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The result shows that in the amorphous material along with the increasing of the interatomic distance to the chosen origin, and the correlation will weaken rapidly. When they apart several interatomic distances, there is no correlation, the relatively position approaches completely disorder.

计算结果表明,在非晶态材料中随着与选作原点的原子间距离的增加,相关性就迅速减弱,在相距几个原子间距的原子之间就显不出相关作用,其相对位置接近完全无序。

The study of diatomic molecular potential energy function is the basic problem because diatomic potentials depend on only a single variable, the interatomic distance.

由于双原子分子的势能仅是原子核间距的函数,因此双原子分子势能函数是势能函数研究的基础问题。

The invention adopts the technical proposal that the nucleation and process of growth of the molecular sieve are controlled properly in the synthetic process of the ZSM-5 molecular sieve material for producing the Magadiite/ZSM-5 intergrowth material, wherein the proportion of intergrown phases is adjustable, and the synthesized Magadiite/ZSM-5 intergrowth material adopts the compositions including the following mole relation: nSiO2:Al2O3, where n is between 50 and 1000 in the formula, and the method is characterized in that the Magadiite/ZSM-5 intergrowth material has two intergrown phases and an XRD diffraction pattern thereof has the d-space maximum value at the lengths of 15.73+-0.1, 11.14+-0.1, 9.97+-0.1, 7.74+-0.1, 5.14+-0.1, 3.86+-0.05, 3.66+-0.05, 3.45+-0.05, 3.30+-0.05 and 3.14+-0.1 angstroms, thereby solving the problems properly.

本发明通过采用在ZSM-5分子筛材料合成过程中,控制好分子筛的成核和生长过程,制备出了一种Magadiite/ZSM-5共生材料,其中共生物相比例可调,合成的Magadiite/ZSM-5共生材料采用包括以下摩尔关系的组成:nSiO2∶Al2O3,式中n=50~1000,其特征在于所述Magadiite/ZSM-5共生材料具有两种共生物相,其XRD衍射图谱在15.73±0.1,11.14±0.1,9.97±0.1,7.74±0.1,5.14±0.1,3.86±0.05,3.66±0.05,3.45±0.05,3.30±0.05,3.14±0.1埃处有d-间距最大值的技术方案,较好地解决了上述问题。

Many research works have shown that the microstructural control of TiAl alloys have an important influence on their mechanical properties, and also found that the grain size, the interlamellar spacing and the α〓/γ volume fraction of the microstructural features are the key factors of microstructural control.

已有的研究确定了TiAl合金的显微组织控制对其力学性能有着重大的影响,提出了TiAl合金的显微组织中晶粒大小,片层间距和α〓/γ相比例等是组织控制的主要因素。

The results show that with the finishing temperature at 950 ℃, as the cooling rate increases, interlamellar spacings of pearlite is reduced; as cooling rate reaches 5℃/s, martensite precipitates.

结果表明,随着冷却速度的加快,高碳钢SWRH77B在950℃变形时,其珠光体的片层间距变细;冷却速度达到5℃/s时,有马氏体组织析出。

Through the comparison of this model with Miller and Smith's shear cracking model, it can be shown that the smaller the interlamellar spacing of pearlite is, the higher the resistance of crack initiation and propagation will be.

该模型与Miller和Smith提出的剪切开裂模型的比较可以说明,珠光体片层间距越细小,裂纹萌生和扩展的阻力越大。

The stability of lamellae decreases with decreasing interlamellar spacing and discontinuous coarsening occurres during aging.

层状组织的稳定性随片间距减小而降低,表现为时效时发生不连续粗化。

The test results show that the contact fatigued microstructure characters mainly the reduction of pearlitic interlamellar spacing, the formation of different type of substructures as well as the deformation and fracture of cementitic lamellar in pearlite.

结果表明,PD3钢轨钢接触疲劳变形组织的主要特征是:珠光体片层间距的减小;不同类型亚结构的形成;渗碳体的变形与断裂。

Thermal stability of different lamellar microstructure in TiAl alloys was studied by TEM methods. Thermal stability of lamellar microstructure in TiAl alloys is not only related to the grain size/average interlamellar spacing, but also closely related to interlamellar boundary structure.

本文还用TEM等手段研究了TiAl合金不同片层显微组织热稳定性,发现TiAl合金的片层组织热稳定性不仅与片层晶粒的大小以及片层间距有关,而且还与片层界面的位错结构等因素密切相关。

PE/organic-montmorillonite nano-composite was prepared by means of direct melt intercalation on a two-rotor continuous mixer, and the interlamellar space of the composite was investigated by means of XRD.

采用双转子连续混炼机,通过直接熔融插层法制备了聚乙烯/有机蒙脱土纳米复合材料,并借助XRD测试了所制备的复合材料的层间距

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