Ceramic water reducing agent compound production equipment
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2026-08-11
AI Technical Summary
[0011]与现有技术相比,本实用新型的有益效果是:在使用时,将物料投放入搅拌桶中,而后回转驱动机构驱动轨道转动,使得轨道带动变角度搅拌部转动,变角度搅拌部在转动的过程中沿环形波纹槽移动,在环形波纹槽对转动的变角度搅拌部的导向下,变角度搅拌部在随轨道转动的过程中与轨道发生往复的相对直线移动,从而使得变角度搅拌部在转动搅拌物料的同时,通过变角度搅拌部相对轨道直线移动的方式进一步分散物料。本实用新型通过回转驱动机构与多向搅动机构相互配合的方式,以在对物料进行周向搅拌作业的同时,通过变角度搅拌部相对轨道直线移动的方式,变化变角度搅拌部的搅动位置,从而使得本实用新型充分且快捷的对物料进行搅拌。
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Figure CN224613644U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water-reducing agent compounding technology, specifically a ceramic water-reducing agent compounding production equipment. Background Technology
[0002] Ceramic water-reducing agents are chemical substances used in the ceramic industry to improve the properties of slurry. Their main components are sodium polycarboxylate and acrylic polymer. Water-reducing agents are common admixtures used in concrete preparation. They reduce the amount of water used during concrete construction, lower the water-cement ratio, increase concrete strength, shorten the curing period, ensure construction progress, and give concrete long-term durability and corrosion resistance.
[0003] When compounding ceramic water-reducing agents, the materials to be synthesized need to be put into a tank for stirring. However, the existing equipment generally adopts a circumferential stirring method, which results in the stirring rack having a simple circular trajectory. This causes some materials to come into frequent contact with the stirring rack, while others have low contact frequency. This requires extending the stirring time to ensure uniform mixing, which consumes an extra amount of stirring time and is not conducive to rapid and thorough compounding of materials.
[0004] To address the problems mentioned above, those skilled in the art have proposed a ceramic water-reducing agent compounding production equipment. Utility Model Content
[0005] The purpose of this invention is to provide a ceramic water-reducing agent compounding production equipment to solve the problems of long mixing time and insufficient mixing mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: A ceramic water-reducing agent compounding production equipment includes a base, a mixing tank fixedly connected to the base, a control console connected to the base, and a rotary drive mechanism connected to the base. A multi-directional stirring mechanism connected to a rotary drive mechanism includes four sets of tracks fixedly connected to the rotary drive mechanism. Each track is slidably connected to a variable-angle stirring section. Each variable-angle stirring section is slidably connected to a radial movement guide assembly. The radial movement guide assembly includes two sets of ring plates fixedly connected to the rotary drive mechanism. An annular corrugated groove is provided between the two sets of ring plates. The variable-angle stirring section is slidably connected to the annular corrugated groove.
[0007] As a further improvement of this utility model: the rotary drive mechanism includes a cross-shaped fixing frame fixedly connected to the base, the cross-shaped fixing frame being fixedly connected to two sets of ring plates, a first motor being fixedly installed in the middle of the cross-shaped fixing frame, the first motor being positioned above the mixing tank, the output shaft of the first motor being fixedly connected to a stirring shaft, and the stirring shaft being fixedly connected to four sets of tracks.
[0008] As a further improvement of this utility model: the variable angle stirring part includes a slide frame slidably connected to the track, a protruding shaft fixedly connected to the slide frame and slidably connected to the annular corrugated groove, a series of linearly arranged stepped shafts rotatably connected to the slide frame, a stirring frame fixedly connected to the stepped shafts, a double-headed frame fixedly connected to the stepped shafts, and two sets of parallel linkage plates hinged together by the series of double-headed frames arranged in a straight line, one of the double-headed frames being connected to an angle adjustment component, which is connected to the slide frame.
[0009] As a further improvement of this utility model: the angle adjustment component includes a sleeve that is coaxially and fixedly connected to a set of double-headed frames. The sleeve is slidably connected to a prism, and the prism is fixedly connected to a first spring. The first spring is fixedly connected to the sleeve. The prism is fixedly connected to a handle, and the handle is fixedly connected to two sets of pins. The slide is fixedly connected to a limit frame, and the limit frame has multiple sets of limit grooves. The pins are movably connected to the limit grooves.
[0010] As a further improvement of this utility model: the track is slidably connected to the upper end face of the mixing tank.
[0011] Compared with existing technologies, the beneficial effects of this invention are as follows: In use, materials are placed into the mixing tank, and then the rotary drive mechanism drives the track to rotate, causing the track to rotate the variable-angle stirring part. During rotation, the variable-angle stirring part moves along the annular corrugated groove. Guided by the annular corrugated groove, the variable-angle stirring part reciprocates relative to the track in a linear motion as it rotates. This allows the variable-angle stirring part to further disperse the material while simultaneously rotating and stirring it, through its linear movement relative to the track. This invention, through the cooperation of the rotary drive mechanism and the multi-directional stirring mechanism, performs circumferential stirring of the material while changing the stirring position of the variable-angle stirring part by moving it linearly relative to the track, thus enabling the invention to thoroughly and quickly stir the material. Attached Figure Description
[0012] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0013] Figure 2 This utility model Figure 1A magnified view of a portion of point A in the middle.
