A raw material conveying equipment for the production of alumina polishing liquid

By designing raw material conveying equipment for the production of alumina polishing liquid with transmission plates, baffles and electric push rods, the problems of easy drop of powdered raw materials and incomplete cleaning of glass bottles in traditional devices are solved, efficient transportation and convenient unloading are achieved, and work efficiency and cleanliness are improved.

CN119429502BActive Publication Date: 2025-08-15MEI KE RUI (JIANG SU) XIAN JIN CAI LIAO KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202510022051.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-08-15
Estimated Expiration
2045-01-07

AI Technical Summary

Technical Problem

During the production process of existing alumina polishing liquid, traditional transmission devices have problems such as easy drop of powder-like raw materials, guardrails hinder transportation, large contact surfaces between powder and belts, time-consuming and labor-intensive discharging, and incomplete cleaning of glass bottles.

Method used

The conveying equipment with transmission plate, baffle, electric push rod and control components is adopted. Through the automatic rotation of the baffle and the control of the electric push rod, the protective transportation of powdered raw materials and convenient unloading are realized. The cleaning effect of the glass bottle is achieved through the cooperation of the piston plate and baffle.

Benefits of technology

It improves the transportation protection and unloading efficiency of powdered raw materials, reduces the labor intensity of staff, maintains the clean state of the glass bottle, and improves the overall work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a raw material conveying device for the production of aluminum oxide polishing liquid, which belongs to the technical field of aluminum oxide polishing liquid production; it comprises two fixed seats, a conveying assembly is installed between the two fixed seats, a plurality of transmission plates are slidably connected to the conveying assembly through a plurality of evenly distributed fixed rods, the protective assembly comprises a positioning plate fixedly installed on the upper side of the fixed rod, and two first connecting plates are symmetrically fixedly connected to the lower side of the transmission plate. In the process of transporting the raw material of aluminum oxide polishing liquid, the present invention completes the transportation operation of the powdered raw material through the transmission plate, and in this process, under the action of the baffle, it can not only play a protective effect on the transported powdered raw material, but also when the powdered raw material needs to be unloaded, the baffle will automatically rotate as a whole, thereby making it convenient for the staff to unload the raw material from the transmission plate.
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Description

Technical Field

[0001] The invention relates to the technical field of aluminum oxide polishing liquid production, in particular to a raw material conveying device for aluminum oxide polishing liquid production. Background Art

[0002] Alumina polishing fluid is a chemical made primarily from aluminum oxide. It features high density, high hardness, and high-temperature stability. It is primarily used for surface polishing and optical processing, removing surface defects and improving optical transparency and gloss. The raw materials for alumina polishing fluid primarily include aluminum oxide (Al2O3) and sodium hydroxide. Al2O3 is the primary component of polished alumina, and its content determines its quality. Sodium hydroxide acts as a reactant, participating in the chemical reaction.

[0003] During the production process of alumina polishing liquid production line, a transmission device is required to transport the raw materials of alumina polishing liquid. The traditional transmission device mainly includes a motor, a rotating shaft, a belt, etc. The raw materials to be transported are placed on the belt and the motor is started to complete the transportation operation. The overall structure is simple.

[0004] However, in the actual working process, in order to prevent the raw materials from falling from the belt during transportation, a guardrail is often installed on the outside of the transmission device. The guardrail is in a fixed state as a whole. Although it has a certain protective effect, the guardrail will cause serious obstruction during the transportation of the raw materials, hindering the normal transportation work. At the same time, during the transportation of the raw materials, the contact area between the powdered raw materials and the belt is large. During the unloading of the raw materials, the material bag needs to be lifted first, which is time-consuming and labor-intensive. Moreover, the traditional transmission equipment can only complete the transmission operation, and the effect is relatively simple. During the transportation of empty glass bottles, there is no treatment, and the glass bottles cannot be kept in a clean state. Therefore, a raw material conveying equipment for the production of alumina polishing liquid is provided. Summary of the Invention

[0005] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a raw material conveying equipment for the production of aluminum oxide polishing liquid.

[0006] The present invention adopts the following technical solutions:

[0007] Material toggling mechanism, its both sides respectively have a cylinder pressure, and the cylinder pressure bar connects swing arm, and the swing arm end face has hook portion, and a bar passes position between the end of two swing arms and the hook portion.

