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三点弯曲裂纹张开柔度的实验研究
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作者 邱保文 凃应宏 李荣锋 《武钢技术》 CAS 2008年第2期1-3,15,共4页
运用裂纹张开柔度法对ASTME399-1990和GB/T4161-1984中三点弯曲试样测试断裂韧度KIC中的线弹性加载特性进行实验研究,结合疲劳裂纹扩展过程,得出GB/T4161对试样加载平行度要求过严的结论,提出平行度放宽到0.05 W的范围。
关键词 三点弯曲 裂纹 断裂韧度 线弹性加载
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Molecular dynamics analysis on bending mechanical behavior of alumina nanowires at different loading rates 被引量:3
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作者 Yuxiao James HE Bin MA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第11期3687-3698,共12页
The molecular dynamics(MD)model ofα-Al_(2)O_(3) nanowires in bending is established by using LAMMPS to calculate the atomic stress and strain at different loading rates in order to study the effect of loading rate on... The molecular dynamics(MD)model ofα-Al_(2)O_(3) nanowires in bending is established by using LAMMPS to calculate the atomic stress and strain at different loading rates in order to study the effect of loading rate on the bending mechanical behaviors of theα-Al_(2)O_(3) nanowires.Research results show that the maximum surface stress−rotation angle curves ofα-Al_(2)O_(3) nanowires at different loading rates are all divided into three stages of elastic deformation,plastic deformation and failure,where the elastic limit point can be determined by the curve symmetry during loading and unloading cycle.The loading rate has great influence on the plastic deformation but little on the elastic modulus ofα-Al_(2)O_(3) nanowires.When the loading rate is increased,the plastic deformation stage is shortened and the material is easier to fail in brittle fracture.Therefore,the elastic limit and the strength limit(determined by the direct and indirect MD simulation methods)are closer to each other.The MD simulation result ofα-Al_(2)O_(3) nanowires is verified to be valid by the good agreement with the improved loop test results.The direct MD method becomes an effective way to determine the elastic limit and the strength limit of nanoscale whiskers failed in brittle or ductile fracture at arbitrary loading rate. 展开更多
关键词 alumina nanowires bending behavior loading rate elastic limit strength limit molecular dynamics
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Plastic characterization of metals by combining nanoindentation test and finite element simulation 被引量:5
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《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第8期2368-2373,共6页
Materials with the same elastic modulus E and representative stress and strain (σr,εr) present similar indentation-loading curves, whatever the value of strain hardening exponent n. Based on this definition, a goo... Materials with the same elastic modulus E and representative stress and strain (σr,εr) present similar indentation-loading curves, whatever the value of strain hardening exponent n. Based on this definition, a good approach was proposed to extract the plastic properties or constitutive equations of metals from nanoindentation test combining finite element simulation. Firstly, without consideration of strain hardening, the representative stress was determined by varying assumed representative stress over a wide range until a good agreement was reached between the computed and experimental loading curves. Similarly, the corresponding representative strain was determined with different hypothetical values of strain hardening exponent in the range of 0-0.6. Through modulating assumed strain hardening exponent values to make the computed unloading curve coincide with that of the experiment, the real strain hardening exponent was acquired. Once the strain hardening exponent was determined, the initial yield stress ay of metals could be obtained by the power law constitution. The validity of the proposed methodology was verified by three real metals: AISI 304 steel, Fe andA1 alloy. 展开更多
关键词 NANOINDENTATION finite element simulation representative stress representative stain initial yield stress
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