CN211370284U - Drilling machine - Google Patents

Drilling machine Download PDF

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Publication number
CN211370284U
CN211370284U CN202020011931.2U CN202020011931U CN211370284U CN 211370284 U CN211370284 U CN 211370284U CN 202020011931 U CN202020011931 U CN 202020011931U CN 211370284 U CN211370284 U CN 211370284U
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China
Prior art keywords
plate
supporting
piece
drilling machine
side stoppers
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CN202020011931.2U
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Chinese (zh)
Inventor
郑胜义
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Zhejiang Tianshun Mining Equipment Co ltd
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Zhejiang Tianshun Mining Equipment Co ltd
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Priority to CN202020011931.2U priority Critical patent/CN211370284U/en
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Abstract

The utility model discloses a drilling machine, which comprises a drilling machine body; further comprising: a slider for mounting the drill body; the side wall of the mounting rack is uniformly provided with a plurality of first through holes, and the middle part of the mounting rack is provided with a first through groove; the sliding piece can move back and forth along the mounting rack; the driving piece is connected to the mounting rack, is connected with the sliding piece and can drive the sliding piece to move back and forth; the at least two supporting frames are used for supporting the mounting frame; the automatic lifting device is reasonable in structure, overcomes the problem of high difficulty in manual operation in the prior art, saves time and labor in use, is favorable for improving the working efficiency, and has good practicability.

Description

Drilling machine
Technical Field
The utility model relates to a drilling equipment technical field, specific rig that says so.
Background
The drilling machine is widely used for drilling of prospecting, railways, highways, bridges, water conservancy and hydropower, tunnels, wells, anchor rods, buildings and the like; in the building industry, a drilling machine is used for drilling holes in the ground and the wall, a pneumatic hand-held drilling machine is generally adopted, such as model ZQS-35/1.5, and when an operator operates the drilling machine, two hands respectively grab handles to drill holes; in specific use, the following defects still exist: because two handles are usually in a parallel state, when an operator drills a hole in a wall, two arms need to be always kept in a horizontal state, the pneumatic handheld drilling machine has certain weight, and the operator cannot keep the pneumatic handheld drilling machine durably in the operation, so that inconvenience is brought to use, and the working efficiency is low.
Disclosure of Invention
To the above-mentioned weak point that exists among the correlation technique, the utility model aims at providing a rig to solve the above-mentioned problem that exists among the prior art.
Realize the utility model discloses the technical scheme of purpose is: a drilling machine comprises a drilling machine body; further comprising:
a slider for mounting the drill body;
the side wall of the mounting frame is uniformly provided with a plurality of first through holes, and the middle part of the mounting frame is provided with a first through groove used for connecting the sliding piece; the sliding piece can move back and forth along the mounting rack;
the driving piece is connected to the mounting rack, is connected with the sliding piece and can drive the sliding piece to move back and forth;
and two support frames for supporting the mounting frame.
Further: the slider includes:
the four sliding blocks are connected to the mounting frame in a sliding mode;
the first plate is connected to the four sliding blocks and used for mounting the drilling machine body;
the L-shaped block is connected to the upper surface of the first plate, a second through hole is formed in the side wall of the L-shaped block, and a first notch is formed in the top of the L-shaped block; the second through hole is used for one end of the driving piece to pass through and is connected to one end of the driving piece through a nut to be positioned with the L-shaped block; the first notch is used for being connected with an ear plate on the drilling machine body.
Further: the mounting bracket comprises a first part and a second part, and the second part is connected with the first part;
the first part comprises two first side stoppers with cross sections in a [ -shape, and the side walls are provided with a plurality of first through holes;
two second plates connected to one ends of the two first side stoppers;
a third plate connected to the upper surfaces of the other ends of the two first side stoppers, and the edges of the third plate are aligned with the edges of the two first side stoppers;
a fourth plate connected to the lower surfaces of the other ends of the two first side stoppers, and the edge of the fourth plate protrudes outside the edges of the two first side stoppers to hold one end of the second portion;
the two fifth plates are respectively connected to the inner walls of the first side blocking pieces, protrude out of the two first side blocking pieces and are used for being clamped with one end of the second part;
the second part comprises two second side blocking pieces with cross sections in a [ -shape, and the side walls are provided with a plurality of first through holes for being in sliding connection with the sliding pieces;
two sixth plates connected to one ends of the two second side stoppers;
and the first bearing piece is connected to the other ends of the two second side blocking pieces, is attached to the third plate and is used for being connected to the driving piece.
