Drying and stirring device for diatom ooze production
By designing a drying and mixing device for diatomaceous earth production that includes stirring, drying, vibration, and separation mechanisms, the problems of diatomaceous earth adhesion and low drying efficiency have been solved, achieving efficient diatomaceous earth drying and separation effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-03-06
AI Technical Summary
Existing drying and mixing devices tend to cause diatomaceous earth to stick together during use, resulting in poor drying efficiency. Furthermore, the lack of a separation structure for large pieces of diatomaceous earth affects the mixing effect.
A device comprising a stirring mechanism, a drying mechanism, a vibration mechanism, and a separation mechanism was designed. Through the cooperation of the guide and separation components, the diatomaceous earth is rotated, stirred, and separated. Combined with the vibration function of the vibration component, adhesion is avoided and drying efficiency is improved.
This improved the drying efficiency of diatomaceous earth, prevented sticking, and enhanced the practicality of the device.
Smart Images

Figure CN223973979U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of drying equipment, and more specifically, it relates to a drying and stirring device for diatom mud production. Background Technology
[0002] Diatomaceous earth wall covering is an environmentally friendly interior wall decoration material made primarily from diatomaceous earth. It has functions such as eliminating formaldehyde, purifying the air, regulating humidity, releasing negative oxygen ions, fire resistance, self-cleaning, sterilization, and deodorization. During the production process, diatomaceous earth wall covering needs to be dried, which requires the use of this device.
[0003] Based on existing technology, it has been found that existing drying and stirring devices can only rotate and stir diatomaceous earth during use. A large amount of diatomaceous earth sticks together, resulting in poor drying efficiency. There is no structure for separating large pieces of diatomaceous earth. In addition, the diatomaceous earth is sticky before drying and easily adheres to the inner wall of the device. It is not easy to remove during stirring, which affects the stirring and drying of diatomaceous earth and makes it impractical. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a drying and mixing device for diatomaceous earth production. This solves the problems of existing drying and mixing devices, which only rotate and mix the diatomaceous earth, resulting in a large amount of diatomaceous earth sticking together, poor drying efficiency, lack of a structure for separating large pieces of diatomaceous earth, and the fact that the diatomaceous earth is sticky before drying and easily adheres to the inner wall of the device, making it difficult to remove during mixing and affecting the mixing and drying process, thus resulting in poor practicality.
[0005] This utility model discloses a drying and mixing device for diatomaceous earth production, which is achieved through the following specific technical means:
[0006] A drying and mixing device for diatomaceous earth production includes a mixing mechanism, a drying mechanism, a vibration mechanism, and a separation mechanism;
[0007] The stirring mechanism is installed between the drying mechanisms; a vibration mechanism is installed on the drying mechanism; the vibration mechanism is located at the bottom of the stirring mechanism; the separation mechanism is installed inside the stirring mechanism.
[0008] The stirring mechanism includes: a main body, on which are provided locking teeth; and a guide component installed on the inner wall of the main body;
[0009] The drying mechanism includes: a mounting component, which is rotatably connected to the left and right sides of the main body; the mounting component is fixedly mounted on a support component; a motor is provided on the top front side of the support component; a gear is mounted on the output shaft of the motor of the support component; the gear meshes with a locking gear on the main body;
[0010] The vibration mechanism includes: a movable component, which is slidably mounted inside a circular hole on a support component via a bottom cylindrical rod; the bottom of the movable component is connected to the support component via a spring; and a vibrating element is provided on the top of the movable component.
[0011] Furthermore, the guide member is configured as an arc-shaped structure; the top side of the guide member is configured as an incline.
[0012] Furthermore, the mounting components are provided in two sets, left and right; the top of the left mounting component is provided with a chimney; and the inside of the right mounting component is provided with a resistance heater.
[0013] Furthermore, the drying mechanism also includes: a feed inlet, a discharge outlet, a blower, and a cam;
[0014] The feed inlet is located at the top of the left mounting component; the discharge outlet is located at the bottom of the right mounting component; the blower is fixedly installed on the right side of the support component; the cam is connected to the motor output shaft on the support component; the top of the cam is in contact with the middle position of the bottom of the moving component.
