CN217505182U - Building steel structure steadiness detection device - Google Patents

Building steel structure steadiness detection device Download PDF

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Publication number
CN217505182U
CN217505182U CN202221202232.1U CN202221202232U CN217505182U CN 217505182 U CN217505182 U CN 217505182U CN 202221202232 U CN202221202232 U CN 202221202232U CN 217505182 U CN217505182 U CN 217505182U
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China
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piece
building steel
connecting sleeve
pivot
steel structure
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CN202221202232.1U
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Chinese (zh)
Inventor
王建棋
崔高峰
赵向阳
王欢
姬安奎
李宇航
赵言
孙聪
尚战峰
杨慧香
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XINPU CONSTRUCTION GROUP CO Ltd
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XINPU CONSTRUCTION GROUP CO Ltd
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Abstract

The utility model discloses a building steel construction steadiness detection device, including the building steel construction, second pivot one end is equipped with second servo motor, and its second pivot one side is equipped with grabs the piece, and grabs the inner wall of block and be equipped with the cushion, it is connected with the building steel construction upset centre gripping through second pivot and second servo motor to grab the piece, and second pivot opposite side is equipped with the supporting shoe, be equipped with second electric putter in the supporting shoe, and second electric putter is connected with the connecting sleeve post, the connecting sleeve post is flexible promotion connection with the building steel construction through second electric putter and grab the piece. This building steel structure steadiness detection device's fixed cover piece is connected with the building steel structure registrate, and grabs the piece and be the upset centre gripping through second pivot and second servo motor and building steel structure and be connected, connects the set post moreover and is flexible promotion connection through second electric putter with grab the piece and building steel structure, makes the device can carry out quick effectual detection of waveing like this, and it is more convenient to use.

