CN210459237U - Earthwork filling machine for water conservancy construction - Google Patents

Earthwork filling machine for water conservancy construction Download PDF

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Publication number
CN210459237U
CN210459237U CN201921397717.9U CN201921397717U CN210459237U CN 210459237 U CN210459237 U CN 210459237U CN 201921397717 U CN201921397717 U CN 201921397717U CN 210459237 U CN210459237 U CN 210459237U
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China
Prior art keywords
material conveying
plate
filling machine
water conservancy
rotating shaft
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Expired - Fee Related
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CN201921397717.9U
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Chinese (zh)
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汪叶滨
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Individual
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Individual
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Abstract

The utility model discloses an earthwork filling machine for water conservancy construction belongs to the hydraulic engineering field. This earthwork filling machine includes defeated material room, the top and the bottom of defeated material room are equipped with feeder hopper and discharge gate respectively, defeated material indoor be equipped with defeated material subassembly, the below activity of discharge gate is provided with the striker plate, the striker plate link to each other with reciprocal subassembly, the below activity of striker plate is provided with the clamp plate, the clamp plate pass through drive assembly and link to each other with the striker plate. The utility model discloses link to each other the striker plate with defeated material subassembly through reciprocal subassembly to and pass through drive assembly with the clamp plate and link to each other the striker plate, alright when defeated material subassembly carries out defeated material operation, drive the striker plate intermittent type nature through reciprocal subassembly and plug up the discharge gate and drive the clamp plate and carry out reciprocal longitudinal motion, thereby can carry out timely compaction processing to materials such as soil sand stone material that the discharge gate falls down, with the work efficiency who improves the filling.

