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各向异性

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The results provide theoretical proof for the manufacturing of friction anisotropy surface.

研究结果对仿生制造摩擦各向异性表面提供实验依据。

As one of key problems urgent to be resolved in the fields of mechanics, material science and sheet metal forming, constructing reasonable yield criterion, work-hardening law and stress-strain relationship is very important for predicting distribution of stress and strain in sheet metal forming, as well as for improving FEA simulation precision and resolving engineering problems.

各向异性板料的屈服准则、塑性变形强化规律以及应力应变关系的合理建立,对于准确预测板料成形过程中应力应变分布,提高板料成形有限元模拟精度,以及精确解析板料成形工程问题等方面具有重要的意义,这一基础性的研究一直是力学界、材料界、板料成形领域致力研究的关键问题。

The inefficiency problem during cold rolling of titanium sheet without tension exerted on it was investigated. The state equation of stress of titanium sheet under tensional effect is deduced on the basis of Hill's anisotropic yield criterion in combination with the anisotropic characteristics of titanium s mechanical properties.

针对钛板在无张力条件下冷轧效率低下的问题,首先结合钛材力学性能各向异性的特点,以Hill异性屈服准则为基础,推导出钛板在张力冷轧下的应力状态方程,从而在理论上阐明,钛板在张力条件下进行冷轧的可行性主要取决于其塑性变形条件及其所处的应力状态。

The presented model can take into account the effects of stress path pressure level, inherent anisotropy, void ratio, work softening associated with strain localization into a shear band and loading rate effect on the stress-stain behavior.

该模型可以考虑应力路径、压力水平、固有各向异性、孔隙比等因素对砂土变形和强度特征的影响,以及应变局部化和加载速率变化所产生的黏性特性。

The result show that the N elements curbed the transition from anatase phase to rutile phase , Doped-N was in the structure of the TiO2 as the form of Ti-O-N and formed a new bond energy level;N-doped changed the paramagnetic of the characteristics. The paramagnetic resonance spectrum of TiO2 showed anisotropic and showed hyperfine splitting, The Lande factor of Ti3 + combined with the N is 1.956. UV-Vis absorption spectra showed that the photocatalytic ability of photocatalyst TiO2-xNx to expand to the visible region, the sample (3.84wt %) has the highest photo catalytic activity, the adsorption edge extend to 520nm and degradation is 55.54% under the visible light for 1.5h.

研究结果显示,N元素抑制了锐钛矿相向金红石相的转变,阻止了晶粒的长大,掺杂的N元素以O-Ti-N的形式存在于光催化剂结构中,形成了新的能级结构;N掺杂改变了催化剂的顺磁特征,使TiO2的顺磁共振谱线呈现各向异性,发生了超精细分裂,其中g2=1.956,是与N结合的Ti3+的朗德因子;紫外可见光吸收谱表明,催化剂TiO2-xNx的光响应能力拓展到可见光区,光吸收带发生红移;光催化测试结果显示,掺杂量为3.84的TiO2-xNx在可见光区的响应能力最高,吸收波长延伸至520nm,其光催化活性最大,1.5h降解率达到55.54%。

Low permeability reservoir ; anisotropy ; reasonable ratio of space between wells and rows ; numerical simulation ; theoretical plate

低渗透油藏;各向异性;合理井排距比;数值模拟;理论图版

For the unstable state flow of single phase fluid, the finite element method is compared with analytical solution for one-dimensional plane flow.

为使模拟计算更加接近实际情况,将油水井作为油藏的内边界处理,建立各向异性油藏单相流体渗流问题的有限元方程。

This work gives the general solution for the generalized two-dimensional problem of piezoelectric media, and then presented the solution for the corresponding plane problem as a special example. Moreover, a detailed discussion is made about the relation between two theories.

本文推导了一般各向异性压电介质广义二维问题的 Lekhnitskii 理论,作为其特例,给出了压电介质平面问题的解法;并系统地总结了所建立的 Lekhnitskii 理论与 Stroh 理论的内在联系及各自的特点。

The slip line solutions of stress field and velocity feild on plane strain problems are derived.

推导出考虑各向异性损伤的平面应变问题应力场的滑移线解和速度滑移线解。

The results showed that the three straight lines model could fit the soil shrinking and swelling characteristic curves well. The characteristic values of the curves were smaller than 1. This indicated that during the processes of soil swelling and shrinking, the change of the soil specific volume was smaller than that of the soil water content. Values of the geometry factors of four soils studied were equal to 1 at the beginning of shrinking, less than 3 and greater than 1 at other swelling-shrinking phases. The geometry factor values in different phases showed that soil swelling-shrinking was anisotropic and only subsidence occurred at the beginning of shrinking.

结果显示:三直线模型能够很好地拟合4种土壤的收缩、膨胀过程;土壤收缩、膨胀曲线各段的特征值均小于1,这说明土壤胀缩过程中土壤容积的变化速率小于含水量的变化速率;4种土壤胀缩过程中几何因子r大于1而小于3,且收缩初期几何因子r等于1,表明土壤的胀缩是各向异性的,并且在土壤收缩的最初阶段只有垂直收缩。

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