CN112609539A - Automatic bedding device for rock engineering layer soil - Google Patents

Automatic bedding device for rock engineering layer soil Download PDF

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Publication number
CN112609539A
CN112609539A CN202011536073.4A CN202011536073A CN112609539A CN 112609539 A CN112609539 A CN 112609539A CN 202011536073 A CN202011536073 A CN 202011536073A CN 112609539 A CN112609539 A CN 112609539A
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plate
motor
flattening
baffle
rack
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CN202011536073.4A
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Chinese (zh)
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董瑞清
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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C19/00Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving
    • E01C19/12Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving for distributing granular or liquid materials
    • E01C19/20Apparatus for distributing, e.g. spreading, granular or pulverulent materials, e.g. sand, gravel, salt, dry binders
    • E01C19/201Apparatus for distributing, e.g. spreading, granular or pulverulent materials, e.g. sand, gravel, salt, dry binders with driven loosening, discharging or spreading parts, e.g. power-driven, drive derived from road-wheels
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C19/00Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving
    • E01C19/12Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving for distributing granular or liquid materials
    • E01C19/20Apparatus for distributing, e.g. spreading, granular or pulverulent materials, e.g. sand, gravel, salt, dry binders
    • E01C2019/2055Details not otherwise provided for
    • E01C2019/207Feeding the distribution means

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Catching Or Destruction (AREA)

Abstract

The invention discloses an automatic bedding device for rock engineering layer soil, which comprises a rack, a lifting control component, a discharging component, a bedding baffle component and a flattening component, wherein the lifting control component is arranged on the rack; belong to the relevant technical field of rock engineering, there is the anti-blocking revolving rack in the feed cylinder, the anti-blocking revolving rack has the effect that prevents the soil material jam, the discharge gate of feed cylinder has the blowing part, the falling of blowing part control soil material has the foreshadowing baffle on the foreshadowing baffle part, foreshadowing baffle motion and amalgamation become closed frame, restriction picture layer foreshadowing's scope and height, soil material falls out and through the toper roof, the toper roof is the toper, prevent that the soil material from piling up on the toper roof, rotate the shakeout board motion and with middle shakeout board amalgamation become a holistic shakeout board, this talk about dull and stereotyped rotation, to piling up the soil material on ground and shakeout. The invention has novel structure, automatically completes the paving operation of the layer soil, has high working efficiency and saves the manual labor force for the paving operation of the layer soil.

