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含夾雜TiC-TiB2陶瓷強度的細觀力學(xué)分析
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軍械工程學(xué)院,軍械工程學(xué)院,軍械工程學(xué)院,軍械工程學(xué)院,中國人民解放軍72253部隊

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TB332

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國家自然科學(xué)基金項目(面上項目,重點項目,重大項目)


Micromechanical Analysis of TiC-TiB2 Ceramic with Inclusion
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    摘要:

    根據(jù)超重力合成TiC-TiB2裝甲陶瓷的細觀結(jié)構(gòu)和斷裂機理,建立TiC-TiB2裝甲陶瓷細觀強度模型,分兩種失效形式討論了氧化鋁雜質(zhì)顆粒對材料強度的影響。首先根據(jù)相互作用直推估計法計算了TiC-TiB2基體的等效剛度,認為氧化鋁雜質(zhì)顆粒稀疏分布在TiC-TiB2基體中,根據(jù)等效夾雜理論計算了雜質(zhì)顆粒內(nèi)部和附近殘余應(yīng)力和應(yīng)力場分布,得出氧化鋁雜質(zhì)顆??赡艿氖问剑蝗缓蟾鶕?jù)雜質(zhì)顆??赡艹霈F(xiàn)的界面脫粘和顆粒破壞兩種失效形式分別建立模型進行討論,并以兩者的最小值定義為復(fù)合材料的強度,分析了材料強度隨細觀結(jié)構(gòu)和性能參數(shù)的變化規(guī)律,并與實驗結(jié)果進行了對比。結(jié)果表明,模型能夠反映材料失效機理,對于具有與本文相似細觀結(jié)構(gòu)的材料,雜質(zhì)顆粒與等效基體的相對彈性性能和相對熱膨脹性能、雜質(zhì)顆粒尺寸、等效基體韌性等都可能影響雜質(zhì)顆粒失效形式,但是雜質(zhì)顆粒直徑增加、基體韌性降低必然降低材料強度。對于含氧化鋁雜質(zhì)顆粒的TiC-TiB2裝甲陶瓷,界面脫粘是雜質(zhì)顆粒主要的失效形式。

    Abstract:

    A micromechanical was established based on the microstructure and the fracture mechanism of TiC-TiB2 ceramic prepared by combustion synthesis under high gravity. Two different failure modes were assumed in the micromechanical model to analysis the influence of alumina inclusions to ceramic strength. The equivalent stiffness of TiC-TiB2 matrix was calculated using the Interaction Direct Derivative (IDD) estimate. The alumina particles were considered sparse distribution in the TiC-TiB2 equivalent matrix, stress field contained residual stress in and around alumina particle was obtained by the equivalent inclusion method. According to the stress field around the particles, Al2O3 particles failure was considered as the origin of the composite fracture. Interface debonding and particle fracture were assumed as the two failure modes of particle failure, micro strength mechanical models based on these two modes were established and the minimum strength was defined as the composite strength. Composite strength variation with microstructure parameters and property parameters of different micro components was obtained, and the calculated strength was compared to the experimental data. The result shows that the strength model is reasonable in reflecting the composites failure mechanism; relative elastic and thermal properties between the particle and matrix, particle size and the equivalent matrix toughness can change the particle failure mode, and the particle size increasing and the equivalent matrix toughness decreasing result in composite strength necessarily. For TiC-TiB2 combustion synthesis composite with alumina inclusions, particle interface debonding is the primary fracture mechanism.

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付云偉,倪新華,劉協(xié)權(quán),張龍,李寶峰.含夾雜TiC-TiB2陶瓷強度的細觀力學(xué)分析[J].稀有金屬材料與工程,2017,46(12):3818~3824.[Fu yunwei, Ni Xinhua, Liu Xiequan, Zhang Long, Li Baofeng. Micromechanical Analysis of TiC-TiB2 Ceramic with Inclusion[J]. Rare Metal Materials and Engineering,2017,46(12):3818~3824.]
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  • 收稿日期:2015-10-26
  • 最后修改日期:2015-12-19
  • 錄用日期:2016-01-14
  • 在線發(fā)布日期: 2018-01-04
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