Ceramic tile mosaic raw material processing equipment
By designing a screening box and mixing chamber for processing ceramic tile mosaic raw materials, the problem of large-particle raw materials affecting product quality and low mixing efficiency has been solved. This has enabled efficient screening and uniform mixing, thereby improving the production quality and efficiency of mosaic tiles.
Patent Information
- Application Number
- CN202520369641.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-03-05
AI Technical Summary
The production process of mosaic tiles suffers from problems such as unscreened large-particle raw materials affecting product quality and low mixing efficiency.
A ceramic tile mosaic raw material processing device was designed, which includes a screening box and a mixing chamber. Large particles are screened by a spiral pusher, and the mixture is stirred by a motor-driven stirring rod. The raw material input is controlled by a quantitative mechanism to ensure uniform mixing.
This method enables efficient screening and thorough mixing of raw materials, improves product quality and mixing efficiency, avoids the impact of large particles, and ensures uniformity of the mixing effect.
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Figure CN223737213U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a ceramic tile production equipment technical field especially relates to a kind of ceramic tile mosaic raw material processing equipment. BACKGROUND
[0002] Mosaic ceramic tile is a kind of brick of special existence mode, generally by dozens of small pieces of brick form a relatively large brick.It is widely used in indoor small area ground, wall and outdoor large wall and ground with the characteristics of small and exquisite, multicolored.It can be used as some puzzles due to small size, and produce gradual change effect.
[0003] And mosaic ceramic tile needs to mix a plurality of raw materials together in production and processing process, but in its raw material, there can be some large particles or block raw materials, to affect production effect after mixing, and now all pour together directly during mixing, so that the mixing efficiency is not high.
[0004] Therefore, a kind of mosaic ceramic tile raw material processing device for screening and mixing is proposed. INVENTION CONTENTS
[0005] (One) technical problem to be solved
[0006] In order to overcome the deficiencies of prior art, a kind of ceramic tile mosaic raw material processing equipment is proposed to solve the problems of large particle raw materials affecting product production quality and low mixing efficiency in the production process of mosaic ceramic tile.
[0007] (Two) technical scheme
[0008] The utility model discloses a kind of ceramic tile mosaic raw material processing equipment, including the box of upper end opening,
[0009] The middle part of the box is provided with middle partition plate, which forms first stirring cavity and second stirring cavity at upper and lower ends in the box, the bottom of the one side of the middle partition plate is provided with first discharge port, and the inside of the first discharge port is provided with electromagnetic valve one, and the lower end of the first discharge port is installed with quantitative mechanism, and the bottom of the quantitative mechanism is penetrated to the side of second stirring cavity by second discharge port;
[0010] The bottom of the box is installed with first motor by mounting box, the middle part of the first stirring cavity and the second stirring cavity is connected with rotating shaft that penetrates up and down by bearing, and the output end of the first motor is connected with the bottom end of the rotating shaft, the rotating shaft is symmetrically connected with first stirring rod at the inside of the first stirring cavity, the rotating shaft is symmetrically connected with second stirring rod at the inside of the second stirring cavity, the outside of the second stirring cavity is also provided with external material receiving port at upper end, the lower end of the second stirring cavity is provided with discharge port on one side.
[0011] The screening box is connected to the upper opening of the box body, the transmission cavity is arranged in the screening box, a filter screen is arranged at the lower end of the transmission cavity and located at the upper opening of the box body, a screw push rod is connected to the transmission cavity through a bearing, a feeding port is arranged at the upper end of one side of the transmission cavity, a dropping port is arranged at the lower end of the other side of the transmission cavity, and a second motor is arranged on the other side of the screening box through a mounting box and connected to the screw push rod.
[0012] Further, the upper end surface of the middle partition plate is arranged to be inclined downward relative to the bottom end surface in the box body, and the inclined bottom end of the middle partition plate is connected to the first discharging port, and the inclined bottom end of the box body is connected to the discharging port.
[0013] Further, a control panel is arranged on the outside of the box body, and supporting legs are arranged on the bottom end surface of the box body.
[0014] Further, the first stirring rod is symmetrically connected with a connecting force rod, and the connecting force rod is provided with a brush and is in contact with the inner wall of the first stirring cavity.
