CN101463654B - Bodily movement bottom face monitoring method for large-sized apparatus or building - Google Patents

Bodily movement bottom face monitoring method for large-sized apparatus or building Download PDF

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Publication number
CN101463654B
CN101463654B CN2007101725094A CN200710172509A CN101463654B CN 101463654 B CN101463654 B CN 101463654B CN 2007101725094 A CN2007101725094 A CN 2007101725094A CN 200710172509 A CN200710172509 A CN 200710172509A CN 101463654 B CN101463654 B CN 101463654B
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Prior art keywords
steel plate
building
frock
mobile platform
main equipment
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CN2007101725094A
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CN101463654A (en
Inventor
谢雄刚
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Shanghai Baosteel Industry Technological Service Co Ltd
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Shanghai Baosteel Industry Inspection Corp
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Abstract

The invention relates to large-scale equipment or a building, in particular to an integral movement method of the large-scale equipment or the building. A bottom surface monitoring method of the integral movement of the large-scale equipment or the building relates to a steel plate moving platform positioned at the bottom of the large-scale equipment or the building and a winch and further relates to a plurality of monitoring devices. The bottom surface monitoring method comprises the following steps: detecting flatness of the steel plate of the moving platform; fabricating and arranging the monitoring devices; and monitoring during the integral movement of the large-scale equipment or the building. The monitoring method can effectively and accurately monitor deformation and contact of the steel plate under the moving large-scale equipment or the building, find problems in time and avoid loss.

Description

Main equipment or whole building move bottom face monitoring method
Technical field
The present invention relates to main equipment or building, relate in particular to the bodily movement method of a kind of main equipment or building.
Background technology
Whole the moving of main equipment (construction of structures) is a kind of mounting method of newly developing in the world at present, be to be moved the related base integral of object to raise, some fan-shaped mobile platforms of packing in the bottom, drag the mobile platform that joins together to assigned address by hoist engine again, reach thus and finish the whole purpose that moves of object.This technology has been applied in Aero-Space (rocket launching platform), building trade (important construction of structures resettlement), metallurgy industry every profession and trade leading-edge fields such as (blast furnace assembly units).
Because this technology of application is carried out the whole object that moves very big weight is arranged all generally, and because the design thickness of weight limits mobile platform when design is less, the platform bottom surface generally is no more than 50mm apart from ground level.Mobile platform and the easy compressive deformation of ground steel plate in moving process, light then damage the air bag that mobile platform is used to hoist, heavy then damage the ground steel plate, even cause the malformation that is moved thing.If can the distortion that causes damage with contact before in time stop to move, just can avoid a lot of losses, when so mobile to the distortion of platform and ground steel plate, contact the situation monitoring and just seem particularly important.It is reported that the technician who is engaged in this engineering both at home and abroad leans on visual inspection substantially when carrying out mobile operating, do not having better way aspect distortion and the contact monitoring.
Summary of the invention
The present invention is intended to address the deficiencies of the prior art, and provides a kind of main equipment or whole building to move bottom face monitoring method.The main equipment during method for supervising provided by the invention can be monitored efficiently and accurately and move or the distortion of the steel plate under the building are conciliate and are touched, and in time pinpoint the problems, and avoid loss occurrence.
The present invention is achieved in that
A kind of main equipment or whole building move bottom face monitoring method, and it comprises steel plate mobile platform that is positioned at main equipment or building bottom and the hoist engine that spurs mobile platform, and it also comprises some supervising devices, and comprises the following steps:
The steel plate flatness of mobile platform detects step;
Supervising device is made and installation steps;
Monitoring step during main equipment or whole building move.
Described main equipment or whole building move bottom face monitoring method, and the steel plate flatness of described mobile platform detects step and comprises:
By groined type described surface of steel plate is adopted a little, adopted an interval 0.5m, described steel plate integral planar degree difference is not more than 2mm and adjacent 2 flatnesses are ± 0.2mm.
Described main equipment or whole building move bottom face monitoring method, and described supervising device comprises:
One frock, this frock comprise two flat boards that link together, one of two flat boards have oblique inclination angle and and another flat board between angle be 15 °;
One has the scale of scale, and it vertically is fixed on flat board one end that described frock level is provided with, its lower end kiss the earth;
A monitoring camera, it is fixed on an end of the flat board of the oblique setting of described frock, and the camera lens of camera is over against described scale.
Described main equipment or whole building move bottom face monitoring method, and the frock of described supervising device is bonded in the bottom margin of mobile platform steel plate, and are positioned on the platform of moving direction side.
Described main equipment or whole building move bottom face monitoring method, monitoring step during described main equipment or whole building move comprises: utilize the scale label that camera head monitor contacts with ground to change in moving process, reporting to the police immediately during less than 5mm when spacing stops to move.
The present invention is more accurate by visual inspection distortion and contact monitoring, at the easy compressive deformation of ground steel plate, cause damaging the air bag that mobile platform is used to hoist or damage the ground steel plate and even cause the malformation that is moved thing before in time stop to move, thereby the safety that occurs in moving for the integral body of main equipment or building provides sound assurance.
Description of drawings
Below, in conjunction with the specific embodiment, further specify the present invention
Fig. 1 arranges schematic diagram for described supervising device at mobile platform;
Fig. 2 is described supervising device schematic diagram.
The specific embodiment
Please refer to Fig. 1 and Fig. 2, a kind of main equipment or whole building move bottom face monitoring method, the hoist engine (figure fails to show) that it comprises the steel plate mobile platform 1 that is arranged in main equipment or building bottom and spurs mobile platform, it also comprises some supervising devices 2, and comprises the following steps:
The steel plate flatness of mobile platform 1 detects step: by groined type described surface of steel plate is adopted a little, adopted an interval 0.5m, described steel plate integral planar degree difference is not more than 2mm and adjacent 2 flatnesses are ± 0.2mm.
Supervising device 2 is made and installation steps; Described supervising device comprises (see figure 2):
One frock 21, this frock comprise two dull and stereotyped 21a, 21b that link together, one of two flat boards 21b have oblique inclination angle and and another dull and stereotyped 21a between angle be 15 °;
One has the scale 22 of scale, and it vertically is fixed on described frock 21 horizontally disposed dull and stereotyped 21a one ends, and kiss the earth behind the dull and stereotyped 21a of frock is passed in its lower end;
A monitoring camera 23, it is fixed on the end of the dull and stereotyped 21b of described frock 21 oblique settings, and the camera lens of camera 23 is over against described scale 22.
Described supervising device 2 is bonded in the bottom margin of mobile platform 1 steel plate with its frock 21, and is arranged in (see figure 1) on the mobile platform 1 of moving direction (arrow A of Fig. 1) side.
Monitoring step during described main equipment or whole building move comprises: the scale 22 scales variation that utilizes camera 23 monitoring to contact with ground in moving process, reporting to the police immediately during less than 5mm when spacing stops to move.