[0015] Furthermore, the top of the vibrating element is provided with a spherical protrusion; the vibrating element is located at the bottom of the main body.
[0016] Furthermore, the separation mechanism includes: a fixing component and a separating component;
[0017] The fixing component is fixedly installed on both sides inside the main body; the separating component is a circular ring structure; the separating component is provided with triangular protrusions; the separating component is located between the guide components; the two sides of the separating component are connected to the fixing component.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. In this device, a guide and a separator are provided. The guide is fixedly installed on the inner wall of the main body, while the separator is installed between the fixed parts. During use, the material is added into the installation part through the feed port. The main body is installed at an angle, allowing the diatomaceous earth to fall. The motor on the support part drives the gear to rotate. The gear meshes with the teeth on the main body, thereby driving the main body to rotate. The diatomaceous earth comes into contact with the guide, causing the guide to rotate and fall from the top. At the same time, the falling diatomaceous earth comes into contact with the separator, causing the separator to rotate. The separator has triangular protrusions that can separate large pieces of diatomaceous earth when they come into contact with it, breaking them into smaller pieces, improving the contact between the diatomaceous earth and the hot air, and improving the drying efficiency.
[0020] 2. In this device, a cam and a vibrating element are provided. The cam is connected to the motor on the support, while the vibrating element is fixedly installed on the top of the moving part. In use, the motor drives the cam to rotate, and the cam contacts the moving part, thereby causing the arc-shaped protrusion on the cam to contact the moving part. This causes the moving part and the vibrating element to move upward and stretch the spring. When the spherical protrusion on the top of the vibrating element contacts the main body, it strikes the bottom of the main body, causing the bottom of the main body to vibrate. This loosens the diatomaceous earth from the inner wall of the main body, preventing it from sticking together. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the main structure of this utility model.
[0022] Figure 2 This is a rear-view three-dimensional structural diagram of the present invention.
[0023] Figure 3 This is a partially sectional three-dimensional structural schematic diagram of this utility model.
[0024] Figure 4 This is an exploded three-dimensional structural diagram of the vibration mechanism and drying mechanism of this utility model.
[0025] In the diagram, the correspondence between component names and drawing numbers is as follows:
[0026] 1. Mixing mechanism; 101. Main body; 102. Guide component; 2. Drying mechanism; 201. Mounting component; 202. Support component; 203. Feed inlet; 204. Discharge outlet; 205. Blower; 206. Cam; 207. Gear; 3. Vibration mechanism; 301. Moving component; 302. Vibrating component; 4. Separation mechanism; 401. Fixing component; 402. Separating component. Detailed Implementation
[0027] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.
[0028] Example:
[0029] As attached Figure 1 To be continued Figure 4 As shown:
[0030] This utility model provides a drying and stirring device for diatom mud production, including a stirring mechanism 1, a drying mechanism 2, a vibration mechanism 3 and a separation mechanism 4;
[0031] A stirring mechanism 1 is installed between drying mechanisms 2; a vibration mechanism 3 is installed on the drying mechanism 2; the vibration mechanism 3 is located at the bottom of the stirring mechanism 1; a separation mechanism 4 is installed inside the stirring mechanism 1.
