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金属学报  1987, Vol. 23 Issue (6): 457-463    
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氢对纯铁弹性模量的影响
张统一;蒋方忻;褚武扬;肖纪美
北京钢铁学院;北京钢铁学院;北京钢铁学院;北京钢铁学院
EFFECT OF HYDROGEN ON YOUNG'S MODULUS OF Fe
by ZHANG Tongyi; JIANG Fangxin; CHU Wuyang; XIAO Jimei(Beijing University of Iron and Steel Technology)(Manuscript received 3 October; 1985; revised manuscript 5 July; 1986)
引用本文:

张统一;蒋方忻;褚武扬;肖纪美. 氢对纯铁弹性模量的影响[J]. 金属学报, 1987, 23(6): 457-463.
, , , . EFFECT OF HYDROGEN ON YOUNG'S MODULUS OF Fe[J]. Acta Metall Sin, 1987, 23(6): 457-463.

全文: PDF(517 KB)  
摘要: 采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高纯铁和工业纯铁杨氏模量的影响。结果表明,电解充氢导致应力部分松弛,从而引起表观弹性模量的下降;但在随后放氢过程中E的回升量与人为应力部分松弛后的室温时效过程中E的升高量相当,均为0.1—0.3%。说明电解充氢渗入7—8 ppm的氢对铁原子键合力没有明显影响。 应用悬丝共振法研究了氢对工业纯铁弹性模量的影响也获得了同样的结果。
Abstract:A Bordoni-type apparatus was used to measure the change of apparent Young's modulus of α-Fe induced by hydrogen. The solution of flexural vibration equation for a beam under stress indicates E=C(σ)ω~2. If the resonant frequencies of the first and third tons are measured at about the same time, E and σ can be calculated. The change of apparent Young's modulus after charging with hydrogen is defined as ΔE=ΔE_1(H)+ΔE_2, where ΔE_1(H) relates to the change of the perfect crystal interatomic cohesive force and ΔE_2 is induced by the change of stress. To measure ΔE_2, an artificially partial stress relaxation test was carried out. The result shows that during aging, after both charging and artificial stress releasing, the change of apparent modulus is the same, i.e., ΔE=ΔE_2. Thus, ΔE_1(H) associated with the interatomic cohesive force does not evidently change during aging with escaped hydrogen of 7 to 8 ppm at room temperature, i. e., this amount of hydrogen does not decrease the interatomic cohesive force of α-Fe. Forster's horizontal free-ends bar apparatus was also used in present work, the same result as above was obtained.
收稿日期: 1987-06-18     
1 Oriani R A, Josephic P H. Acta Metall, 1974; 22: 1065
2 Lunarska E, Zieliski A, Smialowski M. Acta Metall, 1977; 25: 305
3 Poton N E, Buck O. In: Tompson A W, Bernstein I M eds., Effect of Hydrogen on Behavior of Materials, New York: AIME, 1976: 83
4 Bastien P, Azou P. C R Hebd Seances Acad Sci, 1950; 231: 147
5 Duflot J. Publications Scientifigues et Technigues du Ministers de l'air, Nr255, 1952
6 Wriedt H W, Oriani R A. Scr Metall, 1974; 8: 203
7 Carpenter S H, Fanks J E, Scr Metall, 1981; 15: 699
8 Zhang Tongyi(张统一),Jiang Fangxin(蒋方忻),Chu Wuyang(褚武扬),Hsiao Chimei(肖纪美).Metall Trans,1985;16A:1655
9 王燕斌,褚武扬,肖纪美.金属学报,1982:18:676
10 Bordoni P G. Nuovo Cimento, 1947: 4: 177
11 Sakamato K, Shimada M. J Phys (Paris), 1981: 42: C5-1091
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