Conveying device and method for carbon nanotube powder processing
By designing a conveying device for carbon nanotube powder processing with splicing components and adjustment mechanisms, the problems of pipe entanglement and inconvenient cleaning were solved, achieving efficient material conveying and convenient device operation.
Patent Information
- Application Number
- CN202511874536.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-12
- Publication Date
- 2026-01-20
AI Technical Summary
In existing conveying devices for carbon nanotube powder processing, long feeding pipes are prone to tangling and are difficult to clean, and the problem of raw material accumulation is prominent.
A conveying device for carbon nanotube powder processing was designed, including an operating table, a mounting frame, a mixing drum, an auger body, a disassembly assembly, a splicing assembly, a support, a motor, a drive assembly, a snap-fit assembly, a connecting assembly, a housing, and a conveying device. The splicing assembly is adjusted by a motor-driven threaded rod and a hydraulic telescopic rod to achieve the positioning and conveying of raw materials, reducing pipeline length and accumulation.
It effectively reduces pipe entanglement and raw material accumulation, improves operational convenience and cleaning ease, and expands the scope of application of the equipment.
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Figure CN121361683A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of carbon nanometer, especially to a kind of carbon nanometer tube powder processing conveying device and method. BACKGROUND
[0002] Carbon nanometer tube, also known as bucky tube, is a kind of one-dimensional quantum material with nanometer radial size and micrometer axial size, and both ends of the tube are basically sealed. As a nanometer material, carbon nanometer tube has extremely strong strength and is a very good high-efficiency material.
[0003] The patent application with the publication number CN221795940U proposed in the prior art sets a first motor, a bidirectional screw rod, a sliding plate, a support rod, a support, a connecting rod, a support base, a support frame, a shell plate, a driving motor, a screw rod, a second motor, a threaded rod, a sliding block, a limiting rod and a powder conveying pump. When in use, the user can drive the bidirectional screw rod to rotate by the first motor, the two sliding plates move through the support rod, the support moves, the connecting rod moves, the support base moves, the support frame moves, the shell plate and the powder conveying pump move, the user can drive the threaded rod to rotate by the second motor when the shell plate and the support frame move to the specified position, the sliding block moves through the limiting rod, the powder conveying pump moves to the specified position, the user can convey the powder for nanometer tube processing into the flexible hose through the connecting pipe outside the powder conveying pump, then the user can drive the screw rod to rotate by the driving motor, and the powder is sent to the outlet at the bottom of the shell plate through the screw rod. The powder conveying pump can be moved, which greatly improves the use range and further improves the use convenience.
[0004] However, the conveying device in the prior art sets the feeding mechanism to be movable for the convenience of the operator in feeding, which sets a pipe long enough. However, the long pipe may be entangled and operated during use, and is not convenient for cleaning and accumulation of raw materials in the later period.
[0005] Therefore, it is necessary to provide a conveying device for carbon nanometer tube powder processing to solve the above technical problems. SUMMARY
[0006] The present application provides a conveying device for carbon nanometer tube powder processing, which solves the problem that the feeding mechanism is set to be movable, which sets a pipe long enough. However, the long pipe may be entangled and operated during use, and is not convenient for cleaning and accumulation of raw materials in the later period.
[0007] To solve the above technical problems, the application provides a conveying device for processing carbon nanotube powder, which comprises: an operating table, two mounting racks, a stirring drum, an auger main body, a disassembly assembly, a splicing assembly, two supports, a motor, a driving assembly, a clamping assembly, a connecting assembly, a box body and a conveying device; The two mounting racks are respectively mounted on the two sides of the surface of the operating table. The stirring drum is arranged between the two mounting racks. The auger main body is arranged in the stirring drum. The disassembly assembly is arranged on the surface of the stirring drum. The splicing assembly is arranged on the surface of the disassembly assembly, and the splicing assembly comprises a splicing plate and a plurality of splicing heads, and the plurality of splicing heads are respectively arranged on the surface of the splicing plate. The two supports are symmetrically mounted on the surface of the stirring drum. The motor is mounted on one side of one of the supports. The driving assembly is arranged between the two supports. The clamping assembly is arranged above the driving assembly. The connecting assembly is arranged on one side of the driving assembly. The box body is arranged on one side of the connecting assembly. The conveying device is arranged on the surface of the box body.
