• 显微图象粉体颗粒粒径分布分析显示颗粒分布呈不均质性

    Analyze of micrograph and particle diameter distribution present that particle diameter of high-calcium fly ash distributes unequally.

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  • 研究颗粒浓度粒径溃灭的影响,以及观察分析空泡溃灭过程中的颗粒运动

    The effects of solid concentration and particle diameter on bubble collapse have been studied, and the particle motion during the bubble collapse has been observed and analyzed.

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  • 采用灰色关联分析方法研究粒径范围颗粒含量水泥强度之间关系。

    The relationship between cement strength and volume fraction of different phosphorous slag particle diameter ranges was analyzed by gray relevant analysis method.

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  • 分析锌粉粒径颗粒形状、金属含量机械镀锌层的影响

    The influences of grain diameter, grain shape and zinc content of zinc powder on mechanical zinc plating were analyzed.

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  • 最后分析颗粒半径差异、土体平均粒径大小对非饱和土强度影响

    At last, the effect of soil gradation on the shear strength of unsaturated soils is analyzed qualitatively.

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  • 凝胶颗粒基本特征外观形态粒径分布分析入手,研究膨胀倍数弹性特征参数,评价了颗粒的物理化学性能。

    Beginning with analysis on basic features, visual form and grain - size distribution of gel particles, expansion multiple, viscoelasticity and other characteristic parameters were researched.

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  • 同时混合液悬浮固体进行颗粒粒径分析与好氧生物反应器污泥颗粒进行了对比分析

    In the meantime, the particle size of the mixed sludge mixed liquor was analyzed and its comparison with the sludge particle of aerobic membrane bioreactor was analyzed.

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  • 不同粒径颗粒化学分析结果表明,微量元素颗粒较高的富集

    Chemical compositions varied significantly in different particle sizes, with trace elements obviously enriched in the least size.

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  • 首先结合辅料颗粒形态特性细微分析,对颗粒粒径分布(PSD)进行分析

    First, a particle size distribution (PSD) analysis together with a detailed analysis of morphological properties of the excipient particles were performed.

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  • 土壤机械组成分析就是指土壤粒径分析测定组成土壤不同直径颗粒含量

    The analysis of soil mechanical component is to analyze soil grain diameter. That is to say, it is to measure the content which composed the different diameter particle.

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  • 采用多普勒颗粒分析(PDPA)测量雷诺数为8500的射流速度,研究了两种大粒径颗粒对湍流的调制作用。

    Two-phase velocity fields in a round turbulent jet with Reynolds number 8500 were measured by phase Doppler Particle Analyzer (PDPA).

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  • 分析讨论了不同粒径固体颗粒群的料浆流体力学特性,模型反应器中悬浮速度进行了实验测量。

    The hydrodynamics of slurry flow was studied and the suspension velocity of particle in the model reactors was measured.

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  • 实验照片分析可知,叶轮入口颗粒径向速度大小是造成叶轮冲击磨损的主要原因。

    Result of analyzing experiment picturesindicates that particle radial inlet velocity component influences significantly the blade erosionmanner.

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  • 粒径大小散射光强度确定,颗粒形状可通过对非对称因子af分析获得

    The particle size can be determined according to the scattering intensity, while shape information can be obtained through asymmetry factor (AF).

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  • 根据流体动力学理论分析颗粒流化速度关系,通过利用或建立简单传热燃烧模型,定量计算了不同粒径无烟煤颗粒时间通过炉膛时的停留时间。

    With using some simplified heat-transfer & combustion model, the burn-out time and the stay-time(one times through furnace) of a single coal particle in the furnace of CFB were also calculated.

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  • 第二通过水泥稳定碎石破碎后结构层强度损失抵抗反射裂缝能力分析以及结合国内外研究资料提出破碎层颗粒粒径范围

    Secondly, by analyzing the loss of strength in the base and reflection crack occurs, combining research data in and abroad, the size of broken stones was proposed.

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  • 基于统计学理论图像分析技术,提出了一种测量流动颗粒粒径粒子成像方法

    Based on the statistical principle and image analysis theory, a new particle image method for measuring the particle diameters in flows is developed.

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  • 纳米颗粒散射信号获取利用动态光散射技术分析纳米颗粒粒径基础

    T he technique of dynamic light scattering used to analyze nanoparticle size is based on the acquisition of the scattering light signals.

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  • XRDSEM分析表明: 球磨后合金颗粒粒径减小, 且有明显非晶化趋势;

    XRD and SEM analysis indicate that the modified alloy is amorphized to some extent besides of the reduction of particle size.

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  • 不同煅烧温度颗粒粒径二氧化碳浓度下对石灰石颗粒进行热重分析

    The calcinations reaction of limestone particle was studied by thermogravimetric analysis. The effects of calcinations temperature, particle size and CO2concentration were investigated.

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  • 不同煅烧温度颗粒粒径二氧化碳浓度下对石灰石颗粒进行热重分析

    The calcinations reaction of limestone particle was studied by thermogravimetric analysis. The effects of calcinations temperature, particle size and CO2concentration were investigated.

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