[0008] Preferably, the control assembly includes two movable grooves symmetrically opened on the side walls of the control plate, and a third connecting plate is slidably connected in the two movable grooves, and a second spring is fixedly connected between the third connecting plate and the movable groove, and the third connecting plate is located in a side of the movable groove and is fixedly connected to a square rod, and the square rod slides through the control plate, and a notch is opened on the outer side of the square rod, and two sixth connecting plates are also slidably connected in the control plate, and the two square rods respectively pass through the two sixth connecting plates, and the two ends of the third connecting rod are fixedly connected to a ratchet, and a torsion spring is fixedly connected between the ratchet and the ninth connecting plate, the side wall of the second connecting plate is fixedly connected to the fifth connecting plate, and the six connecting rods are commonly fixedly connected between the two ninth connecting plates on the same side, and the outer side of the first connecting plate is fixedly connected to the fourth connecting plate.

[0009] Preferably, a lifting assembly is installed on the upper side of the ninth connecting plate, and the lifting assembly includes a second connecting rod fixedly installed on the upper side of the ninth connecting plate, and the side walls of each of the second connecting rods are fixedly connected to multiple racks, and two through slots are provided on the upper side of the transmission plate, and a fifth connecting rod is rotatably connected through both of the through slots, and both ends of the fifth connecting rod are fixedly connected to gears, and the gears and racks are meshed, and the outer side of the fifth connecting rod is evenly fixedly connected to multiple rotating rods.

[0010] Preferably, the upper side of the first connecting rod is threadedly connected to the piston plate, and the second connecting plate is installed with a shaking assembly for controlling the shaking of the baffle, and the shaking assembly includes a seventh connecting rod fixedly installed in the baffle, the lower side of the seventh connecting rod is fixedly connected to the eighth connecting rod, the eighth connecting rod and the first connecting rod are slidably connected, the lower side of the eighth connecting rod is fixedly connected to the ninth connecting rod, and the side wall of the second connecting plate is rotatably connected to the fourth connecting rod, one end of the fourth connecting rod passes through the third connecting rod, the fourth connecting rod is located in the second connecting plate and is fixedly connected to the eighth connecting plate, the outer circumference of the eighth connecting plate is provided with multiple grooves, the fourth connecting rod is fixedly connected to the rotating plate at one end away from the second connecting plate, and the outer circumference of the rotating plate is fixedly connected with multiple baffles, the upper sides of the two fixed seats are fixedly connected to the seventh connecting plate, and the upper side of the seventh connecting plate is fixedly connected to the step plate.

[0011] Preferably, both side edges of the control panel are arc-shaped, and the surface of the control panel is smooth.

[0012] Preferably, the end of the rotating rod away from the fifth connecting rod is arranged in an arc shape, and a plurality of stoppers are fixedly connected in the through groove.

[0013] Preferably, a protective rubber pad is fixedly connected to the upper side of the transmission plate.

[0014] Preferably, the conveying assembly includes multiple rotating shafts rotatably connected between two fixed seats 1, wherein the side wall of one of the fixed seats is fixedly connected to a motor, one of the rotating shafts is fixedly connected to the output end of the motor, the outer side of each of the rotating shafts is fixedly connected to a rotating roller, the outer sides of multiple rotating rollers are commonly sleeved with belts, and the fixing rods are evenly fixed to the outer sides of the belts.

[0015] The beneficial effects of the present invention are:

[0016] 1. First, in the process of transporting the raw materials of alumina polishing liquid, the transportation operation of the powdered raw materials is completed through the transmission plate. In this process, under the action of the baffle, it can not only protect the transported powdered raw materials, but also automatically rotate when the powdered raw materials need to be unloaded, making it convenient for the staff to unload the raw materials from the transmission plate.

[0017] 2. Moreover, when the raw materials need to be removed from the transmission plate, the electric push rod can be started to drive the rotating rod to rotate back and forth. The rotating rod and the raw materials placed on the upper side of the transmission plate are pressed against each other, and a gap is formed between the raw materials and the transmission plate, which makes it easier for the staff to remove the raw materials from the transmission plate. When the multiple rotating rods press against the raw materials, a squeezing effect is formed on the raw materials, which can simply crush and destroy the large particles therein, thereby reducing the workload of subsequent staff and greatly improving the overall work efficiency.