[0008] Preferably, the disassembly assembly comprises an arc-shaped disassembly plate, two positioning blocks and two bolts, the two positioning blocks are respectively connected to the two ends of the arc-shaped disassembly plate, and the two bolts are arranged between the two positioning blocks and the stirring drum.
[0009] Preferably, the driving assembly comprises a threaded rod, a threaded sleeve and a hydraulic telescopic rod, the threaded rod is arranged between the two supports, the threaded sleeve is sleeved on the surface of the threaded rod, and the hydraulic telescopic rod is mounted on the surface of the threaded sleeve.
[0010] Preferably, the clamping assembly comprises a connecting support and a clamping head, the connecting support is connected to the top of the hydraulic telescopic rod, and the clamping head is connected to one end of the connecting support.
[0011] Preferably, the connecting assembly comprises a fixed connecting frame, two disassembly blocks and two disassembly sleeves, the fixed connecting frame is connected to the surface of the hydraulic telescopic rod, the two disassembly blocks are respectively connected to the top and the bottom of the fixed connecting frame, and the two disassembly sleeves are respectively sleeved on the surfaces of the two disassembly blocks.
[0012] Preferably, the top of the box is provided with a box cover, and the top of the box cover is provided with a feeding hopper.
[0013] Preferably, the conveying device comprises a pump body and two conveying pipes, the pump body is mounted on the surface of the box, the two conveying pipes are connected to the input end and the output end of the pump body respectively, and the two conveying pipes are connected to the box and the clamping joint respectively.
[0014] Preferably, the surface of the box is provided with a sealing assembly, the sealing assembly comprises a dismounting plate, a sealing gasket, a plurality of limiting blocks, a plurality of limiting grooves and a plurality of threaded bolts, the sealing gasket is arranged on the side of the dismounting plate, the plurality of limiting blocks are connected to the side of the dismounting plate respectively, the plurality of limiting grooves are formed in the surface of the box respectively, and the plurality of threaded bolts are connected between the plurality of limiting blocks and the box respectively.
[0015] Preferably, a fixing assembly is arranged between the operation table and the mounting frame, the fixing assembly comprises two fixing plates and a threaded connecting bolt, the two fixing plates are symmetrically connected to the surface of the operation table and located on the two sides of the mounting frame, and the threaded connecting bolt is arranged between the two fixing plates and the mounting frame.
[0016] A method for conveying device for processing carbon nanotube powder comprises the following steps: S1, in use, first add raw materials into the box through the feeding hopper on the surface of the box cover, start the motor to drive the threaded rod to rotate, drive the threaded sleeve on the surface to move when the threaded rod rotates, drive the clamping assembly to adjust the position through the hydraulic telescopic rod when the threaded sleeve moves, stop the work of the motor when the clamping assembly is adjusted to the upper side of the corresponding splicing head. S2, after the motor in S1 stops working, start the hydraulic telescopic rod to drive the clamping head to move downward through the connecting bracket, move the clamping head to the splicing head on the surface of the splicing plate through the hydraulic telescopic rod, stop the work of the hydraulic telescopic rod after the clamping head is connected with the splicing head, then start the pump body to convey the raw materials in the box to the inside of the clamping head through the two conveying pipes, convey the raw materials to the inside of the stirring drum through the splicing head after the raw materials are conveyed to the inside of the clamping head, and start the auger main body to stir and convey the raw materials in the stirring barrel.