[0015] Further, the second stirring rod is symmetrically connected with a scraper and is in contact with the inner wall of the second stirring cavity.
[0016] Further, the screening box is provided with at least two transmission cavities.
[0017] Further, the dosing mechanism comprises a dosing box arranged on the outside of the box body, the first discharging port penetrates the top end of the dosing box, a receiving box is arranged in the dosing box and opens at the upper end, the bottom end of the receiving box is connected to the dosing box through a pressure sensor, a discharging port penetrates the dosing box and is arranged at the bottom end of the receiving box, a second electromagnetic valve is arranged in the discharging port, and the discharging port is connected to the second discharging port.
[0018] (Three) beneficial effects
[0019] Compared with the prior art, the utility model has the following beneficial effects:
[0020] In the utility model, the raw materials are poured into the transmission cavity in the screening box through the feeding port, the raw materials are screened when passing through the filter screen under the pushing of the screw push rod, the large-particle raw materials are discharged through the dropping port, and the qualified raw materials are dropped into the box body, so that the screening of the raw materials is realized, the product quality is not affected, and the product quality is improved.
[0021] The utility model discloses a first agitating cavity and a second agitating cavity are arranged in the box body, and an external material receiving port is arranged at the corresponding position of the second agitating cavity, the powder raw material is agitated through the first agitating cavity first, then is input into the second agitating cavity after quantitative weighing, and the external quantitative liquid is input into the second agitating cavity under the action of the external material receiving port at the lower end to carry out the agitating work, so that the raw material is more fully agitated, the mixing effect is better, and the mixing quality is improved. BRIEF DESCRIPTION OF DRAWINGS
[0022] Other features, objects and advantages of the utility model will become more apparent from the following detailed description of non-limiting embodiments with reference to the attached drawings:
[0023] Figure 1 It is the structural schematic diagram of the utility model;
[0024] Figure 2 It is the internal structure schematic diagram of the utility model;
[0025] Figure 3 It is the internal overhead structure schematic diagram of the utility model screening box;
[0026] Figure 4 It is the internal structure schematic diagram of the utility model quantitative mechanism;
[0027] In the drawing: box body 1, support foot 2, control panel 3, discharge port 4, screening box 5, feed inlet 6, mounting box 7, middle partition 8, rotating shaft 9, first agitating rod 10, connecting stress rod 11, brush 12, second agitating rod 13, scraper 14, first motor 15, transmission cavity 16, screw push rod 17, filter screen 18, second motor 19, drop port 110, first discharge port 111, quantitative box 112, second discharge port 113, storage box 114, pressure sensor 115, discharge port 116, electromagnetic valve two 117. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the following is in combination with the drawing and example, and the utility model is further detailedly explained.It should be understood that the specific example described here is only used to explain the utility model, and is not used to limit the utility model.
[0029] Please refer to Figures 1-3 The utility model provides a kind of ceramic tile mosaic raw material processing equipment, including the box body 1 of upper end opening, it is convenient to enter the raw material after screening into the box body 1 inside, control panel 3 is installed on the outside of box body 1, according to the control panel of external procurement of use demand, it is convenient to operate device, box body 1 bottom end surface is equipped with support foot 2 to heighten device in this way to facilitate discharging work.
[0030] The middle part of the box 1 is provided with a middle partition plate 8 to form a first stirring cavity and a second stirring cavity at the upper and lower ends of the box 1, so as to perform two stirring operations. The first stirring cavity can stir the screened raw materials to make the dispersion of the raw materials more complete. The bottom end of one side of the middle partition plate 8 is provided with a first discharge port 111 to facilitate the output of the more completely dispersed raw materials. The upper end surface of the middle partition plate 8 is inclined downward relative to the bottom end surface of the box 1 to make the downward discharge more convenient and rapid. The inclined bottom end of the middle partition plate 8 is connected with the first discharge port 111 to discharge downward. An electromagnetic valve one is arranged in the first discharge port 111 to facilitate the control of the discharging progress. A quantitative mechanism is arranged at the lower end of the first discharge port 111 to quantitatively weigh the raw materials. The bottom end of the quantitative mechanism penetrates through one side of the second stirring cavity through a second discharge port 113 to facilitate the input of the quantitatively weighed raw materials into the second stirring cavity for stirring. A first motor 15 is arranged at the bottom end of the box 1 through a mounting box 7. A rotating shaft 9 penetrating through the first stirring cavity and the second stirring cavity is connected with the middle part of the first stirring cavity and the second stirring cavity through bearings. The output end of the first motor 15 is connected with the bottom end of the rotating shaft 9. The first stirring rod 10 is symmetrically connected with the rotating shaft 9 in the first stirring cavity. The second stirring rod 13 is symmetrically connected with the rotating shaft 9 in the second stirring cavity. The first stirring rod 10 and the second stirring rod 13 can simultaneously perform stirring work under the driving of the first motor 15, so that the stirring effect is better and the efficiency is higher. A discharge port 4 is arranged at one side of the lower end of the second stirring cavity. The inclined bottom end of the box 1 is connected with the discharge port 4 to facilitate the discharge of the mixed raw materials.
