Radio-frequency tuned-circuit microdisplacement transducer

4114428
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Inventors

Popenoe, Charles H.

Application #

726140

Filed

Sep-24-1976

Published

Sep-19-1978

Current US Class

073/761
073/779
073/780
331/65
336/200

International Classes

G01L 005/00

Field of Search

73/88 331/65 324/57 336/105 336/200

Examiners

Myracle; Jerry W.

Attorney, Agent or Firm

Bacon & Thomas

US Patent References

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Abstract
An inductance-capacitance loop defines a resonant circuit and is arranged in a member subject to stress. Strains resulting from the stress vary the inductance or capacitance of the circuit, and its resonant frequency. A dip meter is used to detect the resonant frequency and thus provides a reading indicative of the stress in the member.
 
Claims
I claim:

1. In a strain-stress detecting system comprising:

an elongated integral fastener member subject to elastic deformation when stressed wherein one portion thereof moves relative to another portion;

a resonant circuit assembly carried by said member, said assembly comprising a body of electrical insulating material on said member;

an electrical coil on one surface of said body;

a first capacitor plate on an opposite surface of said body and first means electrically connecting said capacitor plate to one end of said coil;

a second capacitor plate adjacent and movable toward and from said first plate and second means electrically connecting said second plate to the other end of said coil whereby said coil and plates define a resonant circuit; and



Description
BACKGROUND OF THE INVENTION

This invention is in the field of microdisplacement transducers, by which small displacements on the order of 0.001 inch may be measured.

Several types of microdisplacement indicators have been previously invented and patented by myself and others which indicate small displacements by means of a color or intensity change of a visual indicator area. Such indicators have been commonly employed in tensile fasteners to relate changes in elongation or deformation of the fastener to external loading conditions, such that at a prescribed load or tensile stress in the fastener, the indicator will display a prominent color or brightness condition. A known shortcoming of such visual indicators is due to the subjective nature of individual color vision, in that the accuracy of the device relies on the judgement of the operator as to whether or not the proper color change has taken place. Photometric instrumentation to measure the reflectance of the indicator element can eliminate the subjective aspect of the measurement, but is in turn subject to variations due to drift, reflections or dirt present on the indicator window.
 
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