Description

Building steel structure steadiness detection device
Technical Field
The utility model relates to a construction steel structure detects technical field, specifically is a construction steel structure steadiness detection device.
Background
The construction steel structure can greatly save the construction time, so that the construction is not influenced by seasons. The building steel structure can greatly reduce building garbage and environmental pollution, has good anti-seismic performance and long service life, is easy to reform and is widely applied to buildings such as workshops, factory buildings, markets, gymnasiums and the like.
The existing patent number is CN202020787526.X a building steel structure detection device, and the device can not carry out more swift effectual stability detection when using, and it is inconvenient to use to make a building steel structure steadiness detection device reach the purpose of carrying out more swift effectual stability detection.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a building steel structure steadiness detection device to solve the building steel structure steadiness detection device who mentions in the above-mentioned background art when using, can not carry out more swift effectual stability detection, use inconvenient problem.
In order to achieve the above object, the utility model provides a following technical scheme: a device for detecting the stability of a construction steel structure comprises the construction steel structure, wherein one side of the construction steel structure is provided with a machine main body, the lower end of the machine main body is provided with a roller, the upper end of the machine main body is provided with a connecting sleeve column, one side of the connecting sleeve column is provided with a fixed sleeve block, the fixed sleeve block is sleeved and connected with a building steel structure, and a second rotating shaft is arranged on the fixed sleeve block, a second servo motor is arranged at one end of the second rotating shaft, one side of a second rotating shaft is provided with a grabbing block, the inner wall of the grabbing block is provided with a cushion block, the grabbing block is connected with the building steel structure in a turnover clamping manner through the second rotating shaft and a second servo motor, and the other side of the second rotating shaft is provided with a supporting block, a second electric push rod is arranged in the supporting block and is connected with the connecting sleeve column, the connecting sleeve column is connected with the building steel structure in a telescopic pushing mode through a second electric push rod and a grabbing block.
Preferably, a placing groove is formed in the machine main body, the shape of the placing groove is matched with that of the connecting sleeve column, and the connecting sleeve column is connected with the machine main body in a buckling and wrapping mode through the placing groove.
Preferably, machine main part both sides are equipped with rotatory piece, and rotatory piece lower extreme is equipped with the screw thread post, screw thread post inner wall is equipped with the support callus on the sole, and supports the callus on the sole and be spiral lift swing joint through the screw thread post with rotatory piece, the support callus on the sole is upset swing joint through rotatory piece and machine main part.
Preferably, the lower end of the connecting sleeve column is provided with a first rotating shaft, the first rotating shaft is provided with a first servo motor, and the connecting sleeve column is movably connected with the placing groove in a bidirectional overturning manner through the first rotating shaft and the first servo motor.
Preferably, be equipped with first electric putter in the connecting sleeve post, and be equipped with the bracing piece on the first electric putter, the bracing piece other end is equipped with the fixed block, and the fixed block is connected with fixed cover piece, fixed cover piece is equidistant parallel position and distributes on fixed block and connecting sleeve post, and the fixed block is flexible swing joint through first electric putter and bracing piece and connecting sleeve post.
Preferably, the side surface of the threaded column is provided with a limiting sleeve block, the limiting sleeve block is movably connected in a split and turnover manner through a connecting loose-leaf, a locking button is arranged on the limiting sleeve block, and the threaded column is fixedly connected with the roller in a locking limiting manner through the limiting sleeve block and the locking button.
Compared with the prior art, the beneficial effects of the utility model are that: this building steel structure steadiness detection device's fixed cover piece is connected with the building steel structure registrate, and grabs the piece and be the upset centre gripping through second pivot and second servo motor and building steel structure and be connected, connects the set post moreover and is flexible promotion connection through second electric putter with grab the piece and building steel structure, makes the device can carry out quick effectual detection of waveing like this, and it is more convenient to use.
Drawings
FIG. 1 is a front view of the device for detecting the stability of a building steel structure of the present invention;
FIG. 2 is a cross-sectional view of the device for detecting the stability of the steel structure of the building of the present invention;
FIG. 3 is a schematic view of the connection between the fixing sleeve block and the grasping block of the device for detecting the stability of the steel structure of the building;
fig. 4 is an enlarged view of a part A in fig. 2 of the device for detecting the stability of the construction steel structure of the present invention;
fig. 5 is the utility model relates to a B enlarger in building steel construction steadiness detection device figure 2.
