Mod.9Cr-1Mo鋼溶接継手のクリープ損傷挙動

宏通 本郷, 正明 田淵, 永奎 李, 高橋 由紀夫
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引用次数: 9

Abstract

Mod.9Cr-1Mo steel has been used for boiler components in ultra-supercritical (USC) thermal power plants. The creep strength of welded joint of this steel decreases due to Type-IV creep cracking formed in heat affected zone (HAZ) at high temperatures. The present paper aims to clarify the damage process and microstructural degradation of the welded joint. Long-term creep tests for base metal, simulated HAZ and welded joints were conducted at 550, 600 and 650°C. Furthermore, creep tests of thick welded joint specimens were interrupted at several time steps for 600°C, 90MPa, and the damage distribution was measured. It is found that creep voids initiate at early stage of creep life (t/tr = 0.2), and coalesce into the crack at the later stage of life (t/tr = 0.9). Creep damages concentrate mostly at a quarter depths of the plate thickness in the fine-grained HAZ. The experimental creep damage distribution was compared with the computed one by using the damage mechanics analysis.
Mod. 9cr - 1mo钢焊接接头的蠕形损伤行为
mod9 cr - 1mo钢已用于超超临界火电厂锅炉部件。高温下热影响区(HAZ)形成iv型蠕变裂纹,导致焊接接头蠕变强度降低。本文旨在阐明焊接接头的损伤过程和显微组织退化。对母材、模拟热影响区和焊接接头在550、600和650℃下进行了长期蠕变试验。在600°C、90MPa条件下,对厚焊接接头试件进行了多次中断蠕变试验,测量了损伤分布。结果表明:蠕变孔洞在蠕变寿命初期(t/tr = 0.2)萌生,在蠕变寿命后期(t/tr = 0.9)形成。蠕变损伤主要集中在细晶热影响区板厚的1 / 4深度处。采用损伤力学分析方法,将试验得到的蠕变损伤分布与计算得到的损伤分布进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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