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微觀組織對Ti-6Al-4V-4Zr-1.5Mo合金絕熱剪切敏感性的影響
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Effects of Microstructure on the Adiabatic Shear Banding Sensitivity of Ti-6Al-4V-4Zr-Mo Alloy
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    摘要:

    對鍛造態(tài)Ti-6Al-4V-4Zr-1.5Mo合金采用不同的熱處理工藝得到等軸、雙態(tài)和網(wǎng)籃3種組織。使用分離式Hopkinson Bar技術(shù)對3種組織的試樣進(jìn)行動態(tài)剪切試驗,研究了不同微觀組織對該合金絕熱剪切敏感性的影響。結(jié)果表明:當(dāng)加載條件高于其臨界應(yīng)變率時,不同組織試樣的承載時間均隨著應(yīng)變率的提高而降低;微觀組織對該合金的絕熱剪切敏感性影響較大,網(wǎng)籃組織絕熱剪切敏感性最低,雙態(tài)組織絕熱剪切敏感性最高;雙態(tài)組織剪切帶附近基體相界處出現(xiàn)微裂紋,是造成其易于發(fā)生剪切破壞的主要原因。

    Abstract:

    An examination of the effects of microstructures on the adiabatic shear banding sensitivity of Ti-6Al-4V-4Zr-Mo alloy was reported. Using the technology of split Hopkinson bar, the dynamic shearing experiments on Ti-6Al-4V-4Zr-Mo alloy with different heat treatments were conducted. The obtained microstructures are divided into the lamellar, the equiaxed and the bimodal according to heat-treatment conditions. The results indicate that the lamellar microstructure has the lowest adiabatic shear banding sensitivity, while the bimodal microstructure has the highest. In the bimodal microstructure, small cracks are found in the α/β interface located in the matrix region near the adiabatic shear band, which is considered as the main reason why the bimodal ones have the highest adiabatic shear banding sensitivity.

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李建崇,李樹奎,范群波,霍咚梅,劉 杰.微觀組織對Ti-6Al-4V-4Zr-1.5Mo合金絕熱剪切敏感性的影響[J].稀有金屬材料與工程,2012,41(1):45~48.[Li Jianchong, Li Shukui, Fan Qunbo, Huo Dongmei, Liu Jie. Effects of Microstructure on the Adiabatic Shear Banding Sensitivity of Ti-6Al-4V-4Zr-Mo Alloy[J]. Rare Metal Materials and Engineering,2012,41(1):45~48.]
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  • 收稿日期:2011-01-11
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