[0018] 3. At the same time, when transporting empty glass bottles, the piston plate is installed on the first connecting rod, and the glass bottle is hung upside down on the first connecting rod, and the piston plate is placed in the glass bottle, and the bottle mouth of the glass bottle is against the baffle. When the electric push rod is started, the baffle drives the glass bottle to move up and down, which in turn causes the piston plate to move up and down in the glass bottle, which can form a simple cleaning effect on the glass bottle, so that the glass bottle is always in a clean state, and the transported empty glass bottles can always maintain good cleanliness. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic structural diagram of a raw material conveying device for producing alumina polishing liquid proposed by the present invention;

[0020] Figure 2 This is a schematic diagram of the connection between a fixed seat and a belt in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention;

[0021] Figure 3 This is a schematic diagram of the connection between the transmission plate and the baffle in the raw material conveying equipment for producing aluminum oxide polishing liquid proposed by the present invention;

[0022] Figure 4 This is a schematic diagram of the connection between the control panel and the baffle in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention;

[0023] Figure 5 This is a schematic diagram of the connection of the control panel and the baffle from another angle in the raw material conveying equipment for producing aluminum oxide polishing liquid proposed by the present invention;

[0024] Figure 6 This is a cross-sectional connection diagram of a control panel and a positioning panel in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention;

[0025] Figure 7 This is a schematic diagram of the connection between the control panel and the positioning panel in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention from another angle;

[0026] Figure 8This is a cross-sectional connection diagram of a moving trough in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention;

[0027] Figure 9 for Figure 8 A magnified view of the structure at point A;

[0028] Figure 10 This is a schematic diagram of the connection of a shaking component in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention;

[0029] Figure 11 This is a cross-sectional connection diagram of a baffle in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention;

[0030] Figure 12 This is a schematic diagram of the connection between the fourth connecting rod and the ninth connecting rod in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention;

[0031] Figure 13 for Figure 12 A magnified view of the structure at B in the middle;

[0032] Figure 14 This is a schematic diagram of the expanded connection of a fixed rod, a positioning plate and a transmission plate in a raw material conveying device for producing aluminum oxide polishing liquid proposed by the present invention.

[0033] In the figure: 1 fixed seat, 2 motor, 3 transmission plate, 4 baffle, 5 rotating shaft, 6 rotating roller, 7 belt, 8 fixed rod, 9 electric push rod, 10 push plate, 11 piston plate, 12 step plate, 13 rotating rod, 14 control plate, 15 first connecting rod, 16 ratchet, 17 first connecting plate, 18 positioning plate, 19 second connecting rod, 20 third connecting rod, 21 first spring, 22 second connecting plate, 23 third connecting plate, 24 fourth connecting rod, 25 rotating plate, 26 fifth connecting rod, 27 rack, 28 gear, 29 sixth connecting rod, 30 fourth connecting plate, 31 fifth connecting plate, 32 sixth connecting plate, 33 torsion spring, 34 moving groove, 35 second spring, 36 square rod, 37 seventh connecting plate, 38 seventh connecting rod, 39 notch, 40 eighth connecting rod, 41 baffle, 42 ninth connecting rod, 43 eighth connecting plate, 44 groove, 45 ninth connecting plate. DETAILED DESCRIPTION

[0034] See Figures 1-14, a raw material conveying equipment for the production of aluminum oxide polishing liquid, a conveying assembly is installed between two fixed seats 1, the conveying assembly includes multiple rotating shafts 5 rotatably connected between the two fixed seats 1, a side wall of one of the fixed seats 1 is fixedly connected to a motor 2, one of the rotating shafts 5 is fixedly connected to the output end of the motor 2, the outer side of each rotating shaft 5 is fixedly connected to a rotating roller 6, the outer sides of the multiple rotating rollers 6 are jointly sleeved with a belt 7, fixed rods 8 are evenly fixed to the outer side of the belt 7, and multiple transmission plates 3 are slidably connected to the conveying assembly through multiple evenly distributed fixed rods 8, and a protective rubber pad is fixedly connected to the upper side of the transmission plate 3;

[0035] First, the fixed seat 1, the rotating shaft 5, the motor 2, the rotating roller 6, the belt, the fixed rod 8, and the transmission plate 3 are similar to the plate chain conveyor in real life. In the production process of the alumina polishing liquid, the raw materials to be used are placed on the upper side of the transmission plate 3, and then the motor 2 is started. The motor 2 drives the rotating shaft 5 to rotate, and the rotating shaft 5 drives the belt 7 to move. The belt 7 drives the transmission plate 3 to move through the fixed rod 8, and then starts the transportation operation of the raw materials. The above are all existing technologies and no redundant details are given.

