CN218699864U - Automatic square timber pile cover plate production equipment - Google Patents

Automatic square timber pile cover plate production equipment Download PDF

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Publication number
CN218699864U
CN218699864U CN202222910271.3U CN202222910271U CN218699864U CN 218699864 U CN218699864 U CN 218699864U CN 202222910271 U CN202222910271 U CN 202222910271U CN 218699864 U CN218699864 U CN 218699864U
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China
Prior art keywords
plate
bilateral symmetry
square timber
timber pile
fixed
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CN202222910271.3U
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Chinese (zh)
Inventor
王战伟
沈伟
冯泽贤
高应洪
钱美华
李传俊
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Zhongshan Yongcheng Cement Products Co ltd
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Zhongshan Yongcheng Cement Products Co ltd
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Abstract

The utility model relates to a square timber pile apron apparatus for producing technical field specifically is an automatic square timber pile apron production facility, including the fixed bolster, the side of fixed bolster is connected with through the support frame and controls the platform, and telescopic cylinder is installed to the upper end bilateral symmetry of fixed bolster, and the inboard bilateral symmetry welding of fixed bolster has a pair of round bar, and the equal bilateral symmetry welding in both sides of fixed bolster has a concave plate, and the cover is equipped with the stripper plate on the round bar, and the lower extreme bilateral symmetry of stripper plate has the suppression post through bolted connection, the beneficial effects of the utility model are that: during the use, earlier place two wooden loading board symmetries in the upper end of workstation, make two shaping subassemblies symmetry place in two wooden loading board upper ends, make two semi-ring shape locating plates splice into a completed annular slab through removing the limiting plate, pack the concrete in the annular slab, rethread telescopic cylinder drives the stripper plate and moves down, makes the suppression post move down along the inboard of annular slab to press the shaping with the concrete.

