1) spherically anisotropic
球向各向异性
2) anisotropic microspheres
各向异性微球
1.
Preparation of anisotropic microsphere via irradiated seeded emulsion polymerization phase separation method: the submicron-sized anisotropic microspheres with different morphologies were obtained by irradiated seeded emulsion polymerization, in which styrene was used as the second-stage monomer and carboxyl-functional monodisperse cross-linked polystyrene microsphere as the seed microspheres.
通过辐射种子乳液聚合相分离法制备各向异性微球:以亚微米级羧酸功能化的单分散交联聚苯乙烯微球为种子,通过γ-射线引发苯乙烯的种子乳液聚合,制备出不同形貌的亚微米级各向异性微球。
3) anisotropy
[,ænai'sɔtrəpi]
各向异性
1.
The asymptotic analysis of interfacial stability with surface tension anisotropy for directional solidification of alloys;
各向异性作用下合金定向凝固界面稳定性的渐近分析
2.
The elastic wave propagation in two-dimensional phononic crystal at low frequencies and the anisotropy of effective velocity;
长波条件下二维声子晶体中的弹性波传播及各向异性
3.
Measurements of magnetic parameter and calculation of anisotropy on carbon fiber with magnetic coating;
具有磁性涂层的连续碳纤维基本磁特性研究及其各向异性计算
4) anisotropic
[英][æn,aisə'trɔpik] [美][,ænaɪsə'trɑpɪk]
各向异性
1.
Constitutive relationships and application of anisotropic viscous materials;
粘性各向异性材料的本构关系及应用
2.
Study on the constitutive equation of anisotropic viscous materials;
粘性各向异性材料本构方程的研究
3.
Study of stress-strain analysis for anisotropic materials;
各向异性材料应力应变分析方法研究
5) anisotropism
[英][,ænai'sɔtrəpizəm] [美][,ænaɪ'sɑtrəpɪzəm]
各向异性
1.
Direct shear test study of anisotropism to Guangzhou soft clay
广州软土各向异性直剪试验研究
2.
Based on anisotropism theory, the technique of fracture detection by multi-component converted wave develops rapidly in recent years, and has started to be used in practical exploration of fractured reservoirs.
基于各向异性理论的多分量转换波裂隙探测技术近年来发展较快 ,已开始应用于裂缝性油气藏的勘探实践之中。
3.
One is an existing inconsistency between the hypothesis and the potential applied in vertical radial flows, the other is a conditional formula in anisotropism formation.
通过坐标变换 ,以及垂直流动面和水平流动面选取不同的渗透率 ,对Joshi水平井产能公式进行修正 ,提出了一个新的渗透率各向异性储层水平井稳定产能公式。
6) anisotropic property
各向异性
1.
The results showed that the values of strength(YS & TS)and yield ratio of specimens in the transverse direction were larger than that of specimens in the longitudinal direction and the anisotropic property was in agreement with the {112}〈110〉ideal orientation.
结果表明,横向试样的强度值大于纵向试样,该各向异性特征取决于{112}〈110〉织构强度;板状试样的强度值、伸长率均高于圆棒试样;另外,随着卷取温度的升高,圆棒试样的屈服强度呈先增后减的趋势;随着回火温度的升高,圆棒试样的屈服强度增量增大,并且纵向增量比横向大。
补充资料:各向异性纺丝液
分子式:
CAS号:
性质:具有旋光各向异性的可纺溶液和熔体。包括溶致性液晶聚合物溶液及熔致性液晶聚合物熔体和中间相沥青熔体等。性能介于晶体和液体或熔体之间,力学性能呈现各向异性,流动时有乳光现象。在液晶溶液中,棒状分子可相互作用而聚集成互相平行的有序微区,在剪切力作用和纺丝时,其微区可有序排列而使初生丝有高强度等;在液晶熔体中,聚集态可在剪切力下破坏并有利于在熔纺时分子取向;中间相沥青的熔点一般高于350℃,380℃时黏度<20Pa·s,数均分子量<1000,分子量>1500和小于800者各<10%和>50%,因此可形成有优良流变性的单一相。
CAS号:
性质:具有旋光各向异性的可纺溶液和熔体。包括溶致性液晶聚合物溶液及熔致性液晶聚合物熔体和中间相沥青熔体等。性能介于晶体和液体或熔体之间,力学性能呈现各向异性,流动时有乳光现象。在液晶溶液中,棒状分子可相互作用而聚集成互相平行的有序微区,在剪切力作用和纺丝时,其微区可有序排列而使初生丝有高强度等;在液晶熔体中,聚集态可在剪切力下破坏并有利于在熔纺时分子取向;中间相沥青的熔点一般高于350℃,380℃时黏度<20Pa·s,数均分子量<1000,分子量>1500和小于800者各<10%和>50%,因此可形成有优良流变性的单一相。
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参考词条