Putty powder binder processing equipment
By combining a scraping plate and a mixing plate, the scraping part scrapes off the sticky material and conveys it vertically. Combined with the inclined guide hole and rubber plate design, the problem of uneven mixing of putty powder and adhesive is solved, and the mixing efficiency is improved.
Patent Information
- Application Number
- CN202422984576.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-04
AI Technical Summary
In existing technologies, there is a problem of uneven mixing of the raw materials at the top and bottom of the mixing tank during the mixing process of putty powder and binder, resulting in low mixing efficiency.
It adopts a combination structure of scraping plate and stirring plate. The scraping plate is equipped with scraping part, which scrapes off the sticky raw material by contacting the inner wall of the stirring chamber and conveying it vertically. Combined with the design of inclined guide hole and rubber plate, it realizes horizontal and vertical stirring and improves stirring efficiency.
It achieves uniform mixing of putty powder and binder, improves mixing efficiency, and ensures vertical stirring and mixing effect of raw materials in the bucket.
Smart Images

Figure CN223654817U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of putty powder processing equipment, and more specifically to a putty powder binder processing equipment. Background Technology
[0002] Putty powder is an indispensable material in the building decoration industry. It is made up of a mixture of various materials. When using it, the putty powder needs to be stirred to ensure that it is evenly mixed with the binder for subsequent application.
[0003] According to announcement number CN221412820U, announcement date: July 26, 2024, a putty powder mixing device is disclosed, including: a barrel, a rotating column, a first stirring blade, a first scraper, and a second stirring blade; a mixing groove is opened in the middle of the barrel, the rotating column is rotatably disposed in the mixing groove, the first stirring blade is connected to the first side of the rotating column, the first scraper is connected to the side wall of the first stirring blade away from the rotating column, the end of the first scraper away from the first stirring blade abuts against the inner side wall of the mixing groove, and the second stirring blade is connected to the second side of the rotating column. The first scraper scrapes off and mixes the putty powder adhering to the inner side wall of the mixing groove, thereby enabling the first and second stirring blades to mix the putty in the mixing groove more evenly. In this way, the mixing efficiency of the putty powder mixing device can be greatly improved, thereby reducing the time for users to mix putty powder and improving work efficiency.
[0004] In the prior art, including the aforementioned patent, the first stirring blade, the first scraper, and the second stirring blade on the rotating column are located in the mixing tank of the cylinder to stir and mix the putty powder and binder in the barrel. However, since the first stirring blade, the first scraper, and the second stirring blade are all arranged vertically, when the rotating column drives the first stirring blade, the first scraper, and the second stirring blade to rotate, the putty powder and binder raw materials in the barrel are only subjected to horizontal pushing and rotating stirring. As a result, it is difficult for the raw materials at the top and bottom of the barrel to be mixed evenly, which leads to uneven stirring of the raw materials in the vertical direction. Utility Model Content
[0005] The purpose of this invention is to provide a putty powder adhesive processing equipment to solve the above-mentioned problems.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a putty powder adhesive processing device, including a base with a mixing chamber on it, a rotating frame coaxially arranged inside the mixing chamber, mixing plates symmetrically arranged on the rotating frame, each mixing plate being provided with a scraping plate, each scraping plate being provided with a partially spiral scraping part, the scraping part abutting against the annular inner wall of the mixing chamber.
[0007] Preferably, the scraper plate has a concave arc-shaped material collection groove, with the upper end of the scraper facing the material collection groove.
[0008] Preferably, the stirring plate is provided with inclined guide holes in a linear array. The inclined guide holes are arranged at an inclination so that their two ends have high and low positions, and the high position opening of the inclined guide hole faces the rotation direction of the stirring plate.
[0009] Preferably, the rotating frame has a movable groove located in the middle of the mixing chamber, a sliding seat is coaxially movably arranged on the rotating frame, the sliding seat is provided with a mounting part in the movable groove, rubber plates are arranged in a circular array on the mounting part, a plate-shaped part extending out of the outside of the mixing chamber is provided on the mounting part, and a limiting part is symmetrically arranged on the base.
[0010] Preferably, the sliding seat also includes a sealing seat, wherein the sliding seat has a through hole and a receiving groove, the rotating frame has a columnar part, the first end of the through hole is connected to the receiving groove, the sealing seat is installed on the plate-shaped part to seal the receiving groove, and the sliding seat is driven to slide vertically close to the rotating frame so that the columnar part is embedded in the through hole.
[0011] Preferably, a raised abutment is provided on the first side of the rubber plate, and the sliding seat is driven to slide vertically so that the raised abutment presses against the bottom surface of the movable groove.
[0012] Preferably, a locking plate is symmetrically rotatably provided on the plate-shaped part, and the locking plate is driven to rotate so as to be locked in the limiting groove opened on the limiting part.
