storage modulus

网络  储能模量; 储存模量; 存储模量; 贮能模量; 储存模数

化学



双语例句

  1. MSP improved the tensile strength and dynamical storage modulus of PP/ MSP/ talc composites, and there was an optimum MSP content in the composite.
    MSP增容剂提高了PP/MSP/滑石粉复合材料的拉伸强度和动态贮能模量,并存在一最佳的增容剂添加量。
  2. The real part of the modulus is often called the storage modulus.
    与应变同相的实数部分模量,通常称为储能模量。
  3. Different size carbon black mixing can decrease the dynamic storage modulus ( E ') and broaden the damping range of NR/ ENR damping material.
    不同粒径炭黑并用均能使共混胶的贮能模量E'下降,并且有利于拓宽NR/ENR减震材料的减震范围;
  4. At the same historical shear rate, the higher the cooling rate is, the smaller the initial storage modulus at low temperature ( 31 ℃) is and the stronger the strength of final balance structure is.
    在同样的历史剪切速率下,降温速率越大,原油在低温(31℃)静止初始的储能模量越小,但最终的平衡结构却越强。
  5. The storage modulus and damping factor of composites were also characterized through dynamic mechanical analysis ( DMA).
    此外,采用动态力学分析(DMA)进一步表征了复合材料的储能模量和阻尼因子。
  6. The crystallinity and storage modulus of samples increased with the nano-TiO2 content increasing.
    随着纳米氧化钛含量的增加,材料的结晶度和贮能模量增加。
  7. The overrun rate, anti-melting capability, hardness, storage modulus and sensory properties of the ice-cream were studied.
    研究了低脂冰淇淋的膨胀率、抗融化能力、硬度、贮能模量和感官指标。
  8. The dynamic storage modulus of energetic materials bulk of nitrocellulose filled by RDX and NGU was investigated.
    用DDV&EA型动态粘弹谱仪对***(RDX)和硝基胍(NGU)填充的硝化纤维素基含能材料的动态贮能模量进行了研究。
  9. The dynamic storage modulus master curve obtained by means of the dynamic mechanical analysis ( DMA) methods was compared with the static relaxation modulus master curve obtained from material test machine, finally the relationship was confirmed.
    通过对采用动态力学分析(DMA)法得到的动态储能模量主曲线和材料试验机得到的静态松弛主曲线进行对比,验证了这种关系。
  10. By using the same horizon shift factors as dynamic modulus master curve, the data of compression strength and compression ratio were perfectly superimpose on storage modulus and storage compliance master curve.
    应用与动态模量叠合主曲线相同的水平位移因子,极限抗压强度和压缩率的数据分别与动态储能模量和储能柔量主曲线有很好的叠合。
  11. The storage modulus of the hybrid composites under high load approximately conforms to the Composite Beam Theory.
    高载荷下混杂复合材料的储能模量仍较好地符合“复合梁理论”。
  12. The dependence of storage modulus G ′ and loss modulus G ″ parallel to external electric field on electric fields and strain amplitudes is presented.
    给出了平行于电场方向的储能模量G′和损耗模量G〃对电场和应变幅度的依赖关系。
  13. The dough with GOD increased the storage modulus and reduced the loss modulus and the loss tangent.
    添加GOD的面团弹性模量增大,粘性模量和损耗角正切减小;
  14. A new nondestructive approach, which can make use of the dynamic storage modulus master curve to get the static relaxation modulus and static stress on the basis of the relationship, was put forward so as to assess storage life of solid propellants.
    提出了根据动态和静态力学性能关系,利用动态储能模量主曲线得到静态松弛模量和静态强度,以评估推进剂老化状态的非破坏性方法。
  15. Compared with the matrix polymer, polypropylene matrix hybrids showed higher dynamic storage modulus and loss modulus, and the dynamic shear viscosity and modulus of the three hybrids were greatly increased at low frequency, and the increasement was one order of magnitude.