Further: the driving piece is also connected to the tops of the two first side blocking pieces through a second supporting piece;
the second supporting piece and the first supporting piece have the same structure and both comprise a seventh plate which is respectively connected with the two first side blocking pieces or the two second side blocking pieces; the bearing block is connected to the seventh plate, the upper surface of the bearing block is provided with a groove, and the groove is used for bearing the driving piece; and the pressing piece is connected to the bearing block and is used for pressing the driving piece.
Further: the support frame includes: the two ends of the supporting shaft penetrate out of the first through hole;
the two vertical supporting columns are supported on the ground, a plurality of third through holes are vertically arranged on the side wall of each vertical supporting column at intervals, the third through holes are inserted into the end parts of the supporting shafts and are connected with a first locking bolt through the end parts of the supporting shafts to lock the vertical supporting columns and the supporting shafts;
the two first limiting pieces are connected to the supporting shaft and are used for being attached to the side wall of the mounting rack;
the second limiting piece is connected to the supporting shaft and arranged in the first through groove;
and one end of the inclined supporting column is connected to the second limiting part, and the other end of the inclined supporting column is supported on the ground.
Further: the first stopper includes: the first sleeve is sleeved on the supporting shaft; and at least one second locking bolt connected to the first sleeve and used for abutting against the support shaft.
Further: the second stopper includes: the second sleeve is sleeved on the supporting shaft; the third locking bolt is connected to the second sleeve and used for abutting against the support shaft; and the pipe fitting is connected to the second sleeve and is used for being inserted into the inclined supporting column.
Further: the tilt support column includes: an eighth plate in contact with the ground;
one end of the inclined pipe fitting is connected to the eighth plate, the other end of the inclined pipe fitting is sleeved on the pipe fitting, and a second notch is formed in one end, sleeved on the pipe fitting, of the inclined pipe fitting;
the two ninth plates are connected to the inclined pipe fitting and symmetrically arranged on two sides of the second notch;
and the fourth locking bolt is connected to the two ninth plates and used for clamping the inclined pipe fitting and the pipe fitting.
By adopting the technical scheme, the utility model discloses following beneficial effect has: compared with the related art, the drilling machine has the advantages that the mounting frame is connected to the support frame, the drilling machine body is connected to the mounting frame through the sliding piece, and the driving piece is connected to the mounting frame and connected with the sliding piece; during implementation, the position of the mounting frame is adjusted in the up-down direction, the front direction and the rear direction through the support frame according to the position to be drilled on the wall, so that the position of the drilling machine body is adjusted, a drill bit on the drilling machine body can be aligned with the position to be drilled, then the drilling machine body is opened through the fact that one end of the mounting frame is attached to the wall, the driving piece pushes the sliding piece, the drilling machine body is enabled to move from left to right, the drilling machine body slowly approaches the wall along the mounting frame, the wall is drilled, operation is relatively convenient, and the drilling quality is relatively good; the problem of the prior art that the manual operation degree of difficulty is big is overcome, be favorable to improving work efficiency.