[0031] A screening box 5 is connected with the opening at the upper end of the box 1. The screening box 5 is provided with a transmission cavity 16. At least two transmission cavities 16 are arranged in the screening box 5 to screen more raw materials at a time and make the screening effect better. A filter screen 18 is arranged at the lower end of the transmission cavity 16 and located at the upper end of the opening of the box 1. A screw push rod 17 is connected with the transmission cavity 16 through bearings. An inlet 6 is arranged at the upper end of one side of the transmission cavity 16. A dropping port 110 is arranged at the lower end of the other side of the transmission cavity 16. A second motor 19 is arranged at the other side of the screening box 5 through a mounting box 7. The output end of the second motor 19 is connected with the screw push rod 17. The screw push rod 17 is driven to rotate by the second motor 19 to push the raw materials entering the inlet 6. When the raw materials pass through the filter screen 18, the qualified raw materials drop downward into the first stirring cavity of the box, and the unqualified raw materials are discharged through the dropping port 110.
[0032] Preferably, the first stirring rod 10 is symmetrically connected with a connecting force rod 11 outside, the connecting force rod 11 is provided with a brush 12 outside and is in contact with the inner wall of the first stirring cavity, the second stirring rod 13 is symmetrically connected with a scraper 14 outside and is in contact with the inner wall of the second stirring cavity, the brush 12 and the scraper 14 can brush the inner wall of the first stirring cavity and the second stirring cavity, so as to avoid the situation that the raw materials adhere to the inner wall and cause subsequent cleaning inconvenience.
[0033] Please refer to Figure 4 The quantitative mechanism includes a quantitative tank 112 mounted on the outside of the box body 1, and the first discharge port 111 penetrates the top end of the quantitative tank 112, so as to facilitate the input of the dispersed raw materials in the first stirring cavity into the quantitative tank 112 for weighing work, a receiving tank 114 with an open top inside the quantitative tank 112, and the bottom end of the receiving tank 114 is connected with the quantitative tank 112 through a pressure sensor 115, the weight of the receiving tank 114 is detected through the pressure sensor 115, so that when it reaches the set value, the electromagnetic valve one inside the first discharge port 111 is closed to stop the downward discharging work, and the quantitative effect is realized, the bottom end of the receiving tank 114 is provided with a discharging port 116 penetrating the quantitative tank 112, and the discharging port 116 is internally provided with an electromagnetic valve two 117, the discharging port 116 is connected with the second discharge port 113, then the electromagnetic valve two 117 is opened after quantification to input the quantified raw materials into the second stirring cavity through the discharging port 116 and the second discharge port 113 for stirring work, and the outside of the second stirring cavity is also provided with an external receiving port at the upper end, so as to pour the liquid which does not need to be screened into the inside for stirring, so as to make the stirring effect better.
[0034] Working principle: in use, first, the first motor 15, the second motor 19, the electromagnetic valve one, the electromagnetic valve two 118 and the control panel 3 are connected, and an external power supply is connected, the raw materials are poured into the screening tank 5 inside through the feeding port 6, the raw materials are moved in the transmission cavity 16 under the driving of the screw push rod 17 of the second motor 19, so that the filtering work is performed under the action of the filter screen 18, and the large particle raw materials after filtering are discharged through the dropping port 110, then the raw materials falling into the box body 1 are stirred by the first stirring rod 10 under the rotation of the rotating shaft 9 driven by the first motor 15, so that the screened raw materials are more dispersed, and the subsequent stirring effect is better, then the electromagnetic valve one of the first discharge port 111 is opened to input the stirred raw materials into the lower quantitative tank 112, the raw materials are weighed under the action of the pressure sensor 115, after reaching the set value, the electromagnetic valve one is closed, the electromagnetic valve two 117 is opened to input the raw materials into the second stirring cavity through the second discharge port 113, and the raw materials are stirred under the action of the second stirring rod 13, and the liquid can be input through the external receiving port, so as to stir and mix the raw materials, then the raw materials are discharged through the discharge port 4, so as to complete the work.