Description

Automatic bedding device for rock engineering layer soil
Technical Field
The invention relates to the technical field related to rock engineering, in particular to an automatic bedding device for rock engineering stratum soil.
Background
Rock engineering, or rock mass engineering, refers to any engineering built or constructed in or on the surface of a rock mass. Human lives on the earth surface layer and lives on the conditions provided by geological environment, and human engineering activities such as development of mineral resources, development of hydraulic resources, utilization of hydraulic resources, construction of various buildings, prevention and control of geological disasters and the like are closely related to geological bodies in the geological environment. Herein, any works built or constructed inside or on the surface of a rock body are collectively referred to as rock works. Rock mass involved in rock engineering is called engineered rock mass, in contrast to natural rock mass. At present, rock engineering plays a vital role in the building industry, paving of pavement soil is vital engineering operation, determines the quality and the service life of a pavement, and at present, a large amount of manual labor is doped into a device for paving the pavement soil, so that the working efficiency is reduced, and therefore, an automatic paving device for the pavement soil of the rock engineering is urgently needed.
Disclosure of Invention
Aiming at the technical problem, the invention provides an automatic bedding device for rock engineering layer soil, which can efficiently finish the bedding operation of the layer soil.
The technical scheme adopted by the invention is as follows: an automatic bedding device for rock engineering layer soil comprises a rack, a lifting control component, a material placing component, a bedding baffle component and a flattening component.
The rack comprises a rack connecting plate; the lifting control component comprises a rotating ring; the discharging component comprises a first discharging plate guide pillar and a second discharging plate guide pillar; the bedding baffle component comprises a lifting rod; the flattening component comprises a flattening mounting plate.
The rack connecting plate is fixedly connected with the charging barrel, gear teeth are arranged on the rack connecting plate, the rotating ring is sleeved on the outer wall of the charging barrel, the first discharging plate guide pillar is fixedly connected with the rack connecting plate, the second discharging plate guide pillar is fixedly connected with the rack connecting plate, the lifting rod is slidably connected with the rack connecting plate, and the flattening mounting plate is fixedly connected with the lifting connecting plate.
Furthermore, the rack also comprises a charging barrel, an anti-blocking rotating frame, a rotating frame motor, a contact base inclined block and a rack wheel; the contact base sloping block is connected with the frame connecting plate, a frame wheel is arranged on the frame connecting plate, the anti-blocking rotating frame is rotatably arranged in the material cylinder, the rotating frame motor is fixedly arranged on the frame connecting plate, a motor shaft of the rotating frame motor is fixedly connected with one end of the anti-blocking rotating frame, and a groove is formed in the outer wall of the material cylinder.
Furthermore, the lifting control component also comprises a limiting wheel, a control contact block, a meshing gear and a meshing gear motor; the limiting wheel is rotatably arranged on the rotating ring, the limiting wheel is in contact with the groove in the outer wall of the charging barrel, the control contact block is fixedly connected with the rotating ring, the control contact block is in contact with the contact wheel, the meshing gear teeth are fixedly connected with the rotating ring, the meshing gear motor is fixedly arranged on the frame connecting plate, the motor shaft of the meshing gear motor is fixedly connected with the meshing gear, and the meshing gear is meshed with the meshing gear teeth.
Further, the discharging component also comprises a first discharging plate motor, a first discharging plate motor gear, a first discharging plate, a second discharging plate motor gear, a second discharging plate motor and a second discharging plate; the feeding plate I is in sliding connection with the feeding plate guide pillar I, the feeding plate II is in sliding connection with the feeding plate guide pillar II, the feeding plate motor I is fixedly mounted on the feeding plate I, a motor shaft of the feeding plate motor I is fixedly connected with the feeding plate motor gear I, the feeding plate motor gear I is meshed with gear teeth on the rack connecting plate, the feeding plate motor II is fixedly mounted on the feeding plate II, a motor shaft of the feeding plate motor II is fixedly connected with the feeding plate motor gear II, and the feeding plate motor gear II is meshed with gear teeth on the rack connecting plate.
Furthermore, the bedding baffle component also comprises a contact wheel, a lifting rod pressure spring, a lifting connecting plate, a bedding baffle pressure spring, a baffle contact wheel and a bedding baffle; contact wheel swivelling joint in the one end of lifter, the other end fixed connection of lift connecting plate and lifter, the lifter pressure spring cover is on the lifter, foreshadowing baffle and lift connecting plate sliding connection, foreshadowing baffle pressure spring cover is on the foreshadowing baffle, is provided with baffle contact wheel on the foreshadowing baffle, baffle contact wheel and contact base sloping block contact.
