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不同相組成近β鈦合金Ti-3Al-5Mo-4Nb-4Cr-2Zr的應(yīng)力腐蝕行為
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1.沈陽工業(yè)大學(xué);2.西北有色金屬研究院

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國家自然科學(xué)(U21A20117,52104379,52071219)


Stress Corrosion Behavior of Near-β Titanium Alloy Ti-3Al-5Mo-4Nb-4Cr-2Zr with different phase compositions
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1.Shenyang University of Technology;2.Northwest Institute for Nonferrous Metal Research,Xi’an

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    摘要:

    海洋工程用近β鈦合金在海水中易發(fā)生應(yīng)力腐蝕開裂,合金相組成對其應(yīng)力腐蝕行為具有顯著影響。通過對近β合金Ti-3Al-5Mo-4Nb-4Cr-2Zr進行三種不同工藝的熱處理,使合金具有不同的三種相組成,利用掃描電子顯微鏡和X射線衍射儀分析顯微組織,并進行電化學(xué)實驗與慢應(yīng)變速率拉伸實驗,研究相組成不同時合金的應(yīng)力腐蝕行為。結(jié)果表明,在β相區(qū)固溶處理后,合金為全β相組織(Pβ);500℃/6h時效處理后,于β基體析出細小且間距較小次生α(αs)相(Pβ+fα);650℃/4h時效處理后,于β基體析出了粗大且間距較大αs相(Pβ+cα)。Pβ+cα的自腐蝕電位相對最小、腐蝕電流密度相對最大、容抗弧仰角及0.01Hz下阻抗模量相對最小,其耐腐蝕性相對最差,相對更優(yōu)的依次為Pβ+fα和Pβ。應(yīng)力腐蝕敏感性指數(shù)由高到低依次為,Pβ+cα、Pβ+fα、Pβ。應(yīng)力腐蝕斷口表面出現(xiàn)韌窩、微裂紋、撕裂棱以及小平面,表明發(fā)生了高度位錯運動和局部塑性變形。應(yīng)力腐蝕開裂主要由氫吸附誘導(dǎo)位錯發(fā)射(AIDE)和氫加速局部塑性變形(HELP)機制主導(dǎo)。αs相間距減小有利于降低合金應(yīng)力腐蝕開裂傾向。

    Abstract:

    Near-β titanium alloys for marine engineering applications may be suffered from stress corrosion cracking. The phase composition has a significant impact on stress corrosion behavior. Different phase compositions of a near-β titanium alloy, Ti-3Al-5Mo-4Nb-4Cr-2Zr, were obtained by undergoing various heat treatments. The microstructures were characterized by scanning electron microscope and X-ray diffraction. The electrochemical measurements and slow strain rate testing were carried out to investigate the effect of phase composition on stress corrosion behavior. The results indicate that the single β phase is obtained by solution treatment at β phase field (Pβ). After aged at 500℃ for 6h, fine secondary α phase with narrow spacing precipitate within β matrix (Pβ+fα). After aged at 650℃ for 6h, coarsened secondary α phase with wide spacing precipitate within β matrix (Pβ+cα). For the Pβ+cα, the corrosion potential and elevation angle of capacitive impedance arc as well as impedance modulus at 0.01Hz are relatively minimum, and the corrosion current density is relatively maximum. The Pβ+cα exhibits relatively poor corrosion resistance. The relatively better order is the Pβ+fα and Pβ. The stress corrosion susceptibility index order from high to low is Pβ+cα、Pβ+fα、Pβ. The fracture morphology exhibits a mixed characteristic with shallow dimples and micro-cracks as well as tear ridges and flat facets. The combination of Absorption Induced Dislocation Emission (AIDE) and Hydrogen Enhanced Localized Plasticity (HELP) is the main mechanism for stress corrosion cracking. The decrease of secondary α phase spacing has a beneficial effect on reducing the stress corrosion susceptibility.

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王川,張浩宇,陳立佳,周舸,程軍,張思倩.不同相組成近β鈦合金Ti-3Al-5Mo-4Nb-4Cr-2Zr的應(yīng)力腐蝕行為[J].稀有金屬材料與工程,2024,53(8):2241~2249.[Wang Chuan, Zhang Haoyu, Chen Lijia, Zhou Ge, Cheng Jun, Zhang Siqian. Stress Corrosion Behavior of Near-β Titanium Alloy Ti-3Al-5Mo-4Nb-4Cr-2Zr with different phase compositions[J]. Rare Metal Materials and Engineering,2024,53(8):2241~2249.]
DOI:10.12442/j. issn.1002-185X.20230394

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  • 收稿日期:2023-06-21
  • 最后修改日期:2023-08-12
  • 錄用日期:2023-08-24
  • 在線發(fā)布日期: 2024-08-20
  • 出版日期: 2024-08-08