Description

Earthwork filling machine for water conservancy construction
Technical Field
The utility model relates to a hydraulic engineering field specifically is an earthwork filling machine for hydraulic construction.
Background
In the construction process of hydraulic engineering, the earthwork filling work is often required to be carried out on natural building materials such as earth, sand and stone materials and the like so as to complete the building work of buildings such as a canal dike, an embankment, an earth and rockfill dam and the like.
However, since the conventional earth filling machine generally performs only the unloading and scattering operations of the construction materials such as the earth, sand and stone materials, and the like, and it is required to perform the compacting operation of the construction materials by additional compacting equipment such as a vibration roller, the conventional earth filling machine has problems in that the compacting operation of the scattered construction materials cannot be performed in time, and the filling work efficiency is low.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an earthwork filling machine for water conservancy construction to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the embodiment of the present invention provides the following technical solutions:
an earthwork filling machine for water conservancy construction comprises a material conveying chamber, wherein the top and the bottom of the material conveying chamber are respectively provided with a feed hopper and a discharge port, a material conveying assembly for conveying materials into the discharge port is arranged in the material conveying chamber, a material baffle plate is movably arranged below the discharge port, the material baffle plate is connected with a reciprocating assembly for driving the material baffle plate to intermittently block the discharge port, a pressing plate is movably arranged below the material baffle plate, and the pressing plate is connected with the material baffle plate through a transmission assembly for driving the pressing plate to do reciprocating longitudinal motion; the reciprocating longitudinal movement of the pressing plate and the material conveying operation of the material conveying component are carried out synchronously.
According to the embodiment of the utility model, the feeding assembly comprises a feeding rotating shaft which is rotatably arranged in the feeding chamber, and the feeding rotating shaft is provided with a helical blade; one end of the material conveying rotating shaft penetrates through the material conveying chamber to be connected with the motor, the other end of the material conveying rotating shaft penetrates through the material conveying chamber to be fixedly connected with the driving bevel gear, the driving bevel gear is meshed with the driven bevel gear, the driven bevel gear is fixed on a transmission rotating shaft which is rotatably arranged, and the transmission rotating shaft is connected with the reciprocating assembly.
The embodiment of the utility model provides an another kind of preferred scheme who adopts, reciprocal subassembly include the carousel, transmission pivot and the fixed linking to each other of carousel, the eccentric position of carousel is gone up to rotate and is connected with the second movable rod, the slide bar that second movable rod and slip set up rotate and be connected, the slide bar link to each other with striker plate and transmission assembly respectively.
The embodiment of the utility model provides an another kind of preferred scheme who adopts, the top of striker plate is fixed with first slider, first slider and first guide bar carry out sliding fit, first guide bar fix between two sets of first stoppers, it is two sets of first stopper all fix the one side at the discharge gate.
The embodiment of the utility model provides an another kind of preferred scheme who adopts, transmission assembly include the second slider that first movable rod and slip set up, the both ends of first movable rod rotate with slide bar and second slider respectively and are connected, the second slider pass through the connecting plate and link to each other with the clamp plate.
The embodiment of the utility model provides an another kind of preferred scheme who adopts, second slider and second guide bar carry out sliding fit, the second guide bar fix between two sets of second stoppers, it is two sets of the second stopper all fix the below at the striker plate, second guide bar and first guide bar mutually perpendicular.
The embodiment of the utility model provides an another kind of preferred scheme who adopts, the clamp plate pass through the telescopic link and link to each other with the connecting plate, the connecting plate fixed linking to each other with the second slider, the telescopic link on the cover be equipped with the spring, the both ends of spring link to each other with clamp plate and connecting plate respectively.
The embodiment of the utility model provides an above-mentioned technical scheme compares in prior art, has following technological effect:
