Apparatus for simulating 3-D dynamic deforming vector

A technology of three-dimensional dynamic and simulation devices, which is applied in the direction of measuring devices, radio wave measurement systems, satellite radio beacon positioning systems, etc., can solve the problems that the deformation process cannot be collected in real time, the movement form is simple, and the dynamic continuous slow deformation can reach the weight Lightweight, high strength, and easy to operate

Inactive Publication Date: 2006-11-15
CHINA UNIV OF MINING & TECH
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AI Technical Summary

Problems solved by technology

Since the deformation motion of the dynamically deformable body is unknown and the deformation is extremely complex, in order to verify the accuracy of GPS dynamic deformation monitoring, it is necessary to simulate the dynamic deformation of various structures. Currently, the existing deformation simulation experimental devices include manual one-way mobile GPS The deformation console is used to generate deformation manually; another deformation simulation experimental device can only complete simple two-dimensional movement, the movement form is simple, the deformation process cannot be collected in real time, and it cannot produce long-term dynamic continuous slow deformation

Method used

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  • Apparatus for simulating 3-D dynamic deforming vector
  • Apparatus for simulating 3-D dynamic deforming vector
  • Apparatus for simulating 3-D dynamic deforming vector

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Embodiment Construction

[0011] An embodiment of the present invention will be further described below in conjunction with accompanying drawing:

[0012] The three-dimensional dynamic deformation vector simulation device of the present invention is composed of a branch mechanism that can move along the directions of X, Y, and Z axes and an electric controller that controls its movement. The branch mechanism of the axis movement is composed of the rolling guide rail pair 6 installed on the X-axis movement platform 7, the X-axis movement motor 10 installed on the movement platform 7 through the horizontal mounting base 9, and the X-axis driving ball screw pair 12 arranged on it. , the motion platform base 7 of this branch mechanism is fixed on the bracket in the box body 14 by connecting bolts 16 . The branch mechanism that can move along the Y axis is composed of the motion platform 5 located on the rolling guide rail pair 6 above the X branch mechanism, the Y axis motion motor 11 installed on the Y ax...

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Abstract

The present invention relates to a three-dimensional dynamic deformation vector simulation equipment. It is composed of branch mechanisms capable of moving along X, Y, Z three axis directions and electric control mechanism for controlling their movement. The branch mechanism capable of moving along X axis is fixed on the supporting frame in box body by means of connecting bolt, the branch mechanism capable of moving along Y axis is placed over the X branch mechanism, the branch mechanism capable of moving along Z axis is placed over the Y branch mechanism, on the branch mechanism capable of moving along Z axis a GPS antenna seat is set. Said invention also provides the working principle and concrete operation method of said simulation equipment and its application field.

Description

technical field [0001] The invention relates to a three-dimensional dynamic deformation vector simulation device, which is especially suitable for simulating the occurrence and calibration of three-dimensional dynamic deformation tracks of high-rise buildings, bridges, landslide bodies and shaft towers in mining areas. Background technique [0002] GPS (Global Positioning System) can achieve precise positioning and is widely used in various fields of the national economy such as military affairs, agriculture, and transportation. It can also be used to monitor the dynamic deformation of high-rise buildings, bridges, dams, landslides, and mine towers. Since the deformation motion of the dynamically deformable body is unknown and the deformation is extremely complex, in order to verify the accuracy of GPS dynamic deformation monitoring, it is necessary to simulate the dynamic deformation of various structures. Currently, the existing deformation...

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Application Information

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IPC IPC(8): G01B21/32G01S19/01
Inventor 高井祥王坚张建勋孙久运
Owner CHINA UNIV OF MINING & TECH
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