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AZ31鎂合金包辛格效應(yīng)研究
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重慶市自然科學(xué)基金(CSTC,2007BB4111)


Research of Bauschinger Effect of AZ31 Magnesium Alloy
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    摘要:

    采用拉、壓循環(huán)試驗測試了AZ31鎂合金的包辛格效應(yīng)(BE),并研究了BE的機制。測試結(jié)果表明:壓縮預(yù)變形后反向拉伸出現(xiàn)明顯的BE,而拉伸預(yù)變形后反向壓縮出現(xiàn)反包辛格效應(yīng)(RBE);且包辛格效應(yīng)比反包辛格效應(yīng)明顯。循環(huán)拉、壓加載過程中的顯微組織和晶體取向演化研究結(jié)果表明,出現(xiàn)包辛格效應(yīng)是由于預(yù)壓縮時改變晶粒取向與反向拉伸時去孿生效應(yīng)共同作用的結(jié)果;預(yù)拉伸變形雖然不改變晶粒取向,但使軸比c/a值降低,使反向壓縮時發(fā)生孿生更加困難,從而導(dǎo)致反包辛格效應(yīng)。

    Abstract:

    The Bauschinger effect (BE) of AZ31 magnesium alloy was tested by the experiment of cyclical tension and compression, and the mechanisms of BE were investigated. The test results show that the BE is apparent during tension after compression pre-strain, but in compression after tension pre-strain the reverse Bauschinger effect (RBE) is displayed. Furthermore, the BE is much stronger than the RBE. The microstructure and grain orientation evolvement during cyclical tension and compression show that the cause of the BE is the combination of the re-orientation in pre-compression and the effect of de-twinning during subsequent tension, which make the tension yield limit decrease. Though the grain orientation is not changed, the decrease of c/a ratio after pre-tension makes the twinning more difficult in re-compression, resulting in the RBE.

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盛光敏,張功庭,閻 春. AZ31鎂合金包辛格效應(yīng)研究[J].稀有金屬材料與工程,2011,40(4):615~619.[Sheng Guangmin, Zhang Gongting, Yan Chun. Research of Bauschinger Effect of AZ31 Magnesium Alloy[J]. Rare Metal Materials and Engineering,2011,40(4):615~619.]
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  • 收稿日期:2010-04-29
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