Raw material guiding mechanism for producing putty powder
By introducing a feeding mechanism consisting of a first crushing component, a second crushing component, and a filtering component into the putty powder production process, the problem of filter clogging is solved, and the putty powder is fully crushed and efficiently transmitted, improving production efficiency and ease of use.
Patent Information
- Application Number
- CN202520182596.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-02-06
AI Technical Summary
In the current putty powder production process, the filter screen below the crushing device is prone to clogging, causing the putty powder to stop being transported, which increases the inconvenience of use.
A feeding mechanism including a first crushing component, a second crushing component, and a filtering component was designed. The filtering component collects the incompletely crushed putty powder raw material and crushes it again. With the help of a controller and a motor, the putty powder is fully crushed and transmitted.
It effectively avoids filter clogging, improves the quality and efficiency of putty powder crushing, reduces cleaning frequency, and enhances the stability and practicality of use.
Smart Images

Figure CN223970093U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of putty powder production technology, specifically a raw material guiding mechanism for producing putty powder. Background Technology
[0002] Putty powder is a type of building decoration material, mainly composed of talcum powder and glue. Putty is a base material used for wall repair and leveling, laying a good foundation for the next step of decoration. The production of putty powder usually consists of base material, filler, water and additives. In the production process, each raw material needs to be added in batches and quantities, so a material guiding mechanism is needed to assist in transportation.
[0003] The prior art, disclosed in CN219129379U, provides a material guiding mechanism for putty powder production, belonging to the field of putty powder production technology. It includes a crushing barrel with a feed inlet at the top for feeding putty powder raw materials. Two crushing motors are connected to one side of the crushing barrel to crush and grind the putty powder raw materials. The output shafts of the two crushing motors pass through the crushing barrel and are connected to drive shafts. Crushing rollers for grinding and crushing the putty powder raw materials are fixedly connected to the outer periphery of the two drive shafts. Rotating blocks are connected to the other side of the two drive shafts, and the other side of the two rotating blocks is fixedly connected to the inner wall of the crushing barrel. A discharge port is provided at the bottom of the crushing barrel for discharging the crushed and ground putty powder. This structure completes the crushing and grinding of the putty powder raw materials, reducing them to particles of similar size, thereby improving the quality of the putty powder and increasing production efficiency.
[0004] The aforementioned patent mainly involves adding a crushing device above the feeding mechanism to crush the putty powder raw materials. However, this method of crushing putty powder results in a large number of incompletely crushed particles remaining on the filter screen below the crushing device. The clogged filter screen directly prevents the crushed putty powder from continuing to be conveyed, requiring users to clean it regularly, which greatly increases the overall complexity of using the putty powder production raw material feeding mechanism. Utility Model Content
[0005] The purpose of this invention is to overcome the shortcomings of the prior art and provide a raw material guiding mechanism for producing putty powder, thereby solving the above-mentioned technical problems.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a raw material guiding mechanism for producing putty powder, comprising a mechanism body, a transmission device for transmitting materials fixedly installed below the mechanism body, a support frame fixed to the bottom of the transmission device, a material inlet for feeding material opening at the top of the support frame, a controller, a first crushing component, a second crushing component, and a square shell fixedly installed on the support frame, the crushing components of the first and second crushing components being located within the square shell, and a filter component for filtering material powder rotatably installed on the square shell, the filter component being located between the first and second crushing components, with its filter component located within the square shell. The filter component's location between the first and second crushing components allows putty powder raw materials not completely crushed by the second crushing component to fall onto the filter component and be uniformly crushed by the first crushing component, greatly improving the quality of raw material crushing within the raw material guiding mechanism for puttingty powder production.
[0007] Furthermore, the filter assembly includes an even number of third motors fixed to the support frame. The output ends of each of the even number of third motors are fixedly connected to shafts. A first mounting plate and a second mounting plate are respectively fixedly mounted at the middle positions of the even number of shafts. Both the first and second mounting plates have filter holes for filtering materials. The side of the first mounting plate closest to the second mounting plate protrudes upwards, while the side of the second mounting plate closest to the first mounting plate protrudes downwards. This design allows for a tighter fit between the first and second mounting plates, improving the quality of the putty powder feeding mechanism for collecting incompletely pulverized putty powder raw materials.
