Blanking structure for intelligent conveying mica powder production

The intelligent conveying structure for mica powder production utilizes a motor-driven transmission shaft and sliding frame to achieve stable transport. Combined with scrapers and leveling rods to prevent accumulation, and screen plate vibration and separation device to separate large pieces of material, the problem of accumulation and blockage in the material feeding structure during mica powder production is solved, improving screening efficiency and reducing maintenance costs.

CN121107137AInactive Publication Date: 2025-12-12JIANGYIN MAOAN MACHINERY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511670731.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-12-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing mica powder production feeding structure is prone to accumulation when too much material is fed at once, which affects the feeding effect and screening efficiency, and is also prone to clogging.

Method used

A smart conveying structure for mica powder production was designed, including a processing frame, a smoothing device, and a separating device. Stable transportation is achieved by a motor-driven transmission shaft that drives a rotating plate and a sliding frame. Scrapers and smoothing rods are used to prevent accumulation. The screen plate vibrates up and down to improve screening efficiency. Large pieces of material are separated by a separating frame and a collecting device to prevent blockage and improve screening effect.

Benefits of technology

This achieves stable and continuous conveying of mica powder, avoids accumulation and blockage, improves screening efficiency, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a discharging structure for intelligent conveying mica powder production, and relates to the field of mica powder production. The discharging structure for mica powder production comprises a processing frame and further comprises a discharging device. Wherein a motor is fixedly mounted at the bottom of the inner wall of the treatment frame, a transmission shaft is fixedly mounted at the output end of the motor, and the transmission shaft rotationally penetrates through the inner wall and the outer wall of the treatment frame; wherein the feeding device comprises a material storage box, a fixed frame, a sliding frame, a bearing block and a rotating plate, the material storage box fixedly penetrates through the inner wall and the outer wall of the upper portion of the treatment frame, the fixed frame is fixedly installed in the material storage box, the sliding frame is installed in the fixed frame in a sliding mode, and the bearing block is fixedly installed below the sliding frame; according to the discharging structure for mica powder production, stable and continuous transportation of materials can be achieved, and the situation that excessive materials are discharged at a time, accumulation is caused, and then the screening effect is affected is avoided.
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Description

TECHNICAL FIELD

[0001] The application relates to the field of mica powder production, and particularly relates to an intelligent conveying mica powder production discharging structure. BACKGROUND

[0002] Mica powder is an important non-metallic mineral product, and mainly comprises silicate minerals. The mica powder has excellent physical properties and chemical stability, and is widely applied in many fields, such as plastics, rubber, paint, ceramics, cosmetics and the like.

[0003] A patent with the patent publication number CN218433889U relates to a mica powder production discharging structure. A guide table is fixed to the middle part of the inner wall of a discharging cylinder. The upper part of the guide table is in contact with the discharging cylinder through a chamfer transition. A vertical sliding cylinder is slidably connected to the lower part of the inner wall of the discharging cylinder. Horizontal guide strips are fixed to the left and right ends of the inner wall of the sliding cylinder. A horizontal discharge cylinder is arranged at the rear part. A horizontal plug is inserted into the discharge cylinder. A horizontal sliding frame is slidably connected to the two guide strips. The patent can realize the continuous rotation of a first shaft, a second shaft, a third shaft and a fourth shaft, and the up-down and front-back reciprocating movements of a filter screen through a motor. The dispersion rods which move in a circumferential direction along with the first shaft, the second shaft, the third shaft and the fourth shaft can actively stir the falling mica powder to the left and right parts of the discharging cylinder, and passively disperse the mica powder in the front-back direction and the left-right direction, so that the mica powder is more uniformly dispersed.

[0004] In the above patent, the motor can realize the continuous rotation of the first shaft, the second shaft, the third shaft and the fourth shaft, and the up-down and front-back reciprocating movements of the filter screen, so that the mica powder is more uniformly dispersed, and the discharging efficiency is improved. However, in actual use, when too much mica powder is discharged at one time, the excessive mica powder accumulated on the surface of the filter screen will seriously affect the discharging effect. Therefore, a mica powder production discharging structure with stable feeding is designed. SUMMARY

[0005] In view of the deficiencies of the prior art, the application provides an intelligent conveying mica powder production discharging structure, which solves the problems in the background art.