[0013] In the above technical solution, the putty powder and adhesive processing equipment provided by this utility model has the following beneficial effects: the mixing plate rotates to perform horizontal mixing of raw materials in the mixing chamber, while the scraping part scrapes off the raw materials adhering to the annular inner wall of the mixing chamber and pushes them vertically upwards and conveys them. Thus, during the mixing process, the raw materials on the outer ring side of the mixing chamber are lifted and flowed vertically upwards by the scraping and pushing of the scraping part, realizing the vertical stirring of the raw materials in the mixing chamber, thereby improving the mixing efficiency of putty powder and adhesive. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.
[0015] Figure 1 A schematic diagram of the overall structure provided for an embodiment of this utility model;
[0016] Figure 2 This is a schematic cross-sectional view of the overall structure of an embodiment of the present utility model;
[0017] Figure 3 A schematic diagram of the structure of the rotating frame, scraper plate, and sliding seat provided in an embodiment of this utility model;
[0018] Figure 4 An exploded structural diagram of the sliding seat, sealing seat, and locking plate provided in an embodiment of this utility model;
[0019] Figure 5 This is a schematic diagram of the structure of the sliding seat, sealing seat, and locking plate provided in an embodiment of the present utility model.
[0020] Explanation of reference numerals in the attached figures:
[0021] 1. Base; 11. Mixing chamber; 12. Limiting part; 2. Rotating frame; 21. Mixing plate; 22. Inclined guide hole; 23. Columnar part; 24. Movable groove; 3. Scraping plate; 31. Scraping part; 32. Material collection groove; 4. Sliding seat; 41. Mounting part; 42. Through hole; 43. Plate-shaped part; 431. Receiving groove; 432. Fitting groove; 51. Drive gear; 52. Drive motor; 6. Locking plate; 7. Sealing seat; 8. Rubber plate; 81. Protruding abutment strip. Detailed Implementation
[0022] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the technical solutions of the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the described embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.
[0023] like Figure 1-5 As shown, a putty powder adhesive processing device includes a base 1 with a mixing chamber 11 on it. A rotating frame 2 is coaxially rotatably arranged inside the mixing chamber 11. A mixing plate 21 is symmetrically arranged on the rotating frame 2. Each mixing plate 21 is provided with a scraping plate 3. Each scraping plate 3 is provided with a scraping part 31 in a partially spiral shape, and the scraping part 31 abuts against the annular inner wall of the mixing chamber 11.
[0024] Specifically, such as Figure 2As shown, a rotating frame 2 is rotatably arranged inside the mixing chamber 11 of the base 1, and a mixing plate 21 is arranged on the rotating frame 2. A scraping plate 3 is arranged on the mixing plate 21. The scraping part 31 of the scraping plate 3 abuts against the annular inner wall of the mixing chamber 11. Since the scraping part 31 is partially spiral, when the rotating frame 2 is driven to rotate to drive the mixing plate 21 and the scraping plate 3 to rotate circumferentially, the mixing plate 21 rotates to perform horizontal mixing of the raw materials in the mixing chamber 11, while the scraping part 31 scrapes off the raw materials adhering to the annular inner wall of the mixing chamber 11 and pushes them vertically upward through the scraping part 31. Thus, during the mixing operation, the raw materials on the outer ring side of the mixing chamber 11 are lifted and flowed vertically upward by the scraping and pushing of the scraping part 31, realizing the vertical stirring of the raw materials in the mixing chamber 11, thereby improving the mixing efficiency of putty powder and adhesive.
[0025] The scraping plate 3 can be directly inserted vertically into the stirring plate 21 to facilitate quick assembly and disassembly of the scraping plate 3 and the rotating frame 2. The base 1 is also equipped with a drive gear 51 and a drive motor 52. The drive gear 51 is coupled to the rotating shaft of the rotating frame 2. The drive motor 52 drives the rotating frame 2 to rotate axially through the drive gear 51, thereby improving the rotational stability of the rotating frame 2. The drive motor 52 and its related electrical connections are common technical knowledge to those skilled in the art and will not be described in detail here.
[0026] In the above technical solution, the stirring plate 21 is rotated to perform horizontal stirring of the raw materials in the stirring chamber 11, while the scraping part 31 scrapes off the raw materials adhering to the annular inner wall of the stirring chamber 11 and pushes them vertically upwards. Thus, during the stirring process, the raw materials on the outer ring side of the stirring chamber 11 are lifted and flowed vertically upwards by the scraping and pushing of the scraping part 31, thereby realizing the vertical stirring of the raw materials in the stirring chamber 11 and improving the stirring efficiency of putty powder and adhesive.
[0027] As a further embodiment provided in this utility model, the scraping plate 3 is provided with a concave arc-shaped material collection groove 32, and the upper end of the scraping part 31 faces the material collection groove 32.
