Conveying equipment for activated carbon production
By designing a conveying equipment for activated carbon production, the problem of low transport efficiency of activated carbon in the prior art is solved, and efficient sorting and transportation of activated carbon is achieved.
Patent Information
- Application Number
- CN202510349217.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the prior art, activated carbon cannot be sorted and closed transport, resulting in low transport efficiency of activated carbon.
A conveying equipment for the production of activated carbon is designed, including a fixed base plate, a rolling wheel mechanism, a lifting and adjusting installation ring mechanism and a conveying cylinder mechanism. The height of the conveying cylinder is adjusted by lifting and lowering the installation ring mechanism, and the sorting and conveying of activated carbon is realized through the vibration mechanism.
Through the use of this equipment, the transport efficiency of activated carbon particles can be effectively improved, and the sorting and closed transport of activated carbon can be realized.
Smart Images

Figure CN119976214A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of activated carbon transportation, in particular to a transportation device for activated carbon production. Background Art
[0002] Activated carbon is a porous carbon material that has been carbonized and activated at high temperature. It has high adsorption capacity, chemical stability, good electrical and thermal conductivity, and is widely used in water treatment, air purification, medicine, food industry, chemical industry, etc. It can effectively adsorb impurities in gases and liquids, and can restore adsorption capacity through regeneration.
[0003] In the prior art, activated carbon is usually transported directly. However, in the prior art, the activated carbon cannot be sorted and transported in a closed manner, so the efficiency of transporting the activated carbon is low. Therefore, there is a large room for improvement in the prior art. Summary of the invention
[0004] The present invention provides a conveying device for producing activated carbon, which solves the problems raised in the above-mentioned background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A conveying device for producing activated carbon, comprising a fixed bottom plate, wherein the fixed bottom plates are provided with two, two rolling wheel mechanisms are provided at the bottom of the fixed bottom plates, the two rolling wheel mechanisms are symmetrically arranged on the fixed bottom plates, a first lifting adjustment mounting ring mechanism and a second lifting adjustment mounting ring mechanism are provided between the two fixed bottom plates, the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism are symmetrically arranged on the fixed bottom plates, an outer conveying cylinder mechanism is provided on the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism, the outer conveying cylinder mechanism is connected to the inner conveying cylinder mechanism, and a conveying adjustment mechanism is provided on the inner conveying cylinder mechanism; the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism are used to adjust the height of the outer conveying cylinder mechanism and the inner conveying cylinder mechanism, the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism are used to drive the outer conveying cylinder mechanism and the inner conveying cylinder mechanism to vibrate, and the conveying adjustment mechanism is used to adjust the screening state of the inner conveying cylinder mechanism.
[0007] As a preferred technical solution of the present invention, the rolling wheel mechanism includes a wheel seat shaft rotatably connected to the fixed base plate, one end of the wheel seat shaft away from the fixed base plate is fixedly connected to the roller seat, and the roller seat is rotatably connected to the moving roller.
[0008] As a preferred technical solution of the present invention, the first lifting and adjusting mounting ring mechanism includes a first mounting frame fixed on a fixed base plate, the first mounting frame is fixedly connected to a first hydraulic telescopic rod, the first hydraulic telescopic rod is fixedly connected to a first vibration mounting shell mechanism, the first vibration mounting shell mechanism is connected to a first sliding rod, the first sliding rod passes through the first mounting frame, the first sliding rod and the first mounting frame are slidably connected, one end of the first sliding rod away from the first vibration mounting shell mechanism is fixedly connected to the first adjustment frame, the first adjustment frame is rotatably connected to the first rotating shaft, and the first rotating shaft is rotatably connected to the first mounting ring.