[0006] In order to achieve the above object, the present application is realized by the following technical scheme: a kind of intelligent conveying mica powder production's unloading structure, including processing frame, it further includes unloading device and trowelling device;Wherein, the inner wall bottom of the processing frame is fixedly installed with motor, the output of the motor is fixedly installed with transmission shaft, the transmission shaft rotates and penetrates the inner and outer walls of processing frame;Wherein, the feeding device includes storage tank, fixed frame, sliding frame, receiving block and rotating plate, the output of motor rotates and drives transmission shaft to rotate, transmission shaft rotates and drives rotating plate to rotate, rotating plate rotation contacts and extrudes receiving block and moves upward, the storage tank is fixedly penetrated with the upper inner and outer walls of processing frame, the fixed frame is fixedly installed in the inside of storage tank, the sliding frame is slidably installed in the inside of fixed frame, the receiving block is fixedly installed below the sliding frame, the rotating plate is fixedly installed on the surface of transmission shaft, the end of receiving block close to rotating plate is opened as bevel surface, spring one is arranged between the sliding frame and fixed frame, the surface of sliding frame is provided with feed inlet, the surface of fixed frame is provided with discharge port, sliding frame moves upward so that the feed inlet on the surface of sliding frame coincides with the discharge port on the surface of fixed frame, so that the material in the inside of storage tank is discharged into the inside of processing frame, realizes the stable and continuous transportation of material, avoids that too much material is discharged at one time and causes accumulation to further affect the screening effect.

[0007] According to the above technical scheme, the upper of the sliding frame is fixedly installed with moving rod, the surface of the moving rod is fixedly installed with L-shaped rod, the end of the L-shaped rod away from the moving rod is fixedly installed with scraping rod, the scraping rod is slidably connected with the fixed frame, the moving rod slidably penetrates the upper inner and outer walls of the fixed frame, the L-shaped rod moves upward to drive the scraping rod to move upward, the scraping rod moves upward to stir the material beside the discharge port of the fixed frame, avoids that the material is accumulated on the surface of the discharge port to cause blockage, improves the discharging effect.

[0008] According to the above technical scheme, the trowelling device includes reciprocating screw rod, protection frame, sleeve, connecting rod, trowelling rod and sieve plate, transmission shaft rotates to drive reciprocating screw rod to rotate, reciprocating screw rod rotates to drive sleeve to reciprocate on its surface, sleeve reciprocation drives connecting rod to reciprocate, the reciprocating screw rod rotates and penetrates the inner and outer walls of processing frame, the protection frame is fixedly installed in the inside of processing frame, the sleeve is slidably installed on the surface of reciprocating screw rod, the connecting rod is fixedly installed on the surface of sleeve, the trowelling rod is fixedly installed on the end of connecting rod away from sleeve, the sieve plate is slidably installed on the inner wall of processing frame, the transmission shaft is drivingly connected with reciprocating screw rod through transmission belt, connecting rod reciprocation drives trowelling rod to reciprocate, trowelling rod reciprocation can evenly spread the material collected on the surface of sieve plate on the surface of sieve plate, improve the screening efficiency.

[0009] According to the technical scheme, the convex block is arranged on the surface of the screen plate, the receiving rod is arranged on the surface of the connecting rod, the upper portion of the convex block is an arc surface, the second clock spring is arranged between the screen plate and the inner wall of the processing frame, the convex block moves downward to drive the screen plate to move downward, the screen plate moves downward and resets under the action of the second clock spring, and the screen plate shakes up and down to further improve the screening efficiency.

[0010] According to the technical scheme, the separating device and the collecting device are further arranged, the separating frame, the baffle and the fixing rod, the large material in the material is pushed to the two ends of the screen plate in the process that the leveling rod moves to flatten the material, the large material contacts and presses the baffle to rotate, the separating frame is fixedly arranged on the inner wall of the processing frame, the surface of the separating frame is provided with the first sliding groove, the baffle is hingedly connected in the first sliding groove, the fixing rod is fixedly arranged on the surface of the separating frame, the third clock spring is arranged between the baffle and the first sliding groove, the fixing rod contacts the baffle, the baffle rotates to drive the large material into the interior of the separating frame, the baffle resets to contact the fixing rod after rotating and is limited, the angle of the baffle in the reset state is limited, the large material in the material can be effectively separated, and the large material is prevented from remaining on the surface of the screen plate to affect the screening effect.

