2涂層;熱沖擊;有限元模擬;應(yīng)力分布"/> 2/Mo涂層加熱至1000 ℃,再迅速冷卻至室溫進行熱震循環(huán),表征了材料在熱震循環(huán)過程中裂紋的演變過程并評估了MoSi2/Mo涂層的熱沖擊行為。采用Abaqus軟件計算了MoSi2/Mo涂層在熱沖擊過程中的應(yīng)力分布,討論了熱震循環(huán)中裂紋的發(fā)展過程。結(jié)果表明:Mo基體與MoSi2涂層之間存在較高的熱沖擊應(yīng)力,這將導(dǎo)致裂紋的萌生和擴展。計算結(jié)果顯示:在最初的10次熱震循環(huán)中,涂層產(chǎn)生了垂直于界面的裂紋,在界面上沒有出現(xiàn)裂紋,涂層與基體仍結(jié)合良好;在隨后的熱震循環(huán)中開始出現(xiàn)界面裂紋,界面裂紋開始于垂直裂紋的末端區(qū)域,當(dāng)垂直裂紋與界面裂紋匯聚,會導(dǎo)致涂層剝離和涂層失效。"/>

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

+高級檢索
MoSi2/Mo涂層熱震過程中界面應(yīng)力分布和裂紋擴展的有限元模擬
作者:
作者單位:

中南大學(xué) 材料科學(xué)與工程學(xué)院,湖南 長沙 410083

作者簡介:

通訊作者:

中圖分類號:

基金項目:

國家重點研發(fā)計劃2018YFC1901700


Finite Element Simulation of Stress Distribution and Crack Propagation of MoSi2/Mo Coating During Thermal Shock Cycles
Author:
Affiliation:

School of Materials Science and Engineering, Central South University, Changsha 410083, China

Fund Project:

National Key R&D Program of China (2018YFC1901700)

  • 摘要
  • |
  • 圖/表
  • |
  • 訪問統(tǒng)計
  • |
  • 參考文獻
  • |
  • 相似文獻
  • |
  • 引證文獻
  • |
  • 資源附件
  • |
  • 文章評論
    摘要:

    在氫氣保護下將MoSi2/Mo涂層加熱至1000 ℃,再迅速冷卻至室溫進行熱震循環(huán),表征了材料在熱震循環(huán)過程中裂紋的演變過程并評估了MoSi2/Mo涂層的熱沖擊行為。采用Abaqus軟件計算了MoSi2/Mo涂層在熱沖擊過程中的應(yīng)力分布,討論了熱震循環(huán)中裂紋的發(fā)展過程。結(jié)果表明:Mo基體與MoSi2涂層之間存在較高的熱沖擊應(yīng)力,這將導(dǎo)致裂紋的萌生和擴展。計算結(jié)果顯示:在最初的10次熱震循環(huán)中,涂層產(chǎn)生了垂直于界面的裂紋,在界面上沒有出現(xiàn)裂紋,涂層與基體仍結(jié)合良好;在隨后的熱震循環(huán)中開始出現(xiàn)界面裂紋,界面裂紋開始于垂直裂紋的末端區(qū)域,當(dāng)垂直裂紋與界面裂紋匯聚,會導(dǎo)致涂層剝離和涂層失效。

    Abstract:

    The thermal shock behavior of molybdenum disilicide (MoSi2)/molybdenum (Mo) coating and the crack propagation were evaluated by heating the coating to 1000 °C, and then cooling it down to room temperature under the protection atmosphere of hydrogen during the thermal shock cycle. Meanwhile the thermal stress distribution of MoSi2/Mo coating during thermal shock was calculated by Abaqus software. The development process of crack during thermal shock cycles was discussed. The results show that there is a high thermal shock stress between the Mo substrate and MoSi2 coating, which can lead to the crack initiation and propagation. According to the extended finite element simulation results, the cracks appear perpendicular to the interface during the first ten thermal shock cycles, while the coating is still well bonded with the substrate and shows no signs of crack along the interface. The interfacial crack appears in the subsequent thermal shock cycles. The interfacial crack begins at the end zone of the vertical crack. When the vertical crack and the interfacial crack converge, the coating peels off and the coating failure occurs.

    參考文獻
    相似文獻
    引證文獻
引用本文

吳壯志,陳浩,蔡圳陽,劉新利,王德志.MoSi2/Mo涂層熱震過程中界面應(yīng)力分布和裂紋擴展的有限元模擬[J].稀有金屬材料與工程,2021,50(11):3934~3941.[Wu Zhuangzhi, Chen Hao, Cai Zhenyang, Liu Xinli, Wang Dezhi. Finite Element Simulation of Stress Distribution and Crack Propagation of MoSi2/Mo Coating During Thermal Shock Cycles[J]. Rare Metal Materials and Engineering,2021,50(11):3934~3941.]
DOI:10.12442/j. issn.1002-185X. E20200045

復(fù)制
文章指標
  • 點擊次數(shù):
  • 下載次數(shù):
  • HTML閱讀次數(shù):
  • 引用次數(shù):
歷史
  • 收稿日期:2020-09-15
  • 最后修改日期:2021-04-16
  • 錄用日期:2021-04-27
  • 在線發(fā)布日期: 2021-11-25
  • 出版日期: 2021-11-24