[0009] As a preferred technical solution of the present invention, the first vibration mounting shell mechanism includes a mounting shell fixed on the first hydraulic telescopic rod, the mounting shell is fixedly connected to the first spring, the first spring is fixedly connected to the vibration plate, the vibration plate is fixedly connected to the vibration motor seat, the vibration motor seat is fixedly connected to the vibration motor, the output shaft of the vibration motor is fixedly connected to the vibration shaft, the vibration shaft is fixedly connected to the eccentric block, two wedge grooves are provided on the side of the vibration shaft, the two wedge grooves are axially symmetrically arranged on the vibration shaft, two elastic shells are fixedly connected in the mounting shell, the two elastic shells are symmetrically arranged on the mounting shell, the elastic shell is fixedly connected to the second spring, the second spring is fixedly connected to the pressure block, the pressure block and the elastic shell are slidably connected, the pressure block is fixedly connected to the limit rod, and the end of the limit rod is wedge-shaped.
[0010] As a preferred technical solution of the present invention, the second lifting and adjusting mounting ring mechanism includes a second mounting frame fixed on a fixed base plate, the second mounting frame is fixedly connected to a second hydraulic telescopic rod, one end of the second hydraulic telescopic rod away from the second mounting frame is fixedly connected to a second vibration mounting shell mechanism, the second vibration mounting shell mechanism is connected to a second sliding rod, the second sliding rod passes through the second mounting frame, the second sliding rod is slidably connected to the second mounting frame, one end of the second sliding rod away from the second vibration mounting shell mechanism is fixedly connected to a second adjustment frame, the second adjustment frame is rotatably connected to a second rotating shaft, and the second rotating shaft is rotatably connected to a second mounting ring.
[0011] As a preferred technical solution of the present invention, the second vibration mounting shell mechanism has the same structure as the first vibration mounting shell mechanism.
[0012] As a preferred technical solution of the present invention, the outer conveying cylinder mechanism includes a rotating motor seat fixedly connected to the second mounting ring, the rotating motor seat is fixedly connected to the rotating motor, the output shaft of the rotating motor is fixedly connected to the gear shaft, the gear shaft is fixedly connected to the first gear, the first gear meshes with the second gear, the second gear is fixedly connected to the outer conveying cylinder, the outer conveying cylinder is rotatably connected to the second mounting ring, the outer conveying cylinder passes through the first mounting ring, the outer conveying cylinder and the first mounting ring are slidably connected, the end of the outer conveying cylinder is fixedly connected to a baffle ring, a switch valve is provided on the baffle ring, and the first spiral auger blade is fixedly connected inside the outer conveying cylinder.
[0013] As a preferred technical solution of the present invention, the inner conveying cylinder mechanism includes a mounting bracket fixed in the outer conveying cylinder, the mounting bracket is fixedly connected to the outer sleeve, a plurality of first through grooves are provided in the axial direction of the outer sleeve, the outer sleeve is rotatably connected to the inner sleeve, a plurality of second through grooves are provided in the axial direction of the inner sleeve, the widths of the first through groove and the second through groove are the same, and the inner side of the inner sleeve is fixedly connected to the second spiral auger blade.
[0014] As a preferred technical solution of the present invention, the conveying adjustment mechanism includes a first mounting plate fixed on the outer sleeve, the first mounting plate is rotatably connected to the first deflection axis, the first deflection axis is rotatably connected to the linear motor, the end of the linear motor away from the first deflection axis is rotatably connected to the second deflection axis, the second deflection axis is rotatably connected to the second mounting plate, and the second mounting plate is fixed on the outer sleeve.
[0015] The present invention has the following benefits:
[0016] By setting the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism, the starting heights of the outer conveying tube mechanism and the inner conveying tube mechanism can be adjusted to adapt to different production and conveying environments, and at the same time, the outer conveying tube mechanism and the inner conveying tube mechanism can be driven to vibrate. The state of the inner conveying tube mechanism can be adjusted through the conveying adjustment mechanism, and then the sorting state of the activated carbon can be adjusted, so as to screen out different activated carbon particles that meet the requirements. The activated carbon particles can be transported through the outer conveying tube mechanism and the inner conveying tube mechanism, thereby improving the efficiency of transporting the activated carbon particles. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the specific implementation methods of the present invention or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0018] Figure 1 This is a schematic structural diagram of a conveying equipment for activated carbon production from the first perspective.