[0028] Specifically, such as Figure 3 As shown, when the rotating frame 2 is driven to rotate the scraper plate 3 in a circumferential direction, the scraper part 31 of the scraper plate 3 abuts against the annular inner wall of the mixing chamber 11 and rotates. At this time, the lower end of the scraper plate 3 is located on the rotating front side of the upper end, so that the scraper plate 3 can rotate to pressurize and push the raw material on the annular inner wall of the mixing chamber 11 vertically upward and flow into the material collection tank 32 through the scraper part 31. The material collection tank 32 is used to block and store the raw material on the outermost ring side of the mixing chamber 11 and then fall down, thereby realizing the polymerization and stirring of the raw material at the bottom and top of the mixing chamber 11, and further improving the stirring efficiency of the raw material.
[0029] As a further embodiment of this utility model, the stirring plate 21 is provided with inclined guide holes 22 in a linear array. The inclined guide holes 22 are arranged in an inclined manner so that the openings at both ends have high positions and low positions, and the high position opening of the inclined guide hole 22 faces the rotation direction of the stirring plate 21.
[0030] Specifically, such as Figure 3 As shown, inclined guide holes 22 are linearly arrayed on the stirring plate 21. The inclined guide holes 22 are arranged in an inclined manner so that their two ends have high and low positions. The high position opening of the inclined guide hole 22 faces the rotation direction of the stirring plate 21. Therefore, when the rotating frame 2 rotates to stir, the high position opening of the inclined guide hole 22 on the stirring plate 21 is located on the rotation front side of the low position opening. Therefore, the raw material in the stirring chamber 11 can easily flow from the high position opening to the low position opening along the inclined guide hole 22. This realizes that the raw material on the inner ring side of the stirring chamber 11 flows vertically downward, and the inner and outer ring sides of the stirring chamber 11 are driven vertically upward by the scraping part 31. This realizes that the raw material between the inner and outer ring sides of the stirring chamber 11 generates a stirring circulation, thereby further improving the stirring efficiency of the raw material.
[0031] As a further embodiment of this utility model, the rotating frame 2 is provided with a movable groove 24 located in the middle of the stirring chamber 11. A sliding seat 4 is coaxially and movably arranged on the rotating frame 2. The sliding seat 4 is provided with a mounting part 41 in the movable groove 24. Rubber plates 8 are arranged in a circular array on the mounting part 41. A plate-shaped part 43 extending out of the outside of the stirring chamber 11 is provided on the mounting part 41. Limiting parts 12 are symmetrically arranged on the base 1.
[0032] Specifically, the mounting part 41 and the rubber plate 8 mounted thereon are located in the movable groove 24. When the rotating frame 2 rotates to perform stirring operations, the stirring efficiency is lower closer to the rotation axis of the rotating frame 2. At this time, the plate-shaped part 43 of the sliding seat 4 can be embedded into the limiting part 12, so that the sliding seat 4 is fixed to the base 1. If the rotating frame 2 is rotated in the stirring chamber 11 at this time, the sliding seat 4 and the rotating frame 2 will also rotate relative to each other. At this time, the rotating frame 2 rotates relative to the sliding seat 4 so that the rubber plate 8 of the mounting part 41 rotates in the movable groove 24 and abuts against the side wall of the movable groove 24 and deforms. Then the movable groove 24 rotates and the rubber plate 8 no longer abuts against the side wall of the movable groove 24 and is reset by its own elastic deformation. This realizes that during the rotation of the rotating frame 2, the rubber plate 8 is abutted by the movable groove 24 and cyclically deforms and resets, and pushes the raw material in the middle of the stirring chamber 11 to the outer ring side, thereby avoiding the problem of low stirring efficiency in the middle of the stirring chamber 11 due to the low linear speed of the rotating frame 2.
[0033] As a further embodiment of this utility model, it also includes a sealing seat 7. The sliding seat 4 is provided with a through hole 42 and a receiving groove 431. The rotating frame 2 is provided with a columnar part 23. The first end of the through hole 42 is connected to the receiving groove 431. The sealing seat 7 is installed on the plate-shaped part 43 to seal the receiving groove 431. The sliding seat 4 is driven to slide vertically close to the rotating frame 2 so that the columnar part 23 is embedded in the through hole 42.
