條件下的等溫恒應(yīng)變速率壓縮實(shí)驗(yàn)數(shù)據(jù),分析了Laves相NbCr2/Nb兩相合金的流變應(yīng)力行為,計(jì)算了熱變形激活能Q、功率耗散效率η和失穩(wěn)因子 ;建立了以變形工藝參數(shù)為輸入變量,Q、η和 為響應(yīng)目標(biāo)的響應(yīng)面模型,并基于多目標(biāo)優(yōu)化獲得了適宜的變形工藝參數(shù)窗口條件。結(jié)果表明,Laves相NbCr2/Nb兩相合金為正應(yīng)變速率和負(fù)溫度敏感材料;在所研究的工藝參數(shù)范圍,Q、η和 值分別在157.0~659.3 J/mol,0.01~0.81和-0.6229~0.6359范圍波動(dòng),這說(shuō)明合金的塑性變形能力對(duì)工藝參數(shù)變化敏感;所建立的Q、η和 響應(yīng)面模型具有較高的預(yù)測(cè)精度,其決定系數(shù)R2分別達(dá)到0.992,0.999和0.953,平均絕對(duì)相對(duì)誤差A(yù)ARE分別為1.29%,0.63%和11.5%;變形工藝參數(shù)對(duì)Q的交互影響順序(從大到小)為:變形溫度/應(yīng)變速率>應(yīng)變速率/真應(yīng)變>變形溫度/真應(yīng)變,而變形工藝參數(shù)對(duì)η和 的交互影響順序基本相同,即,變形溫度/應(yīng)變速率>變形溫度/真應(yīng)變>應(yīng)變速率/真應(yīng)變;基于低Q,高η和 的多目標(biāo)優(yōu)化而獲得的適宜變形工藝窗口條件為1440-1473K和0.001-0.05s-1,最佳變形工藝條件在1473K、0.001s-1附近。對(duì)最佳變形工藝條件下的微觀組織驗(yàn)證表明,基于多目標(biāo)優(yōu)化獲得的變形工藝窗口條件是正確的。"/>

最新色国产精品精品视频,中文字幕日韩一区二区不卡,亚洲有码转帖,夜夜躁日日躁狠狠久久av,中国凸偷窥xxxx自由视频

+高級(jí)檢索
Laves相NbCr2/Nb兩相合金的熱變形行為及基于響應(yīng)面法的變形工藝參數(shù)優(yōu)化
作者:
作者單位:

南昌航空大學(xué)

作者簡(jiǎn)介:

通訊作者:

中圖分類號(hào):

基金項(xiàng)目:

國(guó)家自然科學(xué)基金(51964034,52161021)


Hot deformation behavior of Laves phase NbCr2/Nb two-phase alloy and optimization of deformation process parameters based on response surface method
Author:
Affiliation:

School of Aeronautical Manufacturing Engineering,Nanchang Hangkong University

Fund Project:

國(guó)家自然科學(xué)基金(51964034,52161021)

  • 摘要
  • |
  • 圖/表
  • |
  • 訪問(wèn)統(tǒng)計(jì)
  • |
  • 參考文獻(xiàn)
  • |
  • 相似文獻(xiàn)
  • |
  • 引證文獻(xiàn)
  • |
  • 資源附件
  • |
  • 文章評(píng)論
    摘要:

