Medicament stirring device for stone crystallizer
By designing a reagent stirring device for the stone crystallizer, the problem of continuous and uniform output of the grinding material was solved, and the continuous supply of the grinding material and efficiency improvement were achieved.
Patent Information
- Application Number
- CN202422565108.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-10-23
AI Technical Summary
During the operation of the stone crystallizer, the grinding material cannot be continuously and evenly output to the stone crystallizer, resulting in a decrease in grinding efficiency and even idling.
A reagent stirring device for a stone crystallizer is designed, including a reagent box, a stirring rod, an outlet pipeline and a hydraulic system. The design of the booster device and the stirring rod ensures that the grinding material is continuously and evenly output in a suspended state.
The continuous and uniform supply of the grinding material is achieved, the supply interruption caused by sedimentation during the grinding process is avoided, and the grinding efficiency is improved.
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Figure CN223474811U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of stone crystallization machines and surface crystallization machines. Specifically, this utility model relates to a reagent stirring device for a stone crystallization machine. Background Technology
[0002] Stone crystallizers are used to improve the gloss and smoothness of marble surfaces through a grinding process. During the use of a stone surface crystallizers, the abrasive material typically has a certain specific gravity. However, due to the deposition of abrasive material during operation, a continuous and uniform supply to the crystallizer cannot be maintained, hindering the grinding process. This manifests as decreased grinding efficiency and may even result in the crystallizer running idle. Utility Model Content
[0003] The purpose of this invention is to provide a reagent stirring device for a stone crystallizer, which solves the problem that the abrasive material cannot be continuously and uniformly output to the stone crystallizer during operation.
[0004] The first aspect of this utility model provides a reagent stirring device for a stone crystallization machine, wherein a lifting plate is installed on the stone crystallization machine. The reagent stirring device for the stone crystallization machine includes:
[0005] A medicine box has an inner cavity and an opening. The inner cavity communicates with the opening. The exterior of the medicine box has a fitting that can be assembled with a lifting plate.
[0006] A support member, which is connected to the medicine tank and located within the medicine cavity.
[0007] A stirring rod includes a stirring end and a connecting end. The connecting end is rotatably mounted on a support so that the stirring end can be located inside the pharmaceutical cavity.
[0008] A discharge line includes an inlet and an outlet. The inlet connects to the reagent tank and the reagent cavity. The discharge line allows the ground mixture to be discharged from the outlet via a hydraulic system. A pressure boosting device with a pressure boosting control terminal is provided in the hydraulic system. When the pressure boosting control terminal receives a pressure boosting signal, the pressure boosting device increases the pressure of the ground mixture discharged from the outlet.
[0009] In another embodiment of the reagent stirring device for the stone crystallization machine of this utility model, it further includes: a box cover, which is rotatably connected to the reagent box; the box cover can be fastened to the cavity opening.
[0010] The lifting plate has a width extension direction, and along the width extension direction of the lifting plate, the first V-shaped groove and the second V-shaped groove are sequentially formed on the lifting plate.
[0011] The medicine box has an outer surface. A first insert and a second insert are formed on the outer surface. The first insert and the second insert can respectively engage with the bottom of a first V-groove and a second V-groove.
[0012] In another embodiment of the reagent stirring device for the stone crystallizer of this utility model, the reagent tank has a width extension direction. The reagent inner cavity has an inner cavity width direction parallel to the width extension direction.
[0013] The interior of the drug cavity has multiple parallel grooves. The parallel grooves are arranged parallel to the width direction of the cavity.
[0014] In another embodiment of the reagent stirring device for the stone crystallizing machine of this utility model, the stirring end of the stirring rod includes: a stirring blade having a stirring surface. The middle part of the stirring surface is fixedly connected to the rod body of the stirring rod. The stirring surface is perpendicular to the extension direction of the stirring rod. The stirring blades are evenly and sequentially arranged around the middle part of the stirring surface.
[0015] In another embodiment of the reagent mixing device for the stone crystallizing machine of this utility model, it further includes: a mixing cylinder, with mixing blades connected to the rod body of the mixing rod via the mixing cylinder. The mixing cylinder has a through cavity in the middle. Multiple connecting beams extend from the inner wall of the through cavity toward the center. The connecting beams connect to the rod body at the mixing end. The extending direction of the mixing cylinder is parallel to the extending direction of the rod body.
[0016] In another embodiment of the reagent stirring device for the stone crystallization machine of this utility model, the cavity of the stirring cylinder gradually converges from the direction away from the stirring end to the direction closer to the stirring end.
