首页> 外文期刊>Russian physics journal >Shape Memory Effect and Superelasticity in [001] Single Crystals of Fe-Ni-Co-Al-Nb(B) Ferromagnetic Alloy
【24h】

Shape Memory Effect and Superelasticity in [001] Single Crystals of Fe-Ni-Co-Al-Nb(B) Ferromagnetic Alloy

机译:Fe-Ni-Co-Al-Nb(B)铁磁合金[001]单晶的形状记忆效应和超弹性

获取原文
获取原文并翻译 | 示例
           

摘要

Shape memory effect (SME) and superelasticity (SE) during thermoelastic martensitic transformation (MT) from the FCC high-temperature gamma-phase to the BCT alpha'-martensite are investigated in Fe - 28% Ni - 17% Co - 11.5% Al - 2.5% Nb (Nb) and Fe - 28% Ni - 17% Co - 11.5% Al - 2.5% Nb - 0.05% B (NbB) (at.%) single crystals oriented for tension along the [001] direction after aging at 973 K for 10 h. Non-equiaxial (NiAl) beta-phase particles with thickness d and length l equal to 60-80 and 340-500 nm, respectively, and volume fraction f a parts per thousand yen 3-5% are precipitated in Nb crystals during aging simultaneously with the (FeNiCo)(3)(AlNb) gamma A '-phase with sizes d = 12.5-16.5 nm. It is shown that precipitation of the beta-phase with f a parts per thousand currency sign 3-5% in the crystal volume does not reduce the crystal plasticity, and SME of 4.2% and SE up to 6.5% under loading are observed during thermoelastic gamma-I +/- aEuro(2) MT in single crystals in a wide range of temperatures from 77 to 293 K. The beta-phase is not detected in NbB crystals during aging. It is established that boron in NbB crystals slows down the aging processes: the gamma'-phase particles have sizes 6.5-8 nm. The SME of 4.2% and SE up to 4.0% are observed in NbB crystals at temperatures from 77 to 243 K.
机译:在Fe-28%Ni-17%Co-11.5%Al中研究了从FCC高温伽马相到BCTα'-马氏体的热弹性马氏体转变(MT)期间的形状记忆效应(SME)和超弹性(SE)。 -2.5%Nb(Nb)和Fe-28%Ni-17%Co-11.5%Al-2.5%Nb-0.05%B(NbB)(at。%)单晶,时效后沿[001]方向拉伸在973 K下持续10小时。分别在Nb晶体中析出厚度d和长度l分别等于60-80和340-500 nm的非等轴(NiAl)β相粒子,同时在时效过程中析出Nb晶体中的体积分数fa零件/千日元3-5%。 (FeNiCo)(3)(AlNb)γA相,尺寸d = 12.5-16.5 nm。结果表明,在晶体体积中,β-相的析出具有千分之几的fa含量为3-5%,并不会降低晶体的可塑性,在热弹性γ过程中,在负载下观察到的SME为4.2%,SE为6.5% -I +/- aEuro(2)MT在77至293 K的较宽温度范围内的单晶中。在老化过程中未在NbB晶体中检测到β相。可以确定的是,NbB晶体中的硼会减缓老化过程:γ相颗粒的尺寸为6.5-8 nm。在77至243 K的温度下,NbB晶体的SME为4.2%,SE高达4.0%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号