[0008] Furthermore, the second crushing component includes an even number of second motors fixed on a support frame. The output ends of each of the even number of second motors are fixedly connected to crushing wheels for crushing materials. The crushing wheels on the even number of second motors mesh with each other. The material crushed by the second crushing component is filtered through the filtering component. This filtration of the crushed material by the second crushing component improves the practicality of the raw material guiding mechanism in the production of putty powder.
[0009] Furthermore, the controller includes a control board, a timer, and a power supply. The electronic components inside the mechanism body are all electrically connected to the controller. Several fixing components are fixedly installed on the support frame, and the square shell is fixedly installed to the support frame through the fixing components.
[0010] Furthermore, the transmission device includes a locking assembly, which includes a support base for fixing to the support frame. The support base has an arc-shaped groove at its center, and an outer cylinder is disposed within the arc-shaped groove. The locking assembly is used to fix the outer cylinder.
[0011] Furthermore, a fixed shaft is fixedly installed on one side of the support base, and a swing strip for wrapping the outer cylinder is rotatably mounted on the fixed shaft. A side locking member is connected to the side of the swing strip away from the fixed shaft, and the swing strip is fixedly installed to the support base through the side locking member. A top locking member is movably installed on the top of the swing strip, and the swing strip is fixedly installed to the outer cylinder through the top locking member. The fixed installation of the swing strip to the outer cylinder through the top locking member makes the internal structure of the raw material guiding mechanism for producing putty powder more robust and reliable, greatly improving the stability of the raw material guiding mechanism for producing putty powder.
[0012] Furthermore, the top of the outer cylinder is provided with an inlet for material to flow in, a first motor is fixedly installed at one end of the outer cylinder, and a screw conveyor for material transmission is fixedly connected to the output end of the first motor. The bottom of the outer cylinder away from the first motor is provided with an outlet for material to flow out, and a collection box for material collection is placed below the outlet. Beneficial effects
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] This invention adds a crushing component to the crushing structure, so that the putty powder raw material that is not completely crushed will be crushed again by the added crushing component. In conjunction with the material guiding mechanism, the putty powder raw material that is not completely crushed can be collected and poured into the added crushing component at one time, so that the crushing component can more fully crush the putty powder raw material before transmission. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the raw material guiding mechanism for producing putty powder according to this utility model;
[0016] Figure 2 This is a three-dimensional structural diagram of the transmission device of this utility model;
[0017] Figure 3 This is a partially enlarged three-dimensional structural diagram of A of this utility model;
[0018] Figure 4 This is a three-dimensional structural diagram of the main body of the mechanism of this utility model;
[0019] Figure 5This is a partially enlarged three-dimensional structural diagram of utility model B.
[0020] Figure 6 This is a three-dimensional structural diagram of the filter assembly of this utility model.
[0021] In the diagram: 1. Mechanism body; 2. Transmission device; 21. First motor; 22. Feed inlet; 23. Outer cylinder; 24. Screw; 25. Collection box; 26. Locking assembly; 261. Top locking component; 262. Side locking component; 263. Support base; 264. Fixed shaft; 265. Swing bar; 11. Material inlet; 12. Fixed assembly; 13. Support frame; 14. Controller; 15. First crushing assembly; 16. Second crushing assembly; 17. Filter assembly; 18. Square shell; 161. Second motor; 162. Crushing wheel; 171. Third motor; 172. Filter hole; 173. First mounting plate; 174. Detailed Implementation
[0022] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the protection scope of this utility model.