Drawings
Fig. 1 is a schematic three-dimensional structure diagram of an embodiment of the present invention;
fig. 2 is a schematic connection diagram of the sliding member and the driving member in the embodiment of the present invention;
fig. 3 is an exploded view of a slider in an embodiment of the present invention;
fig. 4 is an exploded view of a mounting bracket in an embodiment of the invention;
fig. 5 is a schematic three-dimensional structure of a second support member according to an embodiment of the present invention;
fig. 6 is a schematic three-dimensional structure diagram of the supporting frame in the embodiment of the present invention;
fig. 7 is a partially enlarged schematic view of a portion a in fig. 6 according to the present invention;
fig. 8 is an exploded view of a second limiting member and an inclined supporting column according to an embodiment of the present invention;
fig. 9 is a schematic structural diagram of a drilling machine body in the prior art of the present invention;
in the figure: 10. the drilling machine comprises a drilling machine body, a sliding piece 20, a sliding block 21, a sliding block 22, a first plate 23, an L-shaped block 231, a second through hole 232, a first notch 30, a mounting frame 31, a first through hole 32, a first through groove 33, a first part 331, a first side blocking piece 332, a second plate 333, a third plate 334, a fourth plate 335, a fifth plate 34, a second part 341, a second side blocking piece 342, a sixth plate 343, a first supporting piece 40, a driving piece 41, a nut 42, a second supporting piece 421, a seventh plate 422, a supporting piece 422, a 422-1 groove 423, a pressing piece 50, a supporting frame 51, a supporting shaft 52, a vertical supporting column 521, a third through hole 53, a first locking bolt 54, a first limiting piece 541, a first set 542, a second locking bolt 542, a second limiting piece 552, a second limiting piece 551, a third locking bolt, 553. pipe, 56 oblique support column, 561 eighth board, 562 oblique pipe, 562-1 second gap, 563 ninth board, 564 fourth locking bolt.
Detailed Description
In order to make the content of the present invention more clearly understood, the present invention will be further described in detail with reference to the following embodiments in conjunction with the accompanying drawings;
example (b):
see fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6, fig. 7, fig. 8, fig. 9; a drilling machine comprises a drilling machine body 10; further comprising:
a slider 20 for mounting the drill body 10;
a mounting frame 30, a plurality of first through holes 31 are uniformly distributed on the side wall, and a first through groove 32 is arranged in the middle part and used for connecting the sliding part 20; the slide 20 can move back and forth along the mounting frame 30;
a driving member 40 connected to the mounting frame 30 and connected to the sliding member 20, and capable of driving the sliding member 20 to move back and forth;
and two support brackets 50 for supporting the mounting bracket 30;
specifically, in practice, the mounting frame 30 is connected to the support frame 50, the drilling machine body 10 is connected to the mounting frame 30 through the sliding piece 20, and the driving piece 40 is connected to the mounting frame 30 and connected with the sliding piece 20; during implementation, the position of the mounting frame 30 is adjusted in the up, down, front and back directions through the support frame 50 according to the position of a hole to be drilled on the wall, so that the position of the drilling machine body 10 is adjusted, a drill bit on the drilling machine body 10 can be aligned with the position of the hole to be drilled, then the drilling machine body 10 is opened by enabling one end of the mounting frame 30 to be attached to the wall, the driving piece 40 pushes the sliding piece 20, the drilling machine body 10 is enabled to slowly approach the wall along the mounting frame 30 from left to right, the operation is relatively convenient, and the drilling quality is relatively good; therefore, the problem of high difficulty in manual operation in the prior art is solved, and the improvement of the working efficiency is facilitated.
The following is a detailed description of the respective constituent elements and the connection relationship:
specifically, in fig. 1 and 9, the drilling machine body 10 adopts a structure in the prior art, such as an ZQS-35/1.5 type pneumatic drilling machine, and a rectangular connecting steel plate 11 is welded on the contact surface of the drilling machine body 10 and the first plate 22 for penetrating a bolt with the first plate 22; a lug plate 12 is welded on the side wall of the drilling machine body 10, and the lug plate 12 is inserted into the first gap 232 and is connected with the L-shaped block 23 through a bolt; the drilling machine body 10 is connected to the sliding part 20, and the drilling machine body 10 can be detached from the sliding part 20 and used independently, so that the operation flexibility is good; a person skilled in the art, having the benefit of the present disclosure, can directly and unambiguously know how to set up the drill body 10 without any creative effort and without any encumbrance;