[0011] According to the technical scheme, the inner wall of the processing frame is fixedly provided with the air frame, the sliding plate is slidably arranged in the air frame, the push rod is fixedly arranged on the surface of the sliding plate, the air exhaust pipe penetrates through the surface of the air frame, the sliding plate and the air frame are fixedly connected through the elastic telescopic rod, the one-way valve is arranged on the surface of the air frame, the air in the air frame is extruded to be discharged through the air exhaust pipe, the gas discharged through the air exhaust pipe can blow away the fine material beside the baffle, the fine material can be effectively prevented from being discharged into the separating frame together with the large material, and the subsequent maintenance cost is reduced.

[0012] According to the technical scheme, the collecting device comprises the pressing rod, the sliding rod, the rotating rod and the partition plate, the baffle drives the pressing rod to move, the pressing rod moves to contact and drive the rotating rod to rotate, the rotating rod rotates to contact and drive the partition plate to rotate, the pressing rod is fixedly arranged on the surface of the baffle, the second sliding groove is arranged on the surface of the separating frame, the sliding rod is slidably arranged in the second sliding groove, the rotating rod is hingedly connected to the surface of the sliding rod, the third sliding groove is arranged on the surface of the separating frame, the partition plate is hingedly connected in the third sliding groove, the fourth clock spring is arranged between the partition plate and the third sliding groove, the partition plate rotates to discharge the large material collected in the separating frame to the outside, the large material collected in the separating frame is prevented from being excessive to cause the excessive large material to remain on the surface of the screen plate, and the screening effect is further affected.

[0013] According to the technical scheme, the sliding rod is fixedly installed with a limiting rod at one end away from the rotating rod, the surface of the limiting rod is connected with a collecting box, a clock spring is arranged between the sliding rod and the sliding groove, the sliding rod moves to drive the rotating rod to move, the rotating rod moves into the movement track of the pressing rod, and thus the large materials can be effectively prevented from being discharged when the collecting box is not placed, thereby increasing the subsequent maintenance cost.

[0014] The application provides a smart unloading structure for mica powder production. (1) The unloading structure for mica powder production, the motor is started, the output end of the motor drives the bearing block and the sliding frame to move upward through the transmission shaft and the rotating plate, the upward movement of the sliding frame enables the materials to enter the inside of the processing frame through the feeding port and the discharging port, realizes stable transportation of the materials, avoids the accumulation of too much materials discharged at one time, and thus affects the screening effect, meanwhile, the upward movement of the sliding frame drives the scraper to move through the moving rod and the L-shaped rod, the materials on the surface of the discharging port are pushed, the accumulation of the materials is avoided, and the transportation effect of the materials is improved.

[0015] (2) The unloading structure for mica powder production, the rotating shaft drives the reciprocating screw rod to rotate through the transmission belt, the reciprocating screw rod drives the smoothing rod to reciprocate on the surface of the sieve plate through the sleeve and the connecting rod, the imported materials are evenly smoothed on the surface of the drying plate, the efficiency of material screening is improved, the accumulation of the materials is avoided, the efficiency of the sieve material is improved, meanwhile, the movement of the connecting rod enables the sieve plate to vibrate up and down through the bearing rod and the extrusion block, and the screening efficiency of the materials is further improved.

[0016] (3) The unloading structure for mica powder production, the smoothing rod moves to push the large block of condensed materials to the two sides of the sieve plate, the large block of materials contacts and extrudes the baffle and is guided into the inside of the separation frame, the large block of materials is prevented from staying on the surface of the sieve plate and affecting the screening of the materials, the screening effect is improved, meanwhile, the connecting rod contacts and extrudes the air in the air frame through the push rod and the sliding plate, the air is discharged through the exhaust pipe to blow the fine materials beside the baffle, the fine materials can be effectively prevented from being discharged into the separation frame together with the large block of materials, and the subsequent maintenance cost is reduced.

[0017] (4) The unloading structure for mica powder production, the baffle rotates to drive the rotating rod and the partition plate to rotate through the pressing rod, the large block of materials is discharged from the separation frame into the inside of the collecting box, the large block of materials collected by the separation frame is prevented from being too much to cause the excessive large block of materials to stay on the surface of the sieve plate and affect the sieving effect, meanwhile, the movement of the collecting frame contacts and extrudes the limiting rod to move, the limiting rod moves to drive the sliding rod and the rotating rod to move and enter the movement track of the pressing rod, and thus the large block of materials can be effectively prevented from being discharged when the collecting box is not placed, thereby increasing the subsequent maintenance cost. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the whole structure schematic diagram of the present application; Figure 2 It is the internal structure schematic diagram of the present application; Figure 3 It is the storage frame and sliding frame position structure schematic diagram of the present application; Figure 4 It is the reciprocating wire rod and sieve plate position structure schematic diagram of the present application; Figure 5 It is the Figure 4 A part enlarged structure schematic diagram of the present application; Figure 6 It is the separation frame and collection box position structure schematic diagram of the present application; Figure 7 It is the Figure 6 B part enlarged structure schematic diagram of the present application.

