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一种预测TP347H钢长时持久强度的方法
引用本文:党莹樱,彭志方,彭芳芳. 一种预测TP347H钢长时持久强度的方法[J]. 动力工程, 2012, 32(9): 728-732
作者姓名:党莹樱  彭志方  彭芳芳
作者单位:1. 武汉大学动力与机械学院,武汉,430072
2. 东方锅炉股份有限公司材料研究所,自贡,643001
基金项目:中央高校基本科研业务费专项资金资助项目,东方锅炉(集团)股份有限公司科技项目
摘    要:基于多区LMP法,利用TP347H钢的高温(700℃、750℃)短时(≤5×10^3h)试验数据预测其长时持久强度(600~750℃,5×10^3~2×10^5h).结果表明:在应力-时间图中根据口/dT。的特定比值对应力分区,用低应力-长时区LMP参数中的C值计算长时持久强度,其预测值与真实值吻合良好;与传统的单区LMP法相比,多区LMP法的应用不仅显著降低了持久强度的过估倾向而且大大缩短了试验时间,为这类钢的长时持久强度评估提供了准确而有效的方法.

关 键 词:持久强度  多区LMP法  TP347H钢  预测

An Approach for Long-term Creep-rupture Strength Prediction of Steel TH347H
DANG Ying-ying,PENG Zhi-fang,. School of Power and Mechanical Engineering,Wuh PENG Fang-fang. An Approach for Long-term Creep-rupture Strength Prediction of Steel TH347H[J]. Power Engineering, 2012, 32(9): 728-732
Authors:DANG Ying-ying  PENG Zhi-fang  . School of Power  Mechanical Engineering  Wuh PENG Fang-fang
Affiliation:2 University, Wuhan 430072, China; 2. Department of Materials Research, Dongfang Boiler Group Co. , Ltd. , Zigong 643001, China)
Abstract:On the basis of a multi-region Larson-Miller parameter method newly proposed, long term creep rupture strengths (600-750 ℃, 5 ×10^3 -2×10^5 h) were successfully predicted for steel TP347H by using the data from tests lasting up to only 5 × 10^3 h at 700 ℃ and 750 ℃. Results show that in the plot of stress vs. rupture life, a set of creep rupture data can be divided into several data sets according to the specific value of σ/σrs, SO that the value C is unique in each individual data set; by using the C value in LMP corresponding to the lower-stress longer-time region, long-term creep rupture strengths have been assessed for the steel, of which the predicted results agree well with that of actual measurements. Compared with conventional single region LMP method, the proposed approach may not only avoid overestimation of creep rupture strength, but also shorten the time needed for creep rupture tests. This may serve as a reference for prediction of long-term creep-rupture life of similar steels.
Keywords:creep-rupture strength  multi-region LMP method  TP347H steel  prediction
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