[0032] The mixing mechanism 1 includes: a main body 101, on which a retaining tooth is provided; the main body 101 is used to mesh with a gear 207 through the retaining tooth, thereby driving the main body 101 to rotate through the gear 207, and driving the diatom mud to rotate and be mixed through the guide member 102; the main body 101 is installed at an angle to ensure that the material can slide slowly from left to right; the guide member 102 is installed on the inner wall of the main body 101;
[0033] The drying mechanism 2 includes: a mounting component 201, which is rotatably connected to the left and right sides of the main body 101; the mounting component 201 is used to rotatably mount the main body 101; the mounting component 201 is fixedly mounted on the support component 202; a motor is provided on the front top of the support component 202; the support component 202 is driven to rotate by the motor mounted on the front side to drive the gear 207 to rotate; the gear 207 is mounted on the output shaft of the motor of the support component 202; the gear 207 meshes with the teeth on the main body 101; the gear 207 is used to rotate by the motor on the support component 202, thereby driving the main body 101 to rotate by meshing with the teeth on the main body 101, thereby assisting in the stirring of the diatom mud and accelerating the drying speed of the material;
[0034] The vibration mechanism 3 includes: a movable part 301, which is slidably mounted inside a circular hole on the support 202 via a bottom cylindrical rod; the bottom of the movable part 301 is connected to the support 202 via a spring; the movable part 301 is used to contact the arc-shaped protrusion on the cam 206, thereby driving the movable part 301 and the vibrating part 302 to move upward, and through the action of the spring, the movable part 301 can move back and forth, and the vibrating part 302 contacts and strikes the bottom of the main body 101, thereby loosening the diatomaceous earth that is stuck to the inner wall of the main body 101, avoiding adhesion and affecting the mixing effect; the top of the movable part 301 is provided with the vibrating part 302.
[0035] Among them, such as Figure 3 As shown, the guide 102 is set as an arc-shaped structure; the top side of the guide 102 is set as inclined; the guide 102 here is used to drive the diatom mud to rotate, and can guide it to fall when it rotates to the top, so as to achieve the stirring effect of the material and accelerate the drying effect of the material.
[0036] The mounting component 201 has two sets, left and right. The top of the left mounting component 201 is equipped with a chimney. The chimney on the mounting component 201 is used to exhaust exhaust gas. The right mounting component 201 is equipped with a resistance heater. The resistance heater is used to electrically heat objects by utilizing the heat energy generated by the Joule effect of the current flowing through the conductor after being energized. This is a mature existing technology. As can be seen from the figure, the falling material cannot touch the electric heater.
[0037] Among them, such as Figure 4 As shown, the drying mechanism 2 also includes: a feed inlet 203, a discharge outlet 204, a blower 205, and a cam 206; the feed inlet 203 is located at the top of the left mounting component 201; the feed inlet 203 is used to feed materials; the discharge outlet 204 is located at the bottom of the right mounting component 201; the discharge outlet 204 is used to discharge materials; the blower 205 is fixedly installed on the right side of the support component 202; the blower 205 is used to blow external air into the main body 101 by the power of the rotating impeller blades, and the air generates hot air when passing through the resistance heater, thereby contacting the diatomaceous earth and heating it; the cam 206 is connected to the motor output shaft on the support component 202; the top of the cam 206 contacts the middle position of the bottom of the moving component 301; the cam 206 is used to rotate by the motor, and then contact the moving component 301 through the arc-shaped protrusion, driving the moving component 301 to move.
[0038] Among them, such as Figure 4 As shown, the vibrating element 302 has a spherical protrusion on its top; the vibrating element 302 is located at the bottom of the main body 101; the spherical protrusion on the vibrating element 302 can strike the main body 101 when it comes into contact with the bottom of the main body 101, causing the main body 101 to vibrate, thereby loosening the diatomaceous earth and preventing it from sticking together.
[0039] Among them, such as Figure 3 As shown, the separation mechanism 4 includes: a fixing member 401 and a separating member 402; the fixing member 401 is fixedly installed on both sides inside the main body 101; the fixing member 401 is used to install the separating member 402; the separating member 402 has a circular ring structure; the separating member 402 is provided with a triangular protrusion; the separating member 402 is located between the guide members 102; the two sides of the separating member 402 are connected to the fixing member 401; the separating member 402 is used to decompose the diatomaceous earth into smaller pieces when it comes into contact with the falling large pieces of diatomaceous earth through the provided triangular protrusion, thereby improving the contact between the diatomaceous earth and the hot air and improving the drying efficiency.