the embodiment of the utility model provides a below through at the discharge gate sets up the slidable striker plate, set up the slidable clamp plate in the striker plate below, and with the striker plate through having the slide bar, the reciprocal subassembly of carousel and second movable rod links to each other with the defeated material subassembly that has defeated material pivot and helical blade, and link to each other the clamp plate with the striker plate through the transmission subassembly that has first movable rod, alright when defeated material subassembly carries out defeated material operation, drive the striker plate intermittent type nature through reciprocal subassembly and plug up the discharge gate and drive the clamp plate and carry out reciprocal longitudinal motion, thereby can carry out timely compaction processing to materials such as the soil sand stone material that the discharge gate falls, with the work efficiency who improves the filling.
Drawings
Fig. 1 is a schematic structural view of an earth filling machine for water conservancy construction provided in embodiment 1.
Fig. 2 is a perspective view of the reciprocating assembly and the transmission assembly provided in embodiment 1.
Fig. 3 is a schematic structural view of an earth filling machine for water conservancy construction according to embodiment 2.
In the figure: 1-base, 2-support, 3-top plate, 4-universal wheel, 5-conveying chamber, 6-feed hopper, 7-discharge port, 8-striker plate, 9-first slide block, 10-first limiting block, 11-first guide rod, 12-conveying rotating shaft, 13-helical blade, 14-motor, 15-pressing plate, 16-connecting plate, 17-second slide block, 18-second guide rod, 19-second limiting block, 20-slide rod, 21-first movable rod, 22-rotary table, 23-second movable rod, 24-driving rotating shaft, 25-driving bevel gear, 26-driven bevel gear, 27-telescopic rod and 28-spring.
Detailed Description
The following specific embodiments are specifically and clearly described in the technical solutions of the present application with reference to the drawings provided in the present specification. The drawings in the specification are for clarity of presentation of the technical solutions of the present application, and do not represent shapes or sizes in actual production or use, and reference numerals of the drawings are not limited to the claims involved.
In addition, in the description of the present application, terms used should be construed broadly, and specific meanings of the terms may be understood by those skilled in the art according to actual situations. For example, the term "mounted" as used in this application may be defined as a fixed mounting that is removable or a fixed mounting that is not removable, etc.; the terms "set" and "provided" as used herein may be defined as either a contact or a non-contact arrangement, etc.; the terms "connected" and "coupled" as used herein may be defined as mechanically, electrically, or both fixedly and removably coupled; the terms "first", "second", and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated; all the terms of orientation used are used with reference to the drawings or are based on the direction defined by the actual situation and the common general knowledge.
Example 1
Referring to the attached drawings 1-2, the embodiment provides an earthwork filling machine for water conservancy construction, which comprises a material conveying chamber 5, wherein the top and the bottom of the material conveying chamber 5 are respectively provided with a feed hopper 6 and a discharge outlet 7; defeated material room 5 install on roof 3, roof 3 install the top at base 1 through two sets of supports 2, a plurality of groups of universal wheel 4 are installed to the bottom of base 1, the removal of the earth filling machine of being convenient for.
Further, a material conveying assembly for conveying materials into the discharge port 7 is arranged in the material conveying chamber 5, a material baffle 8 is movably arranged below the discharge port 7, the material baffle 8 is connected with a reciprocating assembly for driving the material baffle 8 to intermittently block the discharge port 7, a pressing plate 15 is movably arranged below the material baffle 8, and the pressing plate 15 is connected with the material baffle 8 through a transmission assembly for driving the pressing plate 15 to do reciprocating longitudinal motion; the reciprocating longitudinal movement of the pressing plate 15 is synchronized with the feeding operation of the feeding assembly.
Specifically, the material conveying assembly comprises a material conveying rotating shaft 12 rotatably arranged in the material conveying chamber 5, and a helical blade 13 is mounted on the material conveying rotating shaft 12; one end of the material conveying rotating shaft 12 penetrates through the material conveying chamber 5 to be fixedly connected with a motor shaft of the motor 14, and the other end of the material conveying rotating shaft 12 penetrates through the material conveying chamber 5 to be fixedly connected with the driving bevel gear 25. The motor 14 is a motor commonly known in the art.
Further, the driving bevel gear 25 is engaged with a driven bevel gear 26, the driven bevel gear 26 is fixed on a transmission rotating shaft 24, the transmission rotating shaft 24 is rotatably installed on the top plate 3, and the transmission rotating shaft 24 is connected with the reciprocating assembly. Specifically, reciprocal subassembly include carousel 22, transmission pivot 24 pass roof 3 and carousel 22 fixed linking to each other, the eccentric position of carousel 22 goes up to rotate and is connected with second movable rod 23, second movable rod 23 rotate with slide bar 20 and be connected, slide bar 20 and support 2 carry out sliding fit, slide bar 20 still link to each other with striker plate 8 and transmission subassembly respectively.
