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A bim-based engineering construction device

A technology of engineering construction and platform, which is applied in the direction of stone processing tools, manufacturing tools, stone processing equipment, etc., can solve problems such as influence, uneven roof strength, etc., and achieve the effects of simple operation, reduced labor intensity and high work efficiency

Active Publication Date: 2022-03-01
江苏省建筑工程集团第二工程有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to solve the above-mentioned technical problems, the present invention provides a BIM-based engineering construction device, which effectively solves the problems of the verticality and depth of the drilled holes when the roof panel is drilled for secondary reinforcement, and avoids the problems caused by the installation of reinforcement. The unevenness of the holes affects the strength of the reinforced roof

Method used

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  • A bim-based engineering construction device
  • A bim-based engineering construction device
  • A bim-based engineering construction device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029]Embodiment 1, a BIM-based engineering construction device includes a first platform 1, the first platform 1 is horizontally arranged, and the first platform 1 is rotatably connected with a vertically arranged first rotating shaft 2, and the first platform 1 is vertically arranged. A first motor 3 is directly provided, and the first rotating shaft 2 and the output shaft of the first motor 3 are driven by a pair of gears. Sliding along the axial direction of the first rotating shaft 2, the ring gear 4 is connected with a first spring 5 located between the lower end surface of the ring gear 4 and the first rotating shaft 2, and the lower end of the first spring 5 is connected with the first rotating shaft 2 , the first spring 5 gives the inner ring gear 4 a vertical upward thrust, and the teeth on the inner ring gear 4 are distributed at intervals along the circumferential direction of the inner ring gear 4, so that a plurality of tooth groups are arranged at intervals on th...

Embodiment 2

[0033] Embodiment 2, on the basis of Embodiment 1, there are four positioning rods 37 arranged vertically on the support 7, and the four positioning rods 37 are evenly distributed along the circumference of the second motor 8 center direction, and the upper end faces of the four positioning rods 37 are in the In the same plane, the upper end surface of the positioning rod 37 is higher than the upper apex position of the drill bit, and the second platform 38 placed below the first platform 1 is hinged on the first platform 1 through a ball, and the first platform 1 and the second platform 38 are connected. There are a plurality of fourth springs 39, the fourth springs 39 give the first platform 1 a vertical upward thrust, and the purpose of the plurality of fourth springs 39 is to maintain the level of the first platform 1 in the initial state, and the plurality of fourth springs 39 along the The center circumference of the second platform 38 is evenly distributed. When the seco...

Embodiment 3

[0034] Embodiment 3, on the basis of Embodiment 2, the second platform 38 is connected with a vertically arranged telescopic rod 40, and the lower end surface of the telescopic rod 40 is vertically provided with a toothed plate 42, and the two sides of the toothed plate 42 are provided with vertical The teeth arranged in the direction, the first cylinder 41 is sleeved on the telescopic rod 40, the first cylinder 41 slides in the vertical direction, and the first cylinder 41 is connected with two gears meshing with the tooth plate 42 through the rotation of the shaft arranged horizontally. A fifth gear 43, two fifth gears 43 are opposite to the two sides of the first cylinder 41 with respect to the axial direction of the first cylinder 41, the first cylinder 41 is provided with a third motor 44, and the output shaft of the third motor 44 A worm 45 is connected to the top, and a worm gear 46 is coaxially connected with the worm 45 on the fifth gear 43. A second cylinder 47 is sle...

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Abstract

The invention relates to a BIM-based engineering construction device, which effectively solves the problems of the verticality and depth of the drilled holes when drilling the second reinforcement on the top panel, and avoids the uneven alignment of the reinforcement holes. The strength of the reinforced roof will be affected; the solution is to include the first platform set horizontally, the first platform is provided with a bracket, the bracket is fixed with a plurality of positioning rods arranged vertically, and the bracket slides along the vertical direction to connect the first platform. Two motors, the output shaft of the second motor is connected with a vertically upward drill bit, and the bracket is provided with an adjustment mechanism; the invention can control the lifting of the drill bit, avoiding the danger caused by the manual operation of the worker, through the first platform and the second platform The ball hinge between the two platforms, under the action of the positioning rod, ensures the verticality of the hole for planting reinforcement. By adjusting the adjustment mechanism, the hole for planting reinforcement of different process depths can be drilled. The invention has simple operation, high working efficiency and greatly Reduced labor intensity of workers.

Description

technical field [0001] The invention relates to an engineering construction device, in particular to a BIM-based engineering construction device. Background technique [0002] BIM technology is a digital tool applied to engineering design and construction management. It integrates relevant information of various projects through parametric models, and shares and transmits them in the whole life cycle of project planning, operation and maintenance, so that engineering and technical personnel Correctly understand and efficiently respond to various building information; at present, in the construction process, it is sometimes necessary to carry out secondary reinforcement of the roof panels or beams after pouring, and first use BIM technology to perform real-time display and positioning of the roof panels and beams that need to be reinforced , Drill holes at the positioned position and implant steel bars, and then inject reinforcement glue to reinforce the implanted steel bars;...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E04G21/12B28D1/14
CPCE04G21/12B28D1/146
Inventor 沙峰峰焦国民彭平蒯力春孙远辰
Owner 江苏省建筑工程集团第二工程有限公司