A Summary Of Numerous Strain Gage Load Calibrations On Aircraft Wings And Tails In A Technological Format


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A Summary of Numerous Strain-Gage Load Calibrations on Aircraft Wings and Tails in a Technological Format


A Summary of Numerous Strain-Gage Load Calibrations on Aircraft Wings and Tails in a Technological Format

Author: National Aeronautics and Space Administration (NASA)

language: en

Publisher: Createspace Independent Publishing Platform

Release Date: 2018-07-17


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Fifteen aircraft structures that were calibrated for flight loads using strain gages are examined. The primary purpose of this paper is to document important examples of load calibrations on airplanes during the past four decades. The emphasis is placed on studying the physical procedures of calibrating strain-gaged structures and all the supporting analyses and computational techniques that have been used. The results and experiences obtained from actual data from 14 structures (on 13 airplanes and 1 laboratory test structure) are presented. This group of structures includes fins, tails, and wings with a wide variety of aspect ratios. Straight- wing, swept-wing, and delta-wing configurations are studied. Some of the structures have skin-dominant construction; others are spar-dominant. Anisotropic materials, heat shields, corrugated components, nonorthogonal primary structures, and truss-type structures are particular characteristics that are included. Jenkins, Jerald M. and DeAngelis, V. Michael Armstrong Flight Research Center ANISOTROPY; AERODYNAMIC LOADS; AIRCRAFT STRUCTURES; ASPECT RATIO; LOADS (FORCES); SWEPT WINGS; STRAIN GAGES; AERODYNAMIC CONFIGURATIONS; DELTA WINGS; FINS; TRUSSES...

Strain Gage Loads Calibration Testing of the Active Aeroelastic Wing F/A-18 Aircraft


Strain Gage Loads Calibration Testing of the Active Aeroelastic Wing F/A-18 Aircraft

Author:

language: en

Publisher:

Release Date: 2002


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This report describes strain-gage calibration loading through the application of known loads of the Active Aeroelastic Wing F/A-18 airplane. The primary goal of this test is to produce a database suitable for deriving load equations for left and right wing root and fold shear; bending moment; torque; and all eight wing control-surface hinge moments. A secondary goal is to produce a database of wing deflections mesured by string potentiometers and the onboard flight deflection measurement system. Another goal is to produce strain-gage data through both the laboratory data acquisition system and the onboard aircraft data system as a check of the aircraft system. Thirty-two hydraulic jacks have applied loads through whiffletrees to 104 tension-compression load pads bonded to the lower wing surfaces. The load pads covered approximately 60 percent of the lower wing surface.