Conveying device for phthalocyanine blue raw material processing
By designing a phthalocyanine blue raw material processing and conveying device that includes a screw conveyor and a settlement machine, the problem of easy spilling and unstable conveying of powder materials in traditional conveying methods is solved, efficient automated processing and flexible feeding methods are achieved, and production efficiency and powder utilization are improved.
Patent Information
- Application Number
- CN202510443737.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2045-04-10
AI Technical Summary
The traditional phthalocyanine blue raw material processing has problems such as easy spilling of powder materials, waste of raw materials, environmental pollution, scattering of powders and unstable transportation, and it is difficult to adjust according to different processing needs.
A conveying device including a main structure, feeding structure and extracting structure is designed, and a screw conveyor and a settlement machine are used to perform gas-solid separation, and automatic powder material extraction and transportation is realized through the extraction structure.
It realizes efficient automated processing of powder materials, flexible and adjustable feeding methods, comprehensive and uniform powder extraction capabilities, and accurate gas-solid separation effects, improving production efficiency and powder utilization.
Smart Images

Figure CN119929507A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of material loading and feeding equipment, in particular to a conveying device for processing phthalocyanine blue raw materials. Background Art
[0002] In the processing of phthalocyanine blue raw materials, the transportation of powder materials is crucial. Traditional transportation methods have many disadvantages, which seriously affect production efficiency and product quality. For example, when collecting and re-transferring the powder materials after production, there is a lack of effective limiting and collection devices, which makes the powder easy to spill, causing waste of raw materials and environmental pollution. At the same time, in the traditional transportation process, the separation of powder and gas is not perfect, and the powder is easily scattered by wind, which not only wastes raw materials, but also may affect the air quality of the working environment and endanger the health of operators.
[0003] In terms of the flexibility of the conveying device, traditional equipment is difficult to adjust according to different processing requirements and the specifications of the collection container. When faced with collection barrels of different depths and diameters, it is impossible to accurately and comprehensively extract the powder material in the barrel, resulting in low extraction efficiency and some raw materials remaining. In addition, traditional conveying methods mostly rely on manual operation, which is not only labor-intensive, but also easily leads to instability in the conveying process due to human factors, making it difficult to achieve efficient conveying and loading in multiple directions and methods. Summary of the invention
[0004] The object of the present invention is to provide a conveying device for processing phthalocyanine blue raw materials to solve the problems raised in the above-mentioned background technology.
[0005] In order to solve the above-mentioned problem, the present invention provides the following technical solution: a conveying device for processing phthalocyanine blue raw materials, comprising a main structure, a feeding structure and a drawing structure, wherein the feeding structure is fixedly arranged on the upper wall of the base in the main structure and close to the middle of the rear end, and the drawing structure is fixedly arranged on the upper wall of the left end of the base in the main structure.
[0006] Preferably, the main structure includes a base, a controller, a conveyor belt body, a sleeve, a collecting bucket and a material guide rack; the base is rectangular, the controller is fixedly arranged on the upper wall of the right end of the base, the conveyor belt body is fixedly arranged in the middle of the upper wall of the right end of the base and is located behind the controller, the sleeve is a cylindrical structure, the sleeve is fixedly arranged on the upper wall of the left end of the base and is located in front of the center line, the collecting bucket has a cylindrical structure, and a sleeve hole is opened in the middle of the lower wall, the collecting bucket can be detachably placed on the upper wall of the left end of the base and the collecting bucket is mounted on the sleeve, one end of the material guide rack can be detachably clamped on the edge of the upper wall of the collecting bucket, and the other end of the material guide rack is inclined to the left.
[0007] Preferably, the feeding structure includes a hanger, a sedimentation machine body, a material pump, a first hydraulic cylinder, a telescopic rod and a screw conveyor body; one end of the hanger is fixedly arranged on the upper wall of the rear end of the base and is located on the left side of the conveyor belt body, the sedimentation machine body is fixedly arranged on the other end of the hanger, and the discharge port of the sedimentation machine body is vertically downward, and a feed port and an exhaust port are arranged on the left and right sides of one end of the sedimentation machine body, the material pump is fixedly arranged on the upper wall of the other end of the hanger, and the feed end of the material pump is connected with the feed port of the sedimentation machine body through a first pipe, one end of the first hydraulic cylinder is fixedly passed through one end of the hanger, one end of the telescopic rod movably passes through one end of the hanger and is located below the first hydraulic cylinder, the screw conveyor body is fixedly arranged on the telescopic end of the first hydraulic cylinder and one end of the telescopic rod, and the feed port of the screw conveyor body is located below the discharge port of the sedimentation machine body, and the discharge port of the screw conveyor body is located above the left end of the conveyor belt body.
