A distributor for improving the feeding mode of a quartz sand storage tank

By designing the conveying and dispensing parts of the material distributor and utilizing structures such as conical cylinders and conveying cylinders, the problem of uneven material distribution in quartz sand storage tanks was solved, and uniform material delivery was achieved.

CN224298393UActive Publication Date: 2026-05-29ALXA LEAGUE ZHONGXIN NEW MATERIAL SAND IND DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ALXA LEAGUE ZHONGXIN NEW MATERIAL SAND IND DEV CO LTD
Filing Date
2025-02-18
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The existing feeding method for quartz sand storage tanks results in uneven material distribution within the tank, failing to meet the requirement for uniform distribution.

Method used

Design a material distributor, including a fixed frame, a conveying part and a dispensing part. Utilize structures such as a conical cylinder, a diverter plate and a conveying cylinder to achieve uniform material delivery through diversion and rotational dispensing.

Benefits of technology

This achieves uniform distribution of quartz sand within the storage tank, ensuring that the material is evenly delivered into the cylinder.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to quartz sand technical field discloses a cloth feeder for improving quartz sand storage tank feed mode, including: fixed frame, set up transmission site in the fixed frame inside, set up scattering site in the transmission site inside, bottom leg, fixedly connected at the bottom of fixed frame, wherein, the transmission site includes: cylinder, fixedly connected in the inner wall of fixed frame, discharge hopper, intercommunication is established in the inner wall of cylinder. Through the material that falls to the inside of conical cylinder to shift to the inside of transmission cylinder to under the action of the flow splitter, make material again carry on the flow distribution to under the action of the flow guide ring, make material respectively from export one and export two discharge, drive motor to drive sprocket rotation, under the drive of chain, drive the rotation of the link, to drive transmission cylinder rotation to reach the purpose of transmission cylinder rotation scattering, to reach the purpose of uniform feeding material.
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Description

Technical Field

[0001] This utility model relates to the field of quartz sand technology, specifically to a material distributor for improving the feeding method of quartz sand storage tanks. Background Technology

[0002] Quartz sand is quartz particles produced by crushing and processing quartz stone. It is a hard, wear-resistant, and chemically stable silicate mineral, with SiO2 as its main mineral component. It is an important industrial mineral raw material. Quartz sand is milky white or colorless and translucent, with a hardness of 7. It is brittle, has no cleavage, exhibits conchoidal fracture, and has a greasy luster. Its chemical, thermal, and mechanical properties show obvious anisotropy. It is insoluble in acids, slightly soluble in KOH solution, and has a melting point of 1750 degrees Celsius. Industrially, quartz sand is often classified into ordinary quartz sand, refined quartz sand, high-purity quartz sand, fused quartz sand, and silica powder, etc. It is widely used in glass, casting, ceramics and refractory materials, ferrosilicon smelting, and other industries.

[0003] Current quartz sand storage tanks generally face a problem during the material feeding process: the material usually enters the tank through a single inlet, which often leads to uneven distribution of the material within the tank. Therefore, this feeding method cannot meet the requirement for uniform material distribution. Utility Model Content

[0004] The purpose of this invention is to provide a material distributor for improving the feeding method of quartz sand storage tanks. This invention solves the problem that materials usually enter the storage tank through only a single inlet, which often leads to uneven distribution of materials in the storage tank. Therefore, this feeding method cannot meet the requirement of uniform material distribution, thus achieving the goal of uniform material feeding.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a feeder for improving the feeding method of a quartz sand storage tank, comprising: a fixed frame; a transmission part disposed inside the fixed frame; a spreading part disposed inside the transmission part; and a bottom leg fixedly connected to the bottom of the fixed frame; wherein the transmission part comprises: a cylinder fixedly connected to the inner wall of the fixed frame; and a discharge hopper connected to the inner wall of the cylinder.

[0006] Preferably, a top plate is fixedly connected to the top of the cylinder, a feed hopper is connected to the top of the top plate, and a discharge hopper is connected to the bottom of the top plate. The discharge hopper is connected to the feed hopper, and a partition plate is fixedly connected to the inner wall of the discharge hopper. The partition plate is equidistantly arranged around its circumference, and a conical cylinder is fixedly connected to the inner side of the partition plate. The design of the conical cylinder allows the material to be guided when it falls, thereby achieving uniform distribution. This helps to avoid the problem of uneven distribution of material inside the cylinder and ensures that the material can be evenly delivered into the cylinder.

[0007] Preferably, the material spreading part includes: a connecting ring, fixedly connected to the inner wall of the conical cylinder; and a bracket, fixedly connected to the inner wall of the connecting ring, wherein the bracket is equidistantly arranged around the circumference.

[0008] Preferably, a support ring is fixedly connected between the inner sides of the bracket, a chain link is rotatably connected to the top of the support ring, the chain link is connected to the support ring, and a transmission cylinder is fixedly connected to the top of the chain link.

