Automatic material distributing system for ground calcium carbonate powder device

The automatic material distribution system, consisting of a table, telescopic rod, support plate, and motor drive, solves the problem of swaying of the telescopic hose during the distribution of heavy calcium carbonate powder, thus achieving stable conveying and accurate packaging of the powder.

CN115339667BActive Publication Date: 2026-03-17JIANGXI LONGHE NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-30
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In the existing technology, when the heavy calcium carbonate powder comes out of the Raymond mill after being crushed, the connecting sleeve and telescopic hose cannot be fixed during the material distribution process, which causes shaking and affects the stability of the material distribution.

Method used

The automatic material dispensing system consists of components such as a table, telescopic rod, support plate, motor, threaded rod, and sliding block. The motor drives the threaded rod to move the connecting plate, and the telescopic hose is fixed by a pin. The position of the connecting sleeve is adjusted by the sliding plate and knob to improve stability.

Benefits of technology

Effectively securing the telescopic hose reduces swaying, improves the stability of the material distribution process, and ensures the flowability and accuracy of the powder during conveying and packaging.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115339667B_ABST
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Abstract

The application discloses a kind of for heavy calcium powder device automatic material distribution system, belong to heavy calcium powder device automatic material distribution technical field, including table board, two material distribution boxes installed on the top of table board, located the flexible hose of the top of table board, the clamping groove is opened in the support plate, the clamping groove both sides of the top of support plate are equipped with connecting block, and one of connecting block is equipped with motor, and the output shaft of motor is coaxially connected with threaded rod, one side of the top of table board is equipped with side bracing plate, and the fixed pipe is installed on the side bracing plate, the connecting plate is installed on the one side of sliding clamping block, one side of the bottom of support plate is equipped with connecting clamping plate, slot is opened in the connecting clamping plate, and two sliding plates are slidably installed on the connecting clamping plate.The used for heavy calcium powder device automatic material distribution system when using, it can be fixed after flexible hose moves to suitable position, the stability of flexible hose is improved to a certain extent.
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Description

Technical Field

[0001] This invention belongs to the field of automatic feeding technology for heavy calcium carbonate powder equipment, and specifically relates to an automatic feeding system for heavy calcium carbonate powder equipment. Background Technology

[0002] Heavy calcium carbonate, or precipitated calcium carbonate for short, is made from high-quality limestone and processed into a white powder using a lime grinding mill. Heavy calcium carbonate is characterized by high whiteness, good purity, soft color, and stable chemical composition. In the dry preparation process of heavy calcium carbonate powder, Raymond (pendulum) mills are often used to grind the limestone into fine powder. After obtaining the heavy calcium carbonate powder, it is necessary to collect and package the powder separately.

[0003] In the existing technology, after the heavy calcium carbonate powder comes out of the Raymond mill after being crushed, the connecting sleeve and telescopic hose used for dispensing cannot be properly fixed during the dispensing and packaging process. When the powder moves in the telescopic hose, it will cause the telescopic hose to shake. Summary of the Invention

[0004] The purpose of this invention is to provide an automatic dispensing system for heavy calcium carbonate powder production equipment, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an automatic dispensing system for a heavy calcium carbonate powder device, comprising a table, two dispensing boxes installed on the top of the table, and a telescopic hose located on the top of the table. Two telescopic rods are installed on the top of the table, and a support plate is installed on the top of the two telescopic rods. A slot is provided on the support plate, and connecting blocks are installed on both sides of the slot on the top of the support plate. A motor is installed on the side of one connecting block away from the other connecting block. The output shaft of the motor is coaxially connected to a threaded rod, and the threaded rod is threadedly connected to a sliding block.

[0006] A side support plate is installed on one side of the top of the tabletop, and a fixed tube is installed on the side support plate. The telescopic flexible tube is installed at the end of the fixed tube away from the side support plate.