[0008] Preferably, the material extraction structure includes a first electric slide rail, a main body box, a motor, a turntable, a second electric slide rail, an adapter seat, a moving unit and a lifting unit; the first electric slide rail is vertically arranged on the upper wall of the left end of the base and is located opposite to the rear side of the sleeve, the main body box is a convex box body, one end of the main body box is fixedly arranged on the first electric slide rail and the main body box can be lifted and lowered, the main body box is located on the left side of the hanger, and the width of one end of the main body box is greater than that of the other end, a swing opening is arranged in the middle of the front side wall of the other end of the main body box, the motor is fixedly arranged on the inner lower wall of one end of the main body box and is located on the center line, the turntable is fixedly arranged on the motor driving end, the second electric slide rail is fixedly arranged in the middle of the upper wall of the turntable, the adapter seat is movably arranged on the second electric slide rail, and the adapter seat moves forward and backward, the moving unit is movably arranged in the other end of the main body box, and the moving unit is connected to the adapter seat, and the lifting unit is fixedly arranged on the moving unit.
[0009] Preferably, the movable unit includes a pair of first sliding bars, two pairs of first nuts, a pair of sliding seats, a pair of first bolts and a pair of second sliding bars; two ends of the pair of first sliding bars are respectively movably passed through the left and right side walls of the other end of the main body box, and the first sliding bar is located below the center line, the two pairs of the first nuts are respectively movably screwed on the two ends of the first sliding bars, a pair of sliding seats are relatively vertically fitted, two ends of one of the sliding seats are respectively movably mounted on the first sliding bars, a pair of the first bolts are respectively screwed with the pair of sliding seats, one end of a pair of second sliding bars is respectively fixedly connected to the adapter seat, the other ends of a pair of second sliding bars are respectively movably passed through the two ends of the other sliding seat and are located above the first sliding bar, and the other ends of a pair of second sliding bars are respectively movably passed through the swing opening of the main body box.
[0010] Preferably, the lifting unit includes a limit seat, a second hydraulic cylinder, a sleeve plate, a material extraction pipe and a material guide pipe; the limit seat is Z-shaped, the middle part of the limit seat is fixedly arranged on the other end of a pair of second sliding rods, and is located above the collecting bucket, a lifting port is opened in the middle part of one end of the limit seat, one end of the second hydraulic cylinder is fixedly arranged on the other end of the limit seat, one end of the sleeve plate is fixedly arranged on the telescopic end of the second hydraulic cylinder, and the other end of the sleeve plate is opposite to the lifting port, one end of the material extraction pipe movably passes through the lifting port, and the other end of the material extraction pipe is fixedly passed through the other end of the sleeve plate, one end of the material guide pipe is fixedly connected to the other end of the material extraction pipe, and the other end of the material guide pipe is connected to the feeding end of the material pump.
[0011] Preferably, the motor drives the turntable to rotate, and the turntable drives the second electric slide rail to rotate, thereby causing the two second slide bars on the adapter to swing back and forth eccentrically.
[0012] Preferably, one end of the extraction pipe is inserted into the collecting barrel, and the extraction pipe moves along the circumference of the inner wall of the extraction barrel.
[0013] Preferably, the screw conveyor body is moved by a first hydraulic cylinder, and the feed inlet of the screw conveyor body is aligned with the discharge outlet of the settler body.