[0019] Figure 2 This is a schematic structural diagram of a conveying equipment for activated carbon production from a second perspective.
[0020] Figure 3 This is a schematic structural diagram of a conveying equipment for activated carbon production from a third perspective.
[0021] Figure 4 This is a schematic structural diagram of a conveying equipment for activated carbon production from the fourth perspective.
[0022] Figure 5 for Figure 4 Magnified view of area A.
[0023] Figure 6 A cross-sectional view of a first vibration mounting shell mechanism in a conveying device for producing activated carbon.
[0024] In the figure: 1, fixed bottom plate; 2, rolling wheel mechanism; 201, wheel seat shaft; 202, roller seat; 203, roller; 3, first lifting adjustment mounting ring mechanism; 301, first mounting frame; 302, first hydraulic telescopic rod; 303, first vibration mounting shell mechanism; 3031, mounting shell; 3032, first spring; 3033, vibration plate; 3034, vibration motor seat; 3035, vibration motor; 3036, vibration shaft; 3037, eccentric block; 3038, wedge groove; 3039, elastic shell; 3040, second spring; 3041, pressure block; 3042, limit rod; 303, first vibration mounting shell mechanism; 304, first slide bar; 305, first adjustment frame; 306, first rotating shaft; 307, first mounting ring; 4, second lifting adjustment mounting ring mechanism; 401, second mounting frame; 4 02, second hydraulic telescopic rod; 403, second vibration mounting shell mechanism; 404, second slide bar; 405, second adjustment frame; 406, second rotating shaft; 407, second mounting ring; 5, outer conveying cylinder mechanism; 501, rotating motor seat; 502, rotating motor; 503, gear rotating shaft; 504, first gear; 505, second gear; 506, outer conveying cylinder; 507, retaining ring; 508, switch valve; 509, first spiral auger blade; 6, inner conveying cylinder mechanism; 601, mounting bracket; 602, outer sleeve; 603, first through slot; 604, inner sleeve; 605, second through slot; 606, second spiral auger blade; 7, conveying adjustment mechanism; 701, first mounting plate; 702, first deflection axis; 703, linear motor; 704, second deflection axis; 705, second mounting plate. DETAILED DESCRIPTION
[0025] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0026] Example 1, please refer to Figure 1-Figure 6, a conveying equipment for activated carbon production, comprising a fixed base plate 1, wherein the fixed base plate 1 is provided with two, two rolling wheel mechanisms 2 are provided at the bottom of the fixed base plate 1, the two rolling wheel mechanisms 2 are symmetrically arranged on the fixed base plate 1, a first lifting adjustment mounting ring mechanism 3 and a second lifting adjustment mounting ring mechanism 4 are provided between the two fixed base plates 1, the first lifting adjustment mounting ring mechanism 3 and the second lifting adjustment mounting ring mechanism 4 are symmetrically arranged on the fixed base plate 1, an outer conveying tube mechanism 5 is provided on the first lifting adjustment mounting ring mechanism 3 and the second lifting adjustment mounting ring mechanism 4, the outer conveying tube mechanism 5 is connected to the inner conveying tube mechanism 6, and a conveying adjustment mechanism 7 is provided on the inner conveying tube mechanism 6; the first lifting adjustment mounting ring mechanism 3 and the second lifting adjustment mounting ring mechanism 4 are used to adjust the height of the outer conveying tube mechanism 5 and the inner conveying tube mechanism 6, the first lifting adjustment mounting ring mechanism 3 and the second lifting adjustment mounting ring mechanism 4 are used to drive the outer conveying tube mechanism 5 and the inner conveying tube mechanism 6 to vibrate, and the conveying adjustment mechanism 7 is used to adjust the screening state of the inner conveying tube mechanism 6.