Claims (2)

1. main equipment or whole building move bottom face monitoring method, and it comprises the steel plate mobile platform that is positioned at main equipment or building bottom and the hoist engine of pulling mobile platform, it is characterized in that it also comprises some supervising devices, and comprises the following steps:
The steel plate flatness of mobile platform detects step;
Supervising device is made and installation steps, and described supervising device comprises:
One frock, this frock comprise two flat boards that link together, one of two flat boards have oblique inclination angle and and another flat board between angle be 15 °; This frock is bonded in the bottom margin of mobile platform steel plate, and is positioned on the platform of moving direction side;
One has the scale of scale, and it vertically is fixed on flat board one end that described frock level is provided with, and kiss the earth behind the frock flat board is passed in its lower end;
A monitoring camera, it is fixed on an end of the flat board of the oblique setting of described frock, and the camera lens of camera is over against described scale;
Monitoring step during main equipment or whole building move: comprising: utilize the scale label that camera head monitor contacts with ground to change in moving process, reporting to the police immediately during less than 5mm when spacing stops to move.
2. main equipment according to claim 1 or whole building move bottom face monitoring method, it is characterized in that, the steel plate flatness of described mobile platform detects step and comprises:
By groined type described surface of steel plate is adopted a little, adopted an interval 0.5m, described steel plate integral planar degree difference is not more than 2mm and adjacent 2 flatnesses are ± 0.2mm.
CN2007101725094A 2007-12-18 2007-12-18 Bodily movement bottom face monitoring method for large-sized apparatus or building Active CN101463654B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2007101725094A CN101463654B (en) 2007-12-18 2007-12-18 Bodily movement bottom face monitoring method for large-sized apparatus or building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2007101725094A CN101463654B (en) 2007-12-18 2007-12-18 Bodily movement bottom face monitoring method for large-sized apparatus or building

Publications (2)

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CN101463654A CN101463654A (en) 2009-06-24
CN101463654B true CN101463654B (en) 2011-12-07

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101923597B (en) * 2010-09-16 2012-02-15 天津大学 Visual modeling method for simulating stress change of building in moving process
CN101923598B (en) * 2010-09-16 2012-07-25 天津大学 Optimization method of parametric modeling of gliding transfer model of building based on VB

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Owner name: SHANGHAI BAOSTEEL INDUSTRY TECHNOLOGICAL SERVICE C

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Address after: 201900 Shanghai city Baoshan District Meipu Road No. 335

Patentee after: Shanghai Baosteel Industry Technological Service Co. Ltd

Address before: 201900 Shanghai city Baoshan District Meipu Road No. 335

Patentee before: Shanghai Baosteel Industry Inspection Corp.

C53 Correction of patent for invention or patent application
CB03 Change of inventor or designer information

Inventor after: Mao Genxin

Inventor after: Xie Xionggang

Inventor before: Xie Xionggang

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Free format text: CORRECT: INVENTOR; FROM: XIE XIONGGANG TO: MAO GENXIN XIE XIONGGANG