[0014] The conveying device for processing phthalocyanine blue raw materials proposed by the present invention has the following beneficial effects: The present invention uses a material extraction structure to extract powder materials by moving the extraction pipe in a circular motion and a lifting motion inside the barrel body of the material loading material of different diameters, and then the powder materials are supplied to the sedimentation machine body through the extraction of the material pump, and the gas and solid powder are separated by the sedimentation machine body, so as to prevent the powder from being scattered by wind force, and to realize the material transportation from one place to another for loading or transporting other containers; at the same time, the screw conveyor body can be driven to connect with the sedimentation machine body, and the settled material can be transported and fed horizontally by the screw conveyor; the powder materials are not exposed and scattered for a long time, and no manual intervention is required for extraction, so as to improve the automation degree of feeding and feeding, thereby achieving the following effects: 1. Efficient and automated processing: The present invention realizes the automatic extraction, gas-solid separation, transportation and feeding of powder materials through integrated design. The operation of each component can be accurately controlled by the controller, which greatly improves production efficiency, reduces manual intervention and reduces labor intensity.
[0015] 2. Flexible and adjustable feeding method: Through the docking of the screw conveyor body and the settler body, and the driving of the first hydraulic cylinder, the device can realize multi-directional and multi-mode feeding of powder materials. Whether it is directly conveying the powder material to other equipment or conveying it horizontally through a conveyor belt, it can respond flexibly, enhancing the applicability and flexibility of the equipment.
[0016] 3. Comprehensive powder extraction capability: The lifting unit and moving unit in the extraction structure are ingeniously designed and can be adjusted according to the depth and diameter of the collection bucket to ensure that the extraction pipe can fully and evenly extract the powder material in the container. This design not only improves the utilization rate of the powder, but also avoids equipment blockage or inefficiency caused by uneven powder distribution.
[0017] 4. Accurate gas-solid separation effect: The main body of the sedimentator adopts a spiral sedimentation method, which can effectively achieve gas-solid separation and prevent the powder from flying due to wind and other factors during the transportation process. This not only ensures the quality of the powder, but also reduces environmental pollution and material waste. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the assembly structure of the present invention; Figure 2 It is a schematic diagram of the split structure of the main structure and the feeding structure of the present invention; Figure 3 It is a schematic diagram of the split structure of the material extraction structure of the present invention; Figure 4 It is a schematic diagram showing the assembly structure of the material extraction structure of the present invention; Figure 5 It is a schematic diagram of the appearance structure of the material extraction structure of the present invention; Figure 6 For the present invention Figure 4 A local enlarged view of point A in FIG. Figure 7 For the present invention Figure 4 A partial enlarged view of point B in FIG.
[0019] In the figure: 1. main structure, 11. base, 12. controller, 13. conveyor belt main body, 14. sleeve seat, 15. collecting bucket, 16. material guide rack, 2. feeding structure, 21. hanger, 22. sedimentation machine main body, 23. material pump, 24. first hydraulic cylinder, 25. telescopic rod, 26. screw conveyor main body, 3. extraction structure, 31. first electric slide rail, 32. main box, 33. motor, 34. turntable, 35. second electric slide rail, 36. adapter seat, 37. moving unit, 371. first slide bar, 372. first nut, 373. slide seat, 374. first bolt, 375. second slide bar, 38. lifting unit, 381. limit seat, 382. second hydraulic cylinder, 383. sleeve plate, 384. extraction pipe, 385. material guide pipe. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0021] See also Figure 1-Figure 7 The present invention provides a technical solution: a conveying device for processing phthalocyanine blue raw materials, comprising a main structure 1, a feeding structure 2 and a drawing structure 3, wherein the feeding structure 2 is fixedly arranged on the upper wall of a base 11 in the main structure 1 and is close to the middle of the rear end, and the drawing structure 3 is fixedly arranged on the upper wall of the left end of the base 11 in the main structure 1; the powder material is extracted and supplied to the feeding structure 2 through the drawing structure 3, and the powder material is separated from the gas through the feeding structure 2 for unloading or transfer.
[0022] More specifically, Figure 1 and Figure 2 As shown, the main structure 1 includes a base 11, a controller 12, a conveyor belt body 13, a sleeve 14, a collecting bucket 15 and a guide rack 16; the base 11 is rectangular, the controller 12 is fixedly arranged on the upper wall of the right end of the base 11, the conveyor belt body 13 is fixedly arranged in the middle of the upper wall of the right end of the base 11 and is located behind the controller 12, the sleeve 14 is a cylindrical structure, the sleeve 14 is fixedly arranged on the upper wall of the left end of the base 11 and is located in front of the center line, the collecting bucket 15 is a barrel structure, and a sleeve hole is opened in the middle of the lower wall, the collecting bucket 15 is detachably placed on the upper wall of the left end of the base 11 and the collecting bucket 15 is sleeved on the sleeve 14, one end of the guide rack 16 is detachably clamped on the upper wall edge of the collecting bucket 15, and the other end of the guide rack 16 is tilted to the left; the equipment is controlled by the controller 12 on the base 11, the conveyor belt body 13 can be used to convey and transfer a certain distance, the collecting bucket 15 is limited and placed by the sleeve 14, and the powder material after production is loaded on the collecting bucket 15.