Further, the flattening component also comprises a screw rod motor, a control screw rod, a conical top plate connecting column, a conical top plate, a top plate guide column, a flattening rotating motor, a flattening shell, a cylinder mounting plate, a control cylinder, a rotating flattening plate, a flattening block gear, a middle flattening connecting plate, a meshing rack and a middle flattening plate; the improved motor is characterized in that the top plate guide post is fixedly connected with the flattening mounting plate, the control screw rod is rotatably mounted on the flattening mounting plate, the screw rod motor is fixedly mounted on the flattening mounting plate, a motor shaft of the screw rod motor is fixedly connected with one end of the control screw rod, a conical top plate connecting post is fixedly connected with the conical top plate, the conical top plate is slidably mounted on the top plate guide post, the conical top plate is connected with the control screw rod in a spiral pair mode, the conical top plate is conical, the flattening rotating motor is fixedly mounted on the conical top plate, and the motor shaft of the flattening rotating motor is fixedly connected with the flattening shell.
Further, cylinder mounting panel and shakeout casing fixed connection, control cylinder fixed mounting is on the cylinder mounting panel, control cylinder's push rod and middle shakeout connecting plate fixed connection, rotate the rotatory one end rotation of shakeout board and install on shakeout casing, shakeout piece gear and rotation shakeout board fixed connection, the one end and the middle shakeout connecting plate fixed connection of meshing rack, the shakeout board in the middle of another fixedly connected with of meshing rack, shakeout piece gear and meshing rack toothing.
Compared with the prior art, the invention has the beneficial effects that: (1) the manual labor is less in doping, so that the manual labor intensity is saved; (2) limiting the range of the layer soil bedding; (3) prevent the accumulation and blockage of soil materials.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic view of the rack structure of the present invention.
FIG. 3 is a schematic view of the lifting control part and the mat baffle part of the present invention.
FIG. 4 is a schematic view of the structure of the discharge member of the present invention.
Fig. 5 is a schematic structural view of the leveling member of the present invention.
In the figure: 1-a frame; 2-a lift control component; 3-a discharging component; 4-a bedding baffle component; 5-flattening the component; 101-a barrel; 102-anti-blocking turret; 103-a turret motor; 104-a rack connecting plate; 105-a contact base ramp; 106-frame wheel; 201-swivel; 202-a limit wheel; 203-control contact block; 204-meshing gear teeth; 205-meshing gears; 206-mesh gear motor; 301-first guide post of the discharging plate; 302-feeding plate motor I; 303-gear one of a discharging plate motor; 304-a first discharging plate; 305-discharging plate guide pillars II; 306-discharge plate motor gear II; 307-discharge plate motor II; 308-a second discharge plate; 401-contact wheel; 402-lifting rod compression springs; 403-lifting rod; 404-lifting connecting plates; 405-paving a baffle pressure spring; 406-a shutter contact wheel; 407-bedding baffle; 501-flattening the mounting plate; 502-lead screw motor; 503-control screw rod; 504-tapered top plate connection post; 505-a conical top plate; 506-top plate guide posts; 507-flattening the rotating motor; 508-flattening the shell; 509-cylinder mounting plate; 510-control cylinder; 511-rotating the spreader plate; 512-spreading the block gear; 513-flattening the connecting plate in the middle; 514-engaging rack; 515-middle spreading plate.
Detailed Description
The present invention will be further described with reference to specific examples, which are illustrative of the invention and are not to be construed as limiting the invention.
Example (b): as shown in fig. 1, 2, 3, 4, and 5: an automatic bedding device for rock engineering layer soil comprises a rack 1, a lifting control component 2, a discharging component 3, a bedding baffle component 4 and a flattening component 5.
A rack 1 including a rack connection plate 104; a lifting control part 2 including a swivel 201; the discharging component 3 comprises a discharging plate guide post I301 and a discharging plate guide post II 305; a bedding baffle member 4 including a lifting rod 403; and the flattening component 5 comprises a flattening mounting plate 501.
The rack connecting plate 104 is fixedly connected with the charging barrel 101, gear teeth are arranged on the rack connecting plate 104, the rotating ring 201 is sleeved on the outer wall of the charging barrel 101, the first discharging plate guide post 301 is fixedly connected with the rack connecting plate 104, the second discharging plate guide post 305 is fixedly connected with the rack connecting plate 104, the lifting rod 403 is slidably connected with the rack connecting plate 104, and the flattening mounting plate 501 is fixedly connected with the lifting connecting plate 404.