specifically, in fig. 1, 2, and 3, the slider 20 includes:
four sliding blocks 21 slidably connected to the mounting frame 30;
a first plate 22 connected to the four sliding blocks 21 for mounting the drill body 10;
and an L-shaped block 23 connected to the upper surface of the first plate 22, having a second through hole 231 on the sidewall and a first notch 232 on the top; the second through hole 231 is used for one end of the driving member 40 to pass through and is connected to one end of the driving member 40 through a nut 41 to be positioned with the L-shaped block 23; the first notch 232 is used for connecting with an ear plate on the drilling machine body 10;
in implementation, the cross section of the sliding block 21 is approximately in a [ "shape and is in sliding fit with the convex strips on the mounting rack 30;
the first plate 22 is a square steel plate and is connected with the sliding block 21 through a bolt, and an installation platform of the drilling machine body 10 is formed on the installation frame 30;
the L-shaped block 23 is formed by assembling and welding two steel plates to form an L-shaped structure, and then is welded with the first plate 22;
during installation, the four sliding blocks 21 are respectively clamped on the mounting frame 30, and then the first plate 22 and the L-shaped block 23 are welded and then are connected to the sliding blocks 21 through the bolts penetrating through the first plate 22; the thread section at the end part of the telescopic shaft on the driving piece 40 passes through the second through hole 231 and is in threaded connection with the thread section at the end part of the telescopic shaft through the nut 41, so that the telescopic shaft is tightly attached to the L-shaped block 23; the drilling machine body 10 is connected with the first plate 22 through a bolt by a cuboid connecting steel plate 11, and the drilling machine body 10 is reliably connected on the sliding piece 20 by welding an ear plate 12, inserting the ear plate 12 into the first notch 232 and connecting the L-shaped block 23 through the bolt;
specifically, in fig. 1 and 4, the mounting bracket 30 includes a first portion 33 and a second portion 34, the second portion being connected to the first portion 33;
wherein, the first part 33 comprises two first side stoppers 331 with cross sections in the shape of [ ", the side walls are provided with a plurality of first through holes 31;
two second plates 332 connected to one ends of the two first side stoppers 331;
a third plate 333 attached to the upper surfaces of the other ends of the two first side stoppers 331, and edges of the third plate 333 are aligned with the edges of the two first side stoppers 331;
a fourth plate 334 connected to the lower surface of the other end of the two first side stoppers 331, and the edge of the fourth plate 334 is protruded outside the edges of the two first side stoppers 331 for holding one end of the second portion 34;
and two fifth plates 335 respectively connected to the inner walls of the first side stoppers 331, and protruding outside the two first side stoppers 331, for being engaged with one end of the second portion 34;
wherein, the second part 34 comprises two second side stoppers 341 with cross section in "[" shape, the side walls are provided with a plurality of first through holes 31 for sliding connection with the sliding member 20;
two sixth plates 342 connected to one ends of the two second side stoppers 341;
the first supporting member 343 is connected to the other ends of the two second side blocking members 341, is attached to the third plate 333, and is configured to be connected to the driving member 40;
in practice, the second plate 332 is a rectangular steel plate welded to the two first side stoppers 331; the third plate 333 is a rectangular steel plate and is welded on the two first side stoppers 331; the fourth plate 334 is a rectangular steel plate and is welded on the two first side stoppers 331; the fifth plates 335 are rectangular steel plates, and are respectively welded on the inner walls of the first side stoppers 331; a first portion 33 forming an approximately rectangular parallelepiped frame structure;
the sixth plate 342 is a rectangular steel plate and is welded to the two second side stoppers 341; the first supporting member 343 is connected to the two second side stoppers 341 by a seventh plate 421 through bolts; a second portion 34 forming an approximately rectangular parallelepiped frame structure;
the second part 34 is inserted into the fifth plate 335 through the second side stop 341, and the bottom surface of the end of the second side stop 341 is attached to the fourth plate 334, so that the second part 34 is reliably inserted into the first part 33, and then the second side stop 341 penetrates through a bolt to be connected with the fifth plate 335, so that the second part 34 and the first part 33 are connected into a relative whole, the two parts are in the same straight line, the driving member 40 is convenient to link the sliding member 20, and the sliding member 20 moves back and forth along the second side stop 341;
