氢对纯铁弹性模量的影响

Effect of Hydrogen on the Young’s Modulus of Iron

  • 摘要: 解出了应力作用下梁的横向振动方程,结果表明,E=C(σ)ω2,E是扬氏模量,C是应力σ的函数,ω是样品的固有频率。同时测量基波和高次谐波的频率,就可用计算机求出E和σ。
    用静电激发调频检测法对比研究了电解充氢和人为部分应力松弛对纯铁扬氏模量的影响,结果表明:电解充氢能导致应力部分松弛,从而引起表观弹性模量的下降;在充氢和人为部分应力松弛后的室温时效过程中,应力都有部分回升,E也都升高0.1-0.3%;用排油取气法测得室温放出的氢量为7-8wppm,即7-8wppm的氢对和原子键合力有关弹性模量没有明显影响。
    也应用悬丝共振法研究了氢对纯铁弹性模量的影响并获得了同样的结果。

     

    Abstract: The flexural vibration equation of a beam under stress is set up. The solution of the equation indicates E=C (α)ω2, where E stands for the apparent Young's modulus, C for a function of stress, and ω for the intrinsic frequency of sample. If the resonant frequencies of the first tone and the third one are measured at about same time, E and σ can be calculated.
    The change of the apparent Young's modulus after charging with hydrogen is difined as ΔE=ΔE1 (H) + ΔE2, where ΔE1 (H) has relation with the change of the perfect crystal interatomic cohesive force and ΔE2 is induced by the change of stress. An artificially partial stress relaxation test was done to measure ΔE2. The results show that during ageing after both charging with hydrogen and artificial stress releasing, the apparent modulus increased by 0.1-0.3%, i.e 0ΔE=ΔE2. Thus, the ΔE1 (H) associated with the interatomic cohesive force does not evidently change during the ageing with evolving hydrogen of 7-8 wppm, i.e. hydrogen of 7-8 wppm does not significantly decrease the interatomic cohesive force of α-Fe.
    The Forster's horizontal free-free bar apparatus was also used to measure the change of Young's modulus of a-Fe caused by hydrogen. The same conclusion was obtained.

     

/

返回文章
返回