Colorful Nixing pottery raw material mixing equipment
By incorporating a sleeve and auger structure in the colored Nixing pottery raw material mixing equipment and adopting a multi-stage mixing method, the problem of uneven mixing of colored Nixing pottery raw materials was solved, thus improving product quality.
Patent Information
- Application Number
- CN202423289590.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing colored Nixing pottery raw material mixing equipment has difficulty in fully mixing multiple raw materials during the stirring process, resulting in uneven mixing and affecting product quality.
The tank is equipped with a sleeve and an auger structure. Through a multi-stage mixing process, including preliminary mixing, secondary mixing and tertiary stirring, the reverse and forward rotation of the auger is used to achieve uniform mixing of various raw materials.
This process ensures thorough mixing of the raw materials for colored Nixing pottery, improves product quality, and guarantees the production quality of colored Nixing pottery.
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Figure CN223657293U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to color Xing pottery technical field, specifically related to a color Xing pottery raw material mixing device. BACKGROUND
[0002] The existing color Xing pottery raw material is east mud and west mud, when mixing the two, the mixing method generally adopts is that the powder of west mud and east mud is placed in the vertical barrel, then is mixed by the stirring blade, after mixing, the mixture can be poured, but because the stirring blade is limited, therefore it is difficult to make multiple raw materials fully mixed together, leading to uneven mixing, and further affecting the quality of color Xing pottery raw product.
[0003] Therefore, a color Xing pottery raw material mixing device is needed to solve the problem of difficulty in fully mixing multiple raw materials together, leading to uneven mixing and further affecting the quality of color Xing pottery raw product. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a color Xing pottery raw material mixing device to solve the problem raised in the background.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a color Xing pottery raw material mixing device, comprising a tank body, a plurality of sleeve pipes are fixed on the top surface of the inner side wall of the tank body in a circumferential distribution, a plurality of first rotating rods are movably connected to the top surface of the tank body in a circumferential distribution, a first auger is fixed to the bottom surface of the first rotating rod, the first auger is located in the sleeve pipe, a plurality of discharge holes are formed in the outer side wall of the sleeve pipe in a circumferential distribution, a first gear is fixed to the top of the outer side wall of the first rotating rod, and a synchronous assembly is arranged on the top surface of the tank body.
[0006] It should be noted in the scheme that the synchronous assembly comprises a limiting ring, the limiting ring is fixed to the edge of the top surface of the tank body, a toothed ring is movably clamped in the limiting ring, and a plurality of first gears are engaged with the toothed ring.
[0007] Further, the top surface of the tank body is fixed with a mounting plate, the outer side of the mounting plate is fixed with an external motor, the output end of the external motor is fixed with a second gear, and the second gear is engaged with the toothed ring.
[0008] Further, the bottom surface of the tank body is connected with a bottom barrel, and the inner side wall of the bottom barrel is movably connected with a second auger.
[0009] As a preferred embodiment, the top surface of the shaft of the second auger is fixed with a second rotating rod, and a plurality of stirring rods are fixed to the outer side wall of the second rotating rod in a circumferential distribution.
[0010] As a preferred implementation, a servo motor is fixed to the bottom surface of the bottom bucket, and an output end of the servo motor is fixed to the bottom surface of the shaft of the second auger.
[0011] As a preferred implementation, a discharge port is formed in the bottom of the outer lateral wall of the bottom bucket.
[0012] As a preferred implementation, a feeding pipe is connected to the outer lateral wall of the sleeve near the top, and the feeding pipe penetrates the top surface of the tank.
[0013] As a preferred implementation, a support frame is fixed to the bottom surface of the tank.
[0014] As a preferred implementation, the section of the limiting ring is L-shaped.
[0015] Compared with the prior art, the color Nixing pottery raw material mixing device has at least the following beneficial effects:
[0016] (1) The six feeding pipes are arranged to store the west mud and the east mud in the corresponding feeding pipes, the first auger is arranged to drive the east mud or the west mud in the feeding pipe and above the first auger to move downward, and the discharge holes are arranged to discharge the east mud or the west mud when the east mud or the west mud is driven by the first auger to move downward, so that the east mud or the west mud discharged from the discharge holes of other sleeves is stacked, falls on the inclined surface in the tank, and is accumulated again, thereby preliminarily mixing the west mud and the east mud, and avoiding the uneven mixing of the west mud and the east mud to affect the quality of the color Nixing pottery products.