[0023] The following are examples in conjunction with the appendix. Figure 1 -Appendix Figure 6This application provides a further detailed description of a raw material guiding mechanism for producing putty powder. The mechanism includes a main body 1, with a transmission device 2 for material transmission fixedly installed below the main body 1. The main body 1 includes a support frame 13 fixed to the bottom of the transmission device 2. A material inlet 11 for feeding is provided at the top of the support frame 13. A controller 14, a first crushing component 15, a second crushing component 16, and a square shell 18 are fixedly installed on the support frame 13. The crushing components of the first crushing component 15 and the second crushing component 16 are both located within the square shell 18. A filter assembly 17 for filtering the material powder is rotatably installed on the square shell 18. The filter assembly 17 is located between the first crushing component 15 and the second crushing component 16, and its filter component is located within the square shell 18. The 7 includes an even number of third motors 171 fixed on the support frame 13. The output ends of the even number of third motors 171 are fixedly connected to shafts. A first mounting plate 173 and a second mounting plate 174 are respectively fixedly mounted at the middle positions of the even number of shafts. Both the first mounting plate 173 and the second mounting plate 174 have filter holes 172 for filtering materials. The side of the first mounting plate 173 closest to the second mounting plate 174 protrudes upwards, and the side of the second mounting plate 174 closest to the first mounting plate 173 protrudes downwards. The second crushing assembly 16 includes an even number of second motors 161 fixed on the support frame 13. The output ends of the even number of second motors 161 are fixedly connected to crushing wheels 162 for crushing materials. The crushing wheels 162 mesh with each other. The material crushed by the second crushing component 16 is filtered through the filter component 17. The controller 14 contains a control board, a timer, and a power supply. The electronic components inside the main body 1 are electrically connected to the controller 14. Several fixing components 12 are fixedly installed on the support frame 13. The square shell 18 is fixedly installed to the support frame 13 through the fixing components 12. The transmission device 2 includes a locking component 26. The locking component 26 includes a support seat 263 for fixing to the support frame 13. An arc-shaped groove is opened at the center of the support seat 263. An outer cylinder 23 is provided in the arc-shaped groove of the support seat 263. The locking component 26 is used to fix the outer cylinder 23. A fixing shaft 264 is fixedly installed on one side of the support seat 263. A swing bar 265 for wrapping the outer cylinder 23 is rotatably mounted on the 64. A side locking member 262 is connected to the side of the swing bar 265 away from the fixed shaft 264. The swing bar 265 is fixedly installed to the support base 263 through the side locking member 262. A top locking member 261 is movably mounted on the top of the swing bar 265. The swing bar 265 is fixedly installed to the outer cylinder 23 through the top locking member 261. The top of the outer cylinder 23 has an inlet 22 for material to flow in. A first motor 21 is fixedly mounted on one end of the outer cylinder 23. A screw 24 for transmitting material is fixedly connected to the output end of the first motor 21. An outlet for material to flow out is opened at the bottom of the end of the outer cylinder 23 away from the first motor 21. A collection box 25 for material collection is placed below the outlet.
[0024] Since the controller 14 contains an Arduino control board, a 555 timer, and a power supply, and the control boxes of all motors inside the raw material feeding mechanism for producing putty powder are electrically connected to the controller 14, the controller 14 can control all motors inside the raw material feeding mechanism for producing putty powder.
[0025] Since the outer cylinder 23 is tilted and the rotation of the auger 24 can push the putty powder downward, the putty powder that enters the outer cylinder 23 through the feed port 22 can be quickly transported to the collection box 25 for collection.
[0026] Since the upper end of the first mounting plate 173 protrudes and the lower end of the second mounting plate 174 protrudes, when the first mounting plate 173 and the second mounting plate 174 are installed together, their connection points can be cross-fixed. The installation sequence of the first mounting plate 173 and the second mounting plate 174 is as follows: the first mounting plate 173 swings upward first, and then the second mounting plate 174 swings upward and engages below the first mounting plate 173, thereby preventing leakage of putty powder that has not been completely crushed.
[0027] The working principle of this utility model is explained below: Unless otherwise specified, all mechanical structures within the raw material feeding mechanism for producing putty powder are fixed by threads. To allow for a more intuitive observation of the technical features, bolt connections are appropriately concealed in the diagram. When using the raw material feeding mechanism for producing putty powder, the user adds the putty powder raw material into the square shell 18 through the material inlet 11. At this time, the controller 14 controls the second crushing component 16 to start. The second motor 161 drives the crushing wheel 162 to rotate and initially crush the putty powder raw material. At this time, the putty powder raw material that is not completely crushed will fall onto the first mounting plate 173 and the second mounting plate 174, while the completely crushed putty powder raw material falls into the outer cylinder 23 through the feed inlet 22. When the timer in the controller 14 reaches the specified time, the second crushing component 16 stops operating, and the controller 14 starts the first crushing component 15 and the filter component 17. The activated filter component 17 carries a large amount of incompletely crushed putty powder raw material into the first crushing component 15 for further crushing. Adding putty powder raw materials alone to the first crushing component 15 results in poor crushing effect. However, by pouring a large amount of incompletely crushed putty powder raw materials from the first mounting plate 173 and the second mounting plate 174 into the first crushing component 15, the crushing rate can be greatly improved. The raw materials that are then crushed again will enter the outer cylinder 23 through the feed inlet 22. When the timer in the controller 14 ends, it triggers the first mounting plate 173 and the second mounting plate 174 to swing upwards. Then, the second crushing component 16 continues to operate. At this time, the large amount of putty powder raw materials accumulated on the second crushing component 16 can also be fully crushed. This cycle is repeated to fully crush the putty powder raw materials. The putty powder material falling into the outer cylinder 23 is driven by the screw conveyor 24 driven by the first motor 21 and finally enters the collection box 25 for collection. This allows the raw material guiding mechanism for puttingty powder production to fully crush the putty powder material during use, greatly reducing the difficulty and steps of the user's operation process and greatly improving the practicality of the raw material guiding mechanism for puttingty powder production.