[0017] In another embodiment of the reagent stirring device for the stone crystallization machine of this utility model, two stirring rods are provided. The two stirring rods are arranged sequentially along the width direction of the stirring cylinder.
[0018] In another embodiment of the reagent stirring device for the stone crystallizer of this utility model, the reagent tank has a top surface. An opening is formed on the top surface. An arc-shaped protrusion is provided on the top surface along the edge of the opening.
[0019] The lid is designed to fit into the cavity opening, with an arc-shaped groove corresponding to the arc-shaped protrusion, so that when the lid is fitted into the cavity opening, the arc-shaped protrusion is located inside the arc-shaped groove.
[0020] In another embodiment of the reagent stirring device for the stone crystallization machine of this utility model, it further includes: a stirring motor, whose drive output end is connected to the connecting end and can drive the connecting end of the stirring rod to rotate.
[0021] In another embodiment of the reagent stirring device for the stone crystallization machine of this utility model, it further includes:
[0022] An input tube connects to both the reagent tank and the reagent cavity, allowing the grinding material to be fed into the reagent cavity.
[0023] The reagent mixing device used in stone crystallization machines also includes:
[0024] A boost controller has its control output connected to a boost control terminal. When the boost controller receives boost control information at its input, it outputs boost information to the boost control terminal.
[0025] A pressure sensor is installed at the bottom of the drug's internal cavity. The pressure sensor has a sensing output terminal and outputs the current pressure information.
[0026] The input terminal of the booster controller is connected to the sensor output terminal. The booster controller receives the current pressure information and determines whether the current pressure information is within the set pressure threshold. If not, it outputs booster information to the booster control terminal to increase the pressure value of the grinding mixture output from the output port.
[0027] The following text will further explain the characteristics, technical features, advantages, and implementation methods of the reagent stirring device used in stone crystallization machines in a clear and easy-to-understand manner, with the aid of accompanying drawings. Attached Figure Description
[0028] Figure 1 This is a schematic diagram illustrating the overall structure of the reagent stirring device used in a stone crystallizer according to one embodiment of the present invention.
[0029] Figure 2 This is a schematic diagram illustrating the structure of the medicine box in one embodiment of this utility model.
[0030] Figure 3 This is a schematic diagram illustrating the structure of the lifting plate in one embodiment of this utility model.
[0031] Figure 4 This is a schematic diagram illustrating the structure of the stirring rod in one embodiment of the present invention.
[0032] Figure 5 This is a three-dimensional structural diagram illustrating one embodiment of the present invention of the stirring rod.
[0033] Figure 6 This is a schematic diagram illustrating the overall structure of the reagent stirring device used in a stone crystallizer according to one embodiment of the present invention. Detailed Implementation
[0034] To provide a clearer understanding of the technical features, objectives, and effects of this utility model, specific embodiments of the present utility model are now described with reference to the accompanying drawings. In the drawings, the same reference numerals indicate components with the same or similar structures but the same function.
[0035] In this document, "illustrative" means "serving as an example, illustration, or description," and any illustrations or embodiments described herein as "illustrative" should not be construed as a more preferred or advantageous technical solution. For the sake of brevity, each figure only schematically shows the parts relevant to this exemplary embodiment, and they do not represent the actual structure or true proportions of the product.
[0036] The first aspect of this utility model is as follows: Figures 1-2 As shown, a reagent stirring device for a stone crystallizer is provided, wherein a lifting plate 11 is installed on the stone crystallizer 10. The reagent stirring device for the stone crystallizer 10 includes:
[0037] A medicine box 20 has a medicine cavity 21 and a cavity opening. The medicine cavity 21 communicates with the cavity opening 47. The exterior of the medicine box 20 has a mating part that can be assembled with a lifting plate 11.
[0038] A lid 30 is rotatably connected to the medicine box 20. The lid 30 can be fastened onto the opening.
[0039] A support member 50 is connected to the reagent tank and located within the reagent cavity. Stirring rods 41 and 42 include a stirring end and a connecting end. The connecting end is rotatably mounted on the support member 50, and the stirring end can be located inside the reagent cavity 21.
[0040] Therefore, when using the stone crystallizer, the grinding slurry can be first placed in the reagent tank 20, and then the stirring rods 41 and 42 can be started to stir the grinding slurry. This continuous stirring ensures that the grinding materials in the slurry remain in a suspended state, thus guaranteeing a continuous and uniform supply of materials to the stone crystallizer and ensuring its continuous operation.
