Skip to main navigation Skip to search Skip to main content

Single-Bar SMT Creep-Fatigue Testing on Alloy 617 with Software Controls on Elastic Follow-Up Feedback in Support of New Creep-Fatigue Design Methodology

Research output: Book/ReportProgram Document

Abstract

The Simplified Model Test (SMT) is one of the alternative ways to calculate the creep-fatigue damage of elevated temperature components. The SMT approach unifies the creep and fatigue damage, simplifying the damage calculation process with improved accuracy. Traditionally, SMT tests has have been conducted through the two bars: first is the driver bar and second is the test bar. The driver bar stays elastic and imposes the confinement to the second bar. This experimental procedure requires two test frames and a large test specimen, which limits the test parameter range and accessibility of this testing procedures. Hence, a single-bar SMT (SB-SMT) tests has been developed to simplify complexity in SMT experiment setup. The software-controlled SB-SMT test process has been introduced which completely replaces the driver bar. This paper discusses the single-bar SMT (SB-SMT) test procedure with software controls. The challenges and critical parameters in the software-controlled SB-SMT procedure are addresses addressed and recommendations are provided. A scoping test with a set of wider strain range, elastic follow-ups and dwell time validated the proposed test procedure.
Original languageEnglish
StatePublished - Sep 7 2022

Keywords

  • Creep-fatigue Design
  • Single-Bar Simplified Model Test

INL Publication Number

  • INL/RPT-22-68896
  • 139660

Fingerprint

Dive into the research topics of 'Single-Bar SMT Creep-Fatigue Testing on Alloy 617 with Software Controls on Elastic Follow-Up Feedback in Support of New Creep-Fatigue Design Methodology'. Together they form a unique fingerprint.

Cite this