[0019] In the figure: 1, processing frame; 2, transmission shaft; 31, storage tank; 32, fixed frame; 33, sliding frame; 34, bearing block; 35, rotating plate; 36, moving rod; 37, L-shaped rod; 38, scraping rod; 41, reciprocating wire rod; 42, protection frame; 43, sleeve; 44, connecting rod; 45, smoothing rod; 46, sieve plate; 47, protruding block; 48, bearing rod; 51, separation frame; 52, baffle; 53, fixed rod; 54, air frame; 55, sliding plate; 56, push rod; 57, exhaust pipe; 61, pressing rod; 62, sliding rod; 63, rotating rod; 64, partition; 65, limiting rod; 66, collection box. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0021] Please refer to Figures 1-6One embodiment of the application is: a smart delivery mica powder production unloading structure, including processing frame 1, also including unloading device and leveling device; wherein the inner wall bottom of processing frame 1 is fixedly installed with motor, the output end of motor is fixedly installed with transmission shaft 2, transmission shaft 2 rotates through the inner and outer walls of processing frame 1; wherein the feeding device includes storage tank 31, fixed frame 32, sliding frame 33, receiving block 34 and rotating plate 35, the output end of motor rotates to drive transmission shaft 2 to rotate, transmission shaft 2 rotates to drive rotating plate 35 to rotate, rotating plate 35 rotates to contact and extrude receiving block 34 to move upward, storage tank 31 is fixedly penetrated through the upper inner and outer walls of processing frame 1, fixed frame 32 is fixedly installed inside storage tank 31, sliding frame 33 is slidingly installed inside fixed frame 32, receiving block 34 is fixedly installed below sliding frame 33, rotating plate 35 is fixedly installed on the surface of transmission shaft 2, the end of receiving block 34 close to rotating plate 35 is opened as an inclined surface, a clock spring is arranged between sliding frame 33 and fixed frame 32, the surface of sliding frame 33 is opened with a feeding port, the surface of fixed frame 32 is opened with a discharge port, the upward movement of sliding frame 33 makes the feeding port on the surface of sliding frame 33 coincide with the discharge port on the surface of fixed frame 32, so that the materials in the interior of storage tank 31 are discharged into the interior of processing frame 1, realizing stable and continuous transportation of the materials, avoiding the accumulation of too much materials discharged at one time, and thus affecting the screening effect.

[0022] The upper side of sliding frame 33 is fixedly installed with moving rod 36, the surface of moving rod 36 is fixedly installed with L-shaped rod 37, the end of L-shaped rod 37 away from moving rod 36 is fixedly installed with scraping rod 38, scraping rod 38 is slidingly connected with fixed frame 32, moving rod 36 slidingly penetrates through the upper inner and outer walls of fixed frame 32, the upward movement of L-shaped rod 37 drives the upward movement of scraping rod 38, the upward movement of scraping rod 38 stirs the materials beside the discharge port of fixed frame 32, avoiding the blockage of the materials accumulated on the surface of discharge port, and improving the discharging effect.

[0023] The leveling device includes reciprocating screw rod 41, protection frame 42, sleeve 43, connecting rod 44, leveling rod 45 and sieve plate 46, transmission shaft 2 rotates to drive reciprocating screw rod 41 to rotate, reciprocating screw rod 41 rotates to drive sleeve 43 to reciprocate on the surface thereof, sleeve 43 reciprocates to drive connecting rod 44 to reciprocate, reciprocating screw rod 41 rotates to penetrate through the inner and outer walls of processing frame 1, protection frame 42 is fixedly installed inside processing frame 1, sleeve 43 is slidingly installed on the surface of reciprocating screw rod 41, connecting rod 44 is fixedly installed on the surface of sleeve 43, leveling rod 45 is fixedly installed on the end of connecting rod 44 away from sleeve 43, sieve plate 46 is slidingly installed on the inner wall of processing frame 1, transmission shaft 2 is drivingly connected with reciprocating screw rod 41 through transmission belt, reciprocating movement of connecting rod 44 drives reciprocating movement of leveling rod 45, reciprocating movement of leveling rod 45 can evenly spread the materials collected on the surface of sieve plate 46 on the surface of sieve plate 46, improving the screening efficiency.