[0034] Specifically, such as Figure 2 As shown, the upper end of the through hole 42 is the first end, and the upper end of the through hole 42 is connected to the receiving groove 431. The plate-shaped part 43 is provided with a fitting groove 432. The sealing seat 7 can be installed on the plate-shaped part 43 by being embedded in the fitting groove 432 through the embedded part provided thereon. At this time, the sealing seat 7 seals the fitting groove 432. After the putty powder and adhesive in the mixing chamber 11 are mixed, the sealing seat 7 can be installed on the plate-shaped part 43 and driven by manually holding the plate-shaped part 43. The sliding seat 4 is axially slid back and forth. At this time, the columnar part 23 is inserted into the through hole 42 to squeeze the raw material at the bottom into the through hole 42. Since the putty powder and binder have high viscosity after being mixed, the material obtained by mixing the putty powder and binder can be squeezed into the receiving tank 431 through the through hole 42 by the movement of the columnar part 23. At this time, a sample can be taken from the receiving tank 431 to observe the viscosity and mixing state of the material at the bottom of the mixing chamber 11, which is convenient for actual use.
[0035] As a further embodiment provided in this utility model, a raised abutment strip 81 is provided on the first side of the rubber plate 8, and the sliding seat 4 is driven to slide vertically so that the raised abutment strip 81 presses against the bottom surface of the movable groove 24.
[0036] Specifically, the rubber plate 8 is positioned on the side of the plate-shaped portion 43 as the first side. The sliding seat 4 is driven to slide vertically so that the protruding abutment 81 presses against the bottom surface of the movable groove 24. When the rotating frame 2 rotates, the protruding abutment 81 presses against the bottom surface of the movable groove 24 and rotates to scrape off the material adhering to the bottom surface of the movable groove 24, thereby further improving the mixing uniformity of the middle part of the mixing chamber 11. When the protruding abutment 81 is pressed, the rubber plate 8 deforms and extends, applying greater extrusion force to the side wall of the movable groove 24, thereby improving the effect of the rubber plate 8 in extruding the middle part of the mixing chamber 11 outward.
[0037] As a further embodiment provided in this utility model, a locking plate 6 is symmetrically rotatably provided on the plate-shaped portion 43, and the locking plate 6 is driven to rotate so as to be locked in the limiting groove opened on the limiting portion 12.
[0038] Specifically, a locking plate 6 is symmetrically and rotatably provided on the plate-shaped part 43. The locking plate 6 can be rotated to make the locking plate 6 stuck in the limiting groove opened on the limiting part 12, thereby realizing the plate-shaped part 43 being stably stuck between the limiting parts 12, and realizing the stable locking between the sliding seat 4 and the base 1.
[0039] The above description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A putty powder adhesive processing equipment, characterized in that, It includes a base (1) on which a stirring chamber (11) is provided. The stirring chamber (11) is coaxially rotatably mounted on a rotating frame (2). The rotating frame (2) is symmetrically provided with stirring plates (21). Each stirring plate (21) is provided with a scraping plate (3). Each scraping plate (3) is provided with a scraping part (31) in a partially spiral shape. The scraping part (31) abuts against the annular inner wall of the stirring chamber (11).
2. The putty powder binder processing equipment according to claim 1, characterized in that, The scraping plate (3) has a concave arc-shaped material collection groove (32), and the upper end of the scraping part (31) faces the material collection groove (32).
3. The putty powder binder processing equipment according to claim 1, characterized in that, The stirring plate (21) has inclined guide holes (22) arranged in a linear array. The inclined guide holes (22) are arranged in an inclined manner so that the openings at both ends have high and low positions. The high opening of the inclined guide hole (22) faces the rotation direction of the stirring plate (21).
4. The putty powder binder processing equipment according to claim 1, characterized in that, The rotating frame (2) has a movable groove (24) located in the middle of the stirring chamber (11). A sliding seat (4) is coaxially and movably arranged on the rotating frame (2). The sliding seat (4) has an installation part (41) in the movable groove (24). Rubber plates (8) are arranged in a circular array on the installation part (41). A plate-shaped part (43) extending out of the outside of the stirring chamber (11) is provided on the installation part (41). Limiting parts (12) are symmetrically arranged on the base (1).
5. The putty powder binder processing equipment according to claim 4, characterized in that, It also includes a sealing seat (7), the sliding seat (4) is provided with a through hole (42) and a receiving groove (431), the rotating frame (2) is provided with a columnar part (23), the first end of the through hole (42) is connected to the receiving groove (431), the sealing seat (7) is installed on the plate-shaped part (43) to seal the receiving groove (431), the sliding seat (4) is driven to slide vertically close to the rotating frame (2) so that the columnar part (23) is embedded in the through hole (42).
6. The putty powder binder processing equipment according to claim 5, characterized in that, The first side of the rubber plate (8) is provided with a raised abutment strip (81), and the sliding seat (4) is driven to slide vertically so that the raised abutment strip (81) presses the bottom surface of the movable groove (24).
7. The putty powder binder processing equipment according to claim 6, characterized in that, A locking plate (6) is symmetrically rotatably disposed on the plate-shaped part (43), and the locking plate (6) is driven to rotate so as to be locked in the limiting groove opened on the limiting part (12).
Citation Information
Patent Citations
Putty powder stirring device
CN221412820U