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近全層組織γ-TiAl基合金的室溫拉伸斷裂機(jī)理
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TG146.2

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國家自然科學(xué)基金(59871015)


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    摘要:

    通過對(duì)直缺口近全層組織的掃描電鏡原位拉伸實(shí)驗(yàn)以及相應(yīng)的斷裂表面觀察,結(jié)合有限元計(jì)算了TiAl基合金近全層組織拉伸的斷裂機(jī)理。研究表明:許多裂紋在塑性變形前沿著層間起裂和擴(kuò)展,斷裂過程的驅(qū)動(dòng)力是拉應(yīng)力。在直缺口試樣中,許多裂紋直接起裂于缺口根部,并且沿著層間擴(kuò)展。隨著拉應(yīng)力的增加,主裂紋和新裂紋也可以通過障礙晶粒的穿層解理斷裂來連接。通過有限元計(jì)算得沿層斷裂強(qiáng)度大約為50MPa,穿層斷裂強(qiáng)度大約為120MPa。

    Abstract:

    In situobservations of fracture processes, combined with one to one related observations of fracture surfaces and finite element method (FEM) calculations, are carried out on notched tensile specimens of TiAl alloys for near fully-lamellar microstructure. The results reveal that most cracks are initiated and propagated at the interfaces between lamellae before plastic deformation. The driving force for fracture process is the tensile stress. In specimens with a slit notch, most cracks are initiated directly from the notch root and extend along lamellar interfaces. The main crack and a new crack are then linked by the translamellar cleavage fracture of the barrier grain with the increasing applied load. FEM calculations reveal that the strength along lamellar interfaces (interlamellar fracture) is as low as 50 MPa , appreciably lower than the strength perpendicular to the lamellae (translamellar fracture), which shows a value higher than 120 MPa.

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曹睿 陳劍虹 張繼 王國珍.近全層組織γ-TiAl基合金的室溫拉伸斷裂機(jī)理[J].稀有金屬材料與工程,2005,34(5):696~700.[Cao Rui, Chen Jianhong, Zhang Ji, Wang Guozhen.[J]. Rare Metal Materials and Engineering,2005,34(5):696~700.]
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  • 最后修改日期:2003-07-03
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