specifically, in fig. 1 and 5, the driving member 40 is a cylinder or a cylinder in the prior art, such as a cylinder in the CDG series; the driving member 40 is connected to the mounting frame 30 through the second supporting member 42 and the first supporting member 343; the second supporting member 42 and the first supporting member 343 have the same structure, and both include a seventh plate 421 connected to the two first side stoppers 331 or the two second side stoppers 341, respectively; the bearing block 422 is connected to the seventh plate 421, the upper surface of the bearing block is provided with a groove 422-1, and the groove 422-1 is used for bearing the driving element 40; and a pressing member 423 connected to the bearing block 422 for pressing the driving member 40;
in practice, the seventh plate 421 is a rectangular steel plate, and is connected to the two first side stoppers 331 or the two second side stoppers 341 by bolts; the bearing block 422 is a square steel block, is welded with the seventh plate 421, is matched with the shape of the driving element 40 through a groove 422-1, and supports the driving element 40, and the groove 422-1 is arc-shaped; the cross section of the pressing piece 423 is approximately omega-shaped, is matched with the outside of the driving piece 40, and is connected with the bearing block 422 through a bolt to press the driving piece 40;
specifically, in fig. 1, 6, 7, and 8, the support frame 50 includes: a supporting shaft 51, both ends of which penetrate through the first through hole 31;
the two vertical supporting columns 52 are supported on the ground, a plurality of third through holes 521 are vertically arranged on the side walls at intervals, the third through holes 521 are inserted into the end parts of the supporting shafts 51, and the end parts of the supporting shafts 51 are connected with first locking bolts 53 to lock the vertical supporting columns 52 and the supporting shafts 51;
two first stoppers 54 connected to the support shaft 51 and adapted to be attached to the sidewalls of the mounting bracket 30;
a second stopper 55 connected to the support shaft 51 and disposed in the first through groove 32;
and an inclined supporting column 56, one end of which is connected to the second limiting member 55 and the other end of which is supported on the ground;
in implementation, the support shaft 51 is machined by a round steel machine, two ends of the support shaft are step shaft sections, and two ends of the support shaft respectively penetrate through the first through holes 31 and are positioned with the vertical support columns 52;
the vertical support column 52 includes: a circular tube having eleven third through holes 521; the first circular plate is welded at the top of the circular pipe and used for plugging the top of the circular pipe; the second circular plate is welded at the bottom of the circular pipe and is used for being in contact with the ground;
the first locking bolt 53 is in threaded connection with a threaded hole reserved at the end of the support shaft 51, so that the support shaft 51 and the vertical support column 52 are reliably connected and positioned;
the first stopper 54 includes: a first sleeve 541, which is sleeved on the supporting shaft 51; and a second locking bolt 542 connected to the first sleeve 541 for abutting against the support shaft 51; the first sleeve 541 is attached to the side wall of the mounting frame 30, and the second locking bolt 542 is tightly propped against the support shaft 51, so that the support shaft 51 can be prevented from moving in the first through hole 31, and the reliability of the structure is better;
the second stopper 55 includes: a second sleeve 551, which is sleeved on the supporting shaft 51; a third locking bolt 552 connected to the second sleeve 551 for abutting against the support shaft 51; and a pipe 553 connected to the second sleeve 551 for inserting the inclined supporting column 56; in implementation, the second sleeve 551 is welded with the pipe 553; the third locking bolt 552 abuts against the supporting shaft 51, so that the second sleeve 551 and the pipe 553 are reliably positioned with the supporting shaft 51;
the inclined support column 56 includes: an eighth plate 561 contacting the ground; an inclined pipe 562 having one end connected to the eighth plate 561, the other end fitted over the pipe 553, and a second gap 562-1 fitted over one end of the pipe 553; two ninth plates 563 connected to the inclined tube 562 and symmetrically disposed at both sides of the second gap 562-1; and a fourth locking bolt 564 connected to the two ninth plates 563 for clamping the inclined tube 562 with the tube 553; in practice, the eighth plate 561 is a circular steel plate; the inclined pipe 562 is a hollow circular pipe, one end of which is cut into an inclined plane and welded with the eighth plate 561, and the other end of which is sleeved on the pipe 553; the ninth plate 563 is a square steel plate, and is welded to the inclined tube 562, and is screwed by the fourth locking bolt 564, so that the inclined tube 562 is deformed from the second notch 562-1, thereby playing a role in clamping the tube 553;