Wherein, the top of striker plate 8 is fixed with first slider 9, first slider 9 and first guide bar 11 carry out sliding fit, first guide bar 11 fix between two sets of first stopper 10, two sets of first stopper 10 all fix the one side at discharge gate 7.
In addition, the transmission assembly comprises a first movable rod 21 and a second sliding block 17 which is arranged in a sliding mode, two ends of the first movable rod 21 are respectively connected with the sliding rod 20 and the second sliding block 17 in a rotating mode, and the second sliding block 17 is connected with the pressing plate 15 through a connecting plate 16. Specifically, the second slider 17 and the second guide rod 18 are in sliding fit, the second guide rod 18 is fixed between two sets of second limiting blocks 19, the second limiting blocks 19 are both fixed below the striker plate 8, and the second guide rod 18 is perpendicular to the first guide rod 11.
When the earthwork filling machine provided by the embodiment is used, the whole earthwork filling machine can be fixedly connected with the transport vehicle through the bolts, so that the transport vehicle can drive the whole earthwork filling machine to move; then, soil, sand and stone are added into the feed hopper 6, and the starting motor 14 drives the material conveying rotating shaft 12 and the helical blade 13 to rotate, so that the soil, sand and stone at the feed hopper 6 can be conveyed to the discharge port 7 through the rotation of the helical blade 13, and the discharging and spreading operation of the soil, sand and stone can be realized.
In addition, the rotation of the material conveying rotating shaft 12 can also drive a driving bevel gear 25 to rotate, the rotation of the driving bevel gear 25 can drive a driven bevel gear 26 to rotate, the rotation of the driven bevel gear 26 can drive a transmission rotating shaft 24 to rotate, the rotation of the transmission rotating shaft 24 can drive a turntable 22 to rotate, the rotation of the turntable 22 can drive a sliding rod 20 to slide in a reciprocating transverse direction through a second movable rod 23, the sliding rod 20 can slide in a reciprocating transverse direction through a first movable rod 21 to drive a second sliding block 17 to slide in a reciprocating longitudinal direction, and the second sliding block 17 can slide in a reciprocating longitudinal direction to drive a pressing plate 15 to move in a reciprocating longitudinal direction, so that the scattered soil and sand stones can be compacted to finish filling work. Meanwhile, the reciprocating transverse sliding of the sliding rod 20 can also drive the material baffle 8 to perform reciprocating transverse sliding, so that the material baffle 8 can intermittently block the discharge hole 7, the purpose of controlling the discharge amount of the soil and sand materials is achieved, and the pressing plate 15 is favorable for compacting the spread soil and sand materials.
Example 2
Referring to fig. 3, the embodiment is an improvement on the basis of embodiment 1, specifically, the pressing plate 15 is connected to the connecting plate 16 through an expansion link 27, the connecting plate 16 is fixedly connected to the second slider 17, a spring 28 is sleeved on the expansion link 27, and two ends of the spring 28 are respectively connected to the pressing plate 15 and the connecting plate 16. Through the arrangement of the spring 28, a buffering function can be achieved, so that compaction operation can be performed on soil and sand material piles with different thicknesses.
To sum up, the embodiment of the utility model provides a through set up slidable striker plate 8 in the below of discharge gate 7, set up slidable clamp plate 15 in striker plate 8 below, and link to each other striker plate 8 through having slide bar 20, the reciprocal subassembly of carousel 22 and second movable rod 23 and the defeated material subassembly that has defeated material pivot 12 and helical blade 13, and link to each other striker plate 8 through the transmission subassembly that has first movable rod 21 with clamp plate 15, alright when defeated material subassembly carries out defeated material operation, drive striker plate 8 through reciprocal subassembly and plug up intermittent type nature discharge gate 7 and drive clamp plate 15 and carry out reciprocal longitudinal motion, thereby can carry out timely compaction processing to materials such as soil and sand stone material that discharge gate 7 fell down, with the work efficiency who improves the filling.
It should be noted that the above embodiments are only specific and clear descriptions of technical solutions and technical features of the present application. However, to those skilled in the art, aspects or features that are part of the prior art or common general knowledge are not described in detail in the above embodiments.
In addition, the technical solutions of the present application are not limited to the above-described embodiments, and those skilled in the art should take the description as a whole, and the technical solutions in the embodiments may be appropriately combined, so that other embodiments that can be understood by those skilled in the art may be formed.