[0036] like Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 8 、 Figure 9, a protective assembly is installed on the upper side of the fixed seat 1, and the protective assembly includes a positioning plate 18 fixedly installed on the upper side of the fixed rod 8. Two first connecting plates 17 are symmetrically fixedly connected to the lower side of the transmission plate 3. The two first connecting plates 17 are slidably connected to the positioning plate 18, and a first spring 21 is fixedly connected between the two first connecting plates 17 and the positioning plate 18. Two ninth connecting plates 45 are fixedly connected on both sides of the positioning plate 18. Two third connecting rods 20 are connected to the two ninth connecting plates 45 on the same side and rotate together. The outer sides of the two third connecting rods 20 are fixedly connected to the second connecting plate 22. The lower side of the second connecting plate 22 is fixedly connected to the control plate 14. Multiple electric push rods 9 are evenly fixedly installed in the two fixed seats 1, and the output ends of the multiple electric push rods 9 are fixedly connected to the push plate 10. The upper side of the second connecting plate 22 is fixedly connected to the first connecting rod 15, and the outer side of the first connecting rod 15 is slidably connected to the baffle 4. A control assembly for controlling the rotation of the third connecting rod 20 is installed on the upper side of the control plate 14, and the control assembly includes two movable rods symmetrically opened on the side wall of the control plate 14 Slot 34, the two moving slots 34 are slidably connected with the third connecting plate 23, the third connecting plate 23 and the moving slot 34 are fixedly connected with a second spring 35, the third connecting plate 23 is located in the moving slot 34 and is fixedly connected to a square rod 36 on one side, the square rod 36 slides through the control plate 14, and a notch 39 is opened on the outside of the square rod 36. The control plate 14 is also slidably connected with two sixth connecting plates 32, and the two square rods 36 respectively penetrate the two sixth connecting plates 32. Both ends of the third connecting rod 20 are fixedly connected with ratchets 16, a torsion spring 33 is fixedly connected between the ratchet 16 and the ninth connecting plate 45, a fifth connecting plate 31 is fixedly connected to the side wall of the second connecting plate 22, a sixth connecting rod 29 is fixedly connected between the two ninth connecting plates 45 on the same side, and a fourth connecting plate 30 is fixedly connected to the outer side of the first connecting plate 17. The two side edges of the control plate 14 are arc-shaped, and the surface of the control plate 14 is smooth. When the push plate 10 and the control plate 14 are in contact with each other, the friction between the push plate 10 and the control plate 14 is small and can be ignored;

[0037] First, the sixth connecting rod 29, the fourth connecting plate 30, and the fifth connecting plate 31 are all located on both sides of the positioning plate 18 and are symmetrically arranged, and a sixth connecting rod 29, a fourth connecting plate 30, and a fifth connecting plate 31 are arranged as a group. In the initial state, the fifth connecting plate 31 and the sixth connecting rod 29 are against each other, and the baffle 4, the first connecting rod 15, the second connecting plate 22, the control plate 14 and the transmission plate 3 are in a vertical state. Then, in the process of transporting the raw materials, when the raw materials are transported to a suitable working position (this working position is the working position. In the traditional assembly line processing process, the raw materials are mainly transported to the working position by a conveying device, and then the raw materials are subjected to corresponding processing operations), the electric push rod 9 relative to the working position is started, so that the electric push rod 9 drives the push plate 10 to move in the direction away from the fixed seat 1, so that the push plate 10 and the control plate 14 are against each other and drive the control plate 14 and the second connecting plate 22 to rotate around the third connecting rod 20 as the center, so as to prevent the damage to the raw materials. Figure 6 Based on the direction of rotation, the second connecting plate 22 drives the first connecting rod 15 and the baffle 4 to rotate counterclockwise, so that the raw materials on the upper side of the transmission plate 3 are free from the restriction of the baffle 4. At the same time, the rotating second connecting plate 22 will also drive the fifth connecting plate 31 to rotate counterclockwise, so that the fifth connecting plate 31 and the sixth connecting rod 29 are disconnected and at the same time resist the fourth connecting plate 30, and drive the fourth connecting plate 30 to move upward. The fourth connecting plate 30 drives the first connecting plate 17 and the transmission plate 3 to move upward. The first connecting plate 17 compresses the first spring 21, thereby causing the raw materials placed on the upper side of the transmission plate 3 to move upward relative to the positioning plate 18, thereby making it more convenient for the staff to take the raw materials.

