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首页> 外文期刊>Physica, B. Condensed Matter >Evaluation of gel time of TEOS using the idea of phononic band-gap for macro bi-mass system
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Evaluation of gel time of TEOS using the idea of phononic band-gap for macro bi-mass system

机译:用宏观双质量系统函夹孔隙率思想评价TEOS的凝胶时间

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In this work, elastic wave propagation through a composite medium, consists of solid and colloidal liquid in a one-dimensional phononic crystal has been studied. The behavioural change in mechanical properties for sol to gel phase transformation is obtained in this experiment. When, a wave of certain range of frequency passes through such a medium, propagation is blocked for some frequency range due to the presence of specific periodic structural arrangement. This range of frequency is termed as forbidden band gap. Calculations for the structure of one dimensional N mass system are performed and are generalized for a bi-mass system (assuming N = 2). Considering different structural and mechanical parameter of the medium, the range of the forbidden gap is calculated and is verified with the experimental analysis. Along with this, the transition time for sol to gel phase transformation is obtained.
机译:在这项工作中,通过复合介质弹性波传播,由一维声晶晶体中的固体和胶体液体组成。 在该实验中获得了溶胶至凝胶相变化的机械性能的行为变化。 当时,某些频率范围的波浪通过这种介质,由于存在特定的周期性结构布置,传播被阻塞一些频率范围。 这种频率范围被称为禁止带隙。 执行一维N质量系统的结构的计算,并针对Bi-Mass系统推广(假设n = 2)。 考虑到介质的不同结构和机械参数,计算禁止间隙的范围,并通过实验分析来验证。 除此之外,获得了溶胶至凝胶相变化的过渡时间。

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