set of fixing seats 3 consists of a fixing pin and a connecting clamp. A dust-preventing component 6 is installed at the center end of the side mounting bracket 1. A transmission component 5 is fastened to the side of the two sets of fixing seats 3. A brushing component 7 is fastened to the bottom of the dust-preventing component 6. The dust-preventing component 6 includes a connecting seat 61. A discharge pipe 62 is provided in the grooves at the upper and lower ends of the connecting seat 61. A material bucket 63 is connected through the side of the discharge pipe 62. A rotating shaft 64 is hinged to the connecting end of the material bucket 63 and the connecting seat 61. A conical dustproof plate 66 is hinged to the outer periphery of the rotating shaft 64. A fitting plate 68 is fastened to the bottom side of the 6. A fitting groove is opened on the surface of the fitting plate 68. A spray end 65 is inserted into the surface of the fitting plate 68. A distributor 67 is connected to the top of the spray end 65. A water supply pipe 693 is connected to the side end of the distributor 67. Side chambers 69 are symmetrically installed at the left and right ends of the material barrel 63. A stirring DC motor 690 is mounted on the outside of the side chamber 69. A rotating shaft 691 is connected to the output end of the stirring DC motor 690. Stirring blades 692 are equidistantly sleeved on the outer periphery of the rotating shaft 691. The side chambers 69, stirring DC motor 690, rotating shaft 691 and stirring blades 692 are set at an oblique angle. Under the action of the rotating shaft 64, the fitting plate 68 drives the conical dustproof plate 66 to form a cover at the top of the material barrel 63, and the fitting groove and the discharge pipe 62 are fitted together.
[0031] according to Figure 1 , Figure 3 , Figure 6 and Figure 7 As shown, the coating assembly 7 includes a connecting frame 71. A connecting plate 72 is fastened to the center end of the connecting frame 71. The top of the connecting plate 72 is fastened to the bottom of the material tank 63. Reinforcing frames 73 are fastened to both the connecting plate 72 and the sides of the connecting frame 71. A threaded geared motor 74 is mounted on the side of the reinforcing frame 73. The connecting plate 72 is installed below the material tank 63 to facilitate the application of the weight of the material tank 63 onto the connecting plate 72 and the connecting frame 71, ensuring the load-bearing capacity of the entire device during operation. Then, the threaded geared motor 74 is connected to an external controller via wiring, and the threaded geared motor 74 is controlled by the external controller.
[0032] according to Figure 1 , Figure 3 , Figure 6 and Figure 7As shown, a threaded rod 75 is connected to the output end of the threaded reducer motor 74. Threaded teeth 76 are meshed at both ends of the threaded rod 75. A rotating seat 79 is externally fastened to the threaded teeth 76. An automatic shaft arm 790 is installed inside the rotating seat 79. A feed pipe 791 is installed on the upper side of the automatic shaft arm 790. A connecting rotating seat 792 is provided at the side ends of the automatic shaft arm 790 and the feed pipe 791. A paint shaft 794 is installed inside the connecting rotating seat 792. A paint motor 793 is mounted on the side end of the paint shaft 794. During operation, the threaded reducer motor 74 is started, driving the threaded rod 75 to rotate, causing the threaded rod 75 to... The rotation drives the threaded gear 76 and the rotating seat 79 to adjust their angles, thereby enabling the automatic shaft arm 790, the material conveying pipe 791, the connecting rotating seat 792, the paint shaft 794, and the paint motor 793 to perform synchronous angle adjustment operations. Then, an external controller is used to control and adjust the paint motor 793 and the automatic shaft arm 790, so that the automatic shaft arm 790 can drive the connecting rotating seat 792, the paint shaft 794, the paint roller 796, the automatic extruder 797, and the extrusion pipe 795 to extend and adhere to the building's exterior wall. After that, the paint motor 793 is started, which causes the paint shaft 794 to drive the paint roller 796 to rotate, thereby applying putty powder to the wall.
[0033] according to Figure 1 , Figure 3 , Figure 6 and Figure 7 As shown, a paint roller 796 is sleeved on the outside of the paint shaft 794. Automatic extruders 797 are symmetrically sleeved on both the left and right ends of the paint shaft 794. An extrusion tube 795 is connected around the outer periphery of the automatic extruder 797. The side end of the extrusion tube 795 is connected to the paint roller 796. The outer periphery of the paint roller 796 has a discharge end that is connected to the extrusion tube 795. A soft brush is provided on the outside of the paint roller 796. A connecting block 77 is fastened to the side end of the reinforcing frame 73. A soft rubber anti-material sheet 78 is fastened to the side end of the connecting block 77. When the paint roller 796 rotates, the putty powder material conveyed in the conveying tube 791 is extruded from the discharge end to the soft brush on the outer surface of the paint roller 796 with the cooperation of the extrusion tube 795, for subsequent painting operations.
