SEDL / STP / STP338-EB


STP338
Symposium on Fatigue Tests of Aircraft Structures: Low-Cycle, Full-Scale, and Helicopters

Committee E-9
Pages: 267
Published: 1963

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Table of Contents

Introduction
Hardrath H.

Low-Cycle Axial Fatigue Behavior of Mild Steel
Munse W., Yao J.

The Effect of Mean Stress on Fatigue Strength of Plain and Notched Stainless Steel Sheet in the Range From 10 to 107 Cycles
Bell W., Benham P.

Low-Cycle Fatigue Characteristics of Ultrahigh-Strength Steels
Armiento D., Carman C., Markus H.

Low-Cycle Fatigue of Ti-6Al-4V at −423 F
Hilsen R., Whiteson B., Yen C.

Low-Cycle Fatigue Properties of Complex Welded Joints of High-Strength 301, 304L, 310, and AM-355 Stainless Steel Sheet Materials at Cryogenic Temperatures
Christian J., Hurlich A., Watson J.

Effect of Stress State on High-Temperature Low-Cycle Fatigue
Kennedy C.

Empirical Analysis of Fatigue Strength of Pin-Loaded Lug Joints
Mittenbergs A.

Statistical Evaluation of a Limited Number of Fatigue Test Specimens Including a Factor of Safety Approach
Albrecht C.

Helicopter Fatigue Substantiation Procedures for Civil Aircraft
Dougherty J., Spicer H.

An Aluminum Sandwich Panel Fatigue Test Under Mach-2.4 Cruising Conditions
Buntin W., Love T.

Estimation of Fatigue Performance of Aircraft Structures
Schijve J.

Aircraft Structural Fatigue Research in the Navy
Rosenfeld M.

Small Specimen Data for Predicting Life of Full-Scale Structures
Smith C.

Programmed Maneuver-Spectrum Fatigue Tests of Aircraft Beam Specimens
Halsey N., Mordfin L.

Panel Discussion on Low-Cycle Fatigue


Committee: E08
Paper ID: STP338-EB
DOI: 10.1520/STP338-EB
ISBN-EB: 978-0-8031-6212-9

ASTM International is a member of CrossRef.
0-8031-6213-8
978-0-8031-6213-6
STP338-EB