[0040] The specific usage and function of this embodiment are as follows:
[0041] In this invention, the material is fed into the mounting component 201 through the feed inlet 203. The main body 101 is installed at an angle, allowing the diatomaceous earth to slide to the right. Heat is generated by the resistance heater on the right mounting component 201 and blown into the main body 101 by the blower 205, thus drying the diatomaceous earth. The motor on the support component 202 drives the gear 207 to rotate. The gear 207 meshes with the teeth on the main body 101, causing the main body 101 to rotate. The motor also drives the cam 206 to rotate. The cam 206 contacts the moving component 301, causing the arc-shaped protrusion on the cam 206 to contact the moving component 301, thereby moving the moving component 301 and the vibrating component 302 upward and pulling them together. When the spherical protrusion on the top of the vibrating element 302 contacts the main body 101, it strikes the bottom of the main body 101, causing the bottom of the main body 101 to vibrate. This loosens the contact between the diatomaceous earth and the inner wall of the main body 101. The diatomaceous earth then contacts the guide element 102, causing the guide element 102 to rotate and fall from above, thus completing the stirring of the diatomaceous earth and improving the drying speed. At the same time, when the diatomaceous earth falls, it contacts the separating element 402 and causes the separating element 402 to rotate. The triangular protrusion on the separating element 402 can separate large pieces of diatomaceous earth when it contacts the diatomaceous earth, breaking them into smaller pieces. This increases the contact between the diatomaceous earth and the hot air, improving the drying efficiency. The dried diatomaceous earth falls from the discharge port 204, completing the drying process.
Claims
1. A drying and stirring device for diatom ooze production, characterized by: Including stirring mechanism (1), drying mechanism (2), vibration mechanism (3) and separation mechanism (4); The stirring mechanism (1) is installed between the drying mechanism (2), the vibration mechanism (3) is installed on the drying mechanism (2), the vibration mechanism (3) is at the bottom of the stirring mechanism (1), and the separation mechanism (4) is installed in the stirring mechanism (1); The stirring mechanism (1) comprises a main body (101), the main body (101) is provided with a clamping tooth, and a guide piece (102) is installed on the inner wall of the main body (101); The drying mechanism (2) comprises a mounting piece (201), the mounting piece (201) is rotatably connected to the left and right sides of the main body (101), the mounting piece (201) is fixedly installed on a support piece (202), the support piece (202) is provided with a motor on the top front side, a gear (207) is installed on the motor output shaft of the support piece (202), and the gear (207) is engaged with the clamping tooth on the main body (101). The vibration mechanism (3) comprises a moving piece (301), the moving piece (301) is slidably installed in the circular hole on the support piece (202) through the bottom cylindrical rod, the moving piece (301) is connected to the support piece (202) through a spring at the bottom, and a vibrating piece (302) is arranged on the top of the moving piece (301).
2. The drying and stirring device for diatom ooze production according to claim 1, characterized in that: The guide piece (102) is arranged in an arc-shaped structure, and the top side of the guide piece (102) is arranged in an inclined shape.
3. The drying and stirring device for diatom ooze production according to claim 1, characterized in that: The mounting piece (201) is provided with two groups of left and right mounting pieces, the left mounting piece (201) is provided with a smoke pipe on the top, and the right mounting piece (201) is provided with a resistance heater in the inside.
4. The drying and stirring device for diatom ooze production according to claim 1, characterized in that: The drying mechanism (2) further comprises a feeding port (203), a discharging port (204), a blower (205) and a cam (206). The feeding port (203) is arranged on the top of the left mounting piece (201), the discharging port (204) is arranged on the bottom of the right mounting piece (201), the blower (205) is fixedly installed on the right side of the support piece (202), the cam (206) is connected to the motor output shaft on the support piece (202), and the top of the cam (206) is in contact with the middle position of the bottom of the moving piece (301).
5. The drying and stirring device for diatom ooze production according to claim 1, characterized in that: The vibrating piece (302) is provided with a spherical protrusion on the top, and the vibrating piece (302) is arranged at the bottom of the main body (101).
6. The drying and stirring device for diatom ooze production according to claim 1, characterized in that: The separation mechanism (4) comprises a fixing piece (401) and a separation piece (402); The fixing piece (401) is fixedly installed on the inside of the main body (101), the separation piece (402) is in a circular ring structure, the separation piece (402) is provided with a triangular protrusion, the separation piece (402) is between the guide pieces (102), and the separation piece (402) is connected to the fixing piece (401) on the two sides.