Efficient cooling liquid release agent stirring device
By combining the design of an annular moving component and a rotating drum scraper, the problem of mediocre mixing effect caused by the distance between the blades and the inner wall in traditional coolant release agent mixing devices is solved, achieving efficient mixing of coolant and cleaning of the inner wall, and improving the overall mixing efficiency.
Patent Information
- Application Number
- CN202423003194.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Traditional coolant release agent mixing devices generally have poor mixing effects due to the gap between the blades and the inner wall of the mixing device.
A high-efficiency coolant release agent mixing device is designed. It uses a ring-shaped moving component to drive the stirring blades to move in a ring. Combined with a rotating cylinder and scraper, it realizes dual stirring of the stirring blades and cleaning of the inner wall. The ring-shaped electric slide rail and motor drive the rotating rod to drive the stirring blades and scraper to move in a ring, thereby improving the stirring effect and cleaning efficiency.
It achieves dual agitation of coolant and release agent, improving the stirring effect, and integrates the agitation and cleaning mechanisms, thereby improving the overall efficiency and cleaning effect of the agitation device.
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Figure CN223490776U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coolant release agent stirring, specifically a high-efficiency coolant release agent stirring device. Background Technology
[0002] According to publicly available patent 202122108184.1, a high-efficiency production equipment for a release agent with self-cleaning capabilities, the equipment includes a material container, a container lid, a stirring device, a dual-temperature control system, and an ultrasonic transducer. A variable-speed motor is fixedly installed near the center of the container lid. The stirring device includes three stirring blades: an upper stirring blade, a middle stirring blade, and a lower stirring blade. The ultrasonic transducer is located on the inner wall of the material container. This invention utilizes dual temperature sensors to measure the temperature of materials at different liquid levels in the upper and lower parts of the container. The temperature difference is used to determine whether the temperature of the materials in the container is uniform. Furthermore, the stirring speed is controlled by temperature difference linkage, improving the heat transfer efficiency of the system and ensuring a consistent overall temperature of the materials in the container. The combination of mechanical stirring and ultrasonic-assisted stirring ensures uniform dispersion and consistent temperature of the materials. The ultrasonic transducer helps clean residues adhering to the inner wall of the container and the stirring device, improving the cleaning effect.
[0003] In the process of developing this utility model, the inventors discovered that at least the following problems remain unresolved in the existing technology: Although the resistance of the stirring blades is reduced by the holes on the stirring blades, and the turbulence generated after the holes improves the uniformity of material mixing and heat transfer efficiency, as well as the stability of the material state and production efficiency, in actual use, traditional coolant release agent stirring devices use a fixed-position stirring mechanism. This stirring method, due to the certain distance between the blades and the inner wall of the stirring device, results in a generally poor stirring effect for the material between the blades and the inner wall of the stirring device. Therefore, a new technical solution is needed to address these issues. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a high-efficiency coolant release agent stirring device to solve the technical problem that the current traditional coolant release agent stirring device uses a fixed-position stirring mechanism for stirring. In this stirring method, due to the certain distance between the blades and the inner wall of the stirring device, the stirring effect of the material between the blades and the inner wall of the stirring device is generally poor.
[0005] To achieve the purpose of this utility model, the technical solution adopted by this utility model is as follows: design a high-efficiency coolant release agent stirring device, including a device cylinder, the top of the device cylinder is provided with an opening, the top of the device cylinder is provided with an annular moving component, the bottom front end of the annular moving component is installed with a motor, the bottom of the motor is connected to a motor shaft, and a rotating rod is fixed at one end of the motor shaft that extends into the device cylinder.
[0006] A fixing ring passes through the outside of the rotating rod, and the fixing ring is fixed to the position through which the rotating rod passes. A first stirring blade and a second stirring blade are fixed at the upper and lower ends on both sides of the fixing ring, respectively.
[0007] Preferably, the annular moving assembly includes an annular electric slide rail mounted on the top of the device cylinder, an electric slider connected to the top of the annular electric slide rail, and a motor mounted on the bottom of the electric slider.
[0008] Preferably, multiple rotating cylinders pass through the outside of the rotating rod, the positions of the rotating cylinders and the rotating rod are fixed, an annular groove is formed on the outside of the rotating cylinder, and an annular scraper is installed inside the annular groove.
[0009] Preferably, a plurality of stirring rods are fixed between the first stirring blade and the second stirring blade, and the surface of the stirring rods is provided with a plurality of round holes.
[0010] Preferably, a control host is installed at the top front end of the device cylinder.
[0011] Preferably, one end of the device cylinder is connected to a connecting pipe at the bottom front end, and the other end of the connecting pipe is detachably connected to a pipe cap.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] 1. This utility model combines a ring-shaped electric slide rail, a motor, and stirring blades. During the stirring of the coolant release agent using the stirring blades, the ring-shaped electric slide rail drives the stirring blades to move in a ring, causing the rotating rod and stirring blades to move in a ring, thus stirring the coolant release agent inside the device cylinder. This stirring of the coolant release agent located in the gap between the stirring blades and the device cylinder, along with the rotating blades, achieves dual stirring of the coolant release agent, improving the stirring effect. This solves the technical problem of traditional coolant release agent stirring devices that use a fixed-position stirring mechanism, where the stirring effect is generally poor due to the gap between the blades and the inner wall of the stirring device.
