FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Prediction of long-term creep curves

Hiroshi Oikawa, Kouichi Maruyama1992年Fusion Engineering and DesignIF 1.7出版社

AbstractThis paper aims at discussing how to predict long-term irradiation enhanced creep properties from shor-term tests. The predictive method based on the π concept was examined by using creep data of ferritic steels. The method was successful in predicting creep curves including the tertiary creep stage as well as rupture lifetimes. Some material constants involved in the method are insensitive to the irradiation environment, and their values obtained in thermal creep are applicable to irradiation enhanced creep. The creep mechanisms of most engineering materials definitely change at the athermal yield stress in the non-creep regime. One should be aware that short-term tests must be carried out at stresses lower than the athermal yield stress in order to predict the creep behavior of structural components correctly.

日本語訳

本稿は、短期試験から長期の照射促進クリープ特性を予測する方法について論じることを目的とする。π概念に基づく予測手法を、フェライト鋼のクリープデータを用いて検証した。本手法は、破断寿命だけでなく、三次クリープ領域を含むクリープ曲線の予測に成功した。本手法に含まれるいくつかの材料定数は照射環境に鈍感であり、熱クリープで得られた値は照射促進クリープに適用可能である。ほとんどの実用材料のクリープ機構は、非クリープ領域における非熱的降伏応力で確実に変化する。構造部品のクリープ挙動を正確に予測するためには、短期試験を非熱的降伏応力より低い応力で実施しなければならないことに留意すべきである。

この論文にはまだAI要約がありません。

関連論文

Constitutive thermal creep deformation relations for lifetime prediction of a fusion reactor first wall ferritic alloy

1990Fusion Engineering and Design

Analysis of irradiation creep and the structural integrity of fusion in-vessel components

2000Fusion Engineering and Design

Irradiation creep induced stress relaxation of Inconel 718

2000Fusion Engineering and Design

Irradiation creep lifetime analysis on first wall structure materials for CFETR

2017Fusion Engineering and Design

Creep surge effect under cyclic irradiation of structural materials for fusion reactors

2004Fusion Engineering and Design

The long-term creep behavior and damage mechanism of RAFM steel for fusion reactors

2023Fusion Engineering and Design

Creep fatigue assessment for EUROFER components

2015Fusion Engineering and Design

Resonant creep enhancement in austenitic stainless steels due to pulsed irradiation at low doses

1995Fusion Engineering and Design

Crack growth in first wall made of reduced activation ferritic steel by transient creep due to long pulse operation

2003Fusion Engineering and Design

Research on thermal creep behavior of Chinese low-activation ferritic/martensitic steel

2023Fusion Engineering and Design