    Laves相NbCr2/Nb兩相合金因具有作為高溫結(jié)構(gòu)材料應(yīng)用的潛力而引起了較廣泛的研究關(guān)注?;诤辖鹪?273-1473K和0.001-0.1s-1條件下的等溫恒應(yīng)變速率壓縮實(shí)驗(yàn)數(shù)據(jù),分析了Laves相NbCr2/Nb兩相合金的流變應(yīng)力行為,計(jì)算了熱變形激活能Q、功率耗散效率η和失穩(wěn)因子 ;建立了以變形工藝參數(shù)為輸入變量,Q、η和 為響應(yīng)目標(biāo)的響應(yīng)面模型,并基于多目標(biāo)優(yōu)化獲得了適宜的變形工藝參數(shù)窗口條件。結(jié)果表明,Laves相NbCr2/Nb兩相合金為正應(yīng)變速率和負(fù)溫度敏感材料;在所研究的工藝參數(shù)范圍,Q、η和 值分別在157.0~659.3 J/mol,0.01~0.81和-0.6229~0.6359范圍波動(dòng),這說(shuō)明合金的塑性變形能力對(duì)工藝參數(shù)變化敏感;所建立的Q、η和 響應(yīng)面模型具有較高的預(yù)測(cè)精度,其決定系數(shù)R2分別達(dá)到0.992,0.999和0.953,平均絕對(duì)相對(duì)誤差A(yù)ARE分別為1.29%,0.63%和11.5%;變形工藝參數(shù)對(duì)Q的交互影響順序(從大到小)為:變形溫度/應(yīng)變速率>應(yīng)變速率/真應(yīng)變>變形溫度/真應(yīng)變,而變形工藝參數(shù)對(duì)η和 的交互影響順序基本相同,即,變形溫度/應(yīng)變速率>變形溫度/真應(yīng)變>應(yīng)變速率/真應(yīng)變;基于低Q,高η和 的多目標(biāo)優(yōu)化而獲得的適宜變形工藝窗口條件為1440-1473K和0.001-0.05s-1,最佳變形工藝條件在1473K、0.001s-1附近。對(duì)最佳變形工藝條件下的微觀組織驗(yàn)證表明,基于多目標(biāo)優(yōu)化獲得的變形工藝窗口條件是正確的。

    Abstract:

    Laves phase NbCr2/Nb two-phase alloy has attracted extensive research attention due to its potential as high temperature structural materials. Based on the isothermal constant strain rate compression experimental data of the alloy at temperatures ranging from 1273 to 1473 K and strain rates ranging from 0.001 to 0.1 s-1, the flow stress behavior of the alloy was analyzed, the thermal deformation activation energy Q, power dissipation efficiency η and instability factor were calculated, response surface models with the deformation process parameters as input variables and Q, η and as response targets was established, and the appropriate window conditions of deformation process parameters were obtained by multi-objective optimization. The results show that Laves phase NbCr2/Nb two-phase alloy is a positive strain rate and negative temperature-sensitive material. The values of Q, η and values fluctuate within the range of 157.0-659.3 J/mol, 0.01-0.81 and -0.6229-0.6359, respectively, which indicates that the plastic deformation capacity of the alloy is sensitive to the change of process parameters. The established response surface models for Q, η and have high prediction accuracy with the determination coefficients R2 reaching 0.992, 0.999 and 0.953, respectively, and the average absolute relative errors AARE are 1.29%, 0.63% and 11.5%, respectively. The interaction order of deformation process parameters on Q (from large to small) is as follows: deformation temperature/strain rate>strain rate/true strain>deformation temperature/true strain, while the interaction order of deformation process parameters on η and is basically the same, that is, deformation temperature/strain rate>deformation temperature/true strain>strain rate/true strain. Based on the multi-objective optimization of low Q, high η and , the appropriate deformation process window conditions are 1440-1473K and 0.001-0.05s-1, and the optimal deformation process window condition is around 1473K and 0.001s-1. Microstructural verification under the optimal deformation process conditions confirms the correctness of the deformation process window conditions obtained through multi-objective optimization.

    參考文獻(xiàn)
    相似文獻(xiàn)
    引證文獻(xiàn)
引用本文

王雙見(jiàn),魯世強(qiáng),王克魯,鄧麗萍,肖璇,張開(kāi)銘. Laves相NbCr2/Nb兩相合金的熱變形行為及基于響應(yīng)面法的變形工藝參數(shù)優(yōu)化[J].稀有金屬材料與工程,2024,53(8):2301~2313.[Wang Shuangjian, Lu Shiqiang, Wang Kelu, Deng Liping, Xiao Xuan, Zhang Kaiming. Hot deformation behavior of Laves phase NbCr2/Nb two-phase alloy and optimization of deformation process parameters based on response surface method[J]. Rare Metal Materials and Engineering,2024,53(8):2301~2313.]
DOI:10.12442/j. issn.1002-185X.20230410

復(fù)制
文章指標(biāo)
  • 點(diǎn)擊次數(shù):
  • 下載次數(shù):
  • HTML閱讀次數(shù):
  • 引用次數(shù):
歷史
  • 收稿日期:2023-06-28
  • 最后修改日期:2023-07-29
  • 錄用日期:2023-08-24
  • 在線發(fā)布日期: 2024-08-20
  • 出版日期: 2024-08-08