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Node-based intelligent demonstration teaching system for buildings

A teaching system and node technology, applied in the field of teaching and training systems, can solve the problems of not being intuitive enough in teaching, not closely connected with actual buildings, and separating theory from practice, etc., and achieve the effect of improving the teaching effect

Active Publication Date: 2016-11-30
陶顺
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Under the existing teaching conditions, the above-mentioned courses or teaching contents are all explained intensively by teachers, or carried out by means of ppt, audio and video materials through computers; no matter what kind of teaching method, the teaching content cannot be combined with the real building, so the teaching content Abstract, not closely related to actual buildings, teaching is not intuitive enough, theory and practice are separated, affecting students' understanding and mastery of knowledge points

Method used

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  • Node-based intelligent demonstration teaching system for buildings
  • Node-based intelligent demonstration teaching system for buildings
  • Node-based intelligent demonstration teaching system for buildings

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0075] Example 1——The concentrated load demonstration module of the beam and the joint display of the beam plane method

[0076] Such as Figure 9 It can be seen that in a two-story full-frame steel structure, a beam skeleton 3 is selected as a beam for demonstration, and a red demonstration lamp is installed on the beam skeleton 3 as a demonstration lamp 31 of concentrated load on the beam, and six yellow demonstration lamps are used as a demonstration of uniform load on the beam Lamp 30, two orange demonstration lamps are used as the demonstration lamp 230 of bending moment force, a yellow light strip is used as the demonstration lamp 32 of the primary load deformation curve, and a red lamp strip is used as the secondary load deformation curve demonstration lamp 33 of the beam.

[0077]The beam uniform load demonstration lamp 30 includes two upper and lower light sources, which are controlled by two relays to realize six beam uniform load demonstration lamps 30 according to ...

Embodiment 2

[0092] Example 2——Concentrated load demonstration module of cantilever beam and 4-node display of beam flat method

[0093] Such as Figure 5 It can be seen that a cantilever beam skeleton is selected as the beam for demonstration, and a red demonstration lamp is installed on the cantilever beam skeleton 7 as the cantilever beam concentrated load demonstration lamp 71, an orange demonstration lamp is used as the bending moment force demonstration lamp 230, and a blue The light strip is used as the primary load deformation demonstration light 72 of the cantilever beam, and a yellow light strip is used as the secondary load deformation demonstration light 73 of the cantilever beam.

[0094] The control system includes a single chip microcomputer and 5 relays.

[0095] The concentrated load demonstration of the cantilever beam is as follows;

[0096] Step 1: The red demonstration light (cantilever beam concentrated load demonstration light 71) lights up the lower 1 / 2 part;

[...

Embodiment 3

[0105] Example 3——Axial compression demonstration module of column and node display of column flat method

[0106] Such as Figure 3 to Figure 9 It can be seen that in the second floor of the full-frame reinforced skeleton structure, a column skeleton 2 is selected as a demonstration column, and four sets of high-brightness white demonstration lights are installed in sequence from top to bottom along the axis of the column skeleton 2 as building internal force load demonstration lights 20.

[0107] Such as figure 1 , Fig. 2 shows that the control system includes a single-chip microcomputer, and also includes 4 relays corresponding to the building internal force load demonstration lamp 20, and the single-chip microcomputer is connected to the plurality of relays; all demonstration lamps are electrically connected to the power supply through the relay.

[0108] The demonstration of the axial compression of the column is as follows:

[0109] Step 1: The uppermost group of whit...

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Abstract

The invention provides a node-based building intelligent demonstration teaching system, which includes a building structure frame, and also includes a photoelectric demonstration system, a node display system and a control system; the photoelectric demonstration system includes a plurality of demonstration lamps arranged on the building structure frame and a demonstration light strip; the control system includes a control host, the control host includes a photoelectric control part and a node control part; the photoelectric control part includes a single-chip microcomputer, and also includes a plurality of relays corresponding to the demonstration lights and light strips of the photoelectric demonstration system, and the single-chip microcomputer and The plurality of relays are connected, and the demonstration lamp and the demonstration lamp strip are respectively connected to an external power supply via a relay; the node control part also includes a PC connected to a single-chip microcomputer, and a node display database is provided in the PC; the present invention uses Demonstrate the knowledge points of building mechanics in an intuitive way, and can provide multimedia teaching content combined with physical models; it also provides an intuitive self-study mode.

Description

technical field [0001] The invention relates to a teaching and training system, in particular to a node-based building intelligence demonstration teaching system. Background technique [0002] The course of building mechanics is involved in the teaching of architectural majors in colleges and universities. The teaching content mainly includes: the basic force of different parts of the building, such as the force of the column, beam, roof, ground and other parts of the building; the building is subjected to various forces. , the transmission path and deformation of the force; 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 size of the column Eccentric compression, force transmission of frame structure system, horizontal force and stress of buildings, etc. [0003] In addition, the teaching of archite...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G09B25/04G09B5/06
Inventor 陶盛王东峰陶顺
Owner 陶顺
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