[0007] In a preferred embodiment of the present invention, a connecting plate is installed on one side of the sliding block, and two screws are threadedly connected to the top of the connecting plate, and the connecting plate is fixed to the sliding block by the two screws.

[0008] In a preferred embodiment of the present invention, a first connecting sleeve is provided on the connecting plate, and a first protrusion is installed on one side of the connecting plate.

[0009] In a preferred embodiment of the present invention, a connecting plate is installed on one side of the bottom of the support plate, and the connecting plate has a slot.

[0010] In a preferred embodiment of the present invention, two sliding plates are slidably mounted on the connecting plate, and a second connecting sleeve is fitted on each of the two sliding plates.

[0011] In a preferred embodiment of the present invention, a second protrusion is installed on one side of each of the two sliding plates.

[0012] In a preferred embodiment of the present invention, the end of the telescopic hose furthest from the fixed pipe is fitted onto the first connecting sleeve of the connecting plate.

[0013] In a preferred embodiment of the present invention, when the connecting plate is moved to one side, the first connecting sleeve and the second connecting sleeve overlap.

[0014] In a preferred embodiment of the present invention, when the connecting plate is moved to one side, a pin is inserted into the first protrusion and the second protrusion.

[0015] In a preferred embodiment of the present invention, a valve is installed on the aforementioned telescopic hose.

[0016] The technical effects and advantages of this automatic feeding system for heavy calcium carbonate powder production:

[0017] When using the automatic feeding system for heavy calcium carbonate powder, after the powder is crushed by Raymond mill and conveyed to the fixed pipe, the motor is turned on to drive the connecting plate to move. When the connecting plate moves, it drives the first connecting sleeve and the telescopic hose to move. The pin is inserted into the first protrusion and the second protrusion, which can fix the telescopic hose after it has moved to the appropriate position, reducing the shaking caused by the flow of heavy calcium carbonate powder inside the telescopic hose and improving the stability of the telescopic hose to a certain extent.

[0018] If the positions of the two second connecting sleeves need to be adjusted during the material distribution process, the two sliding plates are slid to move the two second connecting sleeves, and the two sliding base plates are slid to move the two material distribution boxes. The positions of the two second connecting sleeves can be adjusted according to the needs of use. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present invention;

[0020] Figure 2 This is a schematic diagram of the telescopic rod, support plate, and top structure of the support plate according to an embodiment of the present invention;

[0021] Figure 3 This is a schematic diagram of the sliding block, connecting plate, and structure on the connecting plate according to an embodiment of the present invention;

[0022] Figure 4 This is a schematic diagram of one side of the telescopic rod, support plate, and bottom structure of the support plate according to an embodiment of the present invention;

[0023] Figure 5 For the present invention Figure 4 A schematic diagram of the structure on the other side of the embodiment;

[0024] Figure 6 This is a schematic diagram of the sliding plate and its structure according to an embodiment of the present invention;

[0025] Figure 7 This is a schematic diagram of the structure after the telescopic hose and connecting plate are connected according to an embodiment of the present invention;

[0026] Figure 8 This is a schematic diagram of the structure after the connecting plate is moved to the top of the sliding plate and the pin is inserted, according to an embodiment of the present invention.

[0027] In the picture:

[0028] 101. Tabletop; 102. Table legs; 103. Telescopic rod; 104. Side support plate;

[0029] 111. Limiting protrusion; 112. Sliding base plate; 113. Material distribution box;

[0030] 201. Support plate; 202. Connecting block; 203. Motor; 204. Threaded rod; 205. Slot;

[0031] 211. Sliding block; 212. Connecting plate; 213. Screw; 214. First connecting sleeve; 215. First protrusion;

[0032] 221. Connecting plate; 222. Slot;

[0033] 231. Sliding plate; 232. Second connecting sleeve; 233. Second protrusion; 234. Knob; 235. Pin;

[0034] 301. Fixed pipe; 302. Telescopic flexible hose; 303. Valve. Detailed Implementation

[0035] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0036] Please see as follows Figures 1-8 The automatic dispensing system for a heavy calcium carbonate powder device shown includes a table 101, two dispensing boxes 113 installed on the top of the table 101, a telescopic hose 302 located on the top of the table 101, and table legs 102 installed at the four corners of the bottom of the table 101 to support the automatic dispensing system.

