Tech

T-38 Talon jets receive help addressing critical aging aircraft issue causing cracks

Share
Share
SwRI provides rapid response to address critical aging aircraft issue
Southwest Research Institute collaborated with the U.S. Air Force to ensure fleet safety when a large crack was unexpectedly found near the cockpit of a T-38 Talon. The Institute has been working to sustain the T-38, which was first introduced in 1961, for more than 40 years. Credit: Courtesy of United States Air Force

Southwest Research Institute (SwRI) collaborated with the U.S. Air Force to ensure fleet safety after a large crack was unexpectedly found near the cockpit of a T-38 Talon. A new study describes how SwRI’s risk and damage tolerance analyses helped determine a more effective inspection schedule, allowing the Air Force to find cracks before they grow to critical size.

The paper, “T-38 failure analysis of an upper cockpit longeron for safety of flight and sustainment,” appears in the Engineering Failure Analysis journal.

For several decades, SwRI has provided engineering support to the Air Force to extend the life of aircraft that have exceeded their original design life. The Institute has been working to sustain the T-38, first introduced in 1961, for more than 40 years. This activity includes using SwRI-developed models to predict crack growth to determine optimal inspection and maintenance schedules. The Air Force also uses finite element models to help predict the potential crack locations of the aircraft.

“Typically, our role involves predicting structural life and providing analysis used to help determine an inspection or repair schedule,” said SwRI Lead Engineer Laura Hunt. “In the spring of 2017, when a large, unexpected crack was found by a crew chief in a longeron, a key structural component along the aircraft’s fuselage, we were equipped for a rapid response.”

This discovery resulted in the immediate grounding of the entire T-38 fleet for visual inspections, which were completed within four days. SwRI assisted with performing risk, damage tolerance, and failure analyses.

While the crack appeared in a location that full scale fatigue tests and finite element models did not predict, SwRI responded swiftly, minimizing downtime and maintaining safety, resulting from the Institute’s prior analysis work with the T-38 and other aging aircraft.

“A new problem was identified and the entire team supporting the T-38 reacted quickly to ensure the safety of the T-38 and return it to service in a manner of days,” said David Wieland, who oversees SwRI’s Aerospace Structures Section.

Senior Research Engineer Mirella Vargas led the destructive failure analysis for the cracked T-38 longeron. This entailed photographing the as-received component at the macro scale and examining specific areas with optical and electron microscopes at the micro scale, as well as identifying factors that contributed to the cracking. This analysis uncovered an additional crack in the longeron and determined that structural fatigue, the gradual weakening and eventual failure of a material due to cyclic stresses, caused both cracks.

“With this new information, we updated the model to improve the risk analyses,” Vargas said. “Consequently, the frequency of inspections was adjusted, though not drastically changed. To maintain aircraft structural integrity, models may need periodic updates to ensure the safety and functionality of the aircraft components.”

The updated inspection schedule ensured any risk remained low, balancing safety and efficiency until the remaining longerons could be replaced.

“This experience demonstrated our ability to quickly respond to unexpected issues,” Hunt said. “It has reinforced the importance of being prepared and the need for robust analysis methods.”

More information:
Mirella Vargas et al, T-38 failure analysis of an upper cockpit longeron for safety of flight and sustainment, Engineering Failure Analysis (2025). DOI: 10.1016/j.engfailanal.2025.109381

Provided by
Southwest Research Institute


Citation:
T-38 Talon jets receive help addressing critical aging aircraft issue causing cracks (2025, March 18)
retrieved 18 March 2025
from

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no
part may be reproduced without the written permission. The content is provided for information purposes only.

Share

Leave a comment

Leave a Reply

Your email address will not be published. Required fields are marked *

Related Articles
This 122TB SSD costs ,400, but could shrink data centers and their power bills forever
Tech

This 122TB SSD costs $12,400, but could shrink data centers and their power bills forever

Solidigm’s 122.88TB SSD may not be the fastest, but it wins on...

A new tool predicts when users will reject a new technology
Tech

A new tool predicts when users will reject a new technology

If you can predict that a new technology will not be adopted,...

This futuristic dual-screen laptop looks incredible, but one disappointing flaw might ruin it for power users
Tech

This futuristic dual-screen laptop looks incredible, but one disappointing flaw might ruin it for power users

Aura Ultrabook Dual 14″ Touch is perfect for presentations and scrolling through...

Two-actuator robot combines efficient ground rolling and spinning flight in one design
Tech

Two-actuator robot combines efficient ground rolling and spinning flight in one design

Weight breakdown of the ATOM prototype. The battery and the frame contribute...