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Building structural mechanics photoelectric demonstration system

A demonstration system and a technology of structural mechanics, applied in the field of teaching and training systems, can solve problems that affect students' understanding and mastery of knowledge points, teaching is not intuitive enough, and actual buildings are not closely connected

Active Publication Date: 2014-10-22
陶顺
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Under the existing teaching conditions, the above-mentioned courses or teaching content are all explained by teachers, the teaching content is abstract, not closely connected with the actual building, the teaching is not intuitive enough, the theory is separated from the reality, and it affects students' understanding and mastery of knowledge points

Method used

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  • Building structural mechanics photoelectric demonstration system
  • Building structural mechanics photoelectric demonstration system
  • Building structural mechanics photoelectric demonstration system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0058] Example 1 - Concentrated Load Demonstration Module for Beams

[0059] like Figure 9 It can be seen that in the second-floor full-frame steel structure, one beam 3 is selected as the beam for demonstration, a red demonstration light is installed on the beam 3 as the beam concentrated load demonstration lamp 31, and two orange demonstration lamps are used as the bending moment force demonstration lamp 230. , a yellow light strip is used as a demonstration lamp 32 for the primary load deformation curve, and a red light strip is used as a demonstration lamp 33 for the secondary load deformation curve of the beam.

[0060] The beam concentrated load demonstration light 31 includes two upper and lower light sources, which are controlled by two relays so that the beam concentrated load demonstration lamp 31 can be demonstrated as a group according to the upper half and the lower half.

[0061] like figure 1 2, the control system includes a control host 5, the control host 5...

Embodiment 2

[0074] Example 2 - Uniform Load Demonstration Module for Beams

[0075] like image 3 , Figure 9 It can be seen that in the structural frame of the building, one beam is selected as the demonstration beam, and six yellow demonstration lights are installed on the beam as the beams uniformly distributed load demonstration lights 30, two orange demonstration lights as the bending moment force demonstration lights 230, and a yellow demonstration light. The light strip is used as a demonstration lamp 32 for the first-level load deformation curve of the beam, and a red light strip is used as a demonstration lamp 33 for the second-level load deformation curve of the beam.

[0076] The beam uniform load demonstration light 30 includes two upper and lower light sources, which are correspondingly controlled by two relays.

[0077] In this embodiment, the F060 single-chip microcomputer controls 5 relays, and the relays respectively control the beam uniform load demonstration lamp 30, ...

Embodiment 3

[0088] Example 3 - Cantilever beam concentrated load demonstration module

[0089] like Figure 5 It can be seen that a cantilever beam is selected as the demonstration beam, a red demonstration light is installed on the cantilever beam 7 as the cantilever beam concentrated load demonstration light 71, an orange demonstration light is used as the bending moment force demonstration light 230, and a blue light strip is installed. As the first-level load deformation demonstration lamp 72 of the cantilever beam, a yellow light strip is used as the cantilever beam second-level load deformation demonstration lamp 73.

[0090] The cantilever beam concentrated load demonstration light 71 includes two upper and lower light sources, which are controlled by two relays to realize the concentrated load demonstration light 71 in a group of the upper half and the lower half.

[0091] like figure 1 2, the control system includes a control host 5, the control host 5 includes a single-chip mi...

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Abstract

The invention provides a building structural mechanics photoelectric demonstration system. The building structural mechanics photoelectric demonstration system can demonstrate building structural mechanics knowledge points visually, visually display basic stressed conditions and stress deformation conditions of a building and achieve a teaching mode of integrating theory with practice. The building structural mechanics photoelectric demonstration system comprises a building structural framework and further comprises a photoelectric demonstration system and a control system connected with the photoelectric demonstration system. The photoelectric demonstration system comprises a plurality of demonstration lamps arranged on the building structural framework and demonstration lamp strips. The control system comprises a control host, the control host comprises a single-chip microcomputer connected through a circuit board and further comprises a plurality of relays corresponding to each demonstration lamp and each lamp strip of the photoelectric demonstration system, the single-chip microcomputer is connected with the relays, and the demonstration lamps and the demonstration lamp strips are connected with an external power supply respectively through the relays. The building structural mechanics photoelectric demonstration system further comprises a remote operating system.

Description

technical field [0001] The invention relates to a teaching and training system, in particular to a photoelectric demonstration system of building structure mechanics. Background technique [0002] The course of building structural mechanics is involved in the teaching of architecture major in colleges and universities. The teaching content mainly includes: the basic stress of different parts of the building, such as the stress of the columns, beams, roofs, ground and other parts of the building; the building is subjected to various forces When , the force transmission path and deformation; specifically, it involves: the concentrated load of the beam, the uniform load of the beam, the concentrated load of the cantilever beam, the uniform load of the cantilever beam, the axial compression of the column, the small load of the column Eccentric compression, force transmission of frame structure system, horizontal force and stress of buildings, etc. [0003] Under the existing te...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G09B25/04
Inventor 陶盛陶顺王东峰
Owner 陶顺
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