[0023] More specifically, Figure 1 and Figure 2As shown, the feeding structure 2 includes a hanger 21, a sedimentation machine body 22, a material pump 23, a first hydraulic cylinder 24, a telescopic rod 25 and a screw conveyor body 26; one end of the hanger 21 is fixedly arranged on the upper wall of the rear end of the base 11 and is located on the left side of the conveyor belt body 13, the sedimentation machine body 22 is fixedly arranged on the other end of the hanger 21, and the discharge port of the sedimentation machine body 22 is vertically downward, and a feed port and an exhaust port are arranged on the left and right sides of one end of the sedimentation machine body 22, the material pump 23 is fixedly arranged on the upper wall of the other end of the hanger 21, and the feeding end of the material pump 23 is connected to the feeding port of the sedimentation machine body 22 through a first pipeline, one end of the first hydraulic cylinder 24 is fixedly passed through one end of the hanger 21, one end of the telescopic rod 25 is movably passed through one end of the hanger 21 and is located below the first hydraulic cylinder 24, the screw conveyor body 26 is fixedly arranged on the telescopic end of the first hydraulic cylinder 24 and one end of the telescopic rod 25, and The feed inlet of the screw conveyor body 26 is located below the discharge outlet of the settler body 22, and the discharge outlet of the screw conveyor body 26 is located above the left end of the conveyor belt body 13; the settler body 22 is supported at a certain height by the hanger 21, and the powder material is extracted and supplied to the settler body 22 by the material pump 23, and the gas-solid separation is carried out by the settler body 22 and the powder is discharged to prevent the powder from being scattered by the wind. The screw conveyor body 26 is driven to move by the first hydraulic cylinder 24 with the help of the auxiliary support of the sliding rod, and the screw conveyor body 26 can be docked with the settler body 22 to transfer and supply the conveyor belt with the help of the screw conveyor body 26. The screw conveyor body 26 is moved by the first hydraulic cylinder 24, and the feed inlet of the screw conveyor body 26 is matched with the discharge outlet of the settler body 22, which is used to meet the docking use requirements and realize multi-directional and multi-mode conveying and feeding.
[0024] More specifically, Figure 1 and Figure 3As shown, the material extraction structure 3 includes a first electric slide rail 31, a main box 32, a motor 33, a turntable 34, a second electric slide rail 35, an adapter seat 36, a moving unit 37 and a lifting unit 38; the first electric slide rail 31 is vertically arranged on the upper wall of the left end of the base 11 and is located opposite to the rear side of the sleeve seat 14, the main box 32 is a convex box body, one end of the main box 32 is fixedly arranged on the first electric slide rail 31 and the main box 32 is lifted and moved, the main box 32 is located on the left side of the hanger 21, and the width of one end of the main box 32 is greater than that of the other end, and a swing opening is arranged in the middle of the front side wall of the other end of the main box 32, the motor 33 is fixedly arranged on the inner lower wall of one end of the main box 32 and is located on the center line, the turntable 34 It is fixedly arranged on the driving end of the motor 33, the second electric slide rail 35 is fixedly arranged on the middle part of the upper wall of the turntable 34, the adapter seat 36 is movably arranged on the second electric slide rail 35, and the adapter seat 36 moves forward and backward, the moving unit 37 is movably arranged in the other end of the main box 32, and the moving unit 37 is connected to the adapter seat 36, and the lifting unit 38 is fixedly arranged on the moving unit 37; through; the main box 32 is driven to move up and down by the first electric slide rail 31 to adjust the height, the turntable 34 is driven to rotate by the motor 33, and the adapter seat 36 is driven by the second electric slide rail 35 to move and adjust the swing amplitude of the moving unit 37, and the lifting unit 38 is controlled according to the depth adjustment of the collection bucket 15.