[0017] (2) When the second auger is arranged to rotate in the reverse direction, the bottom bucket can be blocked to prevent the raw materials from being discharged from the discharge port, and the stirring rod can be driven to rotate when the second auger rotates, so that the west mud and the east mud can be mixed again, thereby further uniformly mixing the west mud and the east mud, and improving the quality of the color Nixing pottery products.
[0018] (3) When the second auger is arranged to rotate in the forward direction, the mixed raw materials can be driven by the second auger to be discharged from the discharge port, and the stirring rod can be driven to rotate, so that the raw materials can be stirred and mixed for the third time, thereby mixing the east mud and the west mud for the third time, and further improving the quality of the color Nixing pottery products. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a whole structure schematic view of the utility model;
[0020] Figure 2 It is a stirring rod structure schematic view of the utility model;
[0021] Figure 3For the utility model Figure 2 The partial enlarged structural schematic view of A;
[0022] Figure 4 The schematic view of the discharge hole structure of the utility model;
[0023] Figure 5 The schematic view of the discharge hole structure of the utility model.
[0024] In the drawing:
[0025] 100, tank body; 101, sleeve; 102, discharge hole; 103, first auger; 104, first rotating rod;
[0026] 200, limiting ring; 201, toothed ring; 202, second gear; 203, external motor; 204, mounting plate; 205, feed pipe
[0027] 300, bottom bucket; 301, second auger; 302, second rotating rod; 303, stirring rod;
[0028] 400, discharge hole; 401, servo motor;
[0029] 500, support frame. Specific implementation
[0030] Please refer to Figures 1-5 , the utility model provides a kind of colour Nianxing pottery raw material mixing equipment, including tank body 100, the inside wall top surface of the tank body 100 is fixed with several circumferentially distributed sleeve 101, the top surface of the tank body 100 is movably connected with several circumferentially distributed first rotating rod 104, the bottom surface of the first rotating rod 104 is fixed with first auger 103, the first auger 103 is located in the sleeve 101, the outside wall of the sleeve 101 is provided with several circumferentially distributed discharge hole 102, the top of the outside wall of the first rotating rod 104 is fixed with first gear 105, the top surface of the tank body 100 is provided with synchronous assembly.
[0031] Further as Figure 2 Shown, the synchronous assembly includes limiting ring 200, the limiting ring 200 is fixed at the top surface edge of the tank body 100, toothed ring 201 is movably clamped in the limiting ring 200, and a plurality of first gear 105 is engaged with the toothed ring 201.
[0032] By being provided with limiting ring 200, the position of toothed ring 201 can be movably limited, by being provided with toothed ring 201, a plurality of first gear 105 can be synchronously rotated, so that a plurality of first auger 103 can be synchronously rotated.
[0033] Further asFigure 2 As shown in the figure, the top surface of the tank body 100 is fixed with a mounting plate 204, one side surface of the mounting plate 204 is fixed with an external motor 203, the output end of the external motor 203 is fixed with a second gear 202, and the second gear 202 is engaged with the toothed ring 201.
[0034] The external motor 203 and the second gear 202 are arranged to enable the toothed ring 201 to rotate, thereby enabling the plurality of first gears 105 to rotate synchronously.
[0035] Further as shown in the figure, Figure 2 The bottom surface of the tank body 100 is connected with a bottom bucket 300, and the inner side wall of the bottom bucket 300 is movably connected with a second auger 301.
[0036] The second auger 301 is arranged to enable the mixed raw materials to be driven by the second auger 301 and then discharged from the discharge port 400.