[0017] Compared with the related art, the conveying device for processing carbon nanotube powder has the following beneficial effects: This invention provides a conveying device for carbon nanotube powder processing. The device consists of a disassembly assembly with splicing components, two supports, a motor, a drive assembly, and a snap-fit assembly, all mounted on the surface of a mixing drum with an auger body. This assembly works in conjunction with a housing containing a connecting assembly and a conveying device. When feeding raw materials, the device can be adjusted left and right on the surface of the mixing drum and the position of the raw materials added into the mixing drum, thus replacing the current feeding operation and reducing the length of the pipe and the accumulation and entanglement of raw materials. Attached Figure Description
[0018] Figure 1 A schematic diagram of the structure of a first embodiment of a conveying device for processing carbon nanotube powder provided by the present invention; Figure 2 for Figure 1 The enlarged schematic diagram of part A shown below; Figure 3 for Figure 1 The enlarged schematic diagram of section B is shown below; Figure 4 for Figure 1 The enlarged schematic diagram of section C is shown below; Figure 5 for Figure 1 A three-dimensional structural schematic diagram of the conveying device from a first-view perspective; Figure 6 for Figure 5 The enlarged schematic diagram of part D is shown below; Figure 7 A schematic diagram of the second embodiment of a conveying device for processing carbon nanotube powder provided by the present invention; Figure 8 for Figure 7 The enlarged schematic diagram of part E is shown below; Figure 9 This is a schematic diagram of the third embodiment of a conveying device for processing carbon nanotube powder provided by the present invention.
[0019] The diagram is labeled as follows: 1. Control panel; 2. Mounting frame; 3. Mixing drum; 4. Screw conveyor body. 5. Disassembly of components: 51. Arc-shaped disassembly plate; 52. Positioning block; 53. Bolts. 6. Splicing components; 61. Splicing panels; 62. Splicing joints. 7. Bracket; 8. Motor 9. Drive assembly; 91. Threaded rod; 92. Threaded sleeve; 93. Hydraulic telescopic rod. 10. Snap-fit assembly; 101. Connecting bracket; 102. Snap-fit connector. 11. Connecting assembly; 111. Fixed connecting bracket; 112. Disassembly block; 113. Disassembly sleeve. 12, box, 13, box cover, 14, feeding hopper, 15, conveying device, 151, pump body, 152, conveying pipe, 16, sealing assembly, 161, disassembly plate, 162, sealing gasket, 163, limiting block, 164, limiting groove, 165, threaded bolt, 17, fixing assembly, 171, fixing plate, 172, threaded connecting bolt. DETAILED DESCRIPTION
[0020] The application will be further described below in conjunction with the drawings and embodiments.
[0021] First embodiment Please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6 , wherein, Figure 1 is a first embodiment of a carbon nanotube powder processing conveying device provided by the application; Figure 2 is an enlarged view of part A shown in Figure 1 ; Figure 3 is an enlarged view of part B shown in Figure 1 ; Figure 4 is an enlarged view of part C shown in Figure 1 ; Figure 5 is a three-dimensional structure schematic diagram of the conveying device from the first perspective shown in Figure 1 ; Figure 6 is an enlarged view of part D shown in Figure 5 . A carbon nanotube powder processing conveying device comprises:
[0022] operation table 1, two mounting frames 2, stirring drum 3, auger main body 4, disassembly assembly 5, splicing assembly 6, two supports 7, motor 8, driving assembly 9, clamping assembly 10, connecting assembly 11, box 12 and conveying device 15; Two mounting frames 2 are respectively mounted on both sides of the surface of the operation table 1; The stirring drum 3 is arranged between the two mounting frames 2; The auger main body 4 is arranged inside the stirring drum 3; The disassembly assembly 5 is arranged on the surface of the stirring drum 3; The splicing assembly 6 is arranged on the surface of the disassembly assembly 5, and the splicing assembly 6 comprises a splicing plate 61 and a plurality of splicing heads 62, and a plurality of splicing heads 62 are respectively arranged on the surface of the splicing plate 61; Two supports 7 are symmetrically mounted on the surface of the stirring drum 3; The motor 8 is installed on one side of one of the supports 7; The driving assembly 9 is arranged between the two supports 7; The clamping assembly 10 is arranged above the driving assembly 9; The connecting assembly 11 is arranged on one side of the driving assembly 9; The box 12 is arranged on one side of the connecting assembly 11; The conveying device 15 is arranged on the surface of the box 12.