[0038] In the initial state, the sixth connecting plate 32 and the square rod 36 are against each other, and the sixth connecting plate 32 is not located in the notch 39 on the outside of the square rod 36. The sixth connecting plate 32 and the ratchet wheels 16 at both ends of the third connecting rod 20 are against each other, and can prevent the third connecting rod 20 and the ratchet wheels 16 from rotating. Then, under the limiting action of the sixth connecting rod 29 and the fifth connecting plate 31, in the initial state, the third connecting rod 20 and the positioning plate 18 are in a fixed state, which causes the first connecting rod 15 and the control plate 14 fixedly connected to the third connecting rod 20 to be in a relatively fixed state with the positioning plate 18. Then, the baffle 4 is against the second connecting plate 22 under the action of its own gravity. Therefore, in the initial state, the baffle 4 can form a protective effect on the raw materials placed on the upper side of the transmission plate 3, preventing the raw materials placed on the upper side of the transmission plate 3 from falling from the transmission plate 3. Then, when the electric push rod 9 drives The third connecting plate 23 is pressed against the third connecting plate 23, and the third connecting plate 23 is pressed against the third connecting plate 23, so that the third connecting plate 23 moves in the direction close to the bottom of the moving groove 34. The third connecting plate 23 compresses the second spring 35, and the third connecting plate 23 drives the square rod 36 to move relative to the control plate 14, so that the notch 39 of the square rod 36 moves to the lower side of the sixth connecting plate 32. Then, the sixth connecting plate 32 moves downward relative to the control plate 14 under the action of its own gravity, so that the sixth connecting plate 32 and the ratchet 16 are disconnected, so that the ratchet 16 loses the restriction of the sixth connecting plate 32, thereby allowing the third connecting rod 20 to rotate counterclockwise. Therefore, the push plate 10 can push the control plate 14 and drive the second connecting plate 22 to rotate counterclockwise around the third connecting rod 20, and cause the torsion spring 33 to deform. The rotation direction here is Figure 6 As a guide, the baffles 4 on both sides of the positioning plate 18 can be moved as a whole in a direction away from the positioning plate 18, so that the staff can easily unload the raw materials placed on the upper side of the transmission plate 3.

[0039] like Figure 7 , a lifting assembly is installed on the upper side of the ninth connecting plate 45, and the lifting assembly includes a second connecting rod 19 fixedly installed on the upper side of the ninth connecting plate 45, and the side walls of each second connecting rod 19 are fixedly connected to a plurality of racks 27, and two through slots are opened on the upper side of the transmission plate 3, and the fifth connecting rod 26 is rotatably connected through the two through slots, and both ends of the fifth connecting rod 26 are fixedly connected to a gear 28, and the gear 28 and the rack 27 are engaged. The outer side of the fifth connecting rod 26 is evenly fixedly connected to a plurality of rotating rods 13, and the end of the rotating rod 13 away from the fifth connecting rod 26 is arc-shaped, and a plurality of blocks are fixedly connected in the through slot, and the blocks and the rotating rod 13 are staggered. In the process of transporting raw materials, under the obstruction of the blocks, the raw materials transported on the upper side of the transmission plate 3 will not enter the through slot, thereby not affecting the normal transportation of the raw materials;

[0040] First, when the transmission plate 3 moves upward relative to the positioning plate 18, the transmission plate 3 drives the fifth connecting rod 26 and the gear 28 to move upward. When the gear 28 and the rack 27 are engaged, the gear 28 moves upward along with the transmission plate 3. Figure 7 Based on the direction of rotation, the gear 28 rotates clockwise, and the gear 28 drives the fifth connecting rod 26 and the rotating rod 13 to rotate. The rotating rod 13 is against the raw materials placed on the upper side of the transmission plate 3, and a gap is generated between the raw materials and the transmission plate 3, which makes it easier for the staff to remove the raw materials from the transmission plate 3. In addition, during the above-mentioned working process, the gear 28 and the rack 27 are symmetrically distributed on the upper side of the ninth connecting plate 45, so that the rotating rods 13 on both sides of the transmission plate 3 rotate in opposite directions. Then, after the gear 28 and the rack 27 are disconnected, under the action of the pressure of the raw materials, the rotating rod 13 will return to its original position relative to the transmission plate 3 until the gear 28 and the rack 27 are engaged again, so that the rotating rod 13 can rotate back and forth. When multiple rotating rods 13 are against the raw materials, a squeezing effect on the raw materials is formed, which can simply crush and destroy the large particles therein, thereby reducing the workload of subsequent staff and greatly improving the overall work efficiency.