In the figure: 1. building steel construction, 2, machine main part, 3, the gyro wheel, 4, the connecting sleeve post, 5, the bracing piece, 6, the fixed block, 7, fixed nest block, 8, first electric putter, 9, first pivot, 10, the screw thread post, 11, support callus on the sole, 12, rotatory piece, 13, the standing groove, 14, first servo motor, 15, the second pivot, 16, second servo motor, 17, the cushion, 18, grab the piece, 19, the supporting shoe, 20, second electric putter, 21, the locking button, 22, spacing sleeve piece, 23, the connection loose-leaf.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying 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 work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: a building steel structure stability detection device comprises a building steel structure 1, a machine main body 2, rollers 3, connecting sleeve columns 4, support rods 5, a fixed block 6, a fixed sleeve block 7, a first electric push rod 8, a first rotating shaft 9, a threaded column 10, a support foot pad 11, a rotating block 12, a placement groove 13, a first servo motor 14, a second rotating shaft 15, a second servo motor 16, a cushion block 17, a grabbing block 18, a support block 19, a second electric push rod 20, a locking button 21, a limiting sleeve block 22 and a connecting hinge 23, wherein the machine main body 2 is arranged on one side of the building steel structure 1, the rollers 3 are arranged at the lower end of the machine main body 2, the placement groove 13 is formed in the machine main body 2, the shape of the placement groove 13 is matched with that of the connecting sleeve columns 4, the connecting sleeve columns 4 are connected with the machine main body 2 in a buckling and wrapping mode through the placement groove 13, and the connecting sleeve columns 4 of the device are convenient to store, the transportation is convenient, the two sides of the machine main body 2 are provided with rotating blocks 12, the lower ends of the rotating blocks 12 are provided with threaded columns 10, the inner walls of the threaded columns 10 are provided with supporting foot pads 11, the supporting foot pads 11 are in spiral lifting movable connection with the rotating blocks 12 through the threaded columns 10, the supporting foot pads 11 are in overturning movable connection with the machine main body 2 through the rotating blocks 12, so that the device is convenient to fix and support and is more stable to use, the upper end of the machine main body 2 is provided with a connecting sleeve column 4, one side of the connecting sleeve column 4 is provided with a fixing sleeve block 7, the lower end of the connecting sleeve column 4 is provided with a first rotating shaft 9, the first rotating shaft 9 is provided with a first servo motor 14, the connecting sleeve column 4 is in bidirectional overturning movable connection with a placing groove 13 through the first rotating shaft 9 and the first servo motor 14, so that the connecting sleeve column 4 of the device is convenient to overturn and is convenient to store and use, the first electric push rod 8 is arranged in the connecting sleeve column 4, the upper end of a first electric push rod 8 is provided with a support rod 5, the other end of the support rod 5 is provided with a fixed block 6, the fixed block 6 is connected with a fixed sleeve block 7, the fixed sleeve blocks 7 are distributed on the fixed block 6 and a connecting sleeve column 4 in an equidistant parallel position, the fixed block 6 is movably connected with the connecting sleeve column 4 in a telescopic way through the first electric push rod 8 and the support rod 5, so that the connecting sleeve column 4 of the device can be used in a lifting way, the position adjustment is convenient, the use is more convenient, the fixed sleeve block 7 is sleeved and connected with the building steel structure 1, a second rotating shaft 15 is arranged on the fixed sleeve block 7, one end of the second rotating shaft 15 is provided with a second servo motor 16, one side of the second rotating shaft 15 is provided with a grabbing block 18, the inner wall of the grabbing block 18 is provided with a cushion block 17, the grabbing block 18 is connected with the building steel structure 1 in an overturning and clamping way through the second rotating shaft 15 and the second servo motor 16, and the other side of the second rotating shaft 15 is provided with a support block 19, be equipped with second electric putter 20 in the supporting shoe 19, and second electric putter 20 is connected with connecting sleeve post 4, connecting sleeve post 4 is flexible promotion connection through second electric putter 20 and grabbing piece 18 with building steel structure 1, screw post 10 side is equipped with spacing cover block 22, its spacing cover block 22 is to opening upset swing joint through connecting the loose-leaf 23, and be equipped with locking button 21 on the spacing cover block 22, screw post 10 is the spacing fixed connection of locking through spacing cover block 22 and locking button 21 and gyro wheel 3, it is convenient that the screw post 10 of the device carries out spacing fixed with gyro wheel 3 like this, it is more stable to use.
The working principle is as follows: when the building steel structure stability detection device is used, firstly, the device is taken out, then the device is placed on the ground, then a machine main body 2 of the device is moved through a roller 3, when the device is moved to be close to a building steel structure 1, a first servo motor 14 of the device is started to drive a connecting sleeve column 4 to turn up through a first rotating shaft 9, then a fixed sleeve block 7 is sleeved with the building steel structure 1, then a second servo motor 16 of the device is started to drive a grabbing block 18 to turn over and lock through a second rotating shaft 15, so that the building steel structure 1 is grabbed through a cushion block 17, then a threaded column 10 is turned downwards through a rotating block 12, then a support foot pad 11 is spirally moved downwards through the threaded column 10 to form support and fix with the ground, then the threaded column 10 is locked and fixed with the roller 3 through a locking button 21 and a limiting sleeve block 22, and then a second electric push rod 20 of the device is started, thereby stimulate building steel structure 1 through fixed cover piece 7, detection stability, and when needs lengthen the detection, can start the device's first electric putter 8, with the extension of fixed block 6, carry out position control, after using the completion, can take in connecting sleeve post 4 upset to standing groove 13, this is exactly this building steel structure steadiness detection device's use.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (6)