[0023] The stirring barrel 3 is used for containing carbon nanotube powder raw materials and providing a stirring space. The auger main body 4 includes a driving shaft and a spiral blade. The driving shaft is rotationally connected to the stirring barrel 3 at both ends. The spiral blade is fixedly sleeved on the surface of the driving shaft and is used for stirring the raw materials and realizing axial conveying. The disassembly assembly 5 is distributed along the axial direction of the stirring barrel 3, facilitating disassembly and maintenance of the local structure of the stirring barrel 3. The splicing plate 61 is in an arc structure and is attached to the surface of the stirring barrel 3. A plurality of splicing heads 62 are uniformly arranged on the surface of the splicing plate 61. The splicing head 62 is internally provided with a hollow channel and is in communication with the inside of the stirring barrel 3, and is used for guiding the raw materials.
[0024] The support 7 is located on both sides of the middle part of the stirring barrel 3 and is used for mounting and fixing the motor 8 and the driving assembly 9. The motor 8 is a servo motor. The output shaft is in transmission connection with the driving assembly 9 and provides power for the driving assembly 9. The driving assembly 9 is used for driving the clamping assembly 10, the connecting assembly 11 and related components to realize position adjustment. One end of the threaded rod 91 is connected to one end of the motor 8 through a shaft coupling. The motor 8 is powered by an external power supply. The clamping assembly 10 is used for butt joint with the splicing head 62 of the splicing assembly 6, realizing the communication of the raw material conveying channel. The connecting assembly 11 is used for connecting the driving assembly 9 and the box 12, ensuring that the box 12 moves synchronously with the driving assembly 9.
[0025] The box 12 is a rectangular box structure with an open top and is used for storing carbon nanotube powder raw materials to be conveyed. The conveying device 15 is used for conveying the raw materials in the box 12 to the clamping assembly 10.
[0026] The curvature of the arc-shaped disassembly plate 51 is matched with the curvature of the outer circle of the stirring barrel 3 and covers the preset opening on the surface of the stirring barrel 3. Two positioning blocks 52 are respectively welded on both ends of the arc-shaped disassembly plate 51. A bolt hole is formed in the positioning block 52. Two bolts 53 are in threaded connection with the threaded holes on the surface of the stirring barrel 3 through the bolt holes of the positioning block 52, realizing the fixation of the arc-shaped disassembly plate 51 and the stirring barrel 3. The arc-shaped disassembly plate 51 can be disassembled by unscrewing the bolts 53, facilitating the cleaning or maintenance of the inside of the stirring barrel 3.
[0027] The threaded rod 91 is horizontally arranged between the two supports 7, and the two ends are rotatably connected with the supports 7 through bearings, and one end is fixedly connected with the output shaft of the motor 8; the threaded sleeve 92 is sleeved on the surface of the threaded rod 91, and the inner wall is provided with an internal thread matched with the threaded rod 91, and the threaded rod 91 can drive the threaded sleeve 92 to move axially along the threaded rod 91 when rotating; the hydraulic telescopic rod 93 is vertically installed on the upper surface of the threaded sleeve 92, and the piston rod can be extended and retracted in the vertical direction, for adjusting the height of the clamping assembly 10.
[0028] The connecting support 101 is in L-shaped structure, one end is fixedly connected with the top piston rod of the hydraulic telescopic rod 93, and the other end extends to below the splicing assembly 6; the clamping joint 102 is fixedly connected to one end of the connecting support 101, the top of the clamping joint 102 is a socket structure matched with the splicing joint 62, and a sealing washer is arranged in the inside, so as to ensure the sealing performance after the clamping joint 102 is connected with the splicing joint 62, and prevent the raw materials from leaking.
[0029] The fixed connecting frame 111 is in U-shaped structure, one side is welded and fixed with the surface of the cylinder body of the hydraulic telescopic rod 93; the two dismounting blocks 112 are respectively welded to the inner sides of the top and bottom of the fixed connecting frame 111; the two dismounting sleeves 113 are made of elastic material, and are respectively sleeved on the surfaces of the two dismounting blocks 112, and the dismounting sleeves 113 are fixedly connected with the side surface of the box body 12, and the dismounting sleeves 113 and the dismounting blocks 112 are in interference fit, so as to realize the detachable connection between the box body 12 and the fixed connecting frame 111, and facilitate the dismounting of the box body 12 for cleaning or replacement.