[0009] Preferably, the conveying cylinder is adapted to the conical cylinder. The bottom of the inner wall of the conveying cylinder has an outlet one and an outlet two. The outlet two is connected to the chain link. A diverting plate is fixedly connected to the inner wall of the conveying cylinder, and a flow guiding ring is fixedly connected to the bottom of the inner wall of the conveying cylinder. The flow guiding ring is connected to the outlet two. The material first flows into the conical cylinder, and then, under the action of gravity, the material is transferred to the inside of the conveying cylinder. Under the action of the diverting plate, the material is diverted again.

[0010] Preferably, a support column is fixedly connected to the top of the support ring, the support columns are equidistant from each other around the circumference, the support columns are adapted to the conveying cylinder, a sprocket is fixedly connected to the top of the support ring, and a chain is rotatably connected to the outer wall of the chain ring. The conveying cylinder starts to rotate under the action of the drive motor. The drive motor drives the chain ring and the conveying cylinder to rotate together through the transmission of the sprocket and the chain. As the conveying cylinder rotates, the material is evenly sprinkled out.

[0011] Preferably, a motor is fixedly connected to the bottom of the support ring, the output end of the motor extends upward through the support ring, and the output end of the motor is fixedly connected to the bottom of the sprocket.

[0012] This utility model provides a feeder for improving the feeding method of quartz sand storage tanks. It has the following beneficial effects:

[0013] (1) This utility model feeds the material into the feed hopper and then drops it to the top of the conical cylinder, thereby initially diverting the material. Some of the material slides down along the trajectory of the partition plate and flows into the inside of the cylinder, while some of the material flows into the inside of the conical cylinder, thereby achieving the purpose of uniform material distribution and ensuring that the material is evenly delivered into the inside of the cylinder.

[0014] (2) This utility model transfers the material flowing into the conical cylinder to the inside of the conveying cylinder. Under the action of the diversion plate, the material is diverted again. Under the action of the guide ring, the material is discharged from outlet one and outlet two respectively. The motor drives the sprocket to rotate. Under the transmission of the chain, the chain link rotates, thereby driving the conveying cylinder to rotate, thus achieving the purpose of rotating the conveying cylinder to spread the material, thereby achieving the purpose of uniformly distributing the material. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0016] Figure 2 This is a front view of the present utility model;

[0017] Figure 3 This is a view of the transmission part of the present invention;

[0018] Figure 4 This is a detailed view of the transmission part of this utility model;

[0019] Figure 5 This is a view of the material spreading part of this utility model;

[0020] Figure 6 This is a detailed view of the material spreading part of this utility model.

[0021] In the diagram: 1. Fixed frame; 2. Conveying part; 3. Spreading part; 4. Base leg.

[0022] 211 Cylinder body, 212 Discharge hopper, 213 Top plate, 214 Feed hopper, 215 Discharge hopper, 216 Divider plate, 217 Conical cylinder;

[0023] 311 Connecting ring, 312 Bracket, 313 Support ring, 314 Chain link, 315 Transmission cylinder, 316 Diverter plate, 317 Drain ring, 318 Support column, 319 Sprocket, 320 Chain, 321 Motor. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0026] Example 1:

[0027] Based on existing technologies, materials typically enter the storage tank through a single inlet, often resulting in uneven material distribution within the tank. Therefore, this method cannot meet the requirement for uniform material distribution. The present invention provides a preferred embodiment of a material distributor for improving the feeding method of quartz sand storage tanks, for example... Figure 1-6 As shown: A feeder for improving the feeding method of quartz sand storage tank includes: a fixed frame 1; a transmission part 2 disposed inside the fixed frame 1; a spreading part 3 disposed inside the transmission part 2; and a bottom leg 4 fixedly connected to the bottom of the fixed frame 1; wherein the transmission part 2 includes: a cylinder 211 fixedly connected to the inner wall of the fixed frame 1; and a discharge hopper 212 connected to the inner wall of the cylinder 211.

[0028] A top plate 213 is fixedly connected to the top of the cylinder 211. A feed hopper 214 is connected to the top of the top plate 213. A discharge hopper 215 is connected to the bottom of the top plate 213. The discharge hopper 215 is connected to the feed hopper 214. A partition plate 216 is fixedly connected to the inner wall of the discharge hopper 215. The partition plates 216 are equidistant from each other around the circumference. A conical cylinder 217 is fixedly connected to the inner side of the partition plate 216.

[0029] Furthermore, in this embodiment, by feeding material from the feed hopper 214, the material falls to the top of the conical cylinder 217, thereby initially diverting the material. Some material slides down along the trajectory of the partition plate 216 and flows into the interior of the cylinder 211, while some material flows into the interior of the conical cylinder 217, thereby achieving the purpose of uniform material distribution and ensuring that the material is evenly delivered into the interior of the cylinder 211.

[0030] Example 2:

[0031] Based on Embodiment 1, a preferred embodiment of the feeder for improving the feeding method of quartz sand storage tanks provided by this utility model is, for example... Figure 1-6 As shown: The material spreading part 3 includes: a connecting ring 311, which is fixedly connected to the inner wall of the conical cylinder 217; and a bracket 312, which is fixedly connected to the inner wall of the connecting ring 311, with the bracket 312 being equidistantly arranged around its circumference.