[0024] The surface of the screen plate 46 is fixedly installed with a protrusion 47, the surface of the connecting rod 44 is fixedly installed with a receiving rod 48, the upper part of the protrusion 47 is provided with an arc surface, a clock spring two is arranged between the screen plate 46 and the inner wall of the processing frame 1, the protrusion 47 moves downward to drive the screen plate 46 to move downward, the screen plate 46 moves downward and resets under the action of the clock spring two, so that the screen plate 46 shakes up and down, and the screening efficiency is further improved.

[0025] When the embodiment works, the motor is started, the output end of the motor rotates to drive the transmission shaft 2 to rotate, the transmission shaft 2 rotates to drive the rotating plate 35 to rotate, the rotating plate 35 rotates to contact and extrude the receiving block 34 to move upward, the receiving block 34 moves upward to drive the sliding frame 33 to move upward, the sliding frame 33 moves upward to make the material inlet on the surface of the sliding frame 33 coincide with the material outlet on the surface of the fixed frame 32, and then the material in the storage tank 31 is discharged into the inside of the processing frame 1, so that the stable and continuous transportation of the material is realized, the accumulation of too much material discharged at one time is avoided, and the effect of screening is affected, meanwhile, the sliding frame 33 moves upward to drive the moving rod 36 to move upward, the moving rod 36 moves upward to drive the L-shaped rod 37 to move upward, the L-shaped rod 37 moves upward to drive the scraping rod 38 to move upward, the scraping rod 38 moves upward to stir the material beside the material outlet of the fixed frame 32, so that the material is prevented from being accumulated on the surface of the material outlet to cause blockage, and the effect of discharging is improved.

[0026] The transmission shaft 2 rotates to drive the reciprocating screw rod 41 to rotate through the transmission belt, the reciprocating screw rod 41 rotates to drive the sleeve pipe 43 to reciprocate on the surface thereof, the sleeve pipe 43 reciprocates to drive the connecting rod 44 to reciprocate, the connecting rod 44 reciprocates to drive the leveling rod 45 to reciprocate, the reciprocating movement of the leveling rod 45 can uniformly spread the material collected on the surface of the screen plate 46 on the surface of the screen plate 46, the efficiency of screening is improved, the protection frame 42 can effectively prevent the material from contacting the reciprocating screw rod 41 to affect the spreading work of the material, and too much material accumulated at the same position is avoided to affect the effect of screening, meanwhile, the movement of the connecting rod 44 drives the receiving rod 48 to move, the receiving rod 48 moves to contact and extrude the protrusion 47 to move downward, the protrusion 47 moves downward to drive the screen plate 46 to move downward, the screen plate 46 moves downward and resets under the action of the clock spring two, so that the screen plate 46 shakes up and down, and the screening efficiency is further improved.

[0027] Please refer to Figures 1-7On the basis of the above-mentioned embodiments, another embodiment of the present application further comprises a separating device and a collecting device, the separating frame 51, the baffle 52 and the fixed rod 53, the large pieces of material in the material are pushed to both ends of the sieve plate 46 during the movement of the leveling rod 45 for flattening the material, the large pieces of material contact and extrude the baffle 52 to rotate, the separating frame 51 is fixedly installed on the inner wall of the processing frame 1, a sliding groove one is formed on the surface of the separating frame 51, the baffle 52 is hingedly connected inside the sliding groove one, the fixed rod 53 is fixedly installed on the surface of the separating frame 51, a spring three is arranged between the baffle 52 and the sliding groove one, the fixed rod 53 contacts the baffle 52, the baffle 52 rotates to make the large pieces of material enter the inside of the separating frame 51, and the baffle 52 is reset after rotation to contact the fixed rod 53 and is limited, the angle of the baffle 52 is limited to reset, which can effectively separate the large pieces of material in the material, and avoid that the large pieces of material stay on the surface of the sieve plate 46 to affect the screening effect.

