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A linked electromagnetic hammer suitable for laboratory research on multi-point ground motion

A ground motion and laboratory technology, applied in the field of interlocking electromagnetic hammer, can solve the problems of long dynamic response time, inability to excite the vibration source, difficult delay control, etc., and achieve rapid dynamic response, good economy and environmental protection. , The effect of delay control is convenient

Active Publication Date: 2017-02-01
TIANJIN UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The excitation mode of the gravity hammer in these vibration source excitation devices has poor repeatability, small application range, long dynamic response time, and when used in conjunction with timing systems or shooting systems, delay control is difficult; During the experimental process, a large number of fragments will fly out due to the explosion, and there is a greater danger; the existing electromagnetic hammer has the advantages of reusability, rapid dynamic response, wide application range and stable loading, but it cannot excite continuous and wide-area vibration source

Method used

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  • A linked electromagnetic hammer suitable for laboratory research on multi-point ground motion
  • A linked electromagnetic hammer suitable for laboratory research on multi-point ground motion
  • A linked electromagnetic hammer suitable for laboratory research on multi-point ground motion

Examples

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Embodiment Construction

[0021] In order to further understand the invention content, characteristics and effects of the present invention, the following examples are given, and detailed descriptions are as follows in conjunction with the accompanying drawings:

[0022] see Figure 1 to Figure 6 , an interlocking electromagnetic hammer suitable for laboratory research on multi-point ground motion, including a casing 1 made of insulating material, and multiple electromagnetic hammers are arranged side by side from left to right in the casing 1, the leftmost The electromagnetic hammer on the side is the first-stage electromagnetic hammer, and the electromagnetic hammer on the far right is the last-stage electromagnetic hammer; a linkage switch 5 is provided between adjacent two-stage electromagnetic hammers; the linkage The switch 5 is an electromagnetic circuit switch of the right-level electromagnetic hammer, and the movement of the left-level electromagnetic hammer drives the closing of the linkage s...

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Abstract

The invention discloses a linkage electromagnetic hammer applicable to researching multi-point seismic oscillation in a laboratory. The hammer comprises a shell made of insulating material, multiple stages of electromagnetic hammer bodies are sequentially arranged in the shell from left to right, the leftmost electromagnetic hammer body is the first-stage electromagnetic hammer body, and the rightmost electromagnetic hammer body is the last-stage electromagnetic hammer body; a linkage switch is arranged between every two adjacent stages of electromagnetic hammer bodies; each linkage switch is an electromagnetic loop switch of the corresponding right-stage electromagnetic hammer body, and the corresponding left-stage electromagnetic hammer body moves to drive the linkage switch to be switched on. The linkage electromagnetic hammer overcomes the defects that an impact loading device in an existing laboratory for hammer drop and hammer swing is small in application range, poor in repeatability and long in dynamic responding time and is combined with the advantages of the existing electromagnetic impact device, and continuous and wide-area stimulation of a vibration source is achieved.

Description

technical field [0001] The invention relates to a laboratory vibration source excitation device, in particular to a linked electromagnetic hammer suitable for laboratory research on multi-point ground motion. Background technique [0002] Vibration source excitation devices commonly used in laboratories at this stage include gravity hammers, small-caliber rifles, explosives, and electromagnetic hammers. The excitation mode of the gravity hammer in these vibration source excitation devices has poor repeatability, small application range, long dynamic response time, and when used in conjunction with timing systems or shooting systems, delay control is difficult; During the experimental process, a large number of fragments will fly out due to the explosion, and there is a greater danger; the existing electromagnetic hammer has the advantages of reusability, rapid dynamic response, wide application range and stable loading, but it cannot excite continuous and wide-area source o...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01V1/02
Inventor 柳国环高云起
Owner TIANJIN UNIV
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