The machine frame 1 further comprises a charging barrel 101, an anti-blocking rotating frame 102, a rotating frame motor 103, a contact base inclined block 105 and a machine frame wheel 106; contact base sloping block 105 and frame connecting plate 104 are connected, frame connecting plate 104 is last to be set up has frame wheel 106, prevent blocking revolving rack 102 swivelling joint in feed cylinder 101, revolving rack motor 103 fixed mounting is on frame connecting plate 104, the motor shaft of revolving rack motor 103 and the one end fixed connection who prevents blocking revolving rack 102, the feed cylinder 101 outer wall sets up slottedly, there is the native material in the feed cylinder 101, revolving rack motor 103 drives prevents blocking revolving rack 102 and rotates, prevent that the native material from blockking up the discharge gate at feed cylinder 101.
The lifting control component 2 further comprises a limiting wheel 202, a control contact block 203, a meshing gear 204, a meshing gear 205 and a meshing gear motor 206; the limiting wheel 202 is rotatably arranged on the rotating ring 201, the limiting wheel 202 is in contact with a groove in the outer wall of the charging barrel 101, the control contact block 203 is fixedly connected with the rotating ring 201, the control contact block 203 is in contact with the contact wheel 401, the meshing gear 204 is fixedly connected with the rotating ring 201, the meshing gear motor 206 is fixedly arranged on the rack connecting plate 104, a motor shaft of the meshing gear motor 206 is fixedly connected with the meshing gear 205, the meshing gear 205 is meshed with the meshing gear 204, the meshing gear motor 206 drives the meshing gear 205 to rotate, the rotating ring 201 moves, the control contact block 203 acts on the contact wheel 401, the lifting rod 403 moves, and the mat covering baffle 407 moves up and down.
The discharging component 3 further comprises a first discharging plate motor 302, a first discharging plate motor gear 303, a first discharging plate 304, a second discharging plate motor gear 306, a second discharging plate motor 307 and a second discharging plate 308; the first discharging plate 304 is in sliding connection with the first discharging plate guide post 301, the second discharging plate 308 is in sliding connection with the second discharging plate guide post 305, the first discharging plate motor 302 is fixedly mounted on the first discharging plate 304, a motor shaft of the first discharging plate motor 302 is fixedly connected with the first discharging plate motor gear 303, the first discharging plate motor gear 303 is meshed with gear teeth on the rack connecting plate 104, the second discharging plate motor 307 is fixedly mounted on the second discharging plate 308, a motor shaft of the second discharging plate motor 307 is fixedly connected with the second discharging plate motor gear 306, the second discharging plate motor gear 306 is meshed with gear teeth on the rack connecting plate 104, the first discharging plate motor 302 drives the first discharging plate motor gear 303 to rotate, and the second discharging plate motor 307 drives the second discharging plate motor gear 306 to rotate, so that the first discharging plate 304 and the second discharging plate 308 move and discharge soil.
The bedding baffle component 4 further comprises a contact wheel 401, a lifting rod pressure spring 402, a lifting connecting plate 404, a bedding baffle pressure spring 405, a baffle contact wheel 406 and a bedding baffle 407; contact wheel 401 is rotatory to be installed in the one end of lifter 403, the other end fixed connection of lift connecting plate 404 and lifter 403, lifter pressure spring 402 overlaps on lifter 403, foreshadowing baffle 407 and lift connecting plate 404 sliding connection, foreshadowing baffle pressure spring 405 overlaps on foreshadowing baffle 407, be provided with baffle contact wheel 406 on the foreshadowing baffle 407, baffle contact wheel 406 and contact base sloping block 105 contact, foreshadowing baffle 407 elevating movement, contact base sloping block 105 is to baffle contact wheel 406 effect, make foreshadowing baffle 407 lateral motion, foreshadowing baffle 407 amalgamation becomes a confined frame, the scope and the height that the layer soil matted have been restricted, prevent the mixed and disorderly diffusion of layer soil on ground.
The flattening component 5 further comprises a screw rod motor 502, a control screw rod 503, a conical top plate connecting column 504, a conical top plate 505, a top plate guide column 506, a flattening rotating motor 507, a flattening shell 508, a cylinder mounting plate 509, a control cylinder 510, a rotating flattening plate 511, a flattening block gear 512, a middle flattening connecting plate 513, a meshing rack 514 and a middle flattening plate 515; the top plate guide post 506 is fixedly connected with the flattening mounting plate 501, the control screw rod 503 is rotatably mounted on the flattening mounting plate 501, the screw rod motor 502 is fixedly mounted on the flattening mounting plate 501, a motor shaft of the screw rod motor 502 is fixedly connected with one end of the control screw rod 503, the conical top plate connection post 504 is fixedly connected with the conical top plate 505, the conical top plate 505 is slidably mounted on the top plate guide post 506, the conical top plate 505 is connected with the control screw rod 503 by a screw pair, the conical top plate 505 is conical, the flattening rotating motor 507 is fixedly mounted on the conical top plate 505, the motor shaft of the flattening rotating motor 507 is fixedly connected with the flattening housing 508, soil falls out and passes through the conical top plate 505, the conical shape of the conical top plate 505 prevents the soil from being accumulated on the conical top plate 505, the flattening rotating motor 507 drives the flattening housing 508 to rotate, the screw rod motor 502 drives the control screw rod, and then the spreading plate rotates and spreads the soil material, the soil material is gradually dispersed to the periphery in a stacking state, and finally the layered soil bedding is finished.
