CN214301747U - Material grouting device for hydraulic engineering - Google Patents

Material grouting device for hydraulic engineering Download PDF

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Publication number
CN214301747U
CN214301747U CN202022845740.9U CN202022845740U CN214301747U CN 214301747 U CN214301747 U CN 214301747U CN 202022845740 U CN202022845740 U CN 202022845740U CN 214301747 U CN214301747 U CN 214301747U
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plate
shaped
shaped plate
rod
wall
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CN202022845740.9U
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林志鸿
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Jiangxi Huarui Construction Co ltd
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Jiangxi Huarui Construction Co ltd
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Abstract

The utility model relates to a material grouting device for hydraulic engineering, which aims to solve the problems that the moving part of the grouting device in the prior art has a single structure, the device comprises a first transverse plate and wheels, wherein a plurality of wheels are fixedly connected to the lower surface of the first transverse plate, the tightening device is arranged below the first transverse plate, the utility model can drive the T-shaped plate to move through the electric push rod, the T-shaped plate drives the brake block to move, thereby the brake block is tightly pressed against the wheel, thereby preventing the wheels from rotating, when the L-shaped plate moves downwards, the L-shaped plate can drive the T-shaped rod to move, thereby the T-shaped rod extrudes the first spring, simultaneously the T-shaped rod drives the connecting rod to rotate, the connecting rod stretches the second spring through the tooth support plate, thereby can play the effect of shock attenuation buffering to the box through the elasticity performance of first spring and second spring.