    与基体聚丙烯相比,聚丙烯基杂化材料表现出较高的动态储能模量和损耗模量,在低频区,3种杂化材料熔体的动态剪切黏度和模量的提高幅度在1个数量级以上。
  16. The energy storage modulus of concentrat-ed cocoa suspension was also measured, which indicated its elasticity.
    对高浓度I的弹性贮能模量的测量表明,物系具有弹性。
  17. Result indicates storage modulus decreases after aging, but in a whole, loss modulus and tan δ increase.
    结果显示:老化后储能模量减少,损耗模量和损耗因子tanδ总体呈增加趋势。
  18. With increasing temperature, the storage modulus decreased.
    随着温度升高,存储模量会逐渐下降。
  19. The data from thermogravimetric analysis, dynamic mechanical thermal analysis and electrical properties show that UV irradiation crosslinking apparently enhances the thermal stability, storage modulus, glass transition temperature and electrical properties of EPDM blends.
    热重分析、动态热分析和电性能测试表明:紫外辐照能够提高EPDM/无机填料共混物的热稳定性、储能模量、玻璃化转变温度和体积电阻率。
  20. The variation of the storage modulus and loss tangent along with the temperature for the resin system was determined by dynamic mechanics analysis ( DMA). The cross-linking degree of resin system was calculated and the condition of shape memory effect existing was analyzed.
    采用动态力学分析(DMA)测试了树脂体系的存储模量与损耗角正切随温度变化关系,计算了树脂的交联度,分析存在形状记忆效应的条件。
  21. Analysis of DMA showed that, with wood fiber larger, storage modulus and loss modulus of composites increased, change of size of wood fiber had no effect on glass transition temperature.
    DMA分析表明,随着纤维尺寸的变大,材料的储能模量和损耗模量都增加,对材料的玻璃化转变温度没有影响。
  22. Besides, the LVE range for the residue and the pure bitumen presents a different variation under the same curing condition. Further, Han curve was used to study the functional relationship between the storage modulus and loss modulus of hard bitumen emulsion.
    在相同的养护制度下,残留物与纯沥青之间LVE范围呈现不同的变化规律。其次,采用Han曲线研究了硬质乳化沥青储存模量和损失模量之间的函数关系。
  23. The stronger the network structure in suspension, the greater the storage modulus is.
    分散体系中网状结构越强,储能模量越大。
  24. Dynamical rheology results showed a decrease of the storage modulus and viscosity of composites with low SiO2 content, but the storage modulus and viscosity increased sharply with the increasing of SiO2 content.
    通过动态流变测试可知,添加少量的SiO2降低了体系的储能模量和粘度,有利于成形加工;而随着SiO2含量的增加,复合体系的储能模量、损耗模量和粘度都大幅度升高。
  25. With the increase content of HGB content, the complex viscosity, storage modulus and loss modulus of HGB/ TPU system were gradually increased, and the loss tangent was gradually reduced.
    随着HGB含量的增大,HGB/TPU体系的复数粘度、储能模量和损耗模量逐渐增大,而损耗角正切则逐渐减小,这说明复合体系的弹性提高。
  26. The complex viscosity, storage modulus and loss modulus of copolymer were systematically studied by rotary rheometer.
    通过旋转流变仪对聚合物的复合粘度、储能模量以及耗损模量进行了比较系统的研究。
  27. When the temperature is near to softening temperature, the loss modulus and storage modulus drop drastically.
    MWNT使得复合材料的软化温度提高,在软化温度附近,损耗模量和储能模量急剧下降。
  28. As the strain amplitude increases further, the storage modulus is reduced to less than the loss modulus.
    随着应变幅度进一步增大,储存模量减小到小于损失模量,这表明链状结构完全破坏,磁流变液处于流动状态。
  29. Dynamic mechanical properties show that the storage modulus of composites is much higher than matrix.
    动态力学性能表明,复合材料的储能模量远远高于基体。