[0034] according to Figure 1 , Figure 2 , Figure 3 and Figure 5As shown, the transmission assembly 5 includes a support mounting base 51. A buffer relief spring frame 52 is mounted on the side of the support mounting base 51. Abutment rollers 53 are mounted at the upper and lower ends of the buffer relief spring frame 52. A splash guard 54 is tightly attached to the side of the support mounting base 51. A drying fan 55 is mounted on the surface of the splash guard 54. Under the action of the buffer relief spring frame 52, the abutment rollers 53 abut against the wall, facilitating the overall operation to maintain a single vertical alignment during subsequent work. Furthermore, a rotating check plate (not shown) can be installed at the center end side plate of the connecting frame 71 for easier subsequent... During construction, the paint roller 796 can be rotated to form a horizontal paint application. Under the action of the anti-splash plate 54, the splashed material generated when the paint roller 796 is rolling is prevented from sticking to the spring inside the buffer relief spring frame 52, which may cause the spring to be obstructed and unable to perform its original function. Under the action of the drying fan 55, the wall material after the paint roller 796 is rolled is dried under the action of the internal rotating structure, improving the work efficiency. It also prevents the abutment roller 53 from forming wheel marks on the surface of the wall material when it is rolling, which would affect the overall construction.
[0035] according to Figure 2 , Figure 3 and Figure 8 As shown, a water tank 10 is connected to the side of the water supply pipe 693. A material pump 8 is installed at the bottom of the water supply tank 10. A water suction pipe 11 is connected to the side of the water supply tank 10. Under the action of the water supply tank 10, the water placed on the basket can be easily pumped out by the water suction pipe 11 and transported to the water supply pipe 693. Under the action of the material pump 8, the putty powder material can be easily transported to the material bucket 63 for subsequent mixing.
[0036] according to Figure 2 , Figure 3 and Figure 8 As shown, a material extraction pipe 9 is connected to the side end of the material pump 8. The side end of the material extraction pipe 9 is connected to the putty powder bucket on the basket. After connecting the material extraction pipe 9 and the putty powder bucket, the material pump 8 is started to facilitate the material pump 8 to perform the above-mentioned material conveying operation.
[0037] according to Figure 2 As shown, a peristaltic pump 12 is connected to the side end of the material tank 63, and a peristaltic conveying pipe 13 is connected to the side end of the peristaltic pump 12. The side end of the peristaltic conveying pipe 13 is connected to the surface of the receiving tank 63. Under the action of the peristaltic pump 12 and the peristaltic conveying pipe 13, it is convenient to deliver the required glue to the material tank 63 for mixing.
[0038] according to Figure 2 , Figure 3 and Figure 8As shown, a hanging extraction pipe 14 is connected to the bottom side of the material bucket 63. A press-type discharge control end 15 is installed on the side of the hanging extraction pipe 14. The hanging extraction pipe 14 and the press-type discharge control end 15 are fixed to the frame of the hanging basket by a fixing strap. With the cooperation of the hanging extraction pipe 14 and the press-type discharge control end 15, it is convenient for workers to manually use putty powder material. This allows workers to fill gaps and unevenness on the building wall by themselves when the paint roller 796 is used for brushing, thus ensuring the overall quality of the building painting.
[0039] according to Figures 1-3 As shown, the left and right sides of the side mounting bracket 1 of the suspended basket are provided with mounting pin ports 2. The interior of the mounting pin ports 2 is fixedly connected to the basket frame by pins. With the help of the mounting pin ports 2 and the side mounting bracket 1 of the suspended basket, it is easy to install the whole device on the side of the suspended basket. At the same time, a heavy object is placed on the other side of the suspended basket, which ensures the stability of the entire suspended basket during the material loading and painting operation and protects the life safety of the workers.
[0040] The wiring diagrams of the distributor 67, stirring DC motor 690, threaded geared motor 74, coating motor 793, automatic extruder 797, conveying pump 8, and peristaltic pump 12 in this invention are common knowledge in the field, and their working principles are known technologies. The appropriate models are selected according to actual use. Therefore, the control methods and wiring arrangements of the distributor 67, stirring DC motor 690, threaded geared motor 74, coating motor 793, automatic extruder 797, conveying pump 8, and peristaltic pump 12 will not be explained in detail.