[0041] like Figure 10 、 Figure 11 、 Figure 12 、 Figure 13 The upper side of the first connecting rod 15 is threadedly connected to the piston plate 11, and a shaking assembly for controlling the shaking of the baffle 4 is installed in the second connecting plate 22. The shaking assembly includes a seventh connecting rod 38 fixedly installed in the baffle 4, and the lower side of the seventh connecting rod 38 is fixedly connected to the eighth connecting rod 40. The eighth connecting rod 40 and the first connecting rod 15 are slidably connected. The lower side of the eighth connecting rod 40 is fixedly connected to the ninth connecting rod 42. The side wall of the second connecting plate 22 is rotatably connected to the fourth connecting rod 24. One end of the fourth connecting rod 24 passes through the third connecting rod 20. The fourth connecting rod 24 is located in the third connecting rod 20 and is fixedly connected to the eighth connecting plate 43. A plurality of grooves 44 are opened on the outer circumference of the eighth connecting plate 43. The fourth connecting rod 24 is fixedly connected to the rotating plate 25 at one end away from the second connecting plate 22. A plurality of blocking rods 41 are fixedly connected to the outer circumference of the rotating plate 25. The upper sides of the two fixed seats 1 are fixedly connected to the seventh connecting plate 37, and the upper side of the seventh connecting plate 37 is fixedly connected to the step plate 12;

[0042] First, in the process of transporting raw materials, the powdered raw materials (such as aluminum oxide powder) are usually placed in material bags, and then the liquid raw materials (such as sodium hydroxide) are usually placed in glass bottles. When transporting empty glass bottles, the piston plate 11 is installed on the first connecting rod 15, and the glass bottle is hung upside down on the first connecting rod 15, and the piston plate 11 is placed in the glass bottle, and the bottle mouth of the glass bottle is against the baffle 4. When the electric push rod 9 is started, the movement range of the push plate 10 can be expanded. In the process of the fourth connecting rod 24 and the rotating plate 25 following the third connecting rod 20 to rotate, the rotating plate 25 can be moved to the upper side of the step plate 12. Since in this process, the belt 7 is always in working state, that is, the third connecting rod 20 is always moving relative to the step plate 12, when the step plate 12 can hinder the baffle 4 on the outside of the rotating plate 25 When the ninth connecting rod 42 is in contact with the eighth connecting rod 43, the ninth connecting rod 42 is in contact with the groove 44 on the outer side of the eighth connecting rod 43, and the ninth connecting rod 42 is moved up and down relative to the first connecting rod 15. The ninth connecting rod 42 drives the baffle 4 to move up and down through the eighth connecting rod 40 and the seventh connecting rod 38. Since the bottle mouth of the glass bottle is in contact with the baffle 4, the baffle 4 that moves up and down drives the glass bottle to move up and down, thereby causing the piston plate 11 to move up and down in the glass bottle, which can form a simple cleaning effect on the glass bottle, so that the glass bottle is always in a clean state, thereby keeping the transported empty glass bottles in good cleanliness.

[0043] In the present invention, during the production process of the alumina polishing liquid, the raw materials to be used are placed on the upper side of the transmission plate 3, and then the motor 2 is started, the motor 2 drives the rotating shaft 5 to rotate, the rotating shaft 5 drives the belt 7 to move, and the belt 7 drives the transmission plate 3 to move through the fixed rod 8, thereby starting the raw material transportation operation. The above are all existing technologies and will not be described in detail.

[0044] During the transportation of raw materials, when the raw materials are transported to a suitable working position (this working position is the work station. In the traditional assembly line processing process, the raw materials are mainly transported to the work station by a conveying device, and then the raw materials are processed accordingly), the electric push rod 9 relative to the working position is started, so that the electric push rod 9 drives the push plate 10 to move away from the fixed seat 1, so that the push plate 10 and the control plate 14 are abutted and drive the control plate 14 and the second connecting plate 22 to rotate around the third connecting rod 20 as the center, so that Figure 6Based on the direction of rotation, the second connecting plate 22 drives the first connecting rod 15 and the baffle 4 to rotate counterclockwise, so that the raw materials on the upper side of the transmission plate 3 are free from the restriction of the baffle 4. At the same time, the rotating second connecting plate 22 will also drive the fifth connecting plate 31 to rotate counterclockwise, so that the fifth connecting plate 31 and the sixth connecting rod 29 are disconnected and at the same time resist the fourth connecting plate 30, and drive the fourth connecting plate 30 to move upward. The fourth connecting plate 30 drives the first connecting plate 17 and the transmission plate 3 to move upward. The first connecting plate 17 compresses the first spring 21, so that the raw materials placed on the upper side of the transmission plate 3 move upward relative to the positioning plate 18, thereby making it more convenient for the staff to take the raw materials.

