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拉伸变形对Hastelloy C-276合金组织与力学性能的影响
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北京有色金属研究总院

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TG146.15

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Effects of tensile deformation on microstructure and mechanical properties of Hastelloy C-276 alloy
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General Research Institute for Nonferrous Metals

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    摘要:

    摘 要: 采用金相(OM)、电子背散射衍射(EBSD)以及拉伸实验等技术手段研究了不同变形量条件下Hastelloy C-276合金薄板的组织演化特征和力学性能。结果表明:变形量小于14%时,位错优先在晶界附近塞积,并产生局部应变集中;变形量在14~30%范围内,孪晶界附近及晶粒内部产生大量位错,位错滑移引起晶粒内部应变集中增强;变形量由0增加至30%,晶界应变集中程度因子先增大后减小,变形量为14%时晶界应变集中程度因子最大。利用Ludwigson模型回归拟合了不同变形条件下的真应力-真应变曲线,随变形量的增加,材料的加工硬化程度提高,加工硬化速率减小,发生单滑移向多滑移转变的临界应变减小。

    Abstract:

    Abstract: The microstructural evolution and mechanical properties of Hastelloy C-276 alloy sheet with different deformations were investigated using the optical microscope (OM), electron back-scattered diffraction (EBSD), and tensile test. The results show that dislocation pile-ups and local strain concentration preferentially appear at grain boundaries under the deformation less than 14%. When deformation is in the range of 14~30%, a great quantity of dislocation was produced which located at twin boundaries and within grains, and the dislocation slip led to high strain concentration within grains. When deformation degree increasing from 0 to 30%, the strain concentration degree of grain boundaries increases at first then decreases, and reaches the maximum at 14%. The Ludwigson model can describe the true stress-true strain curves by the regression fitting. With the deformation degree increasing, the degree of work-hardening improved while the work-hardening rate decreased, and the critical strain of single slip transforming to multiple slip decreased.

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冯策.拉伸变形对Hastelloy C-276合金组织与力学性能的影响[J].稀有金属材料与工程,2016,45(12):3128~3134.[fengce. Effects of tensile deformation on microstructure and mechanical properties of Hastelloy C-276 alloy[J]. Rare Metal Materials and Engineering,2016,45(12):3128~3134.]
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  • 收稿日期:2014-09-03
  • 最后修改日期:2014-12-09
  • 录用日期:2015-01-13
  • 在线发布日期: 2017-02-06
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