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首页> 外文期刊>Materials & design >Evaluation of grain refiners influence on the mechanical properties in a CuAlBe shape memory alloy by ultrasonic and mechanical tensile testing
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Evaluation of grain refiners influence on the mechanical properties in a CuAlBe shape memory alloy by ultrasonic and mechanical tensile testing

机译:通过超声和​​机械拉伸试验评估晶粒细化剂对CuAlBe形状记忆合金的力学性能的影响

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摘要

This work carried out a non-destructive evaluation of grain size influence on the mechanical properties of a CuAlBe shape memory alloy with and without grain refiners. Ultrasonic signal processing, considering only the longitudinal velocity, was used for the non-destructive evaluation. Therefore, the average modulus of elasticity values found for the CuAlBe shape memory alloy was 45.7 GPa and 57.3 GPa with and without grain refiners, respectively. The corresponding values obtained by conventional mechanical tensile testing were equal to 43.2 GPa and 52.6 GPa, respectively. Additionally the mechanical tensile testing verified that the addition of grain refiners increases the stress of the alloy but has a slight effect on the alloy's ductility. Thus, the modulus of elasticity and consequently the ultrasonic velocity, as well as the stress and strain values of CuAlBe alloy are fully dependent on its grain size. The ultrasonic analysis shows that this alloy is an excellent sound, vibration and mechanical wave absorber, presenting a high attenuation coefficient related to the wave scattering through the grains. In addition, the ultrasonic signal processing method used here confirms its main advantages of fastness and reliability.
机译:这项工作对晶粒大小对有无晶粒细化剂的CuAlBe形状记忆合金的机械性能的影响进行了无损评估。仅考虑纵向速度的超声信号处理用于无损评估。因此,在有和没有晶粒细化剂的情况下,CuAlBe形状记忆合金的平均弹性模量值分别为45.7 GPa和57.3 GPa。通过常规机械拉伸试验获得的相应值分别等于43.2 GPa和52.6 GPa。另外,机械拉伸试验证明,添加晶粒细化剂会增加合金的应力,但对合金的延展性影响很小。因此,CuAlBe合金的弹性模量以及因此的超声波速度以及应力和应变值完全取决于其晶粒尺寸。超声分析表明,这种合金是一种出色的声音,振动和机械波吸收剂,具有与穿过晶粒的波散射有关的高衰减系数。另外,这里使用的超声信号处理方法证实了其牢固性和可靠性的主要优点。

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  • 来源
    《Materials & design》 |2010年第7期|p.3275-3281|共7页
  • 作者单位

    Universidade Federal da Paraiba (UFPB), Departamento de Engenharia Mecanica (DEM), Odade Universitaria, S/N - 58059-900 - Joao Pessoa/PB, Brazil Universidade de Fortaleza (UNIFOR), Centro de Ciencias Tecnologicas (CCT), Nucleo de Pesquisas Tecnologicas (NPT), Av. Washington Soares, 1321, Sola NPT/CCT, CEP 60.811-905,Edson Queiroz, Fortaleza, Ceara, Brazil;

    rnUniversidade Federal da Paraiba (UFPB), Departamento de Engenharia Mecanica (DEM), Laboratorio de Solidificacao Rapida (LSR), Odade Universitaria,S/N - 58059-900 - Joao Pessoa/PB, Brazil;

    rnUniversidade Federal da Paraiba (UFPB), Departamento de Engenharia Mecanica (DEM), Laboratorio de Solidificacao Rapida (LSR), Odade Universitaria,S/N - 58059-900 - Joao Pessoa/PB, Brazil;

    rnUniversidade Federal da Paraiba (UFPB), Departamento de Engenharia Mecanica (DEM), Laboratorio de Solidificacao Rapida (LSR), Odade Universitaria,S/N - 58059-900 - Joao Pessoa/PB, Brazil;

    rnFaculdade de Engenharia da Universidade do Porto (FEUP), Departamento de Engenharia Mecanica (DEMec)/Instituto de Engenharia Mecanica e Cestao Industrial (INECI),Rua Roberto Frias, S/N - 4200-465, Porto, Portugal;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Non-ferrous metals and alloys; E. Sound, vibration and mechanical wave; absorber; G. Non-destructive testing;

    机译:A.有色金属和合金;E.声音;振动和机械波;吸收体G.无损检测;

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