Piezoelectric telescope-feed tension compression bidirectional stress initiative anti-seismic control device

A control device, a sleeve-type technology, applied in the direction of earthquake resistance, building components, etc., can solve the problems of low work efficiency and poor adaptability, and achieve the effects of reliable performance, good compression performance, and simple and practical structure.

Inactive Publication Date: 2010-06-16
XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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AI Technical Summary

Problems solved by technology

[0003] In order to solve the technical problems of poor adaptability to the environment and low work efficiency of existing active anti-seismic control devices, the present invention provides a piezoelectric sleeve-type active anti-seismic control device under tension and compression bidirectional force

Method used

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  • Piezoelectric telescope-feed tension compression bidirectional stress initiative anti-seismic control device
  • Piezoelectric telescope-feed tension compression bidirectional stress initiative anti-seismic control device
  • Piezoelectric telescope-feed tension compression bidirectional stress initiative anti-seismic control device

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Embodiment Construction

[0020] The present invention will be further described below in conjunction with accompanying drawing:

[0021] see Figure 1-Figure 4 As shown, the piezoelectric sleeve-type two-way active anti-seismic control device provided by the present invention includes an outer sleeve 1, a fastening power-changing nut 2 arranged on the upper end of the outer layer sleeve 1, and passes through the fastening power-changing nut 2 The first connecting rod 3; the second connecting rod 4 arranged at the lower end of the outer sleeve 1; the outer sleeve 1 is provided with an inner sleeve 6 of a hollow structure, and a cuboid is placed in the inner sleeve 6 Or a cylindrical piezoelectric stack 7; the upper end of the inner sleeve is fixedly connected to the fixed force nut 2 through bolts 5; a first transmission end plate is arranged between the upper end of the inner sleeve 6 and the upper end of the piezoelectric stack 7 8. A second transmission end plate 9 with a hemispherical hinge 10 is ...

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Abstract

The invention provides a piezoelectric telescope-feed tension compression bidirectional stress initiative anti-seismic control device, comprising an external tube, a fastening force changing nut arranged at the upper part of the external tube and a first connecting rod penetrating the fastening force changing nut; a second connecting rod is arranged at the lower part of the external tube; an internal tube in hollow structure is arranged in the external tube, and piezoelectric pile is placed in the internal tube; the upper end of the internal tube is fixedly connected with the fastening force changing nut by a bolt; a first transmission end plate is arranged between the upper end part of the internal tube and the upper end part of the piezoelectric pile; a second transmission end plate provided with a hinge is arranged between the lower end part of the internal tube and the lower end part of the piezoelectric pile; and the inner side at the lower end of the external tube is provided with a lug which is contacted with the hinge of the second transmission end plate in moving process. The invention solves the technical problem that anti-seismic control device is low in working efficiency and has the advantage of strong adaptability to environment.

Description

technical field [0001] The invention relates to the field of anti-seismic control of civil engineering, in particular to a piezoelectric sleeve-type active anti-seismic control device for tension and compression bidirectional force. Background technique [0002] With the increase in span, height and structure of buildings, higher requirements are placed on the safety and comfort of structures. Eliminating or reducing the influence of unfavorable factors through control technology has attracted more and more attention from designers. Among them, the application of passive and semi-active control technology in civil engineering has been well researched and applied, and it relies heavily on the driving The active control technology of the device is greatly limited due to factors such as slow response, small output, and small stroke of the traditional vibration control drive device. The traditional active anti-seismic control drive device can usually only achieve unidirectional...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B1/98
Inventor 王社良马乾瑛朱军强代剑波
Owner XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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