Cylinder mounting plate 509 and shakeout casing 508 fixed connection, control cylinder 510 fixed mounting is on cylinder mounting plate 509, control cylinder 510's push rod and middle shakeout connecting plate 513 fixed connection, the rotatory one end rotation of rotation shakeout board 511 is installed on shakeout casing 508, shakeout piece gear 512 and rotation shakeout board 511 fixed connection, the one end and the middle shakeout connecting plate 513 fixed connection of meshing rack 514, shakeout board 515 in the middle of another fixedly connected with of meshing rack 514, shakeout piece gear 512 and meshing rack 514 meshing. The control cylinder 510 controls the movement of the flat connection plate 513, the rotating spreader plate 511 moves and unfolds under the meshing of the gear and the rack, and the rotating spreader plate 511 and the middle spreader plate 515 are spliced into an integral spreader plate.
The working principle of the invention is as follows: the material is filled in the charging barrel 101, the rotating frame motor 103 drives the anti-blocking rotating frame 102 to rotate, the soil is prevented from being blocked at the discharging hole of the charging barrel 101, the meshing gear motor 206 drives the meshing gear 205 to rotate, the rotating ring 201 moves, the contact block 203 is controlled to act on the contact wheel 401, the lifting rod 403 moves, the bedding baffle 407 moves up and down, the contact base inclined block 105 acts on the baffle contact wheel 406, the bedding baffle 407 moves transversely, the bedding baffle 407 is spliced into a closed frame, the range and the height of the bedding soil bedding are limited, the bedding soil is prevented from being scattered in a mess manner, the discharging plate motor I302 drives the discharging plate motor gear I303 to rotate, the discharging plate II 307 drives the discharging plate motor gear II 306 to rotate, the discharging plate I304 and the discharging plate II 308 move and discharge the soil, the soil falls out and passes through the conical top plate 505, the conical top plate 505 prevents the bedding soil from being accumulated on the conical top plate 505, the control cylinder 510 controls the movement of the leveling connecting plate 513, the leveling plate 511 is rotated to move and expand under the meshing of the gear and the rack, the leveling plate 511 and the middle leveling plate 515 are spliced into an integral leveling plate, the leveling rotating motor 507 drives the leveling shell 508 to rotate, the screw rod motor 502 drives the control screw rod 503 to rotate, the leveling plate moves up and down, the leveling plate rotates and levels soil materials, the soil materials are gradually dispersed to the periphery in a stacked state, and finally layered soil bedding is completed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. An automatic bedding device for rock engineering layer soil comprises a rack (1), a lifting control component (2), a material placing component (3), a bedding baffle component (4) and a flattening component (5);
the rack (1) comprises a rack connecting plate (104);
the lifting control component (2) comprises a rotating ring (201);
the discharging component (3) comprises a first discharging plate guide post (301) and a second discharging plate guide post (305);
the bedding baffle component 4 comprises a lifting rod (403);
the flattening component (5) comprises a flattening mounting plate (501);
frame connecting plate (104) and feed cylinder (101) fixed connection, be provided with the teeth of a cogwheel on frame connecting plate (104), change (201) cover is in feed cylinder (101) outer wall, blowing board guide pillar (301) and frame connecting plate (104) fixed connection, blowing board guide pillar two (305) and frame connecting plate (104) fixed connection, lifter (403) and frame connecting plate (104) sliding connection, shakeout mounting panel (501) and lifting connecting plate (404) fixed connection.
2. The automatic bedding device for rock engineering stratum soil according to claim 1, characterized in that: the machine frame (1) further comprises a charging barrel (101), an anti-blocking rotating frame (102), a rotating frame motor (103), a contact base inclined block (105) and a machine frame wheel (106); the contact base inclined block (105) is connected with the rack connecting plate (104), a rack wheel (106) is arranged on the rack connecting plate (104), the anti-blocking rotating frame (102) is rotatably arranged in the charging barrel (101), the rotating frame motor (103) is fixedly arranged on the rack connecting plate (104), a motor shaft of the rotating frame motor (103) is fixedly connected with one end of the anti-blocking rotating frame (102), and a groove is formed in the outer wall of the charging barrel (101).