[0028] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
Claims
1. A raw material guiding mechanism for producing putty powder, characterized in that, Including mechanism body (1), the transmission (2) for transmitting material is fixedly installed below the mechanism body (1), the mechanism body (1) includes the support frame (13) fixed at the bottom of the transmission (2), the support frame (13) top is provided with material inlet (11) for feeding, the controller (14), first crushing assembly (15), second crushing assembly (16) and square shell (18) are fixedly installed on the support frame (13), the crushing parts of the first crushing assembly (15) and the second crushing assembly (16) are located in the square shell (18), the filter assembly (17) for filtering material powder is rotatably installed on the square shell (18), the filter assembly (17) is located between the first crushing assembly (15) and the second crushing assembly (16), and the filtering parts of the filter assembly (17) are located in the square shell (18).
2. A raw material guiding mechanism for producing putty powder according to claim 1, characterized in that: The filter assembly (17) includes an even number of third motors (171) fixed on the support frame (13), the output ends of the even number of third motors (171) are fixedly connected with shaft bodies, first mounting plates (173) and second mounting plates (174) are fixedly installed at the middle positions of the even number of shaft bodies respectively, the first mounting plates (173) and the second mounting plates (174) are all provided with filter holes (172) for filtering materials, one side of the first mounting plate (173) close to the second mounting plate (174) is protruded upwards, and one side of the second mounting plate (174) close to the first mounting plate (173) is protruded downwards.
3. The raw material guiding mechanism for producing putty powder according to claim 2, characterized in that: The second crushing assembly (16) includes an even number of second motors (161) fixed on the support frame (13), the output ends of the even number of second motors (161) are fixedly connected with crushing wheels (162) for crushing materials, the crushing wheels (162) on the even number of second motors (161) are engaged with each other, and the materials crushed by the second crushing assembly (16) are filtered by the filter assembly (17).
4. The raw material guiding mechanism for producing putty powder according to claim 3, characterized in that: The controller (14) contains a control panel, a timer and a power supply, the electronic devices inside the mechanism body (1) are electrically connected with the controller (14), a plurality of fixing assemblies (12) are fixedly installed on the support frame (13), and the square shell (18) is fixedly installed with the support frame (13) through the fixing assembly (12).
5. The raw material guiding mechanism for producing putty powder according to claim 1, characterized in that: The transmission (2) includes a locking assembly (26), the locking assembly (26) includes a support seat (263) for being fixed on the support frame (13), the support seat (263) is provided with an arc-shaped groove at the center position, the support seat (263) is provided with an outer cylinder (23) in the arc-shaped groove, and the locking assembly (26) is used for fixing the outer cylinder (23).
6. A raw material guiding mechanism for producing putty powder according to claim 5, characterized in that: One side of the support seat (263) is fixedly installed with a fixed shaft (264), a swing bar (265) for wrapping the outer cylinder (23) is rotatably installed on the fixed shaft (264), a side locking piece (262) is connected to the side of the swing bar (265) away from the fixed shaft (264), the swing bar (265) is fixedly installed with the support seat (263) through the side locking piece (262), a top locking piece (261) is movably installed on the top of the swing bar (265), and the swing bar (265) is fixedly installed with the outer cylinder (23) through the top locking piece (261).
7. The raw material guiding mechanism for producing putty powder according to claim 5, characterized in that: A feeding port (22) for material flowing in is formed in the top of the outer cylinder (23), a first motor (21) is fixedly installed at one end of the outer cylinder (23), a screw conveyor (24) for conveying material is fixedly connected to the output end of the first motor (21), and a discharging port for material flowing out is formed in the bottom of the end of the outer cylinder (23) away from the first motor (21), and a collecting box (25) for collecting material is placed below the discharging port.
Citation Information
Patent Citations
Putty powder production raw material guide mechanism
CN219129379U