Description

Material grouting device for hydraulic engineering
Technical Field
The utility model relates to a hydraulic engineering technical field especially relates to a material cementer for hydraulic engineering.
Background
The hydraulic engineering is used for controlling and allocating surface water and underground water in the nature to achieve the purpose of removing harm and benefiting, sometimes grouting and repairing cracks of a building foundation, a fault fracture zone or seams and cracks of the building are required to be performed in the hydraulic engineering construction, a moving part of a grouting device in the prior art is too single in structure, the device is easy to slide when working, meanwhile, a damping device does not exist in the prior art, and therefore the stability is reduced.
Disclosure of Invention
An object of the utility model is to overcome prior art's is not enough, adapts to reality needs, provides a material cementer for hydraulic engineering to solve present and the cementer among the prior art removes a structure too single, when the technical problem of the phenomenon of sliding takes place easily of device during operation.
In order to realize the utility model discloses a purpose, the utility model discloses the technical scheme who adopts does:
design a
The utility model provides a material cementer for hydraulic engineering, includes first diaphragm and wheel, the lower surface rigid coupling of first diaphragm has a plurality of wheels, the below of first diaphragm is installed and is supported tight device.
The abutting device comprises a vertical plate, an electric push rod, a T-shaped plate, a brake pad and a stop lever.
It is a plurality of about the upper surface of riser links to each other with first diaphragm is fixed, the outside below rigid coupling of riser has electric putter, electric putter's outside rigid coupling has the T-shaped plate, the top outer wall of T-shaped plate and the spout department inner wall clearance fit of first diaphragm, the outside below rigid coupling of T-shaped plate has the brake block, the pin is installed to the through-hole department of T-shaped plate, the outer wall of pin and the through-hole department inner wall clearance fit of T-shaped plate, the outside and the wheel of pin are fixed and link to each other.
The T-shaped plate and the first transverse plate form a sliding structure.
And a damping device is arranged above the first transverse plate.
The damping device comprises a tooth support plate, a first gear, an L-shaped plate, a T-shaped rod, a second transverse plate, a first spring, a connecting rod, a rectangular block, a second spring and a concave plate.
The lower surface of the left tooth support plate and the lower surface of the right tooth support plate are fixedly connected with a first transverse plate, a first gear is meshed and connected above the inner side of the tooth support plate, the inner side of the first gear is rotatably connected with a concave plate through a rotating shaft, an L-shaped plate is fixedly connected to the inner side of the concave plate, a T-shaped rod is fixedly connected to the lower surface of the L-shaped plate, a second transverse plate is mounted on the outer wall below the T-shaped rod, the outer wall below the T-shaped rod is in clearance fit with the inner walls of through holes of the second transverse plate and the first transverse plate respectively, a first spring is mounted on the outer wall of the T-shaped rod, a connecting rod is mounted above the front end face of the T-shaped rod, the outer wall of a sliding block of the connecting rod is in clearance fit with the inner wall of a sliding groove of the T-shaped rod, a rectangular block is rotatably connected below the rear end face of the connecting rod through a rotating shaft, the lower surface of the rectangular block is fixedly connected with the first transverse plate, and a second spring is arranged above the rectangular block, and two sides of the second spring are respectively connected with the connecting rod and the tooth supporting plate in a rotating way through rotating shafts.
The left L-shaped plate and the right L-shaped plate are symmetrically arranged.
A stirring device is arranged above the L-shaped plate;
the stirring device comprises a box body, a stirring rod, an H-shaped plate, a motor and a second gear.
The utility model discloses a solar water heater, including box, upper surface, the below outer wall and the L shaped plate of box are fixed to be linked to each other, the inside of box rotates through the bearing and is connected with the puddler, the upper surface right side rigid coupling of box has the H shaped plate, the inside rigid coupling of H shaped plate has the motor, the output shaft rigid coupling of motor has the second gear, second gear and puddler intermeshing.
The middle point of the output shaft of the motor and the middle point of the second gear are on the same vertical line.
The beneficial effects of the utility model reside in that:
1. through mutually supporting between riser, electric putter, T shaped plate, brake block and the pin isotructure, can drive the T shaped plate through electric putter and remove, the T shaped plate drives the brake block and removes to make brake block and wheel support tightly, and then prevented the wheel rotation.
2. Through tooth extension board, first gear, the L shaped plate, T shape pole, the second diaphragm, first spring, the connecting rod, mutually support between rectangle piece and the second spring isotructure, when the L shaped plate moves down, the L shaped plate can drive T shape pole and remove, thereby T shape pole extrudees first spring, T shape pole drives the connecting rod and rotates simultaneously, the connecting rod passes through the tooth extension board and stretches the second spring, thereby elasticity performance through first spring and second spring can play the effect of shock attenuation buffering to the box.
3. Through mutually supporting between box, puddler, H shaped plate, motor and the second gear isotructure, can drive the second gear through the motor and rotate, the second gear drives the puddler and rotates to make the puddler stir thick liquids, prevent that it from solidifying.
Drawings
FIG. 1 is a schematic structural diagram of the present design;
FIG. 2 is a schematic structural view of the vertical plate, the brake pad and the stop lever of the design;
FIG. 3 is a schematic structural view of the connecting rod, the first spring and the second spring in the present design;
fig. 4 is a schematic structural diagram of the motor, the second gear and the H-shaped plate in the design.
In the figure: 1. the device comprises a first transverse plate, 2, wheels, 3, a butting device, 301, a vertical plate, 302, an electric push rod, 303, a T-shaped plate, 304, a brake pad, 305, a stop lever, 4, a damping device, 401, a tooth support plate, 402, a first gear, 403, an L-shaped plate, 404, a T-shaped rod, 405, a second transverse plate, 406, a first spring, 407, a connecting rod, 408, a rectangular block, 409, a second spring, 410, a concave plate, 5, a stirring device, 501, a box body, 502, a stirring rod, 503, an H-shaped plate, 504, a motor, 505 and a second gear.
Detailed Description
The invention will be further described with reference to the following figures and examples:
example 1: a material grouting device for hydraulic engineering, which is shown in figures 1 to 4.