[0028] The inner wall of the processing frame 1 is fixedly installed with an air frame 54, the air frame 54 is slidably installed with a sliding plate 55, the surface of the sliding plate 55 is fixedly installed with a push rod 56, the surface of the air frame 54 is fixedly penetrated with an exhaust pipe 57, the sliding plate 55 and the air frame 54 are fixedly connected through an elastic expansion rod, a one-way valve is formed on the surface of the air frame 54, the air inside the air frame 54 is extruded to be discharged through the exhaust pipe 57, the gas discharged from the exhaust pipe 57 can blow away the fine material beside the baffle 52, which can effectively prevent the fine material from being discharged into the separating frame 51 together with the large pieces of material, and reduce the subsequent maintenance cost.

[0029] The collecting device comprises a pressing rod 61, a sliding rod 62, a rotating rod 63 and a partition plate 64, the baffle 52 rotates to drive the pressing rod 61 to move, the pressing rod 61 moves to contact and drive the rotating rod 63 to rotate, the rotating rod 63 rotates to contact and drive the partition plate 64 to rotate, the pressing rod 61 is fixedly installed on the surface of the baffle 52, a sliding groove two is formed on the surface of the separating frame 51, the sliding rod 62 is slidably installed in the sliding groove two, the rotating rod 63 is hingedly connected to the surface of the sliding rod 62, a sliding groove three is formed on the surface of the separating frame 51, the partition plate 64 is hingedly connected in the sliding groove three, a spring four is arranged between the partition plate 64 and the sliding groove three, the partition plate 64 rotates to discharge the large pieces of material collected in the separating frame 51 to the outside, which can avoid that the large pieces of material collected in the separating frame 51 are too much to cause the excessive large pieces of material to stay on the surface of the sieve plate 46, and further affect the screening effect.

[0030] A limiting rod 65 is fixedly installed on the end of the sliding rod 62 away from the rotating rod 63, a collecting box 66 is clamped on the surface of the limiting rod 65, a spring five is arranged between the sliding rod 62 and the sliding groove three, the sliding rod 62 moves to drive the rotating rod 63 to move, the rotating rod 63 moves into the movement track of the pressing rod 61, which can effectively avoid that the large pieces of material are discharged when the collecting box 66 is not placed, and further increase the subsequent maintenance cost.

[0031] When the embodiment works, the large pieces of material in the material are pushed to both ends of the screen plate 46 during the movement of the leveling rod 45 for flattening the material, the large pieces of material contact and extrude the baffle 52 to rotate, the rotation of the baffle 52 makes the large pieces of material enter the inside of the separation frame 51, and the baffle 52 is reset after rotating to contact the fixed rod 53 and is limited, the angle of the baffle 52 is limited, which can effectively separate the large pieces of material in the material, avoid the large pieces of material staying on the surface of the screen plate 46 to affect the screening effect, and at the same time, the connecting rod 44 moves to contact and extrude the push rod 56 to move, the movement of the push rod 56 drives the sliding plate 55 to move, the sliding plate 55 extrudes the air in the air frame 54, the air in the air frame 54 is extruded and discharged through the exhaust pipe 57, and the gas discharged from the exhaust pipe 57 can blow away the fine material beside the baffle 52, which can effectively prevent the fine material from being discharged into the separation frame 51 with the large pieces of material, thereby reducing the subsequent maintenance cost.

[0032] The rotation of the baffle 52 drives the pressing rod 61 to move, the pressing rod 61 moves to contact and drive the rotating rod 63 to rotate, the rotating rod 63 rotates to contact and rotate the partition plate 64, the rotation of the partition plate 64 can discharge the large pieces of material collected in the separation frame 51 to the outside, avoid the large pieces of material collected in the separation frame 51 to be too much to cause the excess large pieces of material to remain on the surface of the screen plate 46, thereby affecting the screening effect, and at the same time, when the collecting box 66 is clamped, the collecting box 66 moves to contact and extrude the limiting rod 65 to move and be limited, the movement of the limiting rod 65 drives the sliding rod 62 to move, the movement of the sliding rod 62 drives the rotating rod 63 to move, and the rotating rod 63 moves into the movement track of the pressing rod 61, which can effectively avoid the large pieces of material being discharged when the collecting box 66 is not placed, thereby increasing the subsequent maintenance cost.

