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首页> 外文期刊>KSME International Journal >Creep characterization of type 316LN and HT-9 stainless steels by the K-R creep damage model
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Creep characterization of type 316LN and HT-9 stainless steels by the K-R creep damage model

机译:通过K-R蠕变损伤模型对316LN和HT-9型不锈钢进行蠕变表征

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摘要

The Kachanov and Rabotnoy (K-R) creep damage model was interpreted and applied to type 316LN and HT-9 stainless steels. Seven creep constants of the model, A, B, k, m, λ, γ, and q were determined for type 316LN stainless steel. In order to quantify a damage parameter, the cavity was interruptedly traced during creep for measuring cavity area to be reflected into the damage equation. For type 316LN stainless steel, λ=ε{sub}R/ε{sup}* and λ{sub}f=ε/ε{sub}R were 3.1 and increased with creep strain. The creep curve with λ=3. 1 depicted well the experimental data to the full lifetime and its damage curve showed a good agreement when γ=24. However for the HT-9 stainless steel, the values of λ and λ{sub}f were different as λ =6.2 and λ{sub}f=8.5, and their K-R creep curves did not agree with the experimental data. This mismatch in the HT-9 steel was due to the ductile fracture by softening of materials rather than the brittle fracture by cavity growth. The differences of the values in the above steels were attributed to creep ductilities at the secondary and the tertiary creep stages.
机译:解释了Kachanov和Rabotnoy(K-R)蠕变损伤模型,并将其应用于316LN和HT-9型不锈钢。对于316LN型不锈钢,确定了模型的七个蠕变常数A,B,k,m,λ,γ和q。为了量化损伤参数,在蠕变过程中间断地跟踪了空腔,以测量要反映到损伤方程中的空腔面积。对于316LN型不锈钢,λ=ε{sub} R /ε{sup} *和λ{sub} f =ε/ε{sub} R为3.1,并随蠕变应变而增加。 λ= 3的蠕变曲线。图1很好地描绘了整个寿命的实验数据,当γ= 24时,其损伤曲线显示出良好的一致性。但是,对于HT-9不锈钢,λ和λ{sub} f的值不同,为λ= 6.2和λ{sub} f = 8.5,并且它们的K-R蠕变曲线与实验数据不一致。 HT-9钢的这种不匹配是由于材料软化引起的延性断裂,而不是由于空洞生长造成的脆性断裂。上述钢中值的差异归因于第二和第三蠕变阶段的蠕变延展性。

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