[0030] The box cover 13 is hingedly connected with the box body 12 through a hinge, and can be opened and closed by turning, for closing the top opening of the box body 12, preventing the raw materials from being damp or contaminated; the top of the box cover 13 is fixedly provided with a feeding hopper 14 at the central position, the feeding hopper 14 is in tapered structure with wide top and narrow bottom, facilitating the addition of raw materials into the box body 12, and avoiding the raw materials from spilling.
[0031] The pump body 151 is a powder conveying pump, and is fixedly installed on the bottom of the outer side wall of the box body 12; the two conveying pipes 152 are flexible wear-resistant pipes, one end of one of the conveying pipes 152 is connected with the input end of the pump body 151, and the other end extends to the bottom of the inside of the box body 12, for pumping the raw materials in the box body 12; one end of the other conveying pipe 152 is connected with the output end of the pump body 151, and the other end is fixedly connected with the side interface of the clamping joint 102, realizing the conveying of the raw materials from the pump body 151 to the clamping joint 102.
[0032] The dismounting assembly 5 comprises an arc-shaped dismounting plate 51, two positioning blocks 52 and two bolts 53, the two positioning blocks 52 are respectively connected with the two ends of the arc-shaped dismounting plate 51, and the two bolts 53 are arranged between the two positioning blocks 52 and the stirring drum 3.
[0033] The driving assembly 9 comprises a threaded rod 91, a threaded sleeve 92 and a hydraulic telescopic rod 93, the threaded rod 91 is arranged between the two supports 7, the threaded sleeve 92 is sleeved on the surface of the threaded rod 91, and the hydraulic telescopic rod 93 is installed on the surface of the threaded sleeve 92.
[0034] The clamping assembly 10 comprises a connecting support 101 and a clamping head 102, the connecting support 101 is connected to the top of the hydraulic telescopic rod 93, and the clamping head 102 is connected to one end of the connecting support 101.
[0035] The connecting assembly 11 comprises a fixed connecting frame 111, two dismounting blocks 112 and two dismounting sleeves 113, the fixed connecting frame 111 is connected to the surface of the hydraulic telescopic rod 93, the two dismounting blocks 112 are connected to the top and bottom of the fixed connecting frame 111 respectively, and the two dismounting sleeves 113 are sleeved on the surfaces of the two dismounting blocks 112 respectively.
[0036] The top of the box body 12 is provided with a box cover 13, and the top of the box cover 13 is provided with a feeding hopper 14.
[0037] The conveying device 15 comprises a pump body 151 and two conveying pipes 152, the pump body 151 is installed on the surface of the box body 12, the two conveying pipes 152 are connected to the input end and the output end of the pump body 151 respectively, and the two conveying pipes 152 are connected to the box 15 and the clamping head 102 respectively.
[0038] Compared with the related art, the conveying device for processing carbon nanotube powder has the following beneficial effects: The conveying device for processing carbon nanotube powder is used in cooperation with the box body 12 provided with the dismounting assembly 5 provided with the splicing assembly 6, the two supports 7, the motor 8, the driving assembly 9 and the clamping assembly 10, and the connecting assembly 11 and the conveying device 15 on the surface of the stirring drum 3 provided with the auger main body 4, so that the whole device can be adjusted in the left and right positions on the surface of the stirring drum 3 and the position of adding the raw materials into the stirring drum 3 during the feeding of the raw materials, thereby replacing the present feeding operation, and the length of the pipeline and the accumulation and winding of the raw materials can be reduced.
[0039] Second embodiment Please refer to Figure 7 and Figure 8, based on the first embodiment of the application provides a kind of carbon nanotube powder processing conveying device, the second embodiment of the application proposes another kind of carbon nanotube powder processing conveying device.Second embodiment is only the preferred mode of first embodiment, the implementation of second embodiment does not cause the influence to the single implementation of first embodiment.
