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首页> 外文期刊>Journal of Dispersion Science and Technology >Storage modulus' variation in aging and its application in assessing the stability of emulsion explosive matrix
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Storage modulus' variation in aging and its application in assessing the stability of emulsion explosive matrix

机译:储存模量的老化变化及其在评估乳液爆炸基质稳定性中的应用

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摘要

An investigation was performed into the stability of bulk emulsion explosive matrix (BEEM) via studying on the variation of storage modulus in aging. The experimental results show that there is a tight relationship between storage modulus (G) and the stability of BEEM. The increase of the amount of ammonium nitrate (AN) crystals in aging leads to the increase of G. When the amount of AN crystals reaches a certain extent, the vastly destroyed microstructure results in the disappear of viscoelastic property of BEEM. The results demonstrated that the less growth ratio of G causes a better stability of BEEM. The G was used to investigate the effect of the nature of emulsifier and continuous phase on the stability of BEEM. It is found that the chemical structure of head group, the length of hydrophobic chain and the content of emulsifier affect the stability of BEEM. Besides that, the viscosity and polarity of continuous phase also have important effect on the stability of BEEM.
机译:通过研究老化储存模量的变化,对散装乳液爆炸基质(贝E)的稳定性进行了研究。 实验结果表明,储存模量(g)与贝雅稳定性之间存在紧密关系。 抗衰老中硝酸铵(An)晶体的增加导致G的增加。当晶体的量达到一定程度时,大大破坏的微观结构导致浮夸的粘弹性消失。 结果表明,G的增长率越少导致贝梅稳定性。 G用于探讨乳化剂性质和连续相位对贝梅稳定性的影响。 发现头部的化学结构,疏水链长度和乳化剂的含量影响贝梅的稳定性。 除此之外,连续相的粘度和极性也对贝梅的稳定性产生了重要影响。

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