[0025] More specifically, Figure 4 and Figure 6 As shown, the moving unit 37 includes a pair of first slide bars 371, two pairs of first nuts 372, a pair of slide seats 373, a pair of first bolts 374 and a pair of second slide bars 375; the two ends of the pair of first slide bars 371 are respectively movably connected to the left and right side walls of the other end of the main box 32, and the first slide bar 371 is located below the center line, the two pairs of first nuts 372 are respectively movably screwed on the two ends of the first slide bar 371, a pair of slide seats 373 are relatively vertically fitted, one of the two ends of the slide seat 373 is respectively movably mounted on the first slide bar 371, the pair of first bolts 374 are respectively screwed on the pair of slide seats 373, and the pair of second slide bars 375 are respectively screwed on the first slide bar 371. The ends are respectively fixedly connected to the adapter seat 36, the other ends of a pair of second slide bars 375 are respectively movable through the two ends of another slide seat 373 and are located above the first slide bar 371, and the other ends of a pair of second slide bars 375 are respectively movable through the swing opening of the main box 32; through the connection between the adapter seat 36 and the second electric slide rail 35, as the turntable 34 rotates, the adapter seat 36 drives the second slide bar 375 to extend and retract back and forth on one of the slide seats 373, and at the same time drives the other slide seat 373 to move left and right on the first slide bar 371, thereby realizing the extraction pipe 384 in the lifting unit 38 to rotate in circles of different diameters to extract the powder in the collecting barrel 15.
[0026] More specifically, Figure 4 and Figure 7As shown, the lifting unit 38 includes a limit seat 381, a second hydraulic cylinder 382, a sleeve plate 383, a material extraction pipe 384 and a material guide pipe 385; the limit seat 381 is in a Z shape, the middle part of the limit seat 381 is fixedly arranged on the other end of a pair of second slide bars 375, and is located above the collecting barrel 15, a lifting port is opened in the middle part of one end of the limit seat 381, one end of the second hydraulic cylinder 382 is fixedly arranged on the other end of the limit seat 381, one end of the sleeve plate 383 is fixedly arranged on the telescopic end of the second hydraulic cylinder 382, and the other end of the sleeve plate 383 is opposite to the lifting port, one end of the material extraction pipe 384 is movable through the lifting port, and the other end of the material extraction pipe 384 is movable through the lifting port. The end is fixedly passed through the other end of the sleeve plate 383, one end of the guide pipe 385 is fixedly connected to the other end of the extraction pipe 384, and the other end of the guide pipe 385 is connected to the feeding end of the material pump 23; the second hydraulic cylinder 382 is extended and retracted, and the sleeve plate 383 is used to drive the extraction pipe 384 to move up and down through the limit seat 381, so as to adjust the depth of the extraction pipe 384 in the collecting barrel 15, and the material is transported to the sedimentation machine body 22 with the help of the guide pipe 385, one end of the extraction pipe 384 is inserted into the collecting barrel 15, and the extraction pipe 384 moves along the circumference of the inner wall of the extraction barrel, so as to realize the comprehensive extraction of powder in the container according to the design requirements and reduce manual intervention.
[0027] The detailed connection means are well-known in the art. The following mainly introduces the working principle and process. The specific work is as follows.