[0040] Specifically, the second embodiment of the application provides a kind of carbon nanotube powder processing conveying device, which differs from the first embodiment in that it further comprises a sealing assembly 16 disposed on the surface of the box 12. The sealing assembly 16 includes a removable plate 161, a sealing gasket 162, a plurality of limiting blocks 163, a plurality of limiting grooves 164, and a plurality of threaded bolts 165. The sealing gasket 162 is disposed on the edge side of the removable plate 161. The plurality of limiting blocks 163 are respectively connected to the edge side of the removable plate 161. The plurality of limiting grooves 164 are respectively formed on the surface of the box 12. The plurality of threaded bolts 165 are respectively connected between the plurality of limiting blocks 163 and the box 12.
[0041] The removable plate 161 is a rectangular plate that fits the cleaning opening of the box 12 and covers the cleaning opening. The sealing gasket 162 is made of rubber and is attached to the inner edge of the removable plate 161, fitting the edge of the cleaning opening to enhance sealing performance and prevent raw materials from leaking through the gap. The plurality of limiting blocks 163 are respectively and evenly welded to the outer edge of the removable plate 161, and each limiting block 163 has a threaded hole. The plurality of limiting grooves 164 are respectively formed on the surface of the box 12, corresponding to the limiting blocks 163. The limiting blocks 163 can be embedded in the corresponding limiting grooves 164 to position the removable plate 161. The plurality of threaded bolts 165 pass through the threaded holes of the limiting blocks 163 and are threadedly connected with the threaded holes at the bottom of the limiting grooves 164 to fix the removable plate 161 to the surface of the box 12.
[0042] The working principle of the carbon nanotube powder processing conveying device provided by the application is as follows: When the inside of the box 12 needs to be cleaned, the remaining raw materials in the box 12 are first emptied, and then the plurality of threaded bolts 165 of the sealing assembly 16 are successively unscrewed. After the threaded bolts 165 are separated from the limiting grooves 164, the removable plate 161 can be pulled outward, causing the limiting blocks 163 to be dislodged from the limiting grooves 164. After the removable plate 161 is removed, the cleaning opening on the side of the box 12 is completely opened, and the operator can thoroughly clean the residual raw materials, dust, and other debris inside the box 12 through the cleaning opening.
[0043] After cleaning, align the gasket 162 inside the disassembly plate 161 to the cleaning opening edge of the box body 12, embed each limiting block 163 into the corresponding limiting groove 164, realize the positioning of the disassembly plate 161, then screw the threaded bolt 165 through the threaded through hole of the limiting block 163 and the threaded hole of the limiting groove 164, complete the fixation of the disassembly plate 161, and the gasket 162 is compressed between the disassembly plate 161 and the box body 12, ensuring the sealing property of the box body 12.
[0044] Compared with the related art, the carbon nanotube powder processing conveying device provided by the application has the following beneficial effects: The application provides a carbon nanotube powder processing conveying device, which is characterized in that a sealing assembly 16 is arranged on the surface of the box body 12 to facilitate regular disassembly and cleaning of the inside of the box body 12.
[0045] Third embodiment Please refer to Figure 8 Based on the first embodiment of the application, the third embodiment of the application provides another carbon nanotube powder processing conveying device. The third embodiment is only a preferred mode of the first embodiment, and the implementation of the third embodiment does not affect the separate implementation of the first embodiment.
[0046] Specifically, the difference between the carbon nanotube powder processing conveying device provided by the third embodiment of the application is that a fixing assembly 17 is further included, the fixing assembly 17 is arranged between the operation table 1 and the mounting frame 2, the fixing assembly 17 includes two fixing plates 171 and threaded connection bolts 172, the two fixing plates 171 are symmetrically connected to the surface of the operation table 1 and located on the two sides of the mounting frame 2, and the threaded connection bolts 172 are arranged between the two fixing plates 171 and the mounting frame 2.
[0047] The fixing plate 171 is of L-shaped structure, the vertical part of the fixing plate 171 is attached to the side surface of the mounting frame 2, and the horizontal part of the fixing plate 171 is attached to the surface of the operation table 1; the vertical part of each fixing plate 171 is provided with a plurality of through holes distributed upward and downward, the corresponding positions of the mounting frame 2 are provided with threaded holes, and the plurality of threaded connection bolts 172 are threadedly connected through the through holes of the fixing plates 171 and the threaded holes of the mounting frame 2, so that the mounting frame 2 is clamped and fixed between the two fixing plates 171.