Description

Automatic square timber pile cover plate production equipment
Technical Field
The utility model relates to a square timber pile apron apparatus for producing technical field specifically is an automatic square timber pile apron production facility.
Background
Traditional square timber pile apron's production mode is produced through the plastic mould, pour the concrete into in the plastic mould, make the concrete be full of the plastic mould inner chamber, make the concrete solidify through an end time, thereby support square timber pile apron, production efficiency is low through the plastic mould, and difficult drawing of patterns after the square timber pile apron solidifies, and can only pour a square timber pile apron at every turn, greatly reduced production efficiency, and when pouring the inner chamber of plastic mould, the mobility to the concrete has certain requirement, production cost is greatly improved, therefore we need an automatic square timber pile apron production facility, solve foretell problem.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic square timber pile apron production facility to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an automatic square timber pile apron production facility, includes the fixed bolster, the side of fixed bolster is connected with through the support frame and controls the platform, telescopic cylinder is installed to the upper end bilateral symmetry of fixed bolster, the inboard bilateral symmetry welding of fixed bolster has a pair of round bar, the equal bilateral symmetry welding in both sides of fixed bolster has the concave plate, the cover is equipped with the stripper plate on the round bar, the lower extreme bilateral symmetry of stripper plate has the suppression post through bolted connection, the equal bilateral symmetry welding in both sides of stripper plate has solid fixed ring, telescopic cylinder's lower extreme passes through the bolt and is connected with the stripper plate, be connected with the workstation through the backup pad in the fixed bolster, the upper end bilateral symmetry of workstation is provided with the plank loading board, the bilateral symmetry welding of workstation has first fixed otic placode, the bilateral symmetry of fixed bolster is provided with the guide bar, the slider is installed through the bolted symmetry at both ends about the guide bar, the connection rope is installed to the upper end of slider, the upper end and the solid fixed ring tying or the joint of connecting the rope, the top bilateral symmetry of workstation is provided with a pair of shaping subassembly.
Preferably, the upper end of the round rod is welded or connected with the upper top end of the fixing support through a bolt, and the lower end of the round rod is welded or connected with the lower bottom end of the fixing support through a bolt.
Preferably, the workbench is penetrated through one end of the round rod, round holes are symmetrically formed in the left and right sides of the upper end of the extrusion plate, and the extrusion plate is connected with the round rod in a sliding mode.
Preferably, the sliding block is clamped with the concave plate, and the sliding block is connected with the concave plate in a sliding mode.
Preferably, the forming assembly comprises: limiting plate, semi-ring shaped positioning plate, sleeve pipe, the fixed otic placode of second and location inserted bar, the upper end bilateral symmetry of workstation is provided with a pair of limiting plate, the side symmetric welding of limiting plate has semi-ring shaped positioning plate, the bilateral symmetry welding of limiting plate side has the sleeve pipe, the limiting plate is kept away from one side symmetric welding of semi-ring shaped positioning plate and is had the fixed otic placode of second, the upper end of the fixed otic placode of second runs through to peg graft and has the location inserted bar, the lower extreme and the first fixed otic placode activity of location inserted bar are pegged graft.
Preferably, the side of limiting plate has seted up the circular recess, sleeve pipe are passed in proper order to the one end of guide bar, limiting plate and sleeve pipe all with guide bar sliding connection.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses a square timber pile apron production facility structural design is reasonable, and the operation is simple and convenient, during the use, place the upper end at the workstation with two wooden loading board symmetries earlier, make two shaping subassembly symmetries place in two wooden loading board upper ends, make two semi-ring shape locating plates splice into a completion's annular slab through removing the limiting plate, pack the concrete in the annular slab, rethread telescopic cylinder drives the stripper plate downstream, make the suppression post move down along the inboard of annular slab, thereby with concrete press forming, drive the stripper plate rebound through telescopic cylinder after the suppression is accomplished, make suppression post and shaping subassembly separation, make semi-ring shape locating plate and press forming's square timber pile apron separation through removing the limiting plate this moment, continue telescopic cylinder this moment, make the stripper plate continue the rebound, the stripper plate drives the slider and moves up along the notch plate rebound through connecting the rope, the slider drives the guide bar and moves up, the guide bar drives the shaping subassembly rebound, make the shaping subassembly keep away from the shaping subassembly and remove the bearing board, thereby can be convenient with the air-dry on the square timber pile apron that presses the shaping simultaneously.
Drawings
FIG. 1 is a schematic structural view of the square timber pile cover plate production equipment of the utility model;
FIG. 2 is a schematic view of the structure of the squeeze plate and the pressing column of the present invention;
fig. 3 is an explosion diagram of the structure of the working table, the guide rod and the forming assembly of the present invention.