[0045] In the initial state, the sixth connecting plate 32 and the square rod 36 are against each other, and the sixth connecting plate 32 is not located in the notch 39 on the outside of the square rod 36. The sixth connecting plate 32 and the ratchet wheels 16 at both ends of the third connecting rod 20 are against each other, and can prevent the third connecting rod 20 and the ratchet wheels 16 from rotating. Then, under the limiting action of the sixth connecting rod 29 and the fifth connecting plate 31, in the initial state, the third connecting rod 20 and the positioning plate 18 are in a fixed state, which causes the first connecting rod 15 and the control plate 14 fixedly connected to the third connecting rod 20 to be in a relatively fixed state with the positioning plate 18. Then, the baffle 4 is against the second connecting plate 22 under the action of its own gravity. Therefore, in the initial state, the baffle 4 can form a protective effect on the raw materials placed on the upper side of the transmission plate 3 to prevent the raw materials placed on the upper side of the transmission plate 3 from falling from the transmission plate 3. Then, when the electric push rod 9 drives The third connecting plate 23 is pressed against the third connecting plate 23, and the third connecting plate 23 is pressed against the third connecting plate 23, so that the third connecting plate 23 moves in the direction close to the bottom of the moving groove 34. The third connecting plate 23 compresses the second spring 35, and the third connecting plate 23 drives the square rod 36 to move relative to the control plate 14, so that the notch 39 of the square rod 36 moves to the lower side of the sixth connecting plate 32. Then, the sixth connecting plate 32 moves downward relative to the control plate 14 under the action of its own gravity, so that the sixth connecting plate 32 and the ratchet 16 are disconnected, so that the ratchet 16 loses the restriction of the sixth connecting plate 32, thereby allowing the third connecting rod 20 to rotate counterclockwise. Therefore, the push plate 10 can push the control plate 14 and drive the second connecting plate 22 to rotate counterclockwise around the third connecting rod 20, and cause the torsion spring 33 to deform. The rotation direction here is Figure 6 As the standard, the baffles 4 on both sides of the positioning plate 18 can be moved as a whole in a direction away from the positioning plate 18, so that the staff can easily unload the raw materials placed on the upper side of the transmission plate 3;

[0046] During the upward movement of the transmission plate 3 relative to the positioning plate 18, the transmission plate 3 drives the fifth connecting rod 26 and the gear 28 to move upward. When the gear 28 and the rack 27 are engaged, the gear 28 moves upward along with the transmission plate 3. Figure 7 The gear 28 and the rack 27 are symmetrically distributed on the upper side of the ninth connecting plate 45, so that the rotating rods 13 on both sides of the transmission plate 3 rotate in opposite directions. Then, after the gear 28 and the rack 27 are disconnected, the pressure of the raw material will cause the rotating rod 13 to return to its original position relative to the transmission plate 3 until the gear 28 and the rack 27 are meshed and connected again, so that the rotating rod 13 can rotate back and forth. When the multiple rotating rods 13 are against the raw material, a squeezing effect is formed on the raw material, which can simply crush and destroy the large particles therein, thereby reducing the workload of subsequent workers and greatly improving the overall work efficiency.

[0047] In the process of transporting raw materials, the powdered raw materials (such as aluminum oxide powder) are usually placed in material bags, and the liquid raw materials (such as sodium hydroxide) are usually placed in glass bottles. When transporting empty glass bottles, the piston plate 11 is installed on the first connecting rod 15, and the glass bottle is hung upside down on the first connecting rod 15, and the piston plate 11 is placed in the glass bottle, and the bottle mouth of the glass bottle is against the baffle 4. When the electric push rod 9 is started, the movement range of the push plate 10 can be expanded. In the process of the fourth connecting rod 24 and the rotating plate 25 following the third connecting rod 20 to rotate, the rotating plate 25 can be moved to the upper side of the step plate 12. Since the belt 7 is always in working state during this process, that is, the third connecting rod 20 is always moving relative to the step plate 12, when the step plate 12 can block the baffle 41 on the outside of the rotating plate 25 When moving, the baffle 41 will drive the rotating plate 25 to rotate relative to the third connecting rod 20, and the rotating plate 25 will drive the eighth connecting plate 43 to rotate. Since the ninth connecting rod 42 has been in contact with the eighth connecting plate 43, during the rotation of the eighth connecting plate 43, when the ninth connecting rod 42 and the groove 44 on the outside of the eighth connecting plate 43 are in contact, the ninth connecting rod 42 will move up and down relative to the first connecting rod 15, and the ninth connecting rod 42 will drive the baffle 4 up and down through the eighth connecting rod 40 and the seventh connecting rod 38. Since the bottle mouth of the glass bottle has been in contact with the baffle 4, the up and down moving baffle 4 will drive the glass bottle to move up and down, thereby causing the piston plate 11 to move up and down in the glass bottle, which can form a simple cleaning effect on the glass bottle, so that the glass bottle is always in a clean state, thereby keeping the transported empty glass bottles in good cleanliness.

