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用原子顯微鏡納米壓痕法研究Gr/Al復(fù)合材料熱循環(huán)后的微觀力學(xué)性能
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TB331

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National Science Foundation of China under Grant No.59871027.


AFM-based Nanoindentation Studies of Micromechanical Properties in Gr/Al Composites after Thermal Cycling
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    摘要:

    采用原子力顯微鏡納米壓痕法測(cè)量了Gr/Al復(fù)合材料熱循環(huán)后界面附近的納米硬度和塑性變形能力的分布。隨熱循環(huán)次數(shù)的增加,纖維和基體中的納米硬度小,而基體的塑性變形能力增加。納米硬度和塑性變形能力的大小是隨距纖維/基體界面的距離的變化而變化的。納米硬度的變化可提供有關(guān)殘余應(yīng)變方面的信息,這是因?yàn)椴牧蟽?nèi)部局部區(qū)域的彈性或塑性殘余應(yīng)變會(huì)影響此處的硬度大小。

    Abstract:

    Thermal cycling conditions are among the most sever environmental conditions for composites and have a great effect on the micromechanical properties near interfaces.An AFM(atomic force microscope)-based nanoindentation method was employed to measure the nanohardness and the plastic deformation capacity near interfaces in graphite fiber reinforced aluminum alloy matrix composites(Gr/Al)after thermal cycling.With increasing of thermal cycles, the nanohardness values of both fibers and the matrix decrease and the plastic deformation capacity of the matrix increases.Both of the changes in the nanohardness and the plastic deformation capacity are dependent of the distance to the fiber-matrix interface.Changes in nanohardness can provide important information about residual strains because the local elastic or plastic residual strains have effects on the local hardness.

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劉澄 Masaa.,N 等.用原子顯微鏡納米壓痕法研究Gr/Al復(fù)合材料熱循環(huán)后的微觀力學(xué)性能[J].稀有金屬材料與工程,2001,(4):261~263.[Liu Cheng, Zhang Guoding, NAKA Masaaki. AFM-based Nanoindentation Studies of Micromechanical Properties in Gr/Al Composites after Thermal Cycling[J]. Rare Metal Materials and Engineering,2001,(4):261~263.]
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  • 最后修改日期:2000-12-29
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