[0035] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A tile mosaic raw material processing equipment, comprising an open-ended box (1), characterized in that; the middle part of the box (1) is provided with a middle partition plate (8) to form a first stirring cavity and a second stirring cavity at the upper and lower ends of the box (1), one side of the bottom end of the middle partition plate (8) is provided with a first discharge port (111), an electromagnetic valve one is arranged in the first discharge port (111), a quantitative mechanism is arranged at the lower end of the first discharge port (111), and the bottom end of the quantitative mechanism penetrates through the side of the second stirring cavity through a second discharge port (113); the bottom end of the box (1) is provided with a first motor (15) through a mounting box (7), the middle parts of the first stirring cavity and the second stirring cavity are connected with a rotating shaft (9) penetrating through the upper and lower parts through a bearing, the output end of the first motor (15) is connected with the bottom end of the rotating shaft (9), the rotating shaft (9) is symmetrically connected with a first stirring rod (10) at the position in the first stirring cavity, the rotating shaft (9) is symmetrically connected with a second stirring rod (13) at the position in the second stirring cavity, an external material receiving port is arranged at the upper end of the outer side of the second stirring cavity, and a discharge port (4) is arranged at the side of the lower end of the second stirring cavity; the upper end opening of the box (1) is covered and connected with a screening box (5), the screening box (5) is provided with a transmission cavity (16) inside, the transmission cavity (16) is provided with a filter screen (18) at the lower end and located at the upper end of the opening of the box (1), the transmission cavity (16) is connected with a screw push rod (17) through a bearing inside, the transmission cavity (16) is provided with an inlet (6) at the upper end of one side, and the transmission cavity (16) is provided with a falling port (110) at the lower end of the other side; the other side of the screening box (5) is provided with a second motor (19) through a mounting box (7), and the output end of the second motor (19) is connected with the screw push rod (17).
2. A ceramic tile mosaic raw material processing apparatus according to claim 1, characterized in that: The upper end surface of the middle partition plate (8) and the bottom end surface inside the box (1) are arranged in an inclined downward manner, the inclined bottom end of the middle partition plate (8) is connected with the first discharge port (111), and the inclined bottom end of the box (1) is connected with the discharge port (4).
3. A ceramic tile mosaic raw material processing apparatus according to claim 1, characterized in that: A control panel (3) is arranged on the outer side of the box (1), and a supporting leg (2) is arranged on the bottom end surface of the box (1).
4. A ceramic tile mosaic raw material processing apparatus according to claim 1, characterized in that: The first stirring rod (10) is symmetrically connected with a connecting force rod (11) on the outer side, and the connecting force rod (11) is provided with a brush (12) in contact with the inner wall of the first stirring cavity.
5. A ceramic tile mosaic raw material processing apparatus according to claim 1, characterized in that: The second stirring rod (13) is symmetrically connected with a scraper (14) on the outer side in contact with the inner wall of the second stirring cavity.
6. A ceramic tile mosaic raw material processing apparatus according to claim 1, characterized in that: At least two transmission cavities (16) are arranged in the screening box (5).
7. A ceramic tile mosaic raw material processing apparatus according to claim 1, characterized in that: The quantitative mechanism includes a quantitative tank (112) installed outside the box (1), and the first discharge port (111) penetrates the top end of the quantitative tank (112), the inside upper end of the quantitative tank (112) is opened to accommodate the tank (114), the bottom end of the tank (114) is connected with the quantitative tank (112) through the pressure sensor (115), the bottom end of the tank (114) is provided with the discharging port (116) penetrating the quantitative tank (112), and the inside of the discharging port (116) is provided with the electromagnetic valve two (117), and the discharging port (116) is connected with the second discharge port (113).