CN213897122U - Manual hole digging pile residue soil vertical transportation operation frame - Google Patents

Manual hole digging pile residue soil vertical transportation operation frame Download PDF

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Publication number
CN213897122U
CN213897122U CN202022836756.3U CN202022836756U CN213897122U CN 213897122 U CN213897122 U CN 213897122U CN 202022836756 U CN202022836756 U CN 202022836756U CN 213897122 U CN213897122 U CN 213897122U
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vertical
frame
beams
hole digging
digging pile
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CN202022836756.3U
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Chinese (zh)
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姚森海
郝勇
冯俊强
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China Second Metallurgy Group Co Ltd
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China Second Metallurgy Group Co Ltd
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Abstract

The utility model provides a perpendicular transportation handling frame of manual hole digging pile dregs, include: a support frame; the lifting device is arranged at the center of the upper part of the support frame and is used for lifting and pulling the slag hopper; the sliding platform is arranged on the lower side inside the support frame in the horizontal direction and is connected with the support frame in a sliding mode, and the sliding platform is used for sliding to the lower side of the slag bucket after the slag bucket is lifted out of the hole digging pile by the lifting device and enabling the slag bucket to be placed on the upper side face of the slag bucket so as to drive the slag bucket to move to a preset position. Through setting up the support frame, hoisting device and sliding platform, place the support frame in artifical hole digging pile top, carry out the sediment soil clearance through setting up hoisting device operation sediment fill on the support frame to sediment fill after will promoting through sliding platform moves to the border position by artifical hole digging pile directly over, thereby can be convenient for the processing of sediment soil in the sediment fill, need not the often half-body unsettled of operating personnel and just can get the sediment fill in the well head top, greatly improved the security.

