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1)  Peierls stress
Peierls应力
1.
Using the Langevin force to describe the effect of temperature on the dislocation behavior,the slip of dislocation overcoming the Peierls stress and drag stress is simulated by the three-dimensional discrete dislocation dynamics model.
在三维离散位错动力学模型中,用Langevin力描述温度对位错的影响作用,模拟了位错克服晶格Peierls应力与阻尼应力的滑移过程。
2.
The crucial proplem of dislocation theory is the core structure, which is closely related with the Peierls stress and the interaction between dislocations that is correlated with the ductility and work hardening of materials.
位错芯结构与表征位错滑移性的Peierls应力、位错之间相互作用细部特征之间的关系十分密切。
2)  Spin-Peierls system
Spin-Peierls
1.
The influence of dzyaloshinskii-moriya interaction on the dimerization in Spin-Peierls systems;
D-M相互作用对Spin-Peierls系统二聚化的影响
3)  Peierls phase transition
Peierls相变
1.
Peierls phase transition and field emission of carbon nanotubes in a magnetic field;
Peierls相变与磁场中碳纳米管的场发射
2.
Study of curved surfaces of phonon dispersion in trigonal lattice of two-dimensional pre-and after Peierls phase transition;
二维三角晶格的Peierls相变前后的声子色散曲面的研究
3.
Using a Frhlich Hamiltonian for the electron\|lattice interaction, an expression for the Peierls phase transition temperature( T P)of metallic helical carbon nanotube ( n 1,n 2 )has been derived.
根据描述电子 声子相互作用的Fr hlich哈密顿量 ,推导出了金属螺旋型碳纳米管 (n1,n2 )的Peierls相变温度的一般表达式 ,并利用该式计算了 (6 ,3)的Peierls相变温度 。
4)  spin-Peierls model
spin-Peierls模型
1.
The effect of quasiperiodicity on lattice distortion and energy gap in spin-Peierls model;
准周期对spin-Peierls模型中晶格畸变和能隙的影响
5)  spin-Peierls system
spin-Peierls系统
6)  Peierls transition
Peierls相变
1.
The temperature dependence of resistivity (p-T) of IMbSes crystal showed that it experiences two Peierls transitions at Tp1=145 K and Tp2=57 K respectively, and the residual resistance ratio RRR.
NbSe_3单晶的电阻温度与温度的关系(ρ-T)曲线表明,NbSe_3样品分别在T_(ρ1)=145 K和T_(ρ2)=57 K 经历两次 Peierls相变、剩余电阻比 RRR高于 200。
2.
This article investigates the effect of short_range interaction of strongly correlated electrons on the Peierls transition of a quasi one_dimensional system.
研究短程强电子关联对Peierls相变的影响 。
补充资料:轧辊残余应力(见轧辊应力)


轧辊残余应力(见轧辊应力)
residual stresses in roll

zhagun eanyu yingli轧辊残余应力(residual stresses in roll)见礼辐应力。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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