[0041] A discharge pipeline includes an inlet and an outlet. The inlet connects to the reagent tank and the reagent cavity. The discharge pipeline allows the ground mixture to be discharged from the outlet via a hydraulic system. A pressure boosting device with a pressure control terminal is installed in the hydraulic system. When the pressure control terminal receives a pressure boosting signal, the pressure boosting device increases the pressure of the ground mixture output from the outlet. Therefore, by adjusting the pressure of the discharge pipeline, the continuity and reliability of the ground mixture output can be ensured.
[0042] Therefore, the crystallizer of this utility model will not suffer from the inability to continuously supply uniform abrasive material to the stone crystallizer due to the deposition of abrasive material, thus preventing the grinding process from being interrupted and improving grinding efficiency.
[0043] like Figure 6 As shown in another embodiment of this utility model, a lifting plate 11 is provided on another type of stone crystallization machine 101. A reagent box 20 is provided on the lifting plate 11, thereby realizing a new assembly form of the reagent box.
[0044] like Figure 1 , 3 As shown, in another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, the lifting plate 11 has a width extension direction, and along the width extension direction of the lifting plate 11, the first V-shaped groove 12 and the second V-shaped groove 13 are sequentially formed on the lifting plate 11.
[0045] The medicine box 20 has an outer surface. A first insert and a second insert are formed on the outer surface. The first insert and the second insert can respectively engage with the bottom of the first V-groove 12 and the second V-groove 13. This makes it easier to disassemble, repair and clean the medicine box 20.
[0046] like Figures 1-2 As shown, in another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, the reagent tank 20 has a width extension direction. The reagent inner cavity 21 has an inner cavity width direction parallel to the width extension direction.
[0047] The interior of the pharmaceutical cavity 21 has multiple parallel grooves. The parallel grooves are arranged parallel to the width direction of the cavity. This increases the flow direction of the pharmaceutical agent during stirring, making it easier for the agent to collide with the side walls of the cavity and produce a better stirring effect.
[0048] like Figures 1-2 As shown, in another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, the stirring end of the stirring rods 41 and 42 includes: a stirring blade 45, which has a stirring surface. The middle part of the stirring surface is fixedly connected to the rod body 46 of the stirring rods 41 and 42. The stirring surface is perpendicular to the extending direction of the stirring rods 41 and 42. The stirring blades 45 are evenly and sequentially arranged around the middle part of the stirring surface.
[0049] like Figures 4-5As shown, in another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, it further includes: a stirring cylinder 43, with stirring blades 45 connected to the rods 46 of stirring rods 41 and 42 via the stirring cylinder 43. The stirring cylinder 43 has a through cavity 47 in the middle. Multiple connecting beams 44 extend from the inner wall of the through cavity 47 towards the center. The connecting beams 44 connect to the rods 46 at the stirring end. The extending direction of the stirring cylinder 43 is parallel to the extending direction of the rods 46. Thus, when stirring the slurry, the slurry can be moved in the direction of arrow 91, causing the slurry to collide with the stirring blades 45, increasing the disturbance surface and improving the stirring effect.
[0050] In another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, the through cavity 47 of the stirring cylinder 43 gradually converges from the direction away from the stirring end to the direction closer to the stirring end.
[0051] In another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, the stirring rods 41 and 42 are configured as two stirring rods 41 and 42. The two stirring rods 41 and 42 are arranged sequentially along the width direction of the stirring cylinder 43.
[0052] In another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, the reagent tank 20 has a top surface. An opening is formed on the top surface. An arc-shaped protrusion is provided on the top surface along the edge of the opening.
[0053] The lid 30 has an arc-shaped groove on its surface that corresponds to the arc-shaped protrusion when it is fastened to the cavity opening. This ensures that the arc-shaped protrusion is located inside the arc-shaped groove when the lid 30 is fastened to the cavity opening, thereby improving the tightness between the lid and the cavity opening.
[0054] In another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, it further includes: a stirring motor, whose drive output end is connected to the connecting end and can drive the connecting ends of the stirring rods 41 and 42 to rotate. The above-mentioned motor can be a small stepper or servo motor, a low-cost and low-weight motor, which is convenient for the use of the equipment and reduces equipment investment.