[0048] The working principle of the carbon nanotube powder processing conveying device provided by the application is as follows: When installing the device, first place the two mounting frames 2 on the surface of the operating table 1 at the predetermined position, ensure that the bottom of the mounting frame 2 is attached to the surface of the operating table 1 and is located between the two fixed plates 171, then pass the threaded connecting bolt 172 through the through hole of the vertical part of the fixed plate 171, align the threaded hole on the side of the mounting frame 2, and tighten the threaded connecting bolt 172 clockwise with a tool, so that the end of the threaded connecting bolt 172 presses the side of the mounting frame 2, and the mounting frame 2 is firmly fixed on the operating table 1 through the clamping action of the two fixed plates 171.
[0049] When it is necessary to disassemble or adjust the position of the mounting frame 2, loosen the threaded connecting bolt 172 counterclockwise with a tool, so that the threaded connecting bolt 172 is detached from the threaded hole of the mounting frame 2, and then the mounting frame 2 can be moved and adjusted to the appropriate position, and then the threaded connecting bolt 172 can be tightened again.
[0050] Compared with the related art, the carbon nanotube powder processing conveying device provided by the application has the following beneficial effects: The carbon nanotube powder processing conveying device provided by the application is provided with two fixed plates 171 and threaded connecting bolts 172 between the base 1 and the mounting frame 2, which can facilitate the installation of the entire device on the surface of the operating table 1.
[0051] A method for processing carbon nanotube powder conveying device, comprising the following steps: S1, when in use, first add the raw materials to the inside of the box body 12 through the feed hopper 14 on the surface of the box cover 13, start the motor 8 to drive the threaded rod 91 to rotate, when the threaded rod 91 rotates, the threaded sleeve 92 on the surface is moved, when the threaded sleeve 92 moves, the clamping assembly 10 is adjusted in position by the hydraulic telescopic rod 93, when the clamping assembly 10 is adjusted to the upper side of the corresponding splice joint 62, stop the work of the motor 8; S2, when the motor 8 in S1 stops working, start the hydraulic telescopic rod 93 to drive the clamping joint 102 to move downward by the connecting bracket 101, when the hydraulic telescopic rod 93 drives the clamping joint 102 to move downward to the plug-in connection with the splice joint 62 on the surface of the splice plate 61, stop the work of the hydraulic telescopic rod 93 after the clamping joint 102 is connected with the splice joint 62, then start the pump body 151 to convey the raw materials in the box body 12 to the inside of the clamping joint 102 through the two conveying pipes 152, when the raw materials are conveyed to the inside of the clamping joint 102, they are conveyed to the inside of the stirring drum 3 through the splice joint 62, and when the raw materials are conveyed to the inside of the stirring drum 3, start the auger main body 4 to stir and convey the raw materials in the stirring drum 3.
[0052] The above merely illustrates the embodiments of the present application, and is not intended to limit the patent scope of the present application. Any equivalent structure or equivalent process conversion, or direct or indirect application in other related technical fields, which is made according to the content of the present application, shall be included in the patent protection scope of the present application.
Claims
1. A conveying device for processing carbon nanotube powder, characterized in that, The utility model relates to a kind of auger, which includes: Operation platform, two mounting racks, mixing drum, auger main body, disassembly component, splicing component, two supports, motor, drive assembly, clamping component, connecting component, box and conveying device; Two The mounting rack is respectively installed in the both sides of the operation platform surface; The mixing drum is arranged between two The mounting rack; The auger main body is arranged in the interior of the mixing drum; The disassembly component is arranged on the surface of the mixing drum; The splicing component is arranged on the surface of the disassembly component, and the splicing component includes a splicing plate and a plurality of splicing heads, and a plurality of The splicing head is respectively arranged on the surface of the splicing plate; Two The support is symmetrically installed on the surface of the mixing drum; The motor is installed on one side of one The support; The drive assembly is arranged between two The support; The clamping component is arranged above the drive assembly; The connecting component is arranged on one side of the drive assembly; The box is arranged on one side of the connecting component; The conveying device is arranged on the surface of the box.