[0014] Figure 3 This is a three-dimensional structural diagram of the track and the variable-angle stirring part of this utility model.
[0015] Figure 4 This is a partial three-dimensional structural diagram of the track and variable angle stirring part of this utility model from another perspective.
[0016] Figure 5 This is a three-dimensional structural diagram of the stepped shaft, stirring rack, and double-headed frame of this utility model.
[0017] Figure 6 This is a three-dimensional structural diagram of the angle adjustment component of this utility model.
[0018] Figure 7 This is a schematic diagram of the angle adjustment component of this utility model.
[0019] Figure 8 This is a three-dimensional structural diagram of the ring plate and the annular corrugated groove of this utility model.
[0020] In the diagram: 1. Base; 2. Mixing tank; 3. Control console; 4. Rotary drive mechanism; 5. Multi-directional stirring mechanism; 6. Track; 7. Variable angle stirring section; 8. Radial movement guide assembly; 9. Ring plate; 10. Annular corrugated groove; 11. Cross fixing frame; 12. First motor; 13. Stirring shaft; 14. Slide; 15. Stepped shaft; 16. Stirring frame; 17. Double-headed frame; 18. Linkage plate; 19. Angle adjustment assembly; 20. Sleeve; 21. Prism; 22. First spring; 23. Handle; 24. Pin; 25. Limiting frame; 26. Limiting groove; 27. Protruding shaft. Detailed Implementation
[0021] The technical solution of this utility model will be further described in detail below with reference to specific embodiments.
[0022] Example 1, see Figures 1 to 8 As shown, a ceramic water-reducing agent compound production equipment includes a base 1, a mixing tank 2 fixedly connected to the base 1, a control console 3 connected to the base 1, and a rotary drive mechanism 4 connected to the base 1. A multi-directional stirring mechanism 5 is connected to the rotary drive mechanism 4. The multi-directional stirring mechanism 5 includes four sets of tracks 6 fixedly connected to the rotary drive mechanism 4. A set of variable angle stirring parts 7 is slidably connected to the tracks 6. A radial movement guide assembly 8 is slidably connected to the variable angle stirring parts 7. The radial movement guide assembly 8 includes two sets of ring plates 9 fixedly connected to the rotary drive mechanism 4. An annular corrugated groove 10 is provided between the two sets of ring plates 9. The annular corrugated groove 10 is a wave-shaped annular through groove with connected ends. The variable angle stirring parts 7 are slidably connected to the annular corrugated groove 10.
[0023] In use, the material is placed into the mixing tank 2, and then the rotary drive mechanism 4 drives the track 6 to rotate, causing the track 6 to drive the variable angle stirring part 7 to rotate. During rotation, the variable angle stirring part 7 moves along the annular corrugated groove 10. Guided by the annular corrugated groove 10, the variable angle stirring part 7 reciprocates relative to the track 6 in a linear motion as it rotates with the track 6. This allows the variable angle stirring part 7 to further disperse the material while simultaneously rotating and stirring it, through its linear movement relative to the track 6. This invention, through the cooperation of the rotary drive mechanism 4 and the multi-directional stirring mechanism 5, performs circumferential stirring of the material while changing the stirring position of the variable angle stirring part 7 by moving linearly relative to the track 6, thus enabling the invention to thoroughly and quickly stir the material.
[0024] In one embodiment, the rotary drive mechanism 4 includes a cross-shaped fixing frame 11 fixedly connected to the base 1. The cross-shaped fixing frame 11 is fixedly connected to two sets of ring plates 9. A first motor 12 is fixedly installed in the middle of the cross-shaped fixing frame 11. The first motor 12 is positioned above the mixing tank 2. The output shaft of the first motor 12 is fixedly connected to a stirring shaft 13, which is fixedly connected to four sets of tracks 6. The first motor 12 drives the stirring shaft 13 to rotate, thereby causing the stirring shaft 13 to drive the four sets of tracks 6 to rotate, which in turn drives the variable-angle stirring part 7 to rotate.