[0037] The scheme has the following working process: when the raw materials are mixed, the east mud and the west mud are poured into the feeding pipe 205 one by one, so that the raw materials in the adjacent two feeding pipes 205 are east mud and west mud respectively, at this time, the west mud and the east mud are stacked on the top surface of the first auger 103, the servo motor 401 is started to make the output shaft of the servo motor 401 rotate reversely, thereby driving the second auger 301 to rotate, the second auger 301 drives the second rotating rod 302 to rotate, thereby driving the stirring rod 303 to rotate, then the external motor 203 is started, the external motor 203 drives the second gear 202 to rotate, the second gear 202 drives the toothed ring 201 to rotate, the toothed ring 201 drives the six first gears 105 to rotate, the first gears 105 drive the first rotating rod 104 to rotate, the first rotating rod 104 drives the first auger 103 to rotate, the first auger 103 rotates to drive the east mud and the west mud to move downward, and at the same time, the west mud and the east mud are discharged from the discharge hole 102, the discharged west mud and east mud fall on the inclined surface in the tank body 100 to be preliminarily mixed, and gradually accumulate at the bottom of the tank body 100, the stirring rod 303 rotates to drive the preliminarily mixed raw materials to rotate, thereby being mixed for the second time, after the mixing is completed, the servo motor 401 is operated to make the second auger 301 rotate forwardly, the second auger 301 drives the stirring rod 303 to rotate again, the raw materials are mixed for the third time under the driving action of the second auger 301 and are discharged from the discharge port 400, a storage bucket is arranged at the position of the discharge port 400, so that the mixed raw materials are discharged into the storage bucket.
[0038] According to the above working process can be known: by setting the six feed pipe 205, so that the west and east mud can be stored in the corresponding feed pipe 205, by setting the first auger 103, so that the east or west mud in the feed pipe 205 and above the first auger 103 can be driven down by the first auger 103, by setting the discharge hole 102, so that the east or west mud can be discharged from the discharge hole 102 when it is driven down by the first auger 103, and then form a stacking state with the west or east mud discharged from the discharge hole 102 on the other casing 101, fall on the inclined surface in the tank 100, and then accumulate again, so that the west and east mud can be preliminarily mixed, avoiding the uneven mixing of the west and east mud affecting the quality of the colored Nixing pottery products.
[0039] By setting the second auger 301 to reverse rotation, the bottom bucket 300 can be blocked, avoiding the raw materials from the discharge port 400, and at the same time, the second auger 301 can drive the stirring rod 303 to rotate, so that the west and east mud can be mixed again, thereby further mixing the west and east mud uniformly, improving the quality of the colored Nixing pottery products.
[0040] By setting the second auger 301 to rotate forward, the mixed raw materials can be driven out of the discharge port 400 by the second auger 301, and at the same time, the stirring rod 303 can be driven to rotate, so that the raw materials can be stirred and mixed for the third time, thereby mixing the east and west mud for the third time, further improving the quality of the colored Nixing pottery products.
[0041] Further as shown in Figure 2 The second rotating rod 302 is fixed on the top surface of the shaft of the second auger 301, and a plurality of stirring rods 303 are fixed on the outer side wall of the second rotating rod 302.
[0042] By setting the stirring rod 303, the raw materials preliminarily mixed in the tank 100 can be further mixed, thereby making the raw materials mixed more uniformly.
[0043] Further as shown in Figure 2 The servo motor 401 is fixed on the bottom surface of the bottom bucket 300, and the output end of the servo motor 401 is fixed with the bottom surface of the shaft of the second auger 301.
[0044] By setting the servo motor 401, the second auger 301 can rotate forward and reverse, and when rotating forward, the mixed raw materials can be driven out of the discharge port 400, and when rotating reverse, the bottom bucket 300 can be blocked, avoiding the raw materials from the tank 100.
[0045] Further as shown in Figure 2 The discharge port 400 is formed in the bottom of the outer side wall of the bottom bucket 300.
[0046] The mixed raw materials in the tank 100 can be discharged from the discharge port 400.
[0047] Further as Figure 2 shown, the outer wall of the sleeve 101 is connected with the feed pipe 205 at the position close to the top.
[0048] The raw materials can be discharged into the sleeve 101 from the feed pipe 205, so that the raw materials can be mixed.
[0049] Further as Figure 2 shown, the bottom surface of the tank 100 is fixed with the support frame 500.
[0050] The tank 100 can be supported by the support frame 500.
[0051] Further as Figure 2 shown, the limiting ring 200 has an L-shaped structure.
[0052] The L-shaped structure of the limiting ring 200 can limit the position of the toothed ring 201.