[0014] 2. This utility model combines a rotating cylinder, an annular groove, and an annular scraper. During the rotation of the rotating rod, multiple rotating cylinders and annular scrapers can be driven to rotate. The annular scraper scrapes off the material adhering to the inner wall of the device cylinder. When the rotating rod moves in annularly via an annular electric slide rail, it will drive the annular scraper to move in annularly, thereby scraping off the material adhering to one ring of the inner wall of the device cylinder. The agitation mechanism and the cleaning mechanism are integrated into one unit, which improves the cleaning effect.
[0015] 3. This utility model combines a first stirring blade, a second stirring blade, and stirring rods. Multiple stirring rods are arranged between the first stirring blade and the second stirring blade. When the first stirring blade and the second stirring blade rotate, the material passes through the space between the first stirring blade and the second stirring blade. The multiple stirring rods between the first stirring blade and the second stirring blade contact the material to assist in stirring the material and improve the stirring effect. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the internal structure of the device cylinder of this utility model;
[0017] Figure 2 This is an enlarged structural diagram of point A in this utility model;
[0018] Figure 3 This is a schematic diagram of the overall structure of this utility model.
[0019] In the diagram: 1. Device cylinder; 101. Control host; 102. Connecting pipe; 103. Pipe cover; 2. Annular electric slide rail; 201. Electric slider; 202. Motor; 203. Motor shaft; 204. Rotating rod; 205. Fixing ring; 206. First stirring blade; 207. Second stirring blade; 208. Stirring rod; 209. Circular hole; 3. Rotating cylinder; 301. Annular groove; 302. Annular scraper. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0021] Example 1: A high-efficiency coolant release agent stirring device, see [link to example]. Figures 1 to 3The device includes a cylindrical body 1 with an opening at the top. A ring-shaped moving assembly is mounted at the top of the cylindrical body 1, and a motor 202 is installed at the bottom front end of the ring-shaped moving assembly. A motor shaft 203 is connected to the bottom of the motor 202. A rotating rod 204 is fixed to one end of the motor shaft 203 that extends into the cylindrical body 1. A fixing ring 205 passes through the outside of the rotating rod 204, and the fixing ring 205 is fixed to the through-position of the rotating rod 204. A first stirring blade 206 and a second stirring blade 207 are fixed to the upper and lower ends of both sides of the fixing ring 205, respectively. When the motor 202 is turned on, it drives the motor shaft 203, which in turn drives the rotating rod 204. The rotating rod 204 then drives the fixing ring 205, which in turn drives the first stirring blade 206 and the second stirring blade 207. The first stirring blade 206 and the second stirring blade 207 are used to cool the interior of the cylindrical body 1. The liquid release agent is agitated by opening the annular electric slide rail 2 during the agitation process. The annular electric slide rail 2 drives the electric slider 201, which in turn drives the motor 202 and the rotating rod 204 to move. The rotating rod 204 drives the first agitator blade 206 and the second agitator blade 207 to move in a ring, agitating the liquid release agent in the device cylinder 1. The liquid release agent located in the gap between the agitator blades and the device cylinder 1 is agitated. At the same time, the agitator blades are also rotating during the agitation process, achieving dual agitation of the liquid release agent and improving the agitation effect. This solves the technical problem of traditional liquid release agent agitation devices that use a fixed-position agitator mechanism, where the agitation effect of the material between the blades and the inner wall of the agitator is generally poor due to the certain gap between the blades and the inner wall of the agitator.
[0022] For details, see Figure 1 The annular moving assembly includes an annular electric slide rail 2 mounted on the top of the device cylinder 1, an electric slider 201 connected to the top of the annular electric slide rail 2, and a motor 202 mounted on the bottom of the electric slider 201.
[0023] Further, see Figure 1 Multiple rotating cylinders 3 pass through the outside of the rotating rod 204. The position of the rotating cylinders 3 through the rotating rod 204 is fixed. An annular groove 301 is opened on the outside of the rotating cylinder 3. An annular scraper 302 is installed inside the annular groove 301. During the rotation of the rotating rod 204, it will also drive the multiple rotating cylinders 3 and the annular scraper 302 to rotate. The annular scraper 302 is used to scrape off the material attached to the inner wall of the device cylinder 1. When the rotating rod 204 moves in annular motion through the annular electric slide rail 2, it will drive the annular scraper 302 to move in annular motion, thereby scraping off the material attached to a ring on the inner wall of the device cylinder 1. The stirring mechanism and the cleaning mechanism are integrated into one unit, which improves the cleaning effect.