Description

Manual hole digging pile residue soil vertical transportation operation frame
Technical Field
The utility model relates to a construction technical field particularly, relates to a perpendicular transportation handling frame of manual hole digging pile dregs.
Background
At present, when the through-long pile hole is constructed and excavated, an operation platform and protection need to be set up firstly to lift earthwork, manual operation is carried out again, time and labor are wasted, when the slag hopper is lifted to a wellhead, an operator often needs to hang the half body in the air to take the slag hopper, the support body is prone to overturning, and the wellhead operator has certain danger.
Disclosure of Invention
In view of this, the utility model provides a perpendicular transportation handling frame of manual hole digging pile dregs aims at solving the problem that improves the security when manual hole digging pile dregs are cleared and transported.
In one aspect, the utility model provides a perpendicular transportation handling frame of manual hole digging pile dregs, include:
the supporting frame is of a frame structure;
the lifting device is arranged at the center of the upper part of the support frame and is used for lifting the slag hopper;
the sliding platform is arranged on the lower side inside the supporting frame in the horizontal direction and is connected with the supporting frame in a sliding mode, and the sliding platform is used for sliding the slag bucket to the lower side of the slag bucket after the slag bucket is lifted out of the hole digging pile by the lifting device and enabling the slag bucket to be placed on the upper side face of the slag bucket to drive the slag bucket to move to a preset position.
Furthermore, the support frame comprises longitudinal beams and vertical beams, two rows of the longitudinal beams are arranged side by side along the vertical direction, the longitudinal beams in each row are arranged in parallel relatively, and the longitudinal beams in the upper row and the longitudinal beams in the lower row are respectively arranged oppositely; the vertical beams are arranged in two rows along the vertical direction, two vertical beams are arranged in each row, and each longitudinal beam is connected with the lower parts of the two vertical beams respectively; two rows of the vertical beams are arranged oppositely in pairs respectively, and the upper end parts of the vertical beams are connected together in sequence through the longitudinal beams respectively.
Further, the lifting device is arranged between the two longitudinal beams at the upper part.
Further, the vertical beam is of a telescopic structure and is used for jumping the set height of the lifting device.
Furthermore, the vertical beam comprises a loop bar and an insertion bar, wherein the insertion bar is inserted into the loop bar, stretches along the setting direction of the loop bar and is fixed through a bolt arranged on the side wall of the loop bar.
Furthermore, the lifting device comprises a connecting rod, a wire roller and a cable, the wire roller is sleeved in the middle of the connecting rod and rotates by taking the connecting rod as a rotating shaft, the cable is wound on the wire roller, and the lower end of the cable is provided with a slag hopper hook for hanging a slag hopper; and two ends of the connecting rod are respectively connected with one longitudinal beam.
Furthermore, two cross beams are arranged between the two longitudinal beams positioned at the lower part, a preset distance is kept between the two cross beams, and the cross beams are vertically intersected with the longitudinal beams; the upper side of the two cross beams is provided with two slide rails side by side, the two slide rails are vertically intersected with the cross beams, a preset distance is kept between the two slide rails, and the sliding platform is arranged on the slide rails and slides along the arrangement direction of the slide rails.
Further, the sliding platform comprises a placing rack and pulleys, the placing rack is of a square structure and used for placing the slag bucket, the pulleys are arranged at four corners of the lower side of the placing rack and slidably connected with the sliding rails, and the pulleys slide along the arrangement direction of the sliding rails.
Further, sliding platform includes the pull rod, the one end of pull rod with the rack is connected, the pull rod is used for pulling the rack removes.
Further, the placing frame is made of steel pipes through welding.
Compared with the prior art, the beneficial effects of the utility model reside in that, through setting up support frame, hoisting device and sliding platform, place the support frame in artifical hole digging pile top, carry out the sediment clear transportation through setting up hoisting device operation sediment fill on the support frame to remove to border position directly over the sediment fill after will promoting through sliding platform by artifical hole digging pile, thereby can be convenient for the processing of sediment soil in the sediment fill, need not the often half-body unsettled sediment fill of operating personnel just can be got above the well head, greatly improved the security. The manual hole digging pile muck vertical transportation device has the advantages of safety, stability, convenience in construction, flexibility in assembly, time and labor saving in operation, no terrain limitation and the like; the steel channel rails arranged on two sides are more convenient for horizontal transportation of the slag-soil bucket, so that the operation of personnel is convenient.
Drawings
Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The drawings are only for purposes of illustrating the preferred embodiments and are not to be construed as limiting the invention. Also, like reference numerals are used to refer to like parts throughout the drawings. In the drawings:
fig. 1 is a schematic structural view of an operation frame for vertically transporting dregs of a manual hole digging pile provided by the embodiment of the utility model.
Detailed Description
Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be embodied in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict. The present invention will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