[0025] In one embodiment, the variable angle stirring unit 7 includes a slide 14 slidably connected to the track 6. The slide 14 is fixedly connected to a protruding shaft 27 slidably connected to the annular corrugated groove 10. The slide 14 is rotatably connected to multiple sets of linearly arranged stepped shafts 15. The stepped shafts 15 are fixedly connected to a stirring frame 16. The stepped shafts 15 are fixedly connected to a double-headed frame 17. The multiple sets of double-headed frames 17 arranged in a straight line are hinged together to two sets of parallel linkage plates 18. One set of double-headed frames 17 is connected to an angle adjustment component 19, which is connected to the slide 14. By adjusting the angle control component 19, a set of double-headed frames 17 rotates. Driven by the linkage plate 18, other double-headed frames 17 connected by the two sets of linkage plates 18 rotate synchronously. Driven by the stepped shaft 15, the stirring frame 16 rotates to adjust the contact angle between the stirring frame 16 and the material. As the amount of material to be stirred increases, the resistance on the stirring frame 16 is reduced to avoid overloading the first motor 12. During the rotation of the slide 14 with the track 6, the protruding shaft 27 slides along the annular corrugated groove 10, so that the protruding shaft 27 drives the slide 14 to slide relative to the track 6.
[0026] In one embodiment, the angle adjustment component 19 includes a sleeve 20 coaxially fixedly connected to a set of double-headed frames 17. A prism 21 is slidably connected to the sleeve 20, and a first spring 22 is fixedly connected to the prism 21. The first spring 22 is fixedly connected to the sleeve 20. A handle 23 is fixedly connected to the prism 21, and two sets of pins 24 are fixedly connected to the handle 23. A limit frame 25 is fixedly connected to the slide 14, and multiple limit grooves 26 are provided on the limit frame 25. The pins 24 are movably connected to the limit grooves 26. Pulling up the handle 23 disengages the pins 24 from the limit grooves 26. Then, rotating the handle 23 causes the sleeve 20 to rotate under the influence of the prism 21. Releasing the handle 23 then allows the pins 24 to re-insert into different limit grooves 26.
[0027] Example 2, based on Example 1, see [link / reference] Figures 1-4 The track 6 is slidably connected to the upper end face of the mixing tank 2. By setting the track 6 to slide on the upper end face of the mixing tank 2, support is provided for the track 6, preventing it from bending.
[0028] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A ceramic water-reducing agent compounding production equipment, comprising a base (1), a mixing tank (2) fixedly connected to the base (1), and a control console (3) connected to the base (1), characterized in that, It also includes: a rotary drive mechanism (4) connected to the base (1); A multi-directional stirring mechanism (5) is connected to the rotary drive mechanism (4). The multi-directional stirring mechanism (5) includes four sets of tracks fixedly connected to the rotary drive mechanism (4). A set of variable angle stirring parts (7) is slidably connected to the tracks. A radial movement guide assembly (8) is slidably connected to the variable angle stirring parts (7). The radial movement guide assembly (8) includes two sets of ring plates (9) fixedly connected to the rotary drive mechanism (4). An annular corrugated groove (10) is provided between the two sets of ring plates (9). The variable angle stirring parts (7) are slidably connected to the annular corrugated groove (10).
2. The ceramic water-reducing agent compounding production equipment according to claim 1, characterized in that, The rotary drive mechanism (4) includes a cross-shaped fixing frame (11) fixedly connected to the base (1). The cross-shaped fixing frame (11) is fixedly connected to two sets of ring plates (9). A first motor (12) is fixedly installed in the middle of the cross-shaped fixing frame (11). The first motor (12) is located above the mixing tank (2). The output shaft of the first motor (12) is fixedly connected to a stirring shaft (13). The stirring shaft (13) is fixedly connected to four sets of tracks.
3. The ceramic water-reducing agent compounding production equipment according to claim 1, characterized in that, The variable angle stirring part (7) includes a slide (14) that is slidably connected to the track. The slide (14) is fixedly connected to a protruding shaft (27) that is slidably connected to an annular corrugated groove (10). The slide (14) is rotatably connected to multiple sets of linearly arranged stepped shafts (15). The stepped shafts (15) are fixedly connected to a stirring frame (16). The stepped shafts (15) are fixedly connected to a double-headed frame (17). The multiple sets of double-headed frames (17) arranged in a straight line are hinged together to two sets of parallel linkage plates (18). One set of double-headed frames (17) is connected to an angle adjustment component (19). The angle adjustment component (19) is connected to the slide (14).
4. The ceramic water-reducing agent compounding production equipment according to claim 3, characterized in that, The angle adjustment component (19) includes a sleeve (20) coaxially fixedly connected to a set of double-headed frames (17). The sleeve (20) is slidably connected to a prism (21). The prism (21) is fixedly connected to a first spring (22). The first spring (22) is fixedly connected to the sleeve (20). The prism (21) is fixedly connected to a handle (23). The handle (23) is fixedly connected to two sets of pins (24). The slide (14) is fixedly connected to a limit frame (25). The limit frame (25) has multiple sets of limit grooves (26). The pins (24) are movably connected to the limit grooves (26).
5. The ceramic water-reducing agent compounding production equipment according to claim 1, characterized in that, The track (6) is slidably connected to the upper end face of the mixing tank (2).