[0041] The operating method and working principle of this device are as follows: First, place the required buckets of water, putty powder, and adhesive materials inside the suspended basket, and tie the cable to the other side of the basket, or place a heavy object on the other side of the basket to ensure the stability of the basket during the material loading and painting process, thus ensuring the safety of the workers. Next, the workers enter the basket, and the basket is raised to the preset height by the rocker arm. During the lifting process, the workers can load the putty powder. Then, during loading, the workers control the external controller to start the material pump 8. The material pump 8 facilitates the delivery of the putty powder material to the material bucket 63 for subsequent mixing, and also starts the peristaltic pump 12. The peristaltic pump 12 uses the peristaltic conveying pipe 13 to deliver the required glue to the material tank 63 for mixing. Then, under the action of the water injection tank 10, the water placed on the basket is drawn by the water pumping pipe 11 and delivered to the water delivery pipe 693. Thus, while the putty powder material is delivered from the discharge pipe 62, the water in the water delivery pipe 693 is divided into multiple water streams by the distributor 67 and delivered to the spray end 65. By applying pressure to the spray end 65, airflow is usually introduced at the spray end 65. This airflow helps to spray the liquid and form it into fine droplets. Then, affected by the nozzle structure inside the spray end 65 and the airflow, the liquid is atomized into tiny droplets, thus forming a spray on the discharge material. The putty powder falling into the material bucket 63 from pipe 62 undergoes a moistening and bonding process to reduce putty dust and minimize respiratory hazards to workers. Then, when the putty powder reaches a preset depth, the conical dustproof plate 66 and the fitting plate 68 are manually rotated using the rotating shaft 64. This causes the conical dustproof plate 66 to cover the top of the material bucket 63, and the fitting groove and discharge pipe 62 are fitted together. Next, the stirring DC motor 690 is started using an external controller, causing the rotating shaft 691 and stirring blades 692, which form an angled connection on both sides, to perform mixing inside the material bucket 63. The conical dustproof plate 66 blocks the dust generated during mixing, preventing it from flying and polluting the surrounding air. Afterwards, the connection... The disc 72 is installed below the material hopper 63 to facilitate the application of the weight of the material hopper 63 onto the connecting disc 72 and the connecting frame 71, ensuring the load-bearing capacity of the entire device. Next, the threaded geared motor 74 is connected to an external controller via wiring. The external controller controls the threaded geared motor 74, starting it and causing the threaded rod 75 to rotate. This rotation of the threaded rod 75 drives the threaded teeth 76 and the rotating seat 79 to adjust their angles. This, in turn, allows the automatic shaft arm 790, the conveying pipe 791, the connecting rotating seat 792, the paint shaft 794, and the paint motor 793 to perform synchronized angle adjustments. Finally, the external controller controls and adjusts the paint motor 793 and the automatic shaft arm 790.The automatic arm 790 extends the connecting rotary seat 792, paint shaft 794, paint roller 796, automatic extruder 797, and extrusion tube 795, allowing them to adhere to the building's exterior wall. Then, the paint motor 793 is activated, causing the paint shaft 794 to rotate the paint roller 796, thus applying putty powder to the wall. As the paint roller 796 rotates, the automatic extruder 797, in conjunction with the extrusion tube 795, extrudes the putty powder from the feed tube 791 from the discharge end onto the soft brush on the outer surface of the paint roller 796 for subsequent painting. A rotation check plate can be installed at the center end side plate of the connecting frame 71 to allow the paint roller 796 to rotate during subsequent construction work, creating a horizontal painting operation and preventing splashing. Under the action of the spray plate 54, the splashed material generated during the painting roller 796's brushing process is prevented from sticking to the spring inside the buffer relief spring frame 52, which could obstruct the spring and prevent it from performing its original function. Under the action of the drying fan 55, the wall material after the painting roller 796 has brushed is dried through the internal rotating structure, improving work efficiency and preventing wheel marks from forming on the surface of the wall material when the abutment roller 53 is rolling, which would affect the overall construction. Furthermore, with the cooperation of the hanging extraction pipe 14 and the press-type discharge control end 15, workers can manually apply putty powder, allowing them to fill gaps and unevenness in the building wall surface during the painting roller 796's brushing process, ensuring the overall quality of the building's painting.
[0042] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A feeding device for putty powder processing that prevents dust from escaping, characterized in that: Includes a side mounting bracket (1) for the suspended basket, which is installed on the side of the suspended basket. Two sets of fixing seats (3) are symmetrically installed on the left and right ends of the side of the side of the side mounting bracket (1). Both sets of fixing seats (3) are composed of fixing pins and connecting clamps. A dustproof component (6) is installed at the center end of the side mounting bracket (1). A transmission component (5) is fastened to the side of the two sets of fixing seats (3). A coating component (7) is fastened to the bottom of the dustproof component (6). The dustproof component (6) includes a connecting seat (61). A discharge pipe (62) is installed inside the upper and lower end slots of the connecting seat (61). A material bucket (63) is connected through the side of the discharge pipe (62). A rotating shaft (64) is hinged to the connecting end of the material bucket (63) and the connecting seat (61). A conical dustproof plate (66) is hinged to the outer periphery of the rotating shaft (64). A fitting plate (68) is fastened to the bottom side of the conical dustproof plate (66). A fitting groove is formed on the surface of the fitting plate (68). A spray end (65) is inserted into the surface of the fitting plate (68). A distributor (67) is connected to the top of the spray end (65). A water supply pipe (693) is connected to the side end of the material bucket (63). Side chambers (69) are symmetrically installed at the left and right ends of the material bucket (63). A stirring DC motor (690) is mounted on the outside of the side chamber (69). A rotating shaft column (691) is connected to the output end of the stirring DC motor (690). Stirring blades (692) are equidistantly sleeved on the outer periphery of the rotating shaft column (691). The side chamber (69), stirring DC motor (690), rotating shaft column (691) and stirring blades (692) are arranged at a docking angle. Under the action of the rotating shaft (64), the fitting plate (68) drives the conical dustproof plate (66) to form a cover at the top of the material bucket (63), and the fitting groove and the discharge pipe (62) are fitted together.
