APPLICATIONS OF THE PROXIMITY SPECTRUM INCLUDING SPECTRA OF SOME SIMPLE SHOCK DESIGN AND TEST MOTIONS.

Abstract

The concept of a proximity criterion was developed in a paper presented at the 34th Shock and Vibration Symposium. It was suggested that this concept could be expanded to a 'proximity spectrum' which would provide useful insights into the effects of shock motions not obtainable from either the Fourier Spectrum or the shock spectrum. The proximity criterion indicates the effects of shock on a simple idealized equipment consisting of two uncoupled linear single-degree-of-freedom systems mounted to a common rigid base. When the base undergoes a shock motion, the distance between the two masses varies. The change in the distance between these two systems is called the 'proximity criterion. In some types of failure (e.g. electrical malfunctions and collision of parts) this criterion is important. This paper develops the 'proximity criterion' into the 'proximity spectrum' by varying the natural frequencies of the two systems so that data can be obtained for spectral plots. Digital computation is employed for obtaining data from a mathematical model. The technique provides means of comparing different shock motions in terms of their effects on a standard equipment. Proximity spectra of the half-sine, terminal peak sawtooth, and rectangular shock motions are presented. (Author)

Document Details

Document Type
Technical Report
Publication Date
May 01, 1966
Accession Number
AD0488060

Entities

People

  • Edward H. Schell

Organizations

  • Flight Dynamics Laboratory

Tags

DTIC Thesaurus Topics

  • Collisions
  • Computations
  • Diffraction
  • Frequency
  • Frequency Shift
  • Malfunctions
  • Mathematical Models
  • Mechanical Waves
  • Models
  • Motion
  • Office Equipment And Supplies
  • Resonant Frequency
  • Shock Response Spectra
  • Spectra
  • Standards
  • Vibration

Readers

  • Control Systems Engineering.
  • Spectroscopy.
  • Structural Dynamics.