[0032] A support ring 313 is fixedly connected to the inner side of the bracket 312. A chain link 314 is rotatably connected to the top of the support ring 313. The chain link 314 is connected to the support ring 313. A transmission cylinder 315 is fixedly connected to the top of the chain link 314.

[0033] The transmission cylinder 315 is adapted to the conical cylinder 217. The bottom of the inner wall of the transmission cylinder 315 has an outlet one and an outlet two. The outlet two is connected to the chain link 314. The inner wall of the transmission cylinder 315 is fixedly connected to a flow divider plate 316. The bottom of the inner wall of the transmission cylinder 315 is fixedly connected to a flow guide ring 317, which is connected to the outlet two.

[0034] A support column 318 is fixedly connected to the top of the support ring 313. The support columns 318 are equidistant from each other around the circumference. The support columns 318 are adapted to the transmission cylinder 315. A sprocket 319 is fixedly connected to the top of the support ring 313. A chain 320 is rotatably connected to the outer wall of the chain ring 314.

[0035] A motor 321 is fixedly connected to the bottom of the support ring 313. The output end of the motor 321 extends upward through the support ring 313 and is fixedly connected to the bottom of the sprocket 319.

[0036] Furthermore, in this embodiment, the material flowing into the conical cylinder 217 is transferred to the interior of the conveying cylinder 315. Under the action of the diverting plate 316, the material is diverted again. Under the action of the guiding ring 317, the material is discharged from outlet one and outlet two respectively. The driving motor 321 drives the sprocket 319 to rotate. Under the transmission of the chain 320, the chain link 314 rotates, thereby driving the conveying cylinder 315 to rotate, thus achieving the purpose of rotating the conveying cylinder 315 to spread the material, thereby achieving the purpose of uniformly distributing the material.

[0037] In operation, the material is first fed into the feed hopper 214 and falls to the top of the conical cylinder 217, thus initially diverting the material. Some material slides down along the trajectory of the dividing plate 216 and flows into the interior of the cylinder 211, while some material flows into the interior of the conical cylinder 217, achieving the purpose of evenly distributing and sprinkling the material into the cylinder 211. Secondly, the material flowing into the conical cylinder 217 is transferred to the interior of the conveying cylinder 315, where it is further diverted by the diverting plate 316. Under the action of the guiding ring 317, the material is discharged from outlet one and outlet two, respectively. The driving motor 321 drives the sprocket 319 to rotate, which in turn drives the chain link 314 to rotate under the transmission of the chain 320, thereby driving the conveying cylinder 315 to rotate and spread the material, thus achieving the purpose of evenly distributing the material.

[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0039] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A feeder for improving the feeding method of quartz sand storage tanks, characterized in that, Includes: fixed frame (1); The transmission part (2) is set inside the fixed frame (1); The material spreading part (3) is set inside the transmission part (2); The bottom leg (4) is fixedly connected to the bottom of the fixed frame (1); The transmission part (2) includes: The cylindrical body (211) is fixedly connected to the inner wall of the fixed frame (1); The discharge hopper (212) is connected to the inner wall of the cylinder (211); the material spreading part (3) includes: A connecting ring (311) is fixedly connected to the inner wall of the conical cylinder (217); A bracket (312) is fixedly connected to the inner wall of a connecting ring (311), and the brackets (312) are equidistantly arranged around the circumference; a support ring (313) is fixedly connected between the inner sides of the brackets (312), and a chain link (314) is rotatably connected to the top of the support ring (313). The chain link (314) is connected to the support ring (313), and a transmission cylinder (315) is fixedly connected to the top of the chain link (314); the transmission cylinder (315) is adapted to a conical cylinder (217), and an outlet one is opened at the bottom of the inner wall of the transmission cylinder (315), and an outlet two is opened at the bottom of the inner wall of the transmission cylinder (315). The outlet two is connected to the chain link (314), and a diverter plate (316) is fixedly connected to the inner wall of the transmission cylinder (315). A flow guide ring (317) is fixedly connected to the bottom of the inner wall of the transmission cylinder (315), and the flow guide ring (317) is connected to the outlet. A support column (318) is fixedly connected to the top of the support ring (313), and the support column (318) is equidistantly arranged around the circumference. The support column (318) is adapted to the transmission cylinder (315). A sprocket (319) is fixedly connected to the top of the support ring (313), and a chain (320) is rotatably connected to the outer wall of the chain link (314). A motor (321) is fixedly connected to the bottom of the support ring (313), and the output end of the motor (321) extends upward through the support ring (313). The output end of the motor (321) is fixedly connected to the bottom of the sprocket (319).

2. A feeder for improving the feeding method of a quartz sand storage tank according to claim 1, characterized in that: The top of the cylinder (211) is fixedly connected to a top plate (213), the top of the top plate (213) is connected to a feed hopper (214), the bottom of the top plate (213) is connected to a discharge hopper (215), the discharge hopper (215) is connected to the feed hopper (214), the inner wall of the discharge hopper (215) is fixedly connected to a partition plate (216), the partition plate (216) is equidistantly arranged around the circumference, and the inner side of the partition plate (216) is fixedly connected to a conical cylinder (217).