the inclined support columns 56 and the vertical support columns 52 are arranged like a triangle, and the support reliability is relatively good;
specifically, when the position of the drilling machine body 10 needs to be adjusted, the support frame 50 on the side of the drilling machine body 10 is adjusted, the first locking bolt 53 is loosened, the third locking bolt 552 is loosened, one end of the mounting frame 30 is lifted, the vertical support column 52 is pulled out of the support shaft 51, the support shaft 51 is inserted into the corresponding third through hole 521, the first locking bolt 53 is locked, the fourth locking bolt 564 is loosened, and the second limiting member 55 and the inclined support column 56 are adjusted, so that the eighth plate 561 on the inclined support column 56 is in contact with the ground for supporting; then, other support frames 50 are adjusted, so that the height position of the drilling machine body 10 is adjusted; the position of the first limiting member 54 is adjusted through the first limiting member 54, so that the mounting frame 30 can move back and forth on the support shaft 51, and the front and back positions of the drilling machine body 10 are adjusted; after the adjustment is completed, the drilling machine body 10 is pushed by the driving piece 40 to slowly move towards the wall, so that the drilling is realized;
the working principle of the utility model is as follows: in practice, the mounting frame 30 is connected to the supporting frame 50, the drilling machine body 10 is connected to the mounting frame 30 through the sliding part 20, and the driving part 40 is connected to the mounting frame 30 and connected with the sliding part 20; during implementation, according to the needs drilling position on the wall, through support frame 50, in upper and lower, preceding, the rear direction, the position of adjustment mounting bracket 30, thereby realize adjusting the position of rig body 10, make the drill bit on rig body 10 can align with the position that needs drilling, later one end through mounting bracket 30 pastes with the wall and leans on, open rig body 10, driving piece 40 promotes slider 20, make rig body 10 turn right by a left side, along mounting bracket 30, slowly be close to the wall, drilling on the wall, the operation is convenient relatively, the quality of drilling is better relatively.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "left", "right", "front", "rear", and the like, which indicate orientations or positional relationships, are based on the positional relationships illustrated in the drawings, and are only for convenience of describing the present invention or simplifying the description, but do not indicate specific orientations that must be provided; the operation processes described in the embodiments are not absolute use steps, and may be adjusted accordingly when actually used.
Unless defined otherwise, technical or scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs; the use of "first," "second," and the like in the description and in the claims does not denote any order, quantity, or importance, but rather the terms "a" and "an" and the like are used to distinguish one element from another, and likewise, do not denote any limitation of quantity, but rather denote the presence of at least one of the referenced item, as may be required by the context of the embodiment.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (8)

1. A drilling machine comprising a drilling machine body (10); it is characterized by also comprising:
a slider (20) for mounting the drill body (10);
the side wall of the mounting frame (30) is uniformly provided with a plurality of first through holes (31), the middle part of the mounting frame is provided with a first through groove (32), and the first through groove (32) is used for accommodating the sliding piece (20); the sliding piece (20) can move back and forth along the mounting frame (30);
the driving piece (40) is connected to the mounting frame (30), is connected with the sliding piece (20) and can drive the sliding piece (20) to move back and forth;
and two support brackets (50) for supporting the mounting bracket (30).
2. A drilling rig according to claim 1, characterized in that: the slider (20) comprises:
four sliding blocks (21) which are connected to the mounting frame (30) in a sliding manner;
a first plate (22) connected to the upper parts of the four sliding blocks (21) for mounting the drilling machine body (10);
and an L-shaped block (23) connected to the upper surface of the first plate (22), having a second through hole (231) on the side wall and a first notch (232) on the top; the second through hole (231) is used for one end of the driving piece (40) to pass through and is connected to one end of the driving piece (40) through a nut (41) to be positioned with the L-shaped block (23); the first notch (232) is used for connecting with an ear plate on the drilling machine body (10).