3. The automatic bedding device for rock engineering stratum soil according to claim 1, characterized in that: the lifting control component (2) further comprises a limiting wheel (202), a control contact block (203), a meshing gear (204), a meshing gear (205) and a meshing gear motor (206); the limiting wheel (202) is rotatably arranged on the rotating ring (201), the limiting wheel (202) is in contact with a groove in the outer wall of the charging barrel (101), the control contact block (203) is fixedly connected with the rotating ring (201), the control contact block (203) is in contact with the contact wheel (401), the meshing gear teeth (204) are fixedly connected with the rotating ring (201), the meshing gear motor (206) is fixedly arranged on the rack connecting plate (104), a motor shaft of the meshing gear motor (206) is fixedly connected with the meshing gear (205), and the meshing gear (205) is meshed with the meshing gear teeth (204).
4. The automatic bedding device for rock engineering stratum soil according to claim 1, characterized in that: the discharging component (3) further comprises a first discharging plate motor (302), a first discharging plate motor gear (303), a first discharging plate (304), a second discharging plate motor gear (306), a second discharging plate motor (307) and a second discharging plate (308); the feeding plate I (304) is in sliding connection with the feeding plate guide post I (301), the feeding plate II (308) is in sliding connection with the feeding plate guide post II (305), the feeding plate motor I (302) is fixedly installed on the feeding plate I (304), a motor shaft of the feeding plate motor I (302) is fixedly connected with the feeding plate motor gear I (303), the feeding plate motor gear I (303) is meshed with gear teeth on the rack connecting plate (104), the feeding plate motor II (307) is fixedly installed on the feeding plate II (308), a motor shaft of the feeding plate motor II (307) is fixedly connected with the feeding plate motor gear II (306), and the feeding plate motor gear II (306) is meshed with gear teeth on the rack connecting plate (104).
5. The automatic bedding device for rock engineering stratum soil according to claim 1, characterized in that: the bedding baffle component (4) also comprises a contact wheel (401), a lifting rod pressure spring (402), a lifting connecting plate (404), a bedding baffle pressure spring (405), a baffle contact wheel (406) and a bedding baffle (407); contact wheel (401) rotatory install in the one end of lifter (403), the other end fixed connection of lift connecting plate (404) and lifter (403), lifter pressure spring (402) cover is on lifter (403), foreshadowing baffle (407) and lift connecting plate (404) sliding connection, foreshadowing baffle pressure spring (405) cover is on foreshadowing baffle (407), be provided with baffle contact wheel (406) on foreshadowing baffle (407), baffle contact wheel (406) and contact base sloping block (105) contact.
6. The automatic bedding device for rock engineering stratum soil according to claim 1, characterized in that: the flattening component (5) further comprises a screw rod motor (502), a control screw rod (503), a conical top plate connecting column (504), a conical top plate (505), a top plate guide column (506), a flattening rotating motor (507), a flattening shell (508), a cylinder mounting plate (509), a control cylinder (510), a rotating flattening plate (511), a flattening block gear (512), a middle flattening connecting plate (513), a meshing rack (514) and a middle flattening plate (515); the improved structure is characterized in that the top plate guide post (506) is fixedly connected with the flattening mounting plate (501), the control screw rod (503) is rotatably mounted on the flattening mounting plate (501), the screw rod motor (502) is fixedly mounted on the flattening mounting plate (501), a motor shaft of the screw rod motor (502) is fixedly connected with one end of the control screw rod (503), the conical top plate connecting post (504) is fixedly connected with the conical top plate (505), the conical top plate (505) is slidably mounted on the top plate guide post (506), the conical top plate (505) is connected with the control screw rod (503) in a spiral pair mode, the conical top plate (505) is conical, the flattening rotating motor (507) is fixedly mounted on the conical top plate (505), and the motor shaft of the flattening rotating motor (507) is fixedly connected with the flattening shell (508).
7. The automatic bedding device for rock engineering stratum soil according to claim 6, characterized in that: cylinder mounting panel (509) and shakeout casing (508) fixed connection, control cylinder (510) fixed mounting is on cylinder mounting panel (509), the push rod and middle shakeout connecting plate (513) fixed connection of control cylinder (510), the rotatory one end rotation of rotation shakeout board (511) is installed on shakeout casing (508), shakeout piece gear (512) and rotation shakeout board (511) fixed connection, the one end and middle shakeout connecting plate (513) fixed connection of meshing rack (514), shakeout board 515 in the middle of another fixedly connected with of meshing rack (514), shakeout piece gear (512) and meshing rack (514) meshing.
CN202011536073.4A 2020-12-23 2020-12-23 Automatic bedding device for rock engineering layer soil Withdrawn CN112609539A (en)

