CN218060308U - Horizontal adjustable platform - Google Patents

Horizontal adjustable platform Download PDF

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Publication number
CN218060308U
CN218060308U CN202222132407.2U CN202222132407U CN218060308U CN 218060308 U CN218060308 U CN 218060308U CN 202222132407 U CN202222132407 U CN 202222132407U CN 218060308 U CN218060308 U CN 218060308U
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China
Prior art keywords
roof
intermediate level
bottom plate
platform
adjusting part
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Active
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CN202222132407.2U
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Chinese (zh)
Inventor
曹薛平
郝文广
鲍玉琨
刘凯
高灵通
喻琪
张晓阳
顾建龙
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Jiangsu Tongzhou Foundation Engineering Co ltd
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Jiangsu Tongzhou Foundation Engineering Co ltd
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Priority to CN202222132407.2U priority Critical patent/CN218060308U/en
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Abstract

The utility model relates to a horizontal adjustable platform, comprising a base plate, set up the intermediate level on the bottom plate and set up the roof on the intermediate level, bottom plate, intermediate level and roof on all set up the through-hole that is coaxial setting, be provided with the first adjusting part that can adjust the intermediate level along Y axle direction between bottom plate and the intermediate level, through setting up the bottom plate, the intermediate level, the roof, first adjusting part and second adjusting part, when using, place this platform in the top of stake hole, and place omnipotent platform on the roof, first adjusting part can drive the intermediate level, roof and omnipotent platform move along Y axle direction, make the central point of omnipotent platform adjust along Y axle, second adjusting part can drive roof and omnipotent platform and move along X axle direction, make the central point of omnipotent platform adjust along X axle, the central point that makes omnipotent platform and the central point of stake hole be coaxial setting, make the staff can squeeze into in the stake hole perpendicularly when the pile, avoid the slope of the pile body.