1. The utility model provides a building steel construction steadiness detection device, includes building steel construction (1), building steel construction (1) one side is equipped with machine main part (2), and machine main part (2) lower extreme is equipped with gyro wheel (3), its characterized in that: machine main part (2) upper end is equipped with connecting sleeve post (4), and connecting sleeve post (4) one side is equipped with fixed cover piece (7), fixed cover piece (7) and building steel construction (1) registrate are connected, and are equipped with second pivot (15) on fixed cover piece (7), second pivot (15) one end is equipped with second servo motor (16), and its second pivot (15) one side is equipped with grabs piece (18), and grabs piece (18) inner wall and be equipped with cushion (17), it is the upset centre gripping through second pivot (15) and second servo motor (16) and building steel construction (1) and is connected to grab piece (18), and second pivot (15) opposite side is equipped with supporting shoe (19), be equipped with second electric putter (20) in supporting shoe (19), and second electric putter (20) are connected with connecting sleeve post (4), connecting sleeve post (4) are flexible promotion connection through second electric putter (20) and grabbing piece (18) with building steel construction (1).
2. The building steel structure stability detection device of claim 1, wherein: the machine is characterized in that a placing groove (13) is formed in the machine main body (2), the shape of the placing groove (13) is matched with that of the connecting sleeve column (4), and the connecting sleeve column (4) is connected with the machine main body (2) in a buckling and wrapping mode through the placing groove (13).
3. The building steel structure stability detection device of claim 2, wherein: machine main part (2) both sides are equipped with rotatory piece (12), and rotatory piece (12) lower extreme is equipped with screw thread post (10), screw thread post (10) inner wall is equipped with supports callus on the sole (11), and supports callus on the sole (11) and be spiral lift swing joint through screw thread post (10) and rotatory piece (12), it is upset swing joint through rotatory piece (12) and machine main part (2) to support callus on the sole (11).
4. The building steel structure stability detection device of claim 3, wherein: connecting sleeve post (4) lower extreme is equipped with first pivot (9), and is equipped with first servo motor (14) on first pivot (9), connecting sleeve post (4) are two-way upset swing joint through first pivot (9) and first servo motor (14) and standing groove (13).
5. The building steel structure stability detection device of claim 4, wherein: be equipped with first electric putter (8) in connecting sleeve post (4), and first electric putter (8) upper end is equipped with bracing piece (5), the bracing piece (5) other end is equipped with fixed block (6), and fixed block (6) are connected with fixed cover piece (7), fixed cover piece (7) are equidistant parallel position and distribute on fixed block (6) and connecting sleeve post (4), and fixed block (6) are flexible swing joint through first electric putter (8) and bracing piece (5) and connecting sleeve post (4).
6. The building steel structure stability detection device of claim 5, wherein: threaded column (10) side is equipped with stop collar piece (22), and its stop collar piece (22) are through connecting loose-leaf (23) and be to opening upset swing joint, and are equipped with locking button (21) on stop collar piece (22), threaded column (10) are through stop collar piece (22) and locking button (21) and gyro wheel (3) and lock spacing fixed connection.
CN202221202232.1U 2022-05-19 2022-05-19 Building steel structure steadiness detection device Active CN217505182U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221202232.1U CN217505182U (en) 2022-05-19 2022-05-19 Building steel structure steadiness detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221202232.1U CN217505182U (en) 2022-05-19 2022-05-19 Building steel structure steadiness detection device

Publications (1)

Publication Number Publication Date
CN217505182U true CN217505182U (en) 2022-09-27

Family

ID=83354705

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221202232.1U Active CN217505182U (en) 2022-05-19 2022-05-19 Building steel structure steadiness detection device

Country Status (1)

Country Link
CN (1) CN217505182U (en)

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