In the figure: 1. fixing a bracket; 11. a console; 12. a telescopic cylinder; 13. a round bar; 14. a concave plate; 2. a pressing plate; 21. pressing the column; 22. a fixing ring; 3. a work table; 31. a wood bearing plate; 32. a first fixed ear plate; 4. a guide rod; 41. a slider; 42. connecting ropes; 5. a limiting plate; 51. a semi-annular positioning plate; 52. a sleeve; 53. a second fixed ear plate; 54. and positioning the inserted rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
Referring to fig. 1 to 3, the present invention provides a technical solution: the utility model provides an automatic square timber pile apron production facility, including fixed bolster 1, the side of fixed bolster 1 is connected with through the support frame and controls platform 11, telescopic cylinder 12 is installed to the upper end bilateral symmetry of fixed bolster 1, the inboard bilateral symmetry welding of fixed bolster 1 has a pair of round bar 13, the equal bilateral symmetry welding in both sides of fixed bolster 1 has concave plate 14, the upper end of round bar 13 and the last top welding of fixed bolster 1 or through bolted connection, the lower extreme of round bar 13 and the lower bottom welding of fixed bolster 1 or through bolted connection, fixed bolster 1 has the top plate, the lower plate, side gusset plate and base are constituteed, the symmetric welding has the gusset plate between top plate and the lower plate, the lower extreme welding of lower plate has the base.
The round bar 13 is sleeved with the extrusion plate 2, the lower end bilateral symmetry of the extrusion plate 2 is connected with the pressing column 21 through a bolt, the two sides of the extrusion plate 2 are welded with the fixing rings 22 in bilateral symmetry, the lower end of the telescopic cylinder 12 is connected with the extrusion plate 2 through a bolt, the fixed support 1 is internally connected with the workbench 3 through a support plate, the upper end bilateral symmetry of the workbench 3 is provided with the wood bearing plate 31, the two sides of the workbench 3 are welded with the first fixing lug plates 32 in bilateral symmetry, the two sides of the fixed support 1 are symmetrically provided with the guide rods 4, the left ends and the right ends of the guide rods 4 are symmetrically provided with the sliding blocks 41 through bolts, the upper ends of the sliding blocks 41 are provided with the connecting ropes 42, the upper ends of the connecting ropes 42 are tied or clamped with the fixing rings 22, one end of the round bar 13 penetrates through the workbench 3, the upper end bilateral symmetry of the extrusion plate 2 is provided with round holes, the extrusion plate 2 is connected with the round bar 13 in a sliding mode, the sliding blocks 41 are clamped with the concave plate 14, the sliding blocks 41 are connected with the concave plate 14 in a sliding mode, the connecting ropes 42 can be replaced by lock chains, the extrusion plate 2 can slide up and down along the round bar 13, and up and down, and down move stably.
The top bilateral symmetry of workstation 3 is provided with a pair of shaping subassembly, and shaping subassembly is including: limiting plate 5, semi-annular locating plate 51, sleeve pipe 52, fixed otic placode 53 of second and location inserted bar 54, the upper end bilateral symmetry of workstation 3 is provided with a pair of limiting plate 5, the side symmetry welding of limiting plate 5 has semi-annular locating plate 51, the both sides symmetry welding of limiting plate 5 side has sleeve pipe 52, one side symmetry welding that semi-annular locating plate 51 was kept away from to limiting plate 5 has fixed otic placode 53 of second, the upper end of fixed otic placode 53 of second runs through the grafting and has location inserted bar 54, the lower extreme of location inserted bar 54 is pegged graft with first fixed otic placode 32 activity, the circular recess has been seted up to the side of limiting plate 5, the circular recess is passed in proper order to the one end of guide bar 4, sleeve pipe 52, limiting plate 5 and sleeve pipe 52 all with guide bar 4 sliding connection, drive sleeve pipe 52 when limiting plate 5 removes and slide along guide bar 4, two semi-annular locating plates 51 splice to be a complete annular plate.
During the use, earlier place two wooden loading board 31 symmetries in the upper end of workstation 3, make two shaping subassembly symmetries place in two wooden loading board 31 upper ends, through removing two limiting plate 5 that the symmetry is respectively, make the inboard semi-ring shaped locating plate 51 of limiting plate 5 be close to each other, thereby make two accurate concatenation of semi-ring shaped locating plate 51 become a complete annular slab, run through second fixed otic placode 53 with the lower extreme of location inserted bar 54 again, and peg graft with first fixed otic placode 32, thereby fix limiting plate 5, and then make the concatenation that the annular slab can be stable together, pack concrete loading board in the annular slab, rethread telescopic cylinder 12 drives stripper plate 2 and moves downwards, make pressing post 21 move downwards along the inboard of annular slab, thereby with the concrete press forming, drive stripper plate 2 through telescopic cylinder 12 after the suppression completion and move upwards, make pressing post 21 and shaping subassembly separation, at this moment, through removing limiting plate 5, limiting plate 5 drives semi-ring shaped locating plate 51 and moves, make semi-ring shaped locating plate 51 and press the square shaped locating plate 51 and separate with the square shaped capping board that the press forming subassembly that the air-drying formed, make the stripper plate move upwards move through the telescopic cylinder 12 and drive the stripper plate and move upwards, thereby make the air-drying shaping subassembly move upwards move and remove the extrusion plate 4 and move, thereby make the air-drying shaping subassembly move upwards and move the stripper plate move and move upwards and make the wood-forming subassembly and move, make the stripper plate move 4 and move.
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 (6)