Description

Horizontal adjustable platform
Technical Field
The utility model belongs to the technical field of underground space engineering reverse construction method, a steel pipe capital position level adjustable platform is related to.
Background
The technical core of the underground space 'reverse construction method' is that high-precision construction of 'one column and one pile' is required, and the high-precision positioning requirement of the middle upright column is met by a precise and strict verticality adjusting positioning technology. Usually, the method includes "first insertion method" and "second insertion method"; in order to facilitate construction, a construction method of horizontally positioning and supporting a full-slewing drilling machine by a universal platform to realize verticality positioning is often adopted. Usually, when a worker adjusts the central point of the universal platform and the central point of the pile hole, the worker manually pushes the universal platform, so that the error between the two central points is large, and the horizontal positioning deviation value is large.
Aiming at the problem of complaint above, the horizontal positioning adjusting platform which adopts the hydraulic micro-motion technology and can be used for independently adjusting the universal platform with high precision to carry out positioning in the horizontal direction and matching with the verticality of the full-rotation drilling machine is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problems of the prior art and providing a horizontal adjustable platform.
The purpose of the utility model can be realized by the following technical proposal: the utility model provides a horizontal adjustable platform, includes the bottom plate, sets up intermediate level on the bottom plate and sets up the roof in the intermediate level, bottom plate, intermediate level and roof on all set up the through-hole that is coaxial setting, bottom plate and intermediate level between be provided with the first adjusting part that can adjust the intermediate level along the Y axle direction, intermediate level and top layer between be provided with the second adjusting part that can adjust the roof along the X axle direction.
Through setting up the bottom plate, the intermediate level, the roof, first adjusting part and second adjusting part, when using, place this platform in the top in stake hole, and place omnipotent platform on the roof, first adjusting part can drive the intermediate level, roof and omnipotent platform move along Y axle direction, make the central point of omnipotent platform adjust along Y axle, second adjusting part can drive roof and omnipotent platform and move along X axle direction, make the central point of omnipotent platform adjust along X axle, make the central point of omnipotent platform and the central point of stake hole be coaxial setting, make in the staff can squeeze into the stake hole perpendicularly when piling, avoid the slope of the pile body.
In foretell adjustable platform of level, first regulating part including set up the bottom installation piece on the bottom plate, set up first middle part installation piece and the first driving cylinder on the intermediate level, first middle part installation piece on be provided with the middle part diaphragm that is used for installing the first driving cylinder, the bottom installation piece on be provided with the bottom riser, the output of first driving cylinder be connected with the bottom riser and first driving cylinder is the horizontality setting.
In foretell adjustable platform of level, the second regulating part including set up the second mid-mounting piece in the intermediate level, set up bottom installation piece and the second driving cylinder at the top layer, the top installation piece on be provided with the top diaphragm that is used for installing the second driving cylinder, the output of second driving cylinder be connected with the middle part riser and the second driving cylinder is the horizontality setting.
In the above horizontal adjustable platform, a first auxiliary sliding assembly is arranged between the bottom plate and the middle layer, the first auxiliary sliding assembly includes a first sliding groove formed in the bottom plate along the Y-axis direction and a first sliding block arranged at the bottom of the middle layer, and the first sliding block is located in the first sliding groove and slides horizontally in the first sliding groove.
In the above horizontal adjustable platform, a second auxiliary sliding assembly is arranged between the middle layer and the top plate, the second auxiliary sliding assembly includes a second sliding groove arranged in the middle layer along the X-axis direction and a second sliding block arranged at the bottom of the top layer, and the second sliding block is located in the second sliding groove and horizontally slides in the second sliding groove.
In the above horizontal adjustable platform, the two sides of the bottom plate, the middle layer and the top plate are all provided with hanging lugs.
In the above horizontal adjustable platform, the top plate is provided with a positioning hole for placing a universal platform.
Compared with the prior art, the utility model discloses a set up the bottom plate, the intermediate level, the roof, first adjusting part and second adjusting part, when using, place this platform in the top in stake hole, and place omnipotent platform on the roof, first adjusting part can drive the intermediate level, roof and omnipotent platform are along the motion of Y axle direction, make the central point of omnipotent platform adjust along the Y axle, second adjusting part can drive roof and omnipotent platform and move along X axle direction, make the central point of omnipotent platform adjust along the X axle, the central point that makes omnipotent platform is coaxial setting with the central point in stake hole, make in the staff can squeeze into the stake hole perpendicularly when the pile, avoid the slope of the pile body.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a side view of the present invention;
fig. 3 is a top view of the bottom layer of the present invention;
fig. 4 is a plan view of the intermediate layer of the present invention.
In the figure, 1, a bottom plate; 2. an intermediate layer; 3. a top plate; 4. a through hole; 5. a first adjustment assembly; 51. a bottom mounting block; 52. a first mid-mounting block; 53. a first drive cylinder; 54. a middle transverse plate; 55. a bottom riser; 6. a second adjustment assembly; 61. a second middle mounting block; 62. a top mounting block; 63. a second drive cylinder; 64. a top transverse plate; 65. a middle vertical plate; 7. a first auxiliary slide assembly; 71. a first chute; 72. A first slider; 8. a second auxiliary slide assembly; 71. a second chute; 72. a second slider; 9. hanging a lug; 10. and (7) positioning the holes.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
Examples
As shown in fig. 1 to 4, a horizontal adjustable platform comprises a bottom plate 1, an intermediate layer 2 arranged on the bottom plate 1 and a top plate 3 arranged on the intermediate layer 2, wherein through holes 4 which are coaxially arranged are formed in the bottom plate 1, the intermediate layer 2 and the top plate 3, a first adjusting component 5 which can adjust the intermediate layer 2 along the Y-axis direction is arranged between the bottom plate 1 and the intermediate layer 2, the first adjusting component 5 is positioned on two sides of a bottom layer, and each side is provided with 4 groups.
First regulating part 5 including setting up bottom installation piece 51 on bottom plate 1, setting up first middle part installation piece 52 and the first actuating cylinder 53 on the intermediate level 2, first middle part installation piece on be provided with the middle part diaphragm 54 that is used for installing first actuating cylinder 53, bottom installation piece 51 on be provided with bottom riser 55, the output of first actuating cylinder 53 be connected with bottom riser 55 and first actuating cylinder 53 is the horizontality setting.
The improved sliding mechanism is characterized in that a first auxiliary sliding assembly 7 is arranged between the bottom plate 1 and the middle layer 2, the first auxiliary sliding assembly 7 comprises a first sliding groove 71 arranged on the bottom plate 1 along the Y-axis direction and a first sliding block 72 arranged at the bottom of the middle layer 2, and the first sliding block 72 is positioned in the first sliding groove 71 and horizontally slides in the first sliding groove 71. Through mutually supporting of first spout 71 and first slider 72, can improve the smoothness nature of intermediate level 2 when sliding, and the length of first spout 71 can carry on spacingly to sliding distance, and its sliding distance is the length of first spout 71 promptly.
A second adjusting component 6 capable of adjusting the top plate 3 along the X-axis direction is arranged between the middle layer 2 and the top layer. The second adjusting components 6 are located on both sides of the middle layer 2, and each side is provided with 4 sets.
The second adjusting component 6 includes a second middle mounting block 61 arranged on the middle layer 2, a bottom mounting block 51 arranged on the top layer, and a second driving cylinder 63, the top mounting block 62 is provided with a top transverse plate 64 for mounting the second driving cylinder 63, the output end of the second driving cylinder 63 is connected with a middle vertical plate 65, and the second driving cylinder 63 is arranged in a horizontal state.
A second auxiliary sliding assembly 8 is arranged between the middle layer 2 and the top plate 3, the second auxiliary sliding assembly 8 comprises a second sliding groove 71 arranged in the middle layer 2 along the X-axis direction and a second sliding block 72 arranged at the bottom of the top layer, and the second sliding block 72 is positioned in the second sliding groove 71 and horizontally slides in the second sliding groove 71. Through mutually supporting of second spout 71 and second slider 72, can improve the smoothness nature of top layer when sliding, and the length of first spout 71 can carry on spacingly to sliding distance, and its sliding distance is the length of second spout 71 promptly.
The two sides of the bottom plate 1, the middle layer 2 and the top plate 3 are all provided with hanging lugs 9. The hangers 9 are arranged between every two plates, so that when the device is lifted, a rope passes through the hangers 9, the lifting stability is improved, and the safety is improved.
The top plate 3 is provided with a positioning hole 10 for placing a universal platform. The supporting legs of the universal platform can be placed in the positioning holes 10 due to the positioning holes 10, rapid positioning can be achieved when the universal platform is placed, and the universal platform can be placed to find displacement after being placed.
The working principle is as follows: when using, place the top at the stake hole with this platform, and place omnipotent platform on roof 3, first adjusting part 5 can drive intermediate level 2, roof 3 and omnipotent platform move along Y axle direction, make the central point of omnipotent platform adjust along Y axle, second adjusting part 6 can drive roof 3 and omnipotent platform and move along X axle direction, make the central point of omnipotent platform adjust along X axle, the central point that makes omnipotent platform and the central point of stake hole are coaxial setting, make in the staff can squeeze into the stake hole perpendicularly when piling, avoid the slope of the pile body.
The utility model discloses a set up bottom plate 1, intermediate level 2, roof 3, first adjusting part 5 and second adjusting part 6, when using, place the top in stake hole with this platform, and place omnipotent platform on roof 3, first adjusting part 5 can drive intermediate level 2, roof 3 and omnipotent platform move along Y axle direction, make the central point of omnipotent platform adjust along Y axle, second adjusting part 6 can drive roof 3 and omnipotent platform move along X axle direction, make the central point of omnipotent platform adjust along X axle, the central point that makes omnipotent platform is coaxial setting with the central point in stake hole, make in the staff can squeeze into the stake hole perpendicularly when the pile driving, avoid the slope of the pile body.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (7)