3. A drilling rig according to claim 1, characterized in that: the mounting frame (30) comprises: a first portion (33) and a second portion (34), said second portion being connected to said first portion (33);
wherein, the first part (33) comprises two first side stoppers (331) with cross sections in a [ -shape, and a plurality of first through holes (31) are arranged on the side walls;
two second plates (332) connected to one ends of the two first side stoppers (331);
a third plate (333) attached to the upper surfaces of the other ends of the two first side stoppers (331), and edges of the third plate (333) are aligned with edges of the two first side stoppers (331);
a fourth plate (334) attached to the lower surface of the other end of the two first side stoppers (331), and the edge of the fourth plate (334) protrudes outside the edges of the two first side stoppers (331) for holding one end of the second portion (34);
and two fifth plates (335) respectively connected to the inner walls of the first side stoppers (331), and protruding outside the two first side stoppers (331) for clamping with one end of the second portion (34);
wherein, the second part (34) comprises two second side stoppers (341) with cross sections in a [ -shape, the side walls are provided with a plurality of first through holes (31) which are used for being connected with the sliding piece (20) in a sliding way;
two sixth plates (342) connected to one ends of the two second side stoppers (341);
and the first supporting piece (343) is connected to the other ends of the two second side blocking pieces (341), is attached to the third plate (333), and is used for being connected to the driving piece (40).
4. A drilling rig according to claim 3, characterized in that: the driving piece (40) is also connected to the tops of the two first side stoppers (331) through a second supporting piece (42);
the second supporting piece (42) and the first supporting piece (343) have the same structure, and both comprise a seventh plate (421) which is respectively connected with the two first side stoppers (331) or the two second side stoppers (341); the bearing block (422) is connected to the seventh plate (421), the upper surface of the bearing block is provided with a groove (422-1), and the groove (422-1) is used for bearing the driving piece (40); and a pressing member (423) connected to the bearing block (422) for pressing the driving member (40).
5. A drilling rig according to claim 1, characterized in that: the support frame (50) comprises: a supporting shaft (51), two ends of which penetrate through the first through hole (31);
the two vertical supporting columns (52) are supported on the ground, a plurality of third through holes (521) are vertically arranged on the side walls of the two vertical supporting columns at intervals, the third through holes (521) are inserted into the end parts of the supporting shafts (51), and the end parts of the supporting shafts (51) are connected with first locking bolts (53) for locking the vertical supporting columns (52) and the supporting shafts (51);
the two first limiting pieces (54) are connected to the supporting shaft (51) and are used for being attached to the side wall of the mounting frame (30);
a second stopper (55) connected to the support shaft (51) and disposed in the first through groove (32);
and an inclined supporting column (56) with one end connected to the second limiting member (55) and the other end supported on the ground.
6. A drilling rig according to claim 5, characterized in that: the first stopper (54) includes: a first sleeve (541) sleeved on the supporting shaft (51); and at least one second locking bolt (542) connected to the first sleeve (541) for abutting against the support shaft (51).
7. A drilling rig according to claim 5, characterized in that: the second stopper (55) includes: a second sleeve (551) sleeved on the supporting shaft (51); at least one third locking bolt (552) connected to the second sleeve (551) for abutting against the supporting shaft (51); and a pipe member (553) connected to the second sleeve (551) for being inserted into the tilting support column (56).
8. A drilling rig according to claim 7, characterized in that: the inclined support column (56) includes: an eighth plate (561) in contact with the ground;
an inclined pipe member (562) having one end connected to the eighth plate (561) and the other end fitted over the pipe member (553), and having a second gap (562-1) fitted over one end of the pipe member (553);
two ninth plates (563) connected to the inclined tube member (562) and symmetrically disposed at both sides of the second gap (562-1);
and a fourth locking bolt (564) connected to the two ninth plates (563) for clamping the inclined pipe member (562) with the pipe member (553).
CN202020011931.2U 2020-01-04 2020-01-04 Drilling machine Active CN211370284U (en)

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CN202020011931.2U CN211370284U (en) 2020-01-04 2020-01-04 Drilling machine

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Application Number Priority Date Filing Date Title
CN202020011931.2U CN211370284U (en) 2020-01-04 2020-01-04 Drilling machine

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CN211370284U true CN211370284U (en) 2020-08-28

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113982485A (en) * 2021-10-23 2022-01-28 浙江必利夫检测科技有限公司 Mine trade hand-transmission vibration harm alleviate support appearance

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113982485A (en) * 2021-10-23 2022-01-28 浙江必利夫检测科技有限公司 Mine trade hand-transmission vibration harm alleviate support appearance
CN113982485B (en) * 2021-10-23 2023-12-15 浙江必利夫检测科技有限公司 Support appearance is alleviated to mine trade hand vibration harm

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