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October 10, 2025

Challenges in Standardizing Additive Manufacturing for Nuclear Components and Associated Material Testing III: Fatigue Test of Type316L Stainless Steel for Standardization of AM Materials in the Nuclear Field – 1st Report

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Authors

HMHideki MatsuokaMMMasashi MoriHYHirofumi Yamadori

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Overview

Fatigue tests evaluate Type 316L stainless steel in additive manufacturing, suggesting standardization may be possible.

Key Points

  • Fatigue life for Type 316L stainless steel in additive manufacturing was assessed using different manufacturing methods.
  • Tests performed revealed that polished surfaces had a longer fatigue life than as-built surfaces, highlighting the importance of surface finishing.
  • Fatigue tests indicated that predicted values for additive manufacturing specimens align with conventional materials, supporting standardization efforts.
  • Both Powder Bed Fusion and Directed Energy Deposition techniques produced specimens that met Japan Society of Mechanical Engineers' design rules.

Cite This Study

Matsuoka et al. (2025) studied this question.

synapsesocial.com/papers/68e8619c7ef2f04ca37e42e7https://doi.org/10.1115/pvp2025-151591
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Challenges in Standardizing Additive Manufacturing for Nuclear Components and Associated Material Testing II) a Statistical Approach to Material Specification Values and Procedures Qualification Methods for Additive Manufactured 316 L Stainless Steel2025
  2. 2Challenges in Standardizing Additive Manufacturing for Nuclear Components and Associated Material Testing IV) Evaluation of Material Properties for Additively Manufactured Type 316L Stainless Steel2025
  3. 3Thermal Fatigue of Additive Manufacture Laser Powder Bed Fusion And Wrought 316LN Stainless Steel Prototypic Small-Bore Globe Valves – A Comparative Study2025
  4. 4Dissipative and thermal aspects in cyclic loading of additive manufactured AISI 316L2024 · 14 citations
  5. 5Fatigue Response of Additive-Manufactured 316L Stainless Steel2024 · 9 citations