[0027] The first lifting and adjusting mounting ring mechanism 3 includes a first mounting frame 301 fixed on the fixed base plate 1, the first mounting frame 301 is fixedly connected to the first hydraulic telescopic rod 302, the first hydraulic telescopic rod 302 is fixedly connected to the first vibration mounting shell mechanism 303, the first vibration mounting shell mechanism 303 is connected to the first sliding bar 304, the first sliding bar 304 passes through the first mounting frame 301, the first sliding bar 304 and the first mounting frame 301 are slidably connected, one end of the first sliding bar 304 away from the first vibration mounting shell mechanism 303 is fixedly connected to the first adjustment frame 305, the first adjustment frame 305 is rotatably connected to the first rotating shaft 306, and the first rotating shaft 306 is rotatably connected to the first mounting ring 307. The first vibration mounting shell mechanism 303 includes a mounting shell 3031 fixed on the first hydraulic telescopic rod 302, the mounting shell 3031 is fixedly connected with a first spring 3032, the first spring 3032 is fixedly connected with a vibration plate 3033, the vibration plate 3033 is fixedly connected with a vibration motor seat 3034, the vibration motor seat 3034 is fixedly connected with a vibration motor 3035, the output shaft of the vibration motor 3035 is fixedly connected with a vibration shaft 3036, the vibration shaft 3036 is fixedly connected with an eccentric block 3037, and the vibration shaft 3036 is fixedly connected with an eccentric block 3037. Two wedge grooves 3038 are provided on the side, and the two wedge grooves 3038 are axially symmetrically arranged on the vibration axis 3036. Two elastic shells 3039 are fixedly connected in the mounting shell 3031. The two elastic shells 3039 are symmetrically arranged on the mounting shell 3031. The elastic shell 3039 is fixedly connected to the second spring 3040, and the second spring 3040 is fixedly connected to the pressure block 3041. The pressure block 3041 and the elastic shell 3039 are slidably connected. The pressure block 3041 is fixedly connected to the limit rod 3042, and the end of the limit rod 3042 is wedge-shaped. The second lifting adjustment mounting ring mechanism 4 includes a second mounting frame 401 fixed on the fixed base plate 1, the second mounting frame 401 is fixedly connected to the second hydraulic telescopic rod 402, one end of the second hydraulic telescopic rod 402 away from the second mounting frame 401 is fixedly connected to the second vibration mounting shell mechanism 403, the second vibration mounting shell mechanism 403 is connected to the second slide bar 404, the second slide bar 404 passes through the second mounting frame 401, the second slide bar 404 is slidably connected to the second mounting frame 401, the second slide bar 404 is fixedly connected to the second adjustment frame 405 at one end away from the second vibration mounting shell mechanism 403, the second adjustment frame 405 is rotatably connected to the second rotating shaft 406, and the second rotating shaft 406 is rotatably connected to the second mounting ring 407. The second vibration mounting shell mechanism 403 has the same structure as the first vibration mounting shell mechanism 303.
[0028] Specifically, turning on the first hydraulic telescopic rod 302 can drive the first vibration mounting shell mechanism 303 to rise and fall, thereby driving the first slide bar 304 to rise and fall, and then driving the first adjustment frame 305 to rotate, thereby driving the first rotating shaft 306 and the first mounting ring 307 to rise and fall. Similarly, turning on the second hydraulic telescopic rod 402 can drive the second vibration mounting shell mechanism 403 to rise and fall, thereby driving the second slide bar 404 to rise and fall, and then driving the second adjustment frame 405 to rotate, thereby driving the second rotating shaft 406 and the second mounting ring 407 to rise and fall.
