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Ag/Ni20纖維復(fù)合材料觸點(diǎn)制備過(guò)程中的塑性變形
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云南省科研院所技術(shù)開(kāi)發(fā)研究專(zhuān)項(xiàng)(2002KFZX-31);云南省中青年學(xué)術(shù)帶頭人后備人才項(xiàng)目(2006py01-42)


Plastic Deformation of Severely Deformational Ag/Ni20 Fiber Composite Contacts during the Preparation Process
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    摘要:

    以大變形Ag/Ni20纖維復(fù)合材料觸點(diǎn)為實(shí)驗(yàn)樣品,以?huà)呙桦婄R等為分析手段,根據(jù)觸點(diǎn)內(nèi)部纖維組織的變形和分布情況,通過(guò)建立5區(qū)域應(yīng)力應(yīng)變模型,研究大變形金屬纖維復(fù)合材料觸點(diǎn)制備中的塑性問(wèn)題。結(jié)果表明,觸點(diǎn)在制備過(guò)程中存在壓縮和拉伸兩種變形,位于釘頭與釘角處的第3區(qū)和釘頭表面的第1區(qū)應(yīng)力應(yīng)變最集中,為拉伸變形,平均變形量在80%,是裂紋容易產(chǎn)生的地方。材料塑性應(yīng)滿(mǎn)足這兩個(gè)區(qū)域的塑性拉伸變形要求,才能制備出高質(zhì)量的觸點(diǎn)

    Abstract:

    Severely deformational Ag/Ni20 fiber composite contacts were used as experimental samples and the scanning electron microscopy as the analytical manner. According to the deformation and distribution of fiber structure in contacts, the plastic problems of severely deformational metal fiber composite contacts during the preparation process were investigated by the creation of five area stress-strain models. The results indicate that both compressive deformation and tensile deformation exist during the preparation of contacts. Stress-strain is most intense in the third area which locates in the head and the corner of contact and the first area which locates in the surface of contact. Both areas suffer tensile deformation with average strain of 80%, and cracks would occur in these areas with the maximum probabilities. Contacts with high qualities could be produced if materials satisfy plastic tensile deformation in these two areas.

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管偉明,張昆華,郭俊梅. Ag/Ni20纖維復(fù)合材料觸點(diǎn)制備過(guò)程中的塑性變形[J].稀有金屬材料與工程,2010,39(10):1745~1748.[Guan Weiming, Zhang Kunhua, Guo Junmei. Plastic Deformation of Severely Deformational Ag/Ni20 Fiber Composite Contacts during the Preparation Process[J]. Rare Metal Materials and Engineering,2010,39(10):1745~1748.]
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  • 收稿日期:2009-09-01
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