Claims (7)

1. An earthwork filling machine for water conservancy construction comprises a material conveying chamber (5), wherein the top and the bottom of the material conveying chamber (5) are respectively provided with a feed hopper (6) and a discharge port (7), and the earthwork filling machine is characterized in that the material conveying chamber (5) is internally provided with a material conveying assembly for conveying materials into the discharge port (7), a material baffle plate (8) is movably arranged below the discharge port (7), the material baffle plate (8) is connected with a reciprocating assembly for driving the material baffle plate (8) to intermittently block the discharge port (7), a pressing plate (15) is movably arranged below the material baffle plate (8), and the pressing plate (15) is connected with the material baffle plate (8) through a transmission assembly for driving the pressing plate (15) to do reciprocating longitudinal motion; the reciprocating longitudinal movement of the pressing plate (15) and the material conveying operation of the material conveying component are carried out synchronously.
2. The earthwork filling and filling machine for water conservancy construction according to claim 1, wherein the material conveying assembly comprises a material conveying rotating shaft (12) rotatably arranged in the material conveying chamber (5), and the material conveying rotating shaft (12) is provided with a helical blade (13); one end of the material conveying rotating shaft (12) penetrates through the material conveying chamber (5) to be connected with the motor (14), the other end of the material conveying rotating shaft (12) penetrates through the material conveying chamber (5) to be fixedly connected with the driving bevel gear (25), the driving bevel gear (25) is meshed with the driven bevel gear (26), the driven bevel gear (26) is fixed on the transmission rotating shaft (24) which is rotatably arranged, and the transmission rotating shaft (24) is connected with the reciprocating assembly.
3. The earthwork filling machine for water conservancy construction according to claim 2, wherein the reciprocating assembly comprises a rotary disc (22), the transmission rotating shaft (24) is fixedly connected with the rotary disc (22), a second movable rod (23) is rotatably connected to an eccentric position of the rotary disc (22), the second movable rod (23) is rotatably connected with a sliding rod (20) which is arranged in a sliding manner, and the sliding rod (20) is respectively connected with the striker plate (8) and the transmission assembly.
4. The earthwork filling machine for water conservancy construction according to claim 3, wherein a first sliding block (9) is fixed at the top of the striker plate (8), the first sliding block (9) is in sliding fit with a first guide rod (11), the first guide rod (11) is fixed between two sets of first limiting blocks (10), and the two sets of first limiting blocks (10) are fixed at one side of the discharge hole (7).
5. The earth filling machine for water conservancy construction according to claim 3, wherein the transmission assembly comprises a first movable rod (21) and a second sliding block (17) which is arranged in a sliding manner, two ends of the first movable rod (21) are respectively connected with the sliding rod (20) and the second sliding block (17) in a rotating manner, and the second sliding block (17) is connected with the pressing plate (15) through a connecting plate (16).
6. The earthwork filling machine for water conservancy construction according to claim 5, wherein the second sliding block (17) is in sliding fit with the second guide rod (18), the second guide rod (18) is fixed between two groups of second limit blocks (19), the two groups of second limit blocks (19) are fixed below the striker plate (8), and the second guide rod (18) is perpendicular to the first guide rod (11).
7. The earthwork filling machine for water conservancy construction according to claim 5, wherein the pressing plate (15) is connected with the connecting plate (16) through a telescopic rod (27), the connecting plate (16) is fixedly connected with the second sliding block (17), a spring (28) is sleeved on the telescopic rod (27), and two ends of the spring (28) are respectively connected with the pressing plate (15) and the connecting plate (16).
CN201921397717.9U 2019-08-27 2019-08-27 Earthwork filling machine for water conservancy construction Expired - Fee Related CN210459237U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921397717.9U CN210459237U (en) 2019-08-27 2019-08-27 Earthwork filling machine for water conservancy construction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921397717.9U CN210459237U (en) 2019-08-27 2019-08-27 Earthwork filling machine for water conservancy construction

Publications (1)

Publication Number Publication Date
CN210459237U true CN210459237U (en) 2020-05-05

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CN201921397717.9U Expired - Fee Related CN210459237U (en) 2019-08-27 2019-08-27 Earthwork filling machine for water conservancy construction

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112478669A (en) * 2020-12-10 2021-03-12 安徽华顺智能装备有限公司 Friction type conveyor capable of realizing automatic material arrangement at terminal
CN112918534A (en) * 2021-02-06 2021-06-08 梁云招 Small stone carrying equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112478669A (en) * 2020-12-10 2021-03-12 安徽华顺智能装备有限公司 Friction type conveyor capable of realizing automatic material arrangement at terminal
CN112918534A (en) * 2021-02-06 2021-06-08 梁云招 Small stone carrying equipment

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Granted publication date: 20200505