[0024] It is worth noting that, see Figure 2 Multiple stirring rods 208 are fixed between the first stirring blade 206 and the second stirring blade 207. Multiple circular holes 209 are opened on the surface of the stirring rods 208. Multiple stirring rods 208 are arranged between the first stirring blade 206 and the second stirring blade 207. When the first stirring blade 206 and the second stirring blade 207 rotate, the material will pass through the space between the first stirring blade 206 and the second stirring blade 207. The multiple stirring rods 208 between the first stirring blade 206 and the second stirring blade 207 contact the material to assist in stirring the material and improve the stirring effect of the material.
[0025] It is worth noting that, see Figure 3 The control host 101 is installed at the top front end of the device cylinder 1.
[0026] It is worth mentioning that, see Figure 3 The bottom front end of the device cylinder 1 is connected to one end of a connecting pipe 102, and the other end of the connecting pipe 102 is detachably connected to a pipe cap 103.
[0027] When using a high-efficiency coolant release agent stirring device, first turn on the motor 202. The motor 202 drives the motor shaft 203, which in turn drives the rotating rod 204. The rotating rod 204 drives the fixed ring 205, which in turn drives the first stirring blade 206 and the second stirring blade 207. The first stirring blade 206 and the second stirring blade 207 are used to stir the coolant release agent in the device cylinder 1. During the stirring of the coolant release agent, the annular electric slide rail 2 can be opened. The annular electric slide rail 2 drives the electric slider 201, which in turn drives the motor 202 and the rotating rod 204 to move. The rotating rod 204 will drive the first stirring blade 206 and the second stirring blade 207 to move in a ring, stirring the coolant release agent in the device cylinder 1. The coolant release agent located in the gap between the stirring blades and the device cylinder 1 is stirred. At the same time, during the stirring process... In the process, the stirring blades are still rotating, achieving dual stirring of the coolant and release agent, thus improving the stirring effect. During the rotation of the rotating rod 204, multiple rotating cylinders 3 and annular scrapers 302 will also rotate. The annular scrapers 302 are used to scrape off the material attached to the inner wall of the device cylinder 1. When the rotating rod 204 moves in a ring around the annular electric slide rail 2, it will also move the annular scrapers 302 in a ring around the annular area, thereby scraping off the material attached to a ring around the inner wall of the device cylinder 1. The stirring mechanism and the cleaning mechanism are integrated into one unit, improving the cleaning effect. When the first stirring blade 206 and the second stirring blade 207 rotate, the material will pass between the first stirring blade 206 and the second stirring blade 207. Multiple stirring rods 208 between the first stirring blade 206 and the second stirring blade 207 will contact the material to assist in stirring the material, thus improving the stirring effect.
[0028] In addition, all components designed in this utility model are general standard parts or components known to those skilled in the art. Their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. Those skilled in the art can fully implement them, so there is no need to elaborate. The content protected by this utility model does not involve improvements to the internal structure and method.
[0029] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.
Claims
1. A high-efficiency coolant release agent stirring device, comprising a device cylinder (1), wherein the top of the device cylinder (1) is provided with an opening, characterized in that, The top of the device cylinder (1) is provided with an annular moving component, and a motor (202) is installed at the bottom front end of the annular moving component. The bottom of the motor (202) is connected to a motor shaft (203), and a rotating rod (204) is fixed at one end of the motor shaft (203) that extends into the device cylinder (1). A fixing ring (205) passes through the outside of the rotating rod (204). The fixing ring (205) is fixed to the position of the rotating rod (204). A first stirring blade (206) and a second stirring blade (207) are fixed at the upper and lower ends on both sides of the fixing ring (205).
2. The high-efficiency coolant release agent stirring device as described in claim 1, characterized in that, The annular moving assembly includes an annular electric slide rail (2) mounted on the top of the device cylinder (1), an electric slider (201) connected to the top of the annular electric slide rail (2), and a motor (202) mounted on the bottom of the electric slider (201).
3. The high-efficiency coolant release agent stirring device as described in claim 1, characterized in that, Multiple rotating cylinders (3) pass through the outside of the rotating rod (204). The position of the rotating cylinders (3) through the rotating rod (204) is fixed. An annular groove (301) is opened on the outside of the rotating cylinder (3). An annular scraper (302) is installed inside the annular groove (301).
4. The high-efficiency coolant release agent stirring device as described in claim 1, characterized in that, A plurality of stirring rods (208) are fixed between the first stirring blade (206) and the second stirring blade (207), and a plurality of round holes (209) are provided on the surface of the stirring rods (208).
5. The high-efficiency coolant release agent stirring device as described in claim 1, characterized in that, The control host (101) is installed at the top front end of the device cylinder (1).
6. The high-efficiency coolant release agent stirring device as described in claim 1, characterized in that, The device cylinder (1) has a connecting pipe (102) at one end connected to the bottom of the front end, and the other end of the connecting pipe (102) is detachably connected to a pipe cap (103).
Citation Information
Patent Citations
Release agent efficient production equipment with self-cleaning capacity
CN215743370U