Claims

1. A raw material conveying device for producing aluminum oxide polishing liquid, comprising two fixed seats, characterized in that: The transmission mechanism is a pair of fixed frames, each of which is connected to the transmission mechanism by a pair of fixed frames, and the pair of fixed frames is connected with the transmission mechanism by a pair of fixed frames. The control assembly includes two moving grooves symmetrically opened on the side wall of the control plate, a third connecting plate is slidably connected in the two moving grooves, a second spring is fixedly connected between the third connecting plate and the moving groove, a square rod is fixedly connected to one side of the third connecting plate located in the moving groove, the square rod slides through the control plate, a notch is opened on the outer side of the square rod, two sixth connecting plates are also slidably connected in the control plate, the two square rods respectively penetrate the two sixth connecting plates, both ends of the third connecting rod are fixedly connected with a ratchet, a torsion spring is fixedly connected between the ratchet and the ninth connecting plate, a fifth connecting plate is fixedly connected to the side wall of the second connecting plate, the six connecting rod is commonly fixedly connected between the two ninth connecting plates on the same side, and the outer side of the first connecting plate is fixedly connected to the fourth connecting plate; A lifting assembly is installed on the upper side of the ninth connecting plate, and the lifting assembly includes a second connecting rod fixedly installed on the upper side of the ninth connecting plate, and the side walls of each second connecting rod are fixedly connected to multiple racks. Two through slots are opened on the upper side of the transmission plate, and the fifth connecting rod is rotatably connected through the two through slots. Both ends of the fifth connecting rod are fixedly connected to gears, and the gears and racks are meshed. Multiple rotating rods are evenly fixedly connected to the outer side of the fifth connecting rod, and the upper side of the first connecting rod is threadedly connected to the piston plate. A shaking assembly for controlling the shaking of the baffle is installed in the second connecting plate.

2. The raw material conveying equipment for producing aluminum oxide polishing liquid according to claim 1, characterized in that: The shaking assembly includes a seventh connecting rod fixedly installed in the baffle, the lower side of the seventh connecting rod is fixedly connected to the eighth connecting rod, the eighth connecting rod and the first connecting rod are slidably connected, the lower side of the eighth connecting rod is fixedly connected to the ninth connecting rod, the side wall of the second connecting plate is rotatably connected to the fourth connecting rod, one end of the fourth connecting rod passes through the third connecting rod, the fourth connecting rod is located in the third connecting rod and is fixedly connected to the eighth connecting plate, the outer side of the eighth connecting plate is circumferentially provided with a plurality of grooves, the fourth connecting rod is fixedly connected to the rotating plate at one end away from the second connecting plate, the outer side of the rotating plate is circumferentially fixedly connected to a plurality of baffle rods, the upper sides of the two fixed seats are fixedly connected to the seventh connecting plate, and the upper side of the seventh connecting plate is fixedly connected to the step plate.

3. The raw material conveying equipment for producing aluminum oxide polishing liquid according to claim 1, characterized in that: Both sides of the control panel are arc-shaped, and the surface of the control panel is smooth.

4. The raw material conveying equipment for producing aluminum oxide polishing liquid according to claim 1, characterized in that: One end of the rotating rod away from the fifth connecting rod is arranged in an arc shape, and a plurality of stoppers are fixedly connected in the through groove.

5. The raw material conveying equipment for producing aluminum oxide polishing liquid according to claim 1, characterized in that: A protective rubber pad is fixedly connected to the upper side of the transmission plate.

6. The raw material conveying equipment for producing aluminum oxide polishing liquid according to claim 1, characterized in that: The conveying assembly includes multiple rotating shafts rotatably connected between two fixed seats, wherein the side wall of one of the fixed seats is fixedly connected to a motor, one of the rotating shafts is fixedly connected to the output end of the motor, the outer side of each rotating shaft is fixedly connected to a rotating roller, the outer sides of the multiple rotating rollers are commonly sleeved with belts, and the fixing rods are evenly fixed to the outer sides of the belts.

Citation Information

Patent Citations

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