2. The dust-preventing feeding device for putty powder processing according to claim 1, characterized in that: The coating assembly (7) includes a connecting frame (71), a connecting plate (72) is fastened to the center end of the connecting frame (71), the top of the connecting plate (72) is fastened to the bottom of the material bucket (63), and a reinforcing frame (73) is fastened to both the connecting plate (72) and the side of the connecting frame (71), and a threaded reduction motor (74) is mounted on the side of the reinforcing frame (73).
3. The dust-preventing feeding device for putty powder processing according to claim 2, characterized in that: The output end of the threaded geared motor (74) is connected to a threaded rod (75). Both ends of the threaded rod (75) are meshed with threaded rotating teeth (76). A rotating seat (79) is fastened to the outside of the threaded rotating teeth (76). An automatic shaft arm (790) is installed inside the rotating seat (79). A material conveying pipe (791) is installed on the upper side of the automatic shaft arm (790). A connecting rotating seat (792) is provided on the side end of the automatic shaft arm (790) and the material conveying pipe (791). A paint shaft (794) is installed inside the connecting rotating seat (792). A paint motor (793) is mounted on the side end of the paint shaft (794).
4. The dust-preventing feeding device for putty powder processing according to claim 3, characterized in that: A paint roller (796) is sleeved on the outside of the paint shaft (794). Automatic extruders (797) are symmetrically sleeved on the left and right ends of the paint shaft (794). An extrusion tube (795) is connected around the outer periphery of the automatic extruder (797). The side end of the extrusion tube (795) is connected to the paint roller (796). The outer periphery of the paint roller (796) has a discharge end that is connected to the extrusion tube (795). A soft brush is provided on the outside of the paint roller (796). A connecting block (77) is fastened to the side end of the reinforcing frame (73). A soft rubber anti-material sheet (78) is fastened to the side end of the connecting block (77).
5. The dust-preventing feeding device for putty powder processing according to claim 1, characterized in that: The transmission assembly (5) includes a bearing mounting base (51), on which a buffer relief spring frame (52) is mounted on the side. Abutment rollers (53) are installed at the upper and lower ends of the buffer relief spring frame (52). A splash guard (54) is tightly attached to the side of the bearing mounting base (51), and a drying fan (55) is installed on the surface of the splash guard (54).
6. The dust-preventing feeding device for putty powder processing according to claim 1, characterized in that: The side end of the water supply pipe (693) is connected to a water injection tank (10), the bottom of the water injection tank (10) is equipped with a feed pump (8), and the side of the water injection tank (10) is connected to a water pumping pipe (11).
7. The dust-preventing feeding device for putty powder processing according to claim 6, characterized in that: The side end of the material pump (8) is connected to a material extraction pipe (9), and the side end of the material extraction pipe (9) is connected to the putty powder bucket on the basket.
8. The dust-preventing feeding device for putty powder processing according to claim 1, characterized in that: The side end of the material bucket (63) is connected to a peristaltic pump (12), and the side end of the peristaltic pump (12) is connected to a peristaltic conveying pipe (13). The side end of the peristaltic conveying pipe (13) is connected to the surface of the material bucket (63).
9. The dust-preventing feeding device for putty powder processing according to claim 1, characterized in that: The bottom side of the material bucket (63) is connected to a hanging extraction pipe (14), and a press-type discharge control end (15) is installed on the side of the hanging extraction pipe (14). The hanging extraction pipe (14) and the press-type discharge control end (15) are fixed to the frame of the hanging basket by a fixing strap.
10. The dust-preventing feeding device for putty powder processing according to claim 1, characterized in that: The left and right sides of the side mounting bracket (1) of the suspended basket are provided with mounting pin ports (2), and the interior of the mounting pin ports (2) is fixedly connected to the basket frame by pins.
Citation Information
Patent Citations
Dustproof mixing device for putty powder production
CN211988278U
Dustproof treatment device for stirring production of putty powder
CN216063051U