Referring to fig. 1, the embodiment provides an operation frame for vertically transporting dregs of a manual hole digging pile, which includes a support frame 1, a lifting device 2 and a sliding platform 3, wherein the support frame 1 is a frame structure; the lifting device 2 is arranged at the center of the upper part of the support frame 1 and is used for lifting and pulling the slag hopper; the sliding platform 3 is arranged on the lower side inside the support frame 1 in the horizontal direction and is in slidable connection with the support frame 1, and the sliding platform 3 is used for sliding the slag bucket to the lower side of the slag bucket after the slag bucket is lifted out of the hole digging pile by the lifting device 2 and enabling the slag bucket to be placed on the upper side surface of the slag bucket so as to drive the slag bucket to move to a preset position.
Specifically, the support frame 1 comprises longitudinal beams 11 and vertical beams 12, two rows of the longitudinal beams 11 are arranged side by side along the vertical direction, the longitudinal beams 11 in each row are arranged in parallel, and the longitudinal beams 11 in the upper row and the lower row are respectively arranged oppositely; two rows of the vertical beams 12 are arranged along the vertical direction, two vertical beams 12 are arranged in each row, and each longitudinal beam 11 is respectively connected with the lower parts of the two vertical beams 12; two rows of the vertical beams 12 are arranged oppositely in pairs, and the upper ends of the vertical beams 12 are connected together in sequence through the longitudinal beams 11. The longitudinal beams 11 and the vertical beams 12 are welded to each other to form the support frame 1 of a square frame structure.
In particular, the lifting device 2 is arranged between the two longitudinal beams 11 located at the top.
Specifically, the vertical beam 12 is a telescopic structure for jumping the set height of the lifting device 2.
Specifically, the vertical beam 12 includes a sleeve rod 121 and an insertion rod 122, and the insertion rod 122 is inserted into the sleeve rod 121, extends and retracts in the installation direction of the sleeve rod 121, and is fixed by a bolt provided on a side wall of the sleeve rod 121.
Specifically, the lifting device 2 comprises a connecting rod 21, a wire roller 22 and a cable 23, wherein the wire roller 22 is sleeved in the middle of the connecting rod 21 and rotates by taking the connecting rod 21 as a rotating shaft, the cable 23 is wound on the wire roller 22, and the lower end of the cable 23 is provided with a slag bucket hook 24 for hanging a slag bucket; two ends of the connecting rod 21 are respectively connected with one longitudinal beam 11.
Specifically, two cross beams 13 are arranged between two longitudinal beams 11 positioned at the lower part, the two cross beams 13 keep a preset distance, and the cross beams 13 are perpendicularly intersected with the longitudinal beams 11; two slide rails 14 are arranged on the upper side of the two cross beams 13 side by side, the two slide rails 14 are vertically intersected with the cross beams 13, a preset distance is kept between the two slide rails 14, and the sliding platform 3 is arranged on the slide rails 14 and slides along the arrangement direction of the slide rails 14. The slide rails 14 may be directly provided on the upper side of the cross beams 13, while the slide rails 14 may also be mounted by means of fixed beams 15 provided on the lower part of the vertical beams 12, i.e. the slide rails 14 are placed on the fixed beams 15.
Specifically, the sliding platform 3 includes a placing frame 31 and pulleys 32, the placing frame 31 is a square structure and is used for placing the slag bucket, the pulleys 32 are arranged at four corners of the lower side of the placing frame 31, and the pulleys 32 are slidably connected with the sliding rail 14 and slide along the arrangement direction of the sliding rail 14.
Specifically, the sliding platform 3 includes a pull rod 33, one end of the pull rod 33 is connected to the placing frame 31, and the pull rod 33 is used for pulling the placing frame 31 to move.
In particular, the rack 31 is made of welded steel tubes.
It can be seen that, through setting up the support frame, hoisting device and slide bracket, place the support frame in artifical hole digging pile top, carry out the sediment soil clearance through setting up hoisting device operation sediment fill on the support frame to the sediment fill after will promoting through slide bracket is moved to border position by artifical hole digging pile directly over, thereby can be convenient for the processing of sediment soil in the sediment fill, need not the often half-body unsettled sediment fill of operating personnel and just can get in well head top, greatly improved the security. The manual hole digging pile muck vertical transportation device has the advantages of safety, stability, convenience in construction, flexibility in assembly, time and labor saving in operation, no terrain limitation and the like; the steel channel rails arranged on two sides are more convenient for horizontal transportation of the slag-soil bucket, so that the operation of personnel is convenient.
Above-mentioned embodiment is when concrete implementation, and this embodiment device is for assembling type transportation support body: the material is prepared from the following materials: phi 40 multiplied by 2 steel pipes with length of 900mm and 4 pieces; 2 steel pipes with the diameter of 30 multiplied by 2 and the length of 600 mm; 5 phi 30 multiplied by 2 steel pipes 500mm long; 2 phi 30 multiplied by 2 steel pipes with the length of 1100 mm; phi 30 multiplied by 2 steel pipes with the length of 900mm and 4 pieces; 5 phi 40 multiplied by 2 steel pipes 60mm long; 1 steel pipe with the diameter of 30 multiplied by 2 and the length of 1500 mm; the section size is 80mm, and the length is 2500 mm; the section size is 50mm, and the length is 1500 mm; l20 is angle steel 800mm long 2; 3 cun bearing directional wheel 4. The specific assembly welding mode of the device can be manufactured according to the structure shown in figure 1.
The slag bucket is placed to the bottom of a well in a specific operation mode, an operator on the well after filling the slag bucket lifts the slag bucket to the position above a well mouth, the moving platform is moved to the position below the slag bucket through the pull rod on one hand, the pull rod is pulled to the edge of a pile well after the slag bucket is placed on the platform, and the operator can take the slag bucket, so that the slag bucket is safe and convenient.
It will be apparent to those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (10)