[0029] In addition, turning on the vibration motor 3035 can drive the vibration shaft 3036 to rotate, and then drive the wedge groove 3038 to rotate. At this time, the limit rod 3042 is no longer stuck in the wedge groove 3038. At the same time, the rotation of the vibration shaft 3036 will drive the eccentric block 3037 to rotate, and then drive the vibration plate 3033 to vibrate up and down, and then drive the first slide bar 304 to vibrate up and down, and then drive the first adjustment frame 305 to vibrate up and down, thereby driving the first rotating shaft 306 and the first mounting ring 307 to vibrate up and down. Similarly, it can drive the second mounting ring 407 to vibrate up and down.
[0030] The outer conveying tube mechanism 5 includes a rotating motor seat 501 fixedly connected to the second mounting ring 407, the rotating motor seat 501 is fixedly connected to the rotating motor 502, the output shaft of the rotating motor 502 is fixedly connected to the gear shaft 503, the gear shaft 503 is fixedly connected to the first gear 504, the first gear 504 meshes with the second gear 505, the second gear 505 is fixedly connected to the outer conveying tube 506, the outer conveying tube 506 is rotatably connected to the second mounting ring 407, the outer conveying tube 506 passes through the first mounting ring 307, the outer conveying tube 506 and the first mounting ring 307 are slidingly connected, the end of the outer conveying tube 506 is fixedly connected to the baffle ring 507, the baffle ring 507 is provided with a switch valve 508, and the outer conveying tube 506 is fixedly connected to the first spiral auger blade 509. The inner conveying cylinder mechanism 6 comprises a mounting bracket 601 fixed in the outer conveying cylinder 506, the mounting bracket 601 is fixedly connected to the outer sleeve 602, a plurality of first through slots 603 are provided in the axial direction of the outer sleeve 602, the inner sleeve 604 is rotatably connected in the outer sleeve 602, a plurality of second through slots 605 are provided in the axial direction of the inner sleeve 604, the first through slots 603 and the second through slots 605 have the same width, and the inner side of the inner sleeve 604 is fixedly connected to the second spiral auger blade 606. The conveying adjustment mechanism 7 comprises a first mounting plate 701 fixed on the outer sleeve 602, the first mounting plate 701 is rotatably connected to the first deflection shaft 702, the first deflection shaft 702 is rotatably connected to the linear motor 703, one end of the linear motor 703 away from the first deflection shaft 702 is rotatably connected to the second deflection shaft 704, the second deflection shaft 704 is rotatably connected to the second mounting plate 705, and the second mounting plate 705 is fixed on the outer sleeve 602.
[0031] Specifically, turning on the linear motor 703 can control the distance between the first deflection axis 702 and the second deflection axis 704, and then adjust the distance between the first mounting plate 701 and the second mounting plate 705, so as to realize the rotation of the inner sleeve 604 relative to the outer sleeve 602, and control the overlapping area of the first through groove 603 and the second through groove 605 to adjust the screening state.
[0032] In addition, turning on the rotating motor 502 can drive the gear shaft 503 to rotate, and then drive the first gear 504 to rotate. The rotation of the first gear 504 will drive the second gear 505 to rotate. The rotation of the second gear 505 will drive the outer conveying tube 506 to rotate, thereby realizing the rotation of the first spiral auger blade 509 and the mounting bracket 601. The rotation of the mounting bracket 601 will drive the outer sleeve 602 and the inner sleeve 604 to rotate, thereby driving the second spiral auger blade 606 to rotate. The second spiral auger blade 606 will drive the activated carbon in the inner sleeve 604 to be transported. Smaller activated carbon will fall onto the outer conveying tube 506 through the first through groove 603 and the second through groove 605. Driven by the first spiral auger blade 509, it can drive the activated carbon particles to be transported and finally discharged through the switch valve 508.
[0033] Example 2, continue to refer to Figure 1-Figure 4 In the embodiment of the present invention, the rolling wheel mechanism 2 includes a wheel seat shaft 201 rotatably connected to the fixed base plate 1, and one end of the wheel seat shaft 201 away from the fixed base plate 1 is fixedly connected to the roller seat 202, and the roller seat 202 is rotatably connected to the moving roller 203.