[0028] S1. Through the support of the base 11 in the main structure 1, the device is powered on and controlled by the controller 12; the collection bucket 15 is limited by the sleeve 14, and the powder after production can be transported to the collection bucket 15 by installing the guide rack 16; when transfer or feeding is required, the material pump 23 on the hanger 21 in the feeding structure 2 can be driven, and the material pump 23 is connected through the guide pipe 385 to cause one end of the extraction pipe 384 to generate suction; S2, then adjust the lifting unit 38 according to the depth of the collection barrel 15 or the height of the powder inside; drive the second hydraulic cylinder 382 on the limit seat 381 to extend and retract, and use the sleeve plate 383 to drive the extraction pipe 384 to move up and down to adjust the extraction position of the extraction pipe 384; at the same time, according to the diameter of the collection barrel 15, drive the second electric slide rail 35 to drive the adapter seat 36 to move forward and backward, and adjust the connection position of the two second slide bars 375 and the turntable 34; Then, the motor 33 in the main box 32 is driven to drive the turntable 34 to rotate. As the turntable 34 drives the second electric slide rail 35 to rotate, since the adapter seat 36 is movably connected to the second electric slide rail 35, the two second slide bars 375 on the adapter seat 36 are driven to swing back and forth eccentrically; when the second slide bar 375 is forced to pass through one of the slide seats 373 in the moving unit 37, the second slide bar 375 is also forced to drive the other slide seat 373 relatively connected by the first bolt 374 to move left and right on the first slide bar 371 limited by the first nut 372, thereby driving the extraction pipe 384 to move in a circular motion in the collection barrel 15. By driving the second electric slide rail 35 to adjust the diameter of the circular motion, the extraction pipe 384 can be located at various positions in the collection barrel 15 to fully extract powder materials; S2. After the powder material is extracted, it enters the sedimentation machine body 22 through the guide pipe 385, and is separated into gas and solid by the spiral sedimentation method of the sedimentation machine body 22. The gas is discharged from the top and the solid is discharged from the bottom for feeding application; S4, or drive the first hydraulic cylinder 24 to extend, and move the screw conveyor body 26 with the support of the telescopic rod 25, so that the feeding port of the screw conveyor body 26 is connected and matched with the discharging port of the sedimentation machine body 22, and then the settled solid powder material enters the screw conveyor body 26, and is transported by the screw conveyor for a certain distance to be transferred for loading, or the powder material is discharged from the screw conveyor body 26 and falls on the conveyor belt body 13, and is transported horizontally again for a certain distance by the conveyor belt body 13 to be loaded to other equipment or containers.
[0029] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A conveying device for processing phthalocyanine blue raw materials, characterized in that: It comprises a main structure (1), a feeding structure (2) and a drawing structure (3), wherein the feeding structure (2) is fixedly arranged on the upper wall of a base (11) in the main structure (1) and close to the middle of the rear end, and the drawing structure (3) is fixedly arranged on the upper wall of the left end of the base (11) in the main structure (1); The main structure (1) comprises a base (11), a controller (12), a conveyor belt body (13), a sleeve (14), a collection bucket (15) and a material guide frame (16); The base (11) is rectangular, the controller (12) is fixedly arranged on the upper wall of the right end of the base (11), the conveyor belt body (13) is fixedly arranged on the middle of the upper wall of the right end of the base (11) and is located behind the controller (12), the sleeve (14) is a cylindrical structure, the sleeve (14) is fixedly arranged on the upper wall of the left end of the base (11) and is located in front of the center line, the collection barrel (15) is a cylindrical structure, and a sleeve hole is opened in the middle of the lower wall, the collection barrel (15) is detachably arranged on the upper wall of the left end of the base (11), and the collection barrel (15) is sleeved on the sleeve (14), one end of the guide frame (16) is detachably clamped on the upper wall edge of the collection barrel (15), and the other end of the guide frame (16) is inclined to the left.
2. The conveying device for processing phthalocyanine blue raw materials according to claim 1, characterized in that: The feeding structure (2) comprises a hanger (21), a sedimentation machine body (22), a material pump (23), a first hydraulic cylinder (24), a telescopic rod (25) and a screw conveyor body (26); One end of the hanger (21) is fixedly arranged on the upper wall of the rear end of the base (11) and is located on the left side of the conveyor belt body (13); the sedimentation machine body (22) is fixedly arranged on the other end of the hanger (21), and the discharge port of the sedimentation machine body (22) is vertically downward; a feed port and an exhaust port are arranged on both left and right sides of one end of the sedimentation machine body (22); the material pump (23) is fixedly arranged on the upper wall of the other end of the hanger (21), and the feed end of the material pump (23) is connected to the feed port of the sedimentation machine body (22) through a first pipeline. One end of the first hydraulic cylinder (24) is fixedly inserted through one end of the hanger (21); one end of the telescopic rod (25) is movably inserted through one end of the hanger (21) and is located below the first hydraulic cylinder (24); the screw conveyor body (26) is fixedly arranged on the telescopic end of the first hydraulic cylinder (24) and one end of the telescopic rod (25); the feed port of the screw conveyor body (26) is located below the discharge port of the sedimentation machine body (22); and the discharge port of the screw conveyor body (26) is located above the left end of the conveyor belt body (13).
