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Ti-6Al-4V基體上等離子噴涂羥基磷灰石涂層的熱-力耦合和殘余應力
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西南交通大學力學與工程學院

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TB34

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四川省應用基金項目 (2014JY0016)


Thermal-mechanical coupling and residual stresses in plasma sprayed hydroxyapatite coating upon Ti-6Al-4V substrate
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School of Mechanics and Engineering,Southwest Jiaotong University

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    摘要:

    基于熱彈塑性理論建立了等離子噴涂羥基磷灰石涂層的熱-力耦合模型。一方面,通過引入變形對溫度的影響項對經(jīng)典的Fourier瞬態(tài)熱傳導方程進行了修正,另一方面,在考慮了溫度軟化效應、應變硬化效應、和應變率強化效應后,采用適用于高溫、高應變率條件下的Johnson-Cook模型作為本構(gòu)方程?;谏鲜鲴詈夏P?采用有限元方法對涂層內(nèi)的殘余應力場進行了模擬,同時還模擬了基體預熱溫度以及涂層厚度對殘余應力的影響。為了驗證數(shù)值模擬的可靠性,還采用“材料去除”的實驗技術測試了涂層在界面處的殘余應力。結(jié)果表明:在界面邊緣有明顯的應力集中;適當提高基體的預熱溫度有利于減小殘余應力;涂層的殘余應力隨厚度的增加而增大。

    Abstract:

    A thermal-mechanical coupling model was developed based on thermal-elastic-plastic theory according the special process of plasma sprayed Hydroxyapatite (HA) coating upon Ti-6Al-4V substrate. On the one hand, the classical Fourier transient heat conduction equation was modified by introducing the effect item of deformation on temperature, on the other hand, the Johnson-Cook model, suitable for high temperature and high strain rate conditions, was used as constitutive equation after considering temperature softening effect, strain hardening effect and strain rate reinforcement effect. Based on the above coupling model, the residual stress field within the HA coating was simulated by using finite element method(FEM). Meanwhile, the substrate preheating temperature and coating thickness on the influence of residual stress components were calculated, respectively. In addition, in order to verify the reliability of calculation, the material removal measurement technique was applied to determine the residual stress of HA coating near the interface. Some important conclusions are obtained.

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唐達培. Ti-6Al-4V基體上等離子噴涂羥基磷灰石涂層的熱-力耦合和殘余應力[J].稀有金屬材料與工程,2017,46(6):1508~1511.[Tang Dapei. Thermal-mechanical coupling and residual stresses in plasma sprayed hydroxyapatite coating upon Ti-6Al-4V substrate[J]. Rare Metal Materials and Engineering,2017,46(6):1508~1511.]
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  • 收稿日期:2015-03-16
  • 最后修改日期:2015-06-04
  • 錄用日期:2015-08-11
  • 在線發(fā)布日期: 2017-11-07
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