[0033] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A feeding structure for intelligent conveying mica powder production, comprising a processing frame (1), characterized in that: It also includes a feeding device, a smoothing device, a separating device, and a collecting device; Among them, a motor is fixedly installed at the bottom of the inner wall of the processing frame (1), and a transmission shaft (2) is fixedly installed at the output end of the motor. The transmission shaft (2) rotates through the inner and outer walls of the processing frame (1). The feeding device includes a storage box (31), a fixed frame (32), a sliding frame (33), a receiving block (34), and a rotating plate (35). The storage box (31) is fixedly installed through the upper inner and outer walls of the processing frame (1). The fixed frame (32) is fixedly installed inside the storage box (31). The sliding frame (33) is slidably installed inside the fixed frame (32). The receiving block (34) is fixedly installed below the sliding frame (33). The rotating plate (35) is fixedly installed on the surface of the drive shaft (2). The end of the receiving block (34) near the rotating plate (35) is cut into a bevel. A spring is provided between the sliding frame (33) and the fixed frame (32). The surface of the sliding frame (33) is provided with a feed port. The surface of the fixed frame (32) is provided with a discharge port. The smoothing device includes a reciprocating screw (41), a protective frame (42), a sleeve (43), a connecting rod (44), a smoothing rod (45), and a sieve plate (46). The reciprocating screw (41) rotates through the inner and outer walls of the processing frame (1). The protective frame (42) is fixedly installed inside the processing frame (1). The sleeve (43) is slidably installed on the surface of the reciprocating screw (41). The connecting rod (44) is fixedly installed on the surface of the sleeve (43). The smoothing rod (45) is fixedly installed at the end of the connecting rod (44) away from the sleeve (43). The sieve plate (46) is slidably installed on the inner wall of the processing frame (1). The drive shaft (2) is connected to the reciprocating screw (41) via a drive belt. The surface of the sieve plate (46) is fixedly equipped with a protrusion (47), the surface of the connecting rod (44) is fixedly equipped with a supporting rod (48), the upper part of the protrusion (47) is opened as an arc surface, and a spring spring is provided between the sieve plate (46) and the inner wall of the processing frame (1). An air frame (54) is fixedly installed on the inner wall of the processing frame (1). A sliding plate (55) is slidably installed inside the air frame (54). A push rod (56) is fixedly installed on the surface of the sliding plate (55). An exhaust pipe (57) is fixedly passed through the surface of the air frame (54). The sliding plate (55) and the air frame (54) are fixedly connected by an elastic telescopic rod. A one-way valve is provided on the surface of the air frame (54).

2. The intelligent conveying structure for producing mica powder according to claim 1, characterized in that: A movable rod (36) is fixedly installed above the sliding frame (33). An L-shaped rod (37) is fixedly installed on the surface of the movable rod (36). A scraper (38) is fixedly installed at the end of the L-shaped rod (37) away from the movable rod (36). The scraper (38) is slidably connected to the fixed frame (32). The movable rod (36) slides through the upper inner and outer walls of the fixed frame (32).

3. The intelligent conveying structure for producing mica powder according to claim 1, characterized in that: The separation frame (51), baffle (52) and fixing rod (53) are described. The separation frame (51) is fixedly installed on the inner wall of the processing frame (1). A sliding groove is provided on the surface of the separation frame (51). A baffle (52) is hinged inside the sliding groove. The fixing rod (53) is fixedly installed on the surface of the separation frame (51). A spring is provided between the baffle (52) and the sliding groove. The fixing rod (53) is in contact with the baffle (52).

4. The intelligent conveying structure for producing mica powder according to claim 3, characterized in that: The collecting device includes a pressure rod (61), a sliding rod (62), a rotating rod (63), and a partition (64). The pressure rod (61) is fixedly installed on the surface of the baffle (52). The surface of the separation frame (51) is provided with a second sliding groove. The sliding rod (62) is slidably installed inside the second sliding groove. The rotating rod (63) is hinged to the surface of the sliding rod (62). The surface of the separation frame (51) is provided with a third sliding groove. The partition (64) is hinged to the inside of the third sliding groove. A spring is provided between the partition (64) and the third sliding groove.

5. The intelligent conveying structure for producing mica powder according to claim 4, characterized in that: A limiting rod (65) is fixedly installed at the end of the sliding rod (62) away from the rotating rod (63). A collection box (66) is snapped onto the surface of the limiting rod (65). A spring-loaded spring is provided between the sliding rod (62) and the slide groove.

Citation Information

Patent Citations

  • Discharging structure for mica powder production

    CN218433889U