[0053] When the raw materials are mixed, the east mud and the west mud are poured into the feed pipe 205 one by one, so that the raw materials in the adjacent two feed pipes 205 are the east mud and the west mud respectively. At this time, the west mud and the east mud are stacked on the top surface of the first auger 103. The servo motor 401 is started, so that the output shaft of the servo motor 401 reversely rotates, thereby driving the second auger 301 to rotate. The rotation of the second auger 301 drives the second rotating rod 302 to rotate, thereby driving the stirring rod 303 to rotate. Then, the external motor 203 is started, and the rotation of the external motor 203 drives the second gear 202 to rotate, thereby driving the toothed ring 201 to rotate. The rotation of the toothed ring 201 drives the six first gears 105 to rotate, thereby driving the first rotating rod 104 to rotate. The rotation of the first rotating rod 104 drives the first auger 103 to rotate, so that the east mud and the west mud are driven downward by the first auger 103, and are discharged from the discharge hole 102. The discharged west mud and east mud fall on the inclined surface in the tank 100 and are preliminarily mixed, and gradually accumulate at the bottom of the tank 100. The rotation of the stirring rod 303 can drive the preliminarily mixed raw materials to rotate, thereby being mixed again. After the mixing is completed, the servo motor 401 is operated, so that the second auger 301 is positively rotated, thereby driving the stirring rod 303 to rotate again. The raw materials are mixed for the third time under the driving action of the second auger 301, and are discharged from the discharge port 400. The storage barrel is arranged at the position of the discharge port 400, so that the mixed raw materials are discharged into the storage barrel.
[0054] The external motor 203 and the servo motor 401 can be purchased in the market, and are mature technologies in the field, which are fully disclosed, and thus are not repeated here.
[0055] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made thereto without departing from the principles and spirit of the application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A mixing device for colored Nixing pottery raw materials, comprising a tank (100), characterized in that, The inner sidewall of the tank (100) is fixed with a plurality of circumferentially distributed sleeves (101). The top surface of the tank (100) is movably connected with a plurality of circumferentially distributed first rotating rods (104). The bottom surface of the first rotating rods (104) is fixed with a first auger (103). The first auger (103) is located inside the sleeves (101). The outer sidewall of the sleeves (101) is provided with a plurality of circumferentially distributed discharge holes (102). The top of the outer sidewall of the first rotating rods (104) is fixed with a first gear (105). The top surface of the tank (100) is provided with a synchronization component.
2. The colored Nixing pottery raw material mixing equipment according to claim 1, characterized in that: The synchronization component includes a limiting ring (200), which is fixed to the edge of the top surface of the tank (100). A toothed ring (201) is movably engaged inside the limiting ring (200), and several first gears (105) mesh with the toothed ring (201).
3. The colored Nixing pottery raw material mixing equipment according to claim 2, characterized in that: The top surface of the tank (100) is fixed with an installation plate (204), and an external motor (203) is fixed on one side of the installation plate (204). A second gear (202) is fixed at the output end of the external motor (203), and the second gear (202) meshes with the toothed ring (201).
4. The colored Nixing pottery raw material mixing equipment according to claim 3, characterized in that: The bottom surface of the tank (100) is connected to a bottom barrel (300), and the bottom surface of the inner side wall of the bottom barrel (300) is movably connected to a second auger (301).
5. The colored Nixing pottery raw material mixing equipment according to claim 4, characterized in that: The second auger (301) has a second rotating rod (302) fixed on its shaft top surface, and a number of circumferentially distributed stirring rods (303) are fixed on the outer side wall of the second rotating rod (302).
6. The colored Nixing pottery raw material mixing equipment according to claim 5, characterized in that: A servo motor (401) is fixed to the bottom surface of the bottom barrel (300), and the output end of the servo motor (401) is fixed to the bottom surface of the shaft of the second auger (301).
7. The colored Nixing pottery raw material mixing equipment according to claim 6, characterized in that: The bottom of the outer wall of the bottom barrel (300) is provided with a discharge port (400).
8. The colored Nixing pottery raw material mixing equipment according to claim 7, characterized in that: A feed pipe (205) is connected through the outer wall of the sleeve (101) near the top position, and the feed pipe (205) passes through the top surface of the tank body (100).
9. The colored Nixing pottery raw material mixing equipment according to claim 8, characterized in that: A support frame (500) is fixed to the bottom surface of the tank (100).
10. A colored Nixing pottery raw material mixing device according to claim 9, characterized in that: The limiting ring (200) has an L-shaped cross-section.