[0055] In another embodiment of the reagent stirring device for the stone crystallizer 10 of this utility model, it further includes: an input pipe connected to the reagent tank 20 and the reagent cavity 21, the input pipe being able to input the grinding raw material into the reagent cavity 21. The reagent stirring device for the stone crystallizer also includes: a pressure booster controller, the control output of which is connected to a pressure booster control terminal. When the input terminal of the pressure booster controller receives pressure booster control information, it outputs pressure booster information to the pressure booster control terminal. Or
[0056] A pressure sensor is installed at the bottom of the drug's internal cavity. The pressure sensor has a sensing output terminal and outputs the current pressure information.
[0057] The input terminal of the booster controller is connected to the sensor output terminal. The booster controller receives the current pressure information and determines whether the current pressure information is within the set pressure threshold. If not, it outputs booster information to the booster control terminal to increase the pressure value of the grinding mixture output from the output port.
[0058] It should be understood that although this specification describes various embodiments, not every embodiment contains only one independent technical solution. This way of describing the specification is only for clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
[0059] The detailed descriptions listed above are merely specific descriptions of feasible implementations of this utility model, and are not intended to limit the scope of protection of this utility model. All equivalent implementations or modifications made without departing from the technical spirit of this utility model should be included within the scope of protection of this utility model.
Claims
1. A reagent stirring device for a stone crystallization machine, characterized in that, The stone crystallization machine is equipped with a lifting plate; The reagent stirring device for the stone crystallizer includes: A medicine box having a medicine cavity and an opening; the medicine cavity communicates with the opening; the exterior of the medicine box has a mating part that can be assembled with the lifting plate; A lid, rotatably connected to the medicine box; the lid can be fastened onto the opening; and A stirring rod includes a stirring end and a connecting end; the connecting end is rotatably disposed on the box cover so that the stirring end is located inside the medicine cavity when the box cover is fastened to the cavity opening.
2. The reagent stirring device for the stone crystallization machine according to claim 1, characterized in that, The lifting plate has a width extension direction, and along the width extension direction of the lifting plate, a first V-shaped groove and a second V-shaped groove are sequentially formed on the lifting plate. The medicine box has an outer surface; a first insert and a second insert are formed on the outer surface; the first insert and the second insert can respectively engage with the bottom of the first V-groove and the second V-groove.
3. The reagent stirring device for the stone crystallization machine according to claim 2, characterized in that, The medicine box has a width extension direction; the medicine cavity has an inner cavity width direction parallel to the width extension direction; The interior of the drug cavity has multiple parallel grooves; the parallel grooves are arranged in a direction parallel to the width direction of the cavity.
4. The reagent stirring device for the stone crystallization machine according to claim 1, characterized in that, The stirring end of the stirring rod includes: a stirring blade having a stirring surface; the middle part of the stirring surface is fixedly connected to the rod body of the stirring rod; the stirring surface is perpendicular to the extension direction of the stirring rod; the stirring blades are evenly and sequentially arranged around the middle part of the stirring surface.
5. The reagent stirring device for the stone crystallization machine according to claim 4, characterized in that, Also includes: A stirring drum, wherein the stirring blades are connected to the body of the stirring rod via the stirring drum; the stirring drum has a through cavity in the middle; and multiple connecting beams extend from the inner wall of the through cavity toward the center; The connecting beam connects to the rod at the stirring end; the extending direction of the stirring cylinder is parallel to the extending direction of the rod.
6. The reagent stirring device for the stone crystallization machine according to claim 5, characterized in that, The cavity of the stirring tube gradually converges from the direction away from the stirring end to the direction closer to the stirring end.
7. The reagent stirring device for the stone crystallizing machine according to claim 4, characterized in that, The stirring rod is configured as two stirring rods; the two stirring rods are arranged sequentially along the width direction of the stirring cylinder.
8. The reagent stirring device for the stone crystallization machine according to claim 1, characterized in that, The medicine box has a top surface; the cavity is formed on the top surface; an arc-shaped protrusion is provided on the top surface along the edge of the cavity; The lid can be fastened to the surface of the cavity, where an arc-shaped groove is provided corresponding to the position of the arc-shaped protrusion, so that when the lid is fastened to the cavity, the arc-shaped protrusion can be located inside the arc-shaped groove.
9. The reagent stirring device for the stone crystallization machine according to claim 1, characterized in that, Also includes: A stirring motor, the drive output of which is connected to the connecting end and can drive the connecting end of the stirring rod to rotate.
10. The reagent stirring device for the stone crystallization machine according to claim 1, characterized in that, Also includes: An input tube is connected to both the reagent tank and the reagent cavity, the input tube being capable of feeding the grinding material into the reagent cavity; An outlet tube is connected to the reagent tank and the reagent cavity, and the outlet tube is capable of outputting the ground mixture to the outside.