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Application Number Priority Date Filing Date Title
CN202011536073.4A CN112609539A (en) 2020-12-23 2020-12-23 Automatic bedding device for rock engineering layer soil

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Application Number Priority Date Filing Date Title
CN202011536073.4A CN112609539A (en) 2020-12-23 2020-12-23 Automatic bedding device for rock engineering layer soil

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113577886A (en) * 2021-08-05 2021-11-02 李志鹏 Environmental protection device for industrial wastewater desilting

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA1121397A (en) * 1979-11-09 1982-04-06 Vernon L. Hetrick Hopper device for material spreader having a multi-positionable cover
CN209099132U (en) * 2018-09-30 2019-07-12 西南交通大学 It is a kind of that native lying device is stablized based on loading machine platform
CN212025838U (en) * 2020-01-13 2020-11-27 徐延胜 Building ground concrete stand flat-bed machine
CN212077549U (en) * 2019-12-03 2020-12-04 深圳市森昊建筑工程有限公司 Building concrete shakeouts equipment

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA1121397A (en) * 1979-11-09 1982-04-06 Vernon L. Hetrick Hopper device for material spreader having a multi-positionable cover
CN209099132U (en) * 2018-09-30 2019-07-12 西南交通大学 It is a kind of that native lying device is stablized based on loading machine platform
CN212077549U (en) * 2019-12-03 2020-12-04 深圳市森昊建筑工程有限公司 Building concrete shakeouts equipment
CN212025838U (en) * 2020-01-13 2020-11-27 徐延胜 Building ground concrete stand flat-bed machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113577886A (en) * 2021-08-05 2021-11-02 李志鹏 Environmental protection device for industrial wastewater desilting

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Application publication date: 20210406