[0037] In order to improve the fixing effect of the connecting plate 212 and the telescopic hose 302 during the material distribution process, such as Figures 1-8 As shown, two telescopic rods 103 are installed on the top of the tabletop 101. A support plate 201 is installed on the top of the two telescopic rods 103. A slot 205 is provided on the support plate 201. Connecting blocks 202 are installed on both sides of the slot 205 on the top of the support plate 201. A motor 203 is installed on the side of one connecting block 202 away from the other connecting block 202. A threaded rod 204 is coaxially connected to the output shaft of the motor 203. A sliding block 211 is threadedly connected to the threaded rod 204. The motor 203 drives the threaded rod 204 to rotate. When the threaded rod 204 rotates, it drives the sliding block 211 to move left and right through the threaded connection. A side support plate 104 is installed on one side of the top of the tabletop 101. A fixed pipe 301 is installed on the support plate 104. A telescopic hose 302 is installed at the end of the fixed pipe 301 away from the side support plate 104. The end of the telescopic hose 302 away from the fixed pipe 301 is sleeved on the first connecting sleeve 214 of the connecting plate 212. A valve 303 is installed on the telescopic hose 302. The grinding powder enters the automatic feeding system from the fixed pipe 301, is conveyed through the telescopic hose 302, and the flow of the grinding powder is controlled by the valve 303 (the flow described in this specification is not the flow of liquid, but a process similar to the movement of crushed materials such as sand), thereby minimizing the loss caused by the continued flow of grinding powder when moving the telescopic hose 302 and the connecting plate 212. Figure 7 As shown, a connecting plate 212 is installed on one side of the sliding block 211. Two screws 213 are threaded to the top of the connecting plate 212, and the connecting plate 212 is fixed to the sliding block 211 by the two screws 213. The connecting plate 212 can be replaced by the two screws 213. A first connecting sleeve 214 is fitted on the connecting plate 212 for connecting the bottom end of the telescopic hose 302, so that the grinding powder flows downward from the first connecting sleeve 214. A first protrusion 215 is installed on one side of the connecting plate 212. Each of the two sliding plates 231 is fitted with a second connecting sleeve 232, the second connecting sleeve 232 having the same aperture size as the first connecting sleeve 214. The grinding powder flowing through the first connecting sleeve 214 flows out through the second connecting sleeve 232 and into the distribution box 113 below. A second protrusion 233 is installed on one side of each of the two sliding plates 231, the second protrusion 233 having the same shape as the first protrusion 215. When the connecting plate 212 moves to one side, the first connecting sleeve 214 and the second connecting sleeve 232 overlap. Figure 8 As shown, a pin 235 is inserted into the first protrusion 215 and the second protrusion 233. After the connecting plate 212 moves, the pin 235 can fix the connecting plate 212 to the top of the sliding plate 231, thereby improving the fixing effect of the connecting plate 212.

[0038] In order to adjust the distance between the two sliding plates 231 as needed, such as Figure 1 , Figures 4-5As shown, a connecting plate 221 is installed on one side of the bottom of the support plate 201. The connecting plate 221 has a slot 222. Two sliding plates 231 are slidably installed on the connecting plate 221. The two sliding plates 231 can move on the connecting plate 221. A knob 234 is threadedly connected to each of the two sliding plates 231. After the two sliding plates 231 slide to a suitable position, the two knobs 234 can be tightened to fix the two sliding plates 231. The two knobs 234 are slidably set in the slot 222 for easy operation. Two limiting protrusions 111 are installed on the top of the table 101. Two sliding base plates 112 are slidably connected to the two limiting protrusions 111. A material distribution box 113 is placed on each of the two sliding base plates 112. The two material distribution boxes 113 are located at the bottom of one of the sliding plates 231 and are used to collect the grinding powder flowing out of the second connecting sleeve 232.