The material grouting device for the hydraulic engineering comprises a first transverse plate 1 and wheels 2, wherein 2 through holes and sliding grooves are respectively processed in the first transverse plate 1 and below the first transverse plate 1, 4 wheels 2 are fixedly connected to the lower surface of the first transverse plate 1, a tightening device 3 is installed below the first transverse plate 1, the tightening device 3 comprises a vertical plate 301, an electric push rod 302, a T-shaped plate 303, a brake pad 304 and a stop lever 305, the upper surfaces of the left vertical plate 301 and the right vertical plate 301 are fixedly connected with the first transverse plate 1, the outer side below of the vertical plate 301 is fixedly connected with the electric push rod 302, the model of the electric push rod 302 is XTL, the outer side of the electric push rod 302 is fixedly connected with the T-shaped plate 303, a through hole is processed in the upper portion of the T-shaped plate 303, the upper outer wall of the T-shaped plate 303 is in clearance fit with the inner wall of the sliding groove of the first transverse plate 1, the first transverse plate 1 can limit the T-shaped plate 303 through the sliding groove, the brake pad 304 is fixedly connected below the outer side of the T-shaped plate 303, the wheel 2 can be tightly abutted through the brake block 304, the stop lever 305 is installed at the through hole of the T-shaped plate 303, the outer wall of the stop lever 305 is in clearance fit with the inner wall of the through hole of the T-shaped plate 303, the outer side of the stop lever 305 is fixedly connected with the wheel 2, and the T-shaped plate 303 and the first transverse plate 1 form a sliding structure.
A damping device 4 is arranged above the first transverse plate 1, the damping device 4 comprises a tooth support plate 401, a first gear 402, an L-shaped plate 403, a T-shaped rod 404, a second transverse plate 405, a first spring 406, a connecting rod 407, a rectangular block 408, a second spring 409 and a concave plate 410, the lower surfaces of the left and right tooth support plates 401 are fixedly connected with the first transverse plate 1, the upper part of the inner side of the tooth support plate 401 is engaged and connected with the first gear 402, the first gear 402 can rotate through the tooth support plate 401, the inner side of the first gear 402 is rotatably connected with the concave plate 410 through a rotating shaft, the inner side of the concave plate 410 is fixedly connected with the L-shaped plate 403, the lower surface of the L-shaped plate 403 is fixedly connected with the T-shaped rod 404, a sliding groove is processed above the front end surface of the T-shaped rod 404, the outer wall below the T-shaped rod 404 is provided with the second transverse plate 405, a through hole is processed inside the second transverse plate 405, the outer wall below the T-shaped rod 404 is in clearance fit with the through holes of the second transverse plate 405 and the first transverse plate 1, the outer wall of the T-shaped rod 404 is provided with a first spring 406, when the T-shaped rod 404 moves downwards, the first spring 406 is in a compressed state, the connecting rod 407 is arranged above the front end face of the T-shaped rod 404, a sliding block is processed above the rear end face of the connecting rod 407, the outer wall of the sliding block of the connecting rod 407 is in clearance fit with the inner wall of the sliding groove of the T-shaped rod 404, the T-shaped rod 404 can drive the sliding block on the connecting rod 407 to move through the sliding groove, the lower portion of the rear end face of the connecting rod 407 is rotatably connected with a rectangular block 408 through a rotating shaft, the lower surface of the rectangular block 408 is fixedly connected with a first transverse plate 1, a second spring 409 is arranged above the rectangular block 408, two sides of the second spring 409 are rotatably connected with the connecting rod 407 and the tooth supporting plate 401 through rotating shafts respectively, when the connecting rod 407 rotates, the second spring 409 is in a stretched state, and the left L-shaped plate 403 and the right L-shaped plate are symmetrically arranged downwards.
A stirring device 5 is arranged above the L-shaped plate 403, the stirring device 5 comprises a box body 501 and a stirring rod 502, the stirring device comprises an H-shaped plate 503, a motor 504 and a second gear 505, wherein the outer wall of the lower part of a box body 501 is fixedly connected with an L-shaped plate 403, a feeding pipe and a discharging pipe are respectively processed on the left side of the upper part of the box body 501 and the right side of the lower part of the rear end face, the inside of the box body 501 is rotatably connected with a stirring rod 502 through a bearing, a longitudinal thread is processed on the outer wall of the upper part of the stirring rod 502, the H-shaped plate 503 is fixedly connected with the right side of the upper surface of the box body 501, the motor 504 is fixedly connected with the inside of the H-shaped plate 503, the motor 504 is BLD-09 in model, the output shaft of the motor 504 is fixedly connected with the second gear 505, the second gear 505 is meshed with the stirring rod 502, the output shaft of the motor 504 can drive the stirring rod 502 to rotate through the second gear 505, and the middle point of the output shaft of the motor 504 and the middle point of the second gear 505 are on the same vertical line.
When the material grouting device for hydraulic engineering is used, firstly, an operator moves the device to a position needing to be used, an external power supply of the electric push rod 302 is switched on, the electric push rod 302 is started, the electric push rod 302 drives the T-shaped plate 303 to move outwards, the T-shaped plate 303 drives the brake pad 304 to move, the brake pad 304 is attached to the outer wall of the wheel 2, the purpose of preventing the wheel 2 from rotating when the device works is achieved, the external power supply of the motor 504 is switched on, the motor 504 is started, the output shaft of the motor 504 drives the stirring rod 502 to rotate through the second gear 505, so that the stirring rod 502 stirs slurry, when the stirring rod 502 works, the box body 501 shakes, so that the box body 501 drives the L-shaped plate 403 to move downwards, the L-shaped plate 4403 drives the first gear 402 and the T-shaped rod 404 to move downwards, the first gear 402 rotates through the tooth support plate 401, t shape pole 404 enters into the through-hole of second diaphragm 405, and then makes T shape pole 404 extrude first spring 406, and T shape pole 404 can drive connecting rod 407 and rotate simultaneously, makes connecting rod 407 stretch second spring 409, and then can play the effect of shock attenuation buffering to box 501 through the elastic force performance of first gear 402, first spring 406 and second spring 409.
The embodiment of the present invention discloses a preferred embodiment, but not limited thereto, and those skilled in the art can easily understand the spirit of the present invention according to the above embodiment, and make different extensions and changes, but do not depart from the spirit of the present invention, all of which are within the protection scope of the present invention.