1. The utility model provides a perpendicular transportation handling frame of manual hole digging pile dregs, its characterized in that includes:
the supporting frame is of a frame structure;
the lifting device is arranged at the center of the upper part of the support frame and is used for lifting the slag hopper;
the sliding platform is arranged on the lower side inside the supporting frame in the horizontal direction and is connected with the supporting frame in a sliding mode, and the sliding platform is used for sliding the slag bucket to the lower side of the slag bucket after the slag bucket is lifted out of the hole digging pile by the lifting device and enabling the slag bucket to be placed on the upper side face of the slag bucket to drive the slag bucket to move to a preset position.
2. The vertical transportation handling frame of manual hole digging pile dregs according to claim 1, wherein the supporting frame comprises longitudinal beams and vertical beams, two rows of the longitudinal beams are arranged side by side along the vertical direction, the longitudinal beams in each row are arranged in parallel, and the longitudinal beams in the upper row and the lower row are respectively arranged in opposite; the vertical beams are arranged in two rows along the vertical direction, two vertical beams are arranged in each row, and each longitudinal beam is connected with the lower parts of the two vertical beams respectively; two rows of the vertical beams are arranged oppositely in pairs respectively, and the upper end parts of the vertical beams are connected together in sequence through the longitudinal beams respectively.
3. The manual dug pile muck vertical transport handling frame of claim 2, wherein the lifting device is disposed between the two longitudinal beams at an upper portion.
4. The vertical transportation handling frame of manual dug pile dregs as claimed in claim 2, wherein the vertical beam is a telescopic structure for adjusting the setting height of the lifting device.
5. The vertical transportation handling frame of manual hole digging pile muck according to claim 4, wherein the vertical beam comprises a loop bar and an insertion bar, the insertion bar is inserted into the loop bar, extends and retracts along the arrangement direction of the loop bar, and is fixed through a bolt arranged on the side wall of the loop bar.
6. The manual hole digging pile muck vertical transportation handling frame according to claim 2, wherein the lifting device comprises a connecting rod, a wire roller and a cable, the wire roller is sleeved in the middle of the connecting rod and rotates by taking the connecting rod as a rotating shaft, the cable is wound on the wire roller, and a muck bucket hook is arranged at the lower end of the cable and used for hanging a muck bucket; and two ends of the connecting rod are respectively connected with one longitudinal beam.
7. The manual hole digging pile muck vertical transportation handling frame according to claim 2, wherein two cross beams are arranged between two longitudinal beams positioned at the lower part, the two cross beams keep a preset distance, and the cross beams and the longitudinal beams are vertically intersected; the upper side of the two cross beams is provided with two slide rails side by side, the two slide rails are vertically intersected with the cross beams, a preset distance is kept between the two slide rails, and the sliding platform is arranged on the slide rails and slides along the arrangement direction of the slide rails.
8. The vertical transportation handling frame of manual hole digging pile muck according to claim 7, wherein the sliding platform comprises a placing frame and pulleys, the placing frame is of a square structure and is used for placing the muck bucket, the pulleys are arranged at four corners of the lower side of the placing frame, and the pulleys are slidably connected with the sliding rails and slide along the arrangement direction of the sliding rails.
9. The vertical transportation handling frame of manual hole digging pile muck according to claim 8, wherein the sliding platform comprises a pull rod, one end of the pull rod is connected with the placing frame, and the pull rod is used for pulling the placing frame to move.
10. The manual hole digging pile muck vertical transportation handling frame according to claim 8, wherein the placement frame is made of steel pipes by welding.
CN202022836756.3U 2020-11-30 2020-11-30 Manual hole digging pile residue soil vertical transportation operation frame Active CN213897122U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022836756.3U CN213897122U (en) 2020-11-30 2020-11-30 Manual hole digging pile residue soil vertical transportation operation frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022836756.3U CN213897122U (en) 2020-11-30 2020-11-30 Manual hole digging pile residue soil vertical transportation operation frame

Publications (1)

Publication Number Publication Date
CN213897122U true CN213897122U (en) 2021-08-06

Family

ID=77124074

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022836756.3U Active CN213897122U (en) 2020-11-30 2020-11-30 Manual hole digging pile residue soil vertical transportation operation frame

Country Status (1)

Country Link
CN (1) CN213897122U (en)

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