[0039] This automatic feeding system for heavy calcium carbonate powder production operates as follows: After the powder, pulverized by the Raymond mill, is conveyed to the fixed pipe 301, valve 303 is first closed, and motor 203 is turned on to rotate the threaded rod 204. The threaded rod 204 then moves the sliding block 211, which in turn moves the connecting plate 212. The moving connecting plate 212 then moves the first connecting sleeve 214 and the telescopic hose 302. When the first connecting sleeve 214 is attached to the top of the second connecting sleeve 232, motor 203 is turned off, and pin 235 is inserted into the first protrusion 215 and the second protrusion 233. The telescopic hose 302 can then be moved. 2. After moving to the appropriate position, fix it to improve the stability of the telescopic hose 302 when distributing materials and reduce the shaking caused by the flow of heavy calcium carbonate powder inside the telescopic hose 302. If it is necessary to adjust the position of the two second connecting sleeves 232 during the distributing process, slide the two sliding plates 231 to drive the two second connecting sleeves 232 to move. After moving, tighten the two knobs 234 to fix the two sliding plates 231. According to the position of the two sliding plates 231, slide the two sliding base plates 112 to drive the two distributing boxes 113 to move, so that the two distributing boxes 113 are located at the bottom of the two second connecting sleeves 232.

[0040] The above description is merely a preferred embodiment of the invention, but the scope of protection of the invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the invention, based on the technical solution and inventive concept of the invention, should be included within the scope of protection of the invention.

Claims

1. A kind of automatic material distribution system for heavy calcium powder device, including table board (101), two material distribution boxes (113) installed in the top of table board (101), retractable hose (302) is located in the top of table board (101), it is characterized by: Two telescopic rods (103) are installed on the top of the table plate (101), two supporting plates (201) are installed on the top of the two telescopic rods (103), clamping grooves (205) are formed in the supporting plates (201), connecting blocks (202) are installed on the two sides of the clamping grooves (205) on the top of the supporting plates (201), a motor (203) is installed on the side of one of the connecting blocks (202) away from the other connecting block (202), a threaded rod (204) is coaxially connected with the output shaft of the motor (203), and a sliding clamping block (211) is threadedly connected with the threaded rod (204); A side supporting plate (104) is installed on one side of the top of the table plate (101), a fixed pipe (301) is installed on the side supporting plate (104), and a telescopic hose (302) is installed at the end of the fixed pipe (301) away from the side supporting plate (104); A connecting plate (212) is installed on one side of the sliding clamping block (211), two screws (213) are threadedly connected with the top of the connecting plate (212), and the connecting plate (212) is fixed to the sliding clamping block (211) through the two screws (213); A first connecting sleeve (214) is sleeved on the connecting plate (212), and a first protruding block (215) is installed on one side of the connecting plate (212); A connecting clamping plate (221) is installed on one side of the bottom of the supporting plate (201), and a notch (222) is formed in the connecting clamping plate (221); Two sliding plates (231) are slidably installed on the connecting clamping plate (221), and second connecting sleeves (232) are sleeved on the two sliding plates (231); Second protruding blocks (233) are installed on one side of the two sliding plates (231), and the end of the telescopic hose (302) away from the fixed pipe (301) is sleeved on the first connecting sleeve (214) of the connecting plate (212). When the connecting plate (212) moves to one side, the first connecting sleeve (214) and the second connecting sleeve (232) overlap.

2. The automatic material distribution system for the ground calcium carbonate device according to claim 1, characterized in that: When the connecting plate (212) moves to one side, the first protruding block (215) and the second protruding block (233) are inserted with a bolt (235).

3. The automatic distribution system for a ground calcium carbonate plant according to claim 1, wherein: A valve (303) is installed on the telescopic hose (302).

Citation Information

Patent Citations

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