1. The utility model provides an automatic square timber pile apron production facility, includes fixed bolster (1), its characterized in that: the side surface of the fixed bracket (1) is connected with a control platform (11) through a supporting frame, telescopic cylinders (12) are symmetrically arranged at the left and the right of the upper end of the fixed bracket (1), a pair of round rods (13) are welded on the inner side of the fixed bracket (1) in a bilateral symmetry way, concave plates (14) are symmetrically welded on the left and the right of both sides of the fixed support (1), the round bar (13) is sleeved with an extrusion plate (2), the lower end of the extrusion plate (2) is connected with pressing columns (21) through bolts in bilateral symmetry, fixing rings (22) are welded on the two sides of the extrusion plate (2) in a bilateral symmetry manner, the lower end of the telescopic cylinder (12) is connected with the extrusion plate (2) through a bolt, the fixed bracket (1) is internally connected with a workbench (3) through a supporting plate, the upper end of the workbench (3) is symmetrically provided with wood bearing plates (31) at left and right, first fixed lug plates (32) are welded on the two sides of the workbench (3) in a bilateral symmetry manner, guide rods (4) are symmetrically arranged at two sides of the fixed bracket (1), the left end and the right end of the guide rod (4) are symmetrically provided with sliding blocks (41) through bolts, the upper end of the sliding block (41) is provided with a connecting rope (42), the upper end of the connecting rope (42) is tied or clamped with the fixing ring (22), a pair of forming components is symmetrically arranged on the left and right of the upper part of the workbench (3).
2. The automatic square timber pile cover plate production equipment of claim 1, wherein: the upper end of the round rod (13) is welded or connected with the upper top end of the fixed support (1) through a bolt, and the lower end of the round rod (13) is welded or connected with the lower bottom end of the fixed support (1) through a bolt.
3. The automatic square timber pile cover plate production equipment of claim 1, wherein: workstation (3) is run through to the one end of round bar (13), the round hole has been seted up to the upper end bilateral symmetry of stripper plate (2), stripper plate (2) and round bar (13) sliding connection.
4. The automatic square timber pile cover plate production equipment according to claim 1, wherein: the slider (41) is clamped with the concave plate (14), and the slider (41) is connected with the concave plate (14) in a sliding mode.
5. The automatic square timber pile cover plate production equipment of claim 1, wherein: the molding assembly comprises: limiting plate (5), semi-ring shaped positioning plate (51), sleeve pipe (52), the fixed otic placode of second (53) and location inserted bar (54), the upper end bilateral symmetry of workstation (3) is provided with a pair of limiting plate (5), the side symmetric welding of limiting plate (5) has semi-ring shaped positioning plate (51), the bilateral symmetry welding of limiting plate (5) side has sleeve pipe (52), one side symmetric welding that semi-ring shaped positioning plate (51) was kept away from in limiting plate (5) has the fixed otic placode of second (53), the upper end of the fixed otic placode of second (53) is run through the grafting and is had location inserted bar (54), the lower extreme and the first fixed otic placode (32) activity grafting of location inserted bar (54).
6. The automatic square timber pile cover plate production equipment of claim 5, wherein: the side of limiting plate (5) has seted up the circular recess, sleeve pipe (52) are passed in proper order to the one end of guide bar (4), limiting plate (5) and sleeve pipe (52) all with guide bar (4) sliding connection.
CN202222910271.3U 2022-11-02 2022-11-02 Automatic square timber pile cover plate production equipment Active CN218699864U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222910271.3U CN218699864U (en) 2022-11-02 2022-11-02 Automatic square timber pile cover plate production equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222910271.3U CN218699864U (en) 2022-11-02 2022-11-02 Automatic square timber pile cover plate production equipment

Publications (1)

Publication Number Publication Date
CN218699864U true CN218699864U (en) 2023-03-24

Family

ID=85599891

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222910271.3U Active CN218699864U (en) 2022-11-02 2022-11-02 Automatic square timber pile cover plate production equipment

Country Status (1)

Country Link
CN (1) CN218699864U (en)

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