1. The utility model provides an adjustable platform of level, its characterized in that includes bottom plate (1), sets up intermediate level (2) on bottom plate (1) and sets up roof (3) on intermediate level (2), bottom plate (1), intermediate level (2) and roof (3) on all set up through-hole (4) that are coaxial setting, bottom plate (1) and intermediate level (2) between be provided with first adjusting part (5) that can adjust intermediate level (2) along Y axle direction, intermediate level (2) and roof between be provided with second adjusting part (6) that can adjust roof (3) along X axle direction.
2. A horizontally adjustable platform according to claim 1 wherein: first adjusting part (5) including setting up bottom installation piece (51) on bottom plate (1), setting up first middle part installation piece (52) and first actuating cylinder (53) on intermediate level (2), first middle part installation board on be provided with middle part diaphragm (54) that are used for installing first actuating cylinder (53), bottom installation piece (51) on be provided with bottom riser (55), the output of first actuating cylinder (53) be connected with bottom riser (55) and first actuating cylinder (53) are the horizontality setting.
3. A horizontally adjustable platform according to claim 2 wherein: second adjusting part (6) including set up second mid-mounting piece (61) on intermediate level (2), set up top installation piece (62) and second driving cylinder (63) at roof (3), top installation piece (62) on be provided with top diaphragm (64) that are used for installing second driving cylinder (63), second mid-mounting piece (61) on be provided with middle part riser (65), the output of second driving cylinder (63) be connected with middle part riser (65) and second driving cylinder (63) are the horizontality setting.
4. A horizontally adjustable platform according to claim 3 wherein: the improved sliding mechanism is characterized in that a first auxiliary sliding assembly (7) is arranged between the bottom plate (1) and the middle layer (2), the first auxiliary sliding assembly (7) comprises a first sliding groove (71) formed in the bottom plate (1) along the Y-axis direction and a first sliding block (72) arranged at the bottom of the middle layer (2), and the first sliding block (72) is located in the first sliding groove (71) and horizontally slides in the first sliding groove (71).
5. A horizontally adjustable platform according to claim 4 wherein: the middle level (2) and roof (3) between be provided with second auxiliary sliding subassembly (8), second auxiliary sliding subassembly (8) including set up second spout (81) in middle level (2) and set up second slider (82) in the roof bottom along X axle direction, second slider (82) be located second spout (81) and horizontal slip in second spout (81).
6. A horizontally adjustable platform according to claim 5 wherein: both sides of the bottom plate (1), the middle layer (2) and the top plate (3) are provided with hangers (9).
7. A horizontally adjustable platform according to claim 6 wherein: and a positioning hole (10) for placing the universal platform is formed in the top plate (3).
CN202222132407.2U 2022-08-12 2022-08-12 Horizontal adjustable platform Active CN218060308U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222132407.2U CN218060308U (en) 2022-08-12 2022-08-12 Horizontal adjustable platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222132407.2U CN218060308U (en) 2022-08-12 2022-08-12 Horizontal adjustable platform

Publications (1)

Publication Number Publication Date
CN218060308U true CN218060308U (en) 2022-12-16

Family

ID=84404777

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222132407.2U Active CN218060308U (en) 2022-08-12 2022-08-12 Horizontal adjustable platform

Country Status (1)

Country Link
CN (1) CN218060308U (en)

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