Claims (6)

1. The utility model provides a material cementer for hydraulic engineering, includes first diaphragm and wheel, the lower surface rigid coupling of first diaphragm has a plurality of wheels, its characterized in that: a propping device is arranged below the first transverse plate;
the abutting device comprises a vertical plate, an electric push rod, a T-shaped plate, a brake pad and a stop lever;
it is a plurality of about the upper surface of riser links to each other with first diaphragm is fixed, the outside below rigid coupling of riser has electric putter, electric putter's outside rigid coupling has the T-shaped plate, the top outer wall of T-shaped plate and the spout department inner wall clearance fit of first diaphragm, the outside below rigid coupling of T-shaped plate has the brake block, the pin is installed to the through-hole department of T-shaped plate, the outer wall of pin and the through-hole department inner wall clearance fit of T-shaped plate, the outside and the wheel of pin are fixed and link to each other.
2. The material grouting device for the water conservancy project according to claim 1, characterized in that: the T-shaped plate and the first transverse plate form a sliding structure.
3. The material grouting device for the water conservancy project according to claim 1, characterized in that: a damping device is arranged above the first transverse plate;
the damping device comprises a tooth support plate, a first gear, an L-shaped plate, a T-shaped rod, a second transverse plate, a first spring, a connecting rod, a rectangular block, a second spring and a concave plate;
the lower surface of the left tooth support plate and the lower surface of the right tooth support plate are fixedly connected with a first transverse plate, a first gear is meshed and connected above the inner side of the tooth support plate, the inner side of the first gear is rotatably connected with a concave plate through a rotating shaft, an L-shaped plate is fixedly connected to the inner side of the concave plate, a T-shaped rod is fixedly connected to the lower surface of the L-shaped plate, a second transverse plate is mounted on the outer wall below the T-shaped rod, the outer wall below the T-shaped rod is in clearance fit with the inner walls of through holes of the second transverse plate and the first transverse plate respectively, a first spring is mounted on the outer wall of the T-shaped rod, a connecting rod is mounted above the front end face of the T-shaped rod, the outer wall of a sliding block of the connecting rod is in clearance fit with the inner wall of a sliding groove of the T-shaped rod, a rectangular block is rotatably connected below the rear end face of the connecting rod through a rotating shaft, the lower surface of the rectangular block is fixedly connected with the first transverse plate, and a second spring is arranged above the rectangular block, and two sides of the second spring are respectively connected with the connecting rod and the tooth supporting plate in a rotating way through rotating shafts.
4. The material grouting device for the water conservancy project according to claim 3, characterized in that: the left L-shaped plate and the right L-shaped plate are symmetrically arranged.
5. The material grouting device for the water conservancy project according to claim 3, characterized in that: a stirring device is arranged above the L-shaped plate;
the stirring device comprises a box body, a stirring rod, an H-shaped plate, a motor and a second gear;
the utility model discloses a solar water heater, including box, upper surface, the below outer wall and the L shaped plate of box are fixed to be linked to each other, the inside of box rotates through the bearing and is connected with the puddler, the upper surface right side rigid coupling of box has the H shaped plate, the inside rigid coupling of H shaped plate has the motor, the output shaft rigid coupling of motor has the second gear, second gear and puddler intermeshing.
6. The material grouting device for the water conservancy project according to claim 5, characterized in that: the middle point of the output shaft of the motor and the middle point of the second gear are on the same vertical line.
CN202022845740.9U 2020-12-01 2020-12-01 Material grouting device for hydraulic engineering Active CN214301747U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022845740.9U CN214301747U (en) 2020-12-01 2020-12-01 Material grouting device for hydraulic engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022845740.9U CN214301747U (en) 2020-12-01 2020-12-01 Material grouting device for hydraulic engineering

Publications (1)

Publication Number Publication Date
CN214301747U true CN214301747U (en) 2021-09-28

Family

ID=77845541

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022845740.9U Active CN214301747U (en) 2020-12-01 2020-12-01 Material grouting device for hydraulic engineering

Country Status (1)

Country Link
CN (1) CN214301747U (en)

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