3. The conveying device for processing phthalocyanine blue raw materials according to claim 2, characterized in that: The material extraction structure (3) comprises a first electric slide rail (31), a main body box (32), a motor (33), a turntable (34), a second electric slide rail (35), a transfer seat (36), a moving unit (37) and a lifting unit (38); The first electric slide rail (31) is vertically arranged on the upper wall of the left end of the base (11) and is located opposite to the rear side of the sleeve (14); the main body box (32) is a convex box; one end of the main body box (32) is fixedly arranged on the first electric slide rail (31) and the main body box (32) moves up and down; the main body box (32) is located on the left side of the hanger (21); one end of the main body box (32) is wider than the other end; a swing opening is arranged in the middle of the front side wall of the other end of the main body box (32); the motor (33) is fixedly arranged on the main body box (32) ) at one end thereof and located on the center line, the turntable (34) is fixedly arranged on the driving end of the motor (33), the second electric slide rail (35) is fixedly arranged in the middle of the upper wall of the turntable (34), the adapter seat (36) is movably arranged on the second electric slide rail (35), and the adapter seat (36) moves forward and backward, the moving unit (37) is movably arranged in the other end of the main body box (32), and the moving unit (37) is connected to the adapter seat (36), and the lifting unit (38) is fixedly arranged on the moving unit (37).
4. The conveying device for processing phthalocyanine blue raw materials according to claim 3, characterized in that: The moving unit (37) comprises a pair of first sliding rods (371), two pairs of first nuts (372), a pair of sliding seats (373), a pair of first bolts (374) and a pair of second sliding rods (375); Two ends of a pair of first slide bars (371) are movably passed through the left and right side walls of the other end of the main body box (32), and the first slide bars (371) are located below the center line. Two pairs of first nuts (372) are movably screwed on the two ends of the first slide bars (371). A pair of slide seats (373) are relatively vertically fitted, and two ends of one of the slide seats (373) are movably mounted on the first slide bar (371) (25). A pair of first bolts (374) are screwed on the pair of slide seats (373). One end of a pair of second slide bars (375) is fixedly connected to the adapter seat (36). The other ends of a pair of second slide bars (375) are movably passed through the two ends of another slide seat (373) and are located above the first slide bar (371). The other ends of a pair of second slide bars (375) are movably passed through the swing opening of the main body box (32).
5. The conveying device for processing phthalocyanine blue raw materials according to claim 4, characterized in that: The lifting unit (38) comprises a limit seat (381), a second hydraulic cylinder (382), a sleeve plate (383), a material extraction pipe (384) and a material guide pipe (385); The limiting seat (381) is in a Z shape. The middle portion of the limiting seat (381) is fixedly arranged on the other end of a pair of second sliding rods (375) and is located above the collecting barrel (15). A lifting port is opened in the middle portion of one end of the limiting seat (381). One end of the second hydraulic cylinder (382) is fixedly arranged on the other end of the limiting seat (381). One end of the sleeve plate (383) is fixedly arranged on the telescopic end of the second hydraulic cylinder (382), and the other end of the sleeve plate (383) is opposite to the lifting port. One end of the material extraction pipe (384) movably passes through the lifting port, and the other end of the material extraction pipe (384) is fixedly passed through the other end of the sleeve plate (383). One end of the material guide pipe (385) is fixedly connected to the other end of the material extraction pipe (384), and the other end of the material guide pipe (385) is connected to the feeding end of the material pump (23).
6. The conveying device for processing phthalocyanine blue raw materials according to claim 5, characterized in that: The motor (33) drives the turntable (34) to rotate, and as the turntable (34) drives the second electric slide rail (35) to rotate, the two second slide bars (375) on the transfer seat (36) are caused to reciprocate and eccentrically swing.
7. The conveying device for processing phthalocyanine blue raw materials according to claim 6, characterized in that: One end of the extraction tube (384) is inserted into the collection barrel (15), and the extraction tube (384) moves along the circumference of the inner wall of the extraction barrel.
8. The conveying device for processing phthalocyanine blue raw materials according to claim 7, characterized in that: The screw conveyor body (26) is moved by the first hydraulic cylinder (24), and the inlet of the screw conveyor body (26) is aligned with the discharge port of the sedimentation machine body (22).
Citation Information
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