[0034] During the implementation of the present invention, first, the rolling wheel mechanism 2 moves the fixed base plate 1 to the specified position. At this time, opening the first lifting and adjusting mounting ring mechanism 3 and the second lifting and adjusting mounting ring mechanism 4 can adjust the outer conveying tube mechanism 5 to a suitable height, and at the same time, the starting height of the conveying is adaptively adjusted. At this time, opening the outer conveying tube mechanism 5 can drive the inner conveying tube mechanism 6 to rotate. At this time, the inner conveying tube mechanism 6 can drive the activated carbon to move and convey. At the same time, opening the conveying adjustment mechanism 7 can adjust the state of the inner conveying tube mechanism 6. At this time, opening the first lifting and adjusting mounting ring mechanism 3 and the second lifting and adjusting mounting ring mechanism 4 can drive the outer conveying tube mechanism 5 and the inner conveying tube mechanism 6 to vibrate, so that smaller activated carbon falls on the outer conveying tube mechanism 5, so as to complete the sorting and conveying of the activated carbon.
[0035] The present invention can adjust the starting heights of the outer conveying tube mechanism 5 and the inner conveying tube mechanism 6 by setting the first lifting and adjusting mounting ring mechanism 3 and the second lifting and adjusting mounting ring mechanism 4, so as to adapt to different production and conveying environments, and at the same time can drive the outer conveying tube mechanism 5 and the inner conveying tube mechanism 6 to vibrate, and can adjust the state of the inner conveying tube mechanism 6 through the conveying adjustment mechanism 7, and then adjust the sorting state of the activated carbon, so as to screen out different activated carbon particles that meet the requirements, and can convey the activated carbon particles through the outer conveying tube mechanism 5 and the inner conveying tube mechanism 6, thereby improving the efficiency of conveying the activated carbon particles.
[0036] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A conveying device for producing activated carbon, comprising a fixed bottom plate, characterized in that: The fixed base plates are provided with two, and two rolling wheel mechanisms are provided at the bottom of the fixed base plates, and the two rolling wheel mechanisms are symmetrically arranged on the fixed base plates, and a first lifting adjustment mounting ring mechanism and a second lifting adjustment mounting ring mechanism are provided between the two fixed base plates, and the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism are symmetrically arranged on the fixed base plates, and an outer conveying cylinder mechanism is provided on the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism, and the outer conveying cylinder mechanism is connected to the inner conveying cylinder mechanism, and a conveying adjustment mechanism is provided on the inner conveying cylinder mechanism; the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism are used to adjust the height of the outer conveying cylinder mechanism and the inner conveying cylinder mechanism, and the first lifting adjustment mounting ring mechanism and the second lifting adjustment mounting ring mechanism are used to drive the outer conveying cylinder mechanism and the inner conveying cylinder mechanism to vibrate, and the conveying adjustment mechanism is used to adjust the screening state of the inner conveying cylinder mechanism.
2. The conveying equipment for activated carbon production according to claim 1, characterized in that: The rolling wheel mechanism comprises a wheel seat shaft rotatably connected to the fixed base plate, one end of the wheel seat shaft away from the fixed base plate is fixedly connected to the roller seat, and the roller seat is rotatably connected to the moving roller.
3. The conveying equipment for activated carbon production according to claim 1, characterized in that: The first lifting and adjusting mounting ring mechanism includes a first mounting frame fixed on a fixed base plate, the first mounting frame is fixedly connected to a first hydraulic telescopic rod, the first hydraulic telescopic rod is fixedly connected to a first vibration mounting shell mechanism, the first vibration mounting shell mechanism is connected to a first sliding rod, the first sliding rod passes through the first mounting frame, the first sliding rod and the first mounting frame are slidably connected, one end of the first sliding rod away from the first vibration mounting shell mechanism is fixedly connected to the first adjustment frame, the first adjustment frame is rotatably connected to a first rotating shaft, and the first rotating shaft is rotatably connected to the first mounting ring.
