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缺口對GH33A合金在復雜應力條件下力學行為的影響——高溫合金力學冶金(11)

房曉光 梁晉 謝錫善 浦惠康

房曉光, 梁晉, 謝錫善, 浦惠康. 缺口對GH33A合金在復雜應力條件下力學行為的影響——高溫合金力學冶金(11)[J]. 工程科學學報, 1988, 10(4): 428-433. doi: 10.13374/j.issn1001-053x.1988.04.025
引用本文: 房曉光, 梁晉, 謝錫善, 浦惠康. 缺口對GH33A合金在復雜應力條件下力學行為的影響——高溫合金力學冶金(11)[J]. 工程科學學報, 1988, 10(4): 428-433. doi: 10.13374/j.issn1001-053x.1988.04.025
Fang Xiaoguang, Liang Jin, Xie Xishan, Pu Huikang. Notch Effect on Mechanical Behaviour of GH33A Superalloy under Complicated Stress Conditions[J]. Chinese Journal of Engineering, 1988, 10(4): 428-433. doi: 10.13374/j.issn1001-053x.1988.04.025
Citation: Fang Xiaoguang, Liang Jin, Xie Xishan, Pu Huikang. Notch Effect on Mechanical Behaviour of GH33A Superalloy under Complicated Stress Conditions[J]. Chinese Journal of Engineering, 1988, 10(4): 428-433. doi: 10.13374/j.issn1001-053x.1988.04.025

缺口對GH33A合金在復雜應力條件下力學行為的影響——高溫合金力學冶金(11)

doi: 10.13374/j.issn1001-053x.1988.04.025

Notch Effect on Mechanical Behaviour of GH33A Superalloy under Complicated Stress Conditions

  • 摘要: 本文研究了缺口對GH33A合金在高溫低周疲勞及勞疲/蠕變交互作用下的力學行為。結果表明:缺口使GH33A合金低周疲勞壽命縮短,其縮短的程度隨缺口尖銳程度的增加而加劇。低周疲勞高應力時,保載時間的作用引入了蠕變分量,促使低周疲勞壽命Nf降低。在低周疲勞固定最大應力,改變最小應力而造成蠕變/疲勞交互作用情況下,其斷裂壽命在一定條件下具有最大值,斷裂機制可由純疲勞斷裂逐步轉化為純蠕變斷裂,其程度主要決定于蠕變應力(或疲勞應力)分量所占比例的大小。

     

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  • 收稿日期:  1987-04-29
  • 網絡出版日期:  2021-11-15

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