2. The carbon nanotube powder processing conveyance apparatus according to claim 1, wherein The disassembly component includes an arc-shaped disassembly plate, two positioning blocks and two bolts, two The positioning block is respectively connected to the both ends of the arc-shaped disassembly plate, and two The bolt is arranged between two The positioning block and the mixing drum.
3. The carbon nanotube powder processing conveyor of claim 1, wherein The drive assembly includes a threaded rod, a threaded sleeve and a hydraulic telescopic rod, the threaded rod is arranged between two The support, the threaded sleeve is sleeved on the surface of the threaded rod, and the hydraulic telescopic rod is installed on the surface of the threaded sleeve.
4. The carbon nanotube powder processing conveyor of claim 3, wherein The clamping component includes a connecting support and a clamping head, the connecting support is connected to the top of the hydraulic telescopic rod, and the clamping head is connected to one end of the connecting support.
5. The carbon nanotube powder processing conveyor of claim 4, wherein The connecting component includes a fixed connecting frame, two disassembly blocks and two disassembly sleeves, the fixed connecting frame is connected to the surface of the hydraulic telescopic rod, two The disassembly block is respectively connected to the top and bottom of the fixed connecting frame, and two The disassembly sleeve is respectively sleeved on the surface of two The disassembly block.
6. The carbon nanotube powder processing conveyor of claim 1, wherein The top of the box is provided with a box cover, and the top of the box cover is provided with a feeding hopper.
7. The carbon nanotube powder processing delivery device of claim 4, wherein The conveying device includes a pump body and two conveying pipes, the pump body is installed on the surface of the box, two The conveying pipe is respectively connected to the input end and the output end of the pump body, and two The conveying pipe is respectively connected to the box and the clamping head.
8. The carbon nanotube powder processing conveyor of claim 1, wherein, The surface of the box is provided with a sealing assembly, the sealing assembly includes a disassembly plate, a sealing gasket, a plurality of limiting blocks, a plurality of limiting grooves and a plurality of threaded bolts, the sealing gasket is arranged on the side of the disassembly plate, a plurality of The limiting block is respectively connected to the side of the disassembly plate, a plurality of The limiting groove is respectively formed in the surface of the box, and a plurality of The threaded bolt is respectively connected between a plurality of The limiting block and the box.
9. The carbon nanotube powder processing conveyor of claim 1, wherein, A fixing assembly is arranged between the operation platform and the mounting rack, and the fixing assembly includes two fixing plates and a threaded connecting bolt, two The fixing plate is symmetrically connected to the surface of the operation platform and located on the both sides of the mounting rack, and the threaded connecting bolt is arranged between two The fixing plate and the mounting rack.
10. A method for processing a carbon nanotube powder using a transport apparatus as claimed in any one of claims 1 to 7, wherein The utility model relates to a kind of auger, which includes: The following steps are included: S1, in use, first add raw materials to the inside of the box through the feed hopper on the surface of the box cover, when the inside of the box is added with raw materials, start the motor to drive the threaded rod to rotate, when the threaded rod rotates, drive the threaded sleeve on the surface to move, when the threaded sleeve moves, drive the clamping assembly to adjust the position through the hydraulic telescopic rod, when the clamping assembly is adjusted to the upper side of the corresponding splice joint, stop the work of the motor; S2, when the motor in S1 stops working, start the hydraulic telescopic rod to drive the clamping joint to move downward through the connecting support, when the hydraulic telescopic rod drives the clamping joint to move downward to the plug-in connection with the splice joint on the surface of the splice plate, stop the work of the hydraulic telescopic rod after the clamping joint is connected with the splice joint, then start the pump body to convey the raw materials in the box to the inside of the clamping joint through the two conveying pipes, when the raw materials are conveyed to the inside of the clamping joint, convey them to the inside of the stirring cylinder through the splice joint, when the raw materials are conveyed to the inside of the stirring cylinder, start the auger main body to stir and convey the raw materials in the stirring barrel.
Citation Information
Patent Citations
Powder conveying device for carbon nano tube processing
CN221795940U