4. The conveying equipment for activated carbon production according to claim 3, characterized in that: The first vibration mounting shell mechanism includes a mounting shell fixed on the first hydraulic telescopic rod, a first spring fixedly connected in the mounting shell, the first spring fixedly connected to the vibration plate, the vibration plate fixedly connected to the vibration motor seat, the vibration motor seat fixedly connected to the vibration motor, the output shaft of the vibration motor fixedly connected to the vibration shaft, the vibration shaft fixedly connected to the eccentric block, two wedge grooves are provided on the side of the vibration shaft, the two wedge grooves are axially symmetrically arranged on the vibration shaft, two elastic shells are fixedly connected in the mounting shell, the two elastic shells are symmetrically arranged on the mounting shell, the elastic shell is fixedly connected to the second spring, the second spring is fixedly connected to the pressure block, the pressure block and the elastic shell are slidably connected, the pressure block is fixedly connected to the limit rod, and the end of the limit rod is wedge-shaped.
5. The conveying equipment for activated carbon production according to claim 4, characterized in that: The second lifting and adjusting mounting ring mechanism includes a second mounting frame fixed on a fixed base plate, the second mounting frame is fixedly connected to a second hydraulic telescopic rod, one end of the second hydraulic telescopic rod away from the second mounting frame is fixedly connected to a second vibration mounting shell mechanism, the second vibration mounting shell mechanism is connected to a second sliding rod, the second sliding rod passes through the second mounting frame, the second sliding rod is slidably connected to the second mounting frame, one end of the second sliding rod away from the second vibration mounting shell mechanism is fixedly connected to a second adjustment frame, the second adjustment frame is rotatably connected to a second rotating shaft, and the second rotating shaft is rotatably connected to a second mounting ring.
6. The conveying equipment for activated carbon production according to claim 5, characterized in that: The second vibration mounting shell mechanism has the same structure as the first vibration mounting shell mechanism.
7. The conveying equipment for activated carbon production according to claim 6, characterized in that: The outer conveying cylinder mechanism includes a rotating motor seat fixedly connected to the second mounting ring, the rotating motor seat is fixedly connected to the rotating motor, the output shaft of the rotating motor is fixedly connected to the gear shaft, the gear shaft is fixedly connected to the first gear, the first gear meshes with the second gear, the second gear is fixedly connected to the outer conveying cylinder, the outer conveying cylinder is rotatably connected to the second mounting ring, the outer conveying cylinder passes through the first mounting ring, the outer conveying cylinder and the first mounting ring are slidingly connected, the end of the outer conveying cylinder is fixedly connected to a baffle ring, a switch valve is provided on the baffle ring, and the first spiral auger blade is fixedly connected inside the outer conveying cylinder.
8. The conveying equipment for activated carbon production according to claim 7, characterized in that: The inner conveying cylinder mechanism includes a mounting bracket fixed inside the outer conveying cylinder, the mounting bracket is fixedly connected to the outer sleeve, a plurality of first through grooves are provided in the axial direction of the outer sleeve, the outer sleeve is rotatably connected to the inner sleeve, a plurality of second through grooves are provided in the axial direction of the inner sleeve, the widths of the first through grooves and the second through grooves are the same, and the inner side of the inner sleeve is fixedly connected to the second spiral auger blade.
9. The conveying equipment for activated carbon production according to claim 8, characterized in that: The conveying adjustment mechanism includes a first mounting plate fixed on the outer sleeve, the first mounting plate is rotatably connected to the first deflection axis, the first deflection axis is rotatably connected to the linear motor, one end of the linear motor away from the first deflection axis is rotatably connected to the second deflection axis, the second deflection axis is rotatably connected to the second mounting plate, and the second mounting plate is fixed on the outer sleeve.