首页> 外文期刊>Journal of Energetic Materials >Use of Adjustable-Gap On-Line and Off-Line Slit Rheometers for the Characterization of the Wall Slip and Shear Viscosity Behavior of Energetic Formulations
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Use of Adjustable-Gap On-Line and Off-Line Slit Rheometers for the Characterization of the Wall Slip and Shear Viscosity Behavior of Energetic Formulations

机译:使用可调节间隙在线和离线狭缝流变仪进行精力配方的壁滑和剪切粘度行为的表征

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It is difficult to characterize the Theological behavior of energetic suspensions due to their viscoplasticity and wall slip.The use of the rectangular slit geometry,as an on-line or off-line rheometer is advantageous provided that the surface to volume ratio of the slit die can be systematically varied to allow the wall slip corrections to be made.Here two rectangular slit rheometers designed and built to handle the theological behavior of energetic suspensions are presented.The gap of these rheometers is variable to give the user the ability to vary the gap and hence the wall shear rate,thus enabling wall slip corrections to be made.A series of pressure transducers,flush with the wall,are used to determine the pressure drop over the fully developed flow region and hence the wall shear stress directly from the fully developed pressure gradient.The ability to independently vary the mass flow rate and the gap opening allows one to carry-out the wall slip corrections and hence obtain the wall slip velocity versus the shear stress data,which can then be used as the boundary condition during the simulation of the die and extrusion flows and at the same time allow the determination of accurate shear viscosity data.A set of data systematically collected with an on-line slit rheometer with a continuously adjustable gap to characterize the wall slip velocity as well as the shear viscosity material function of a LOVA formulation as a function of deformation rate,solvent concentration,and temperature is used to illustrate the working principles of the on-line and off-line adjustable-gap rheometers.
机译:难以表征由于其粘合性和壁滑引起的能量悬浮液的神学行为。用矩形狭缝几何形状作为在线或离线流变仪的使用是有利的,条件是狭缝模具的体积比的表面可以系统地改变以允许墙壁滑动校正。这两个矩形狭缝流变仪设计并构建了,以处理能量悬浮液的神学行为。这些变形仪的间隙是可变的,以使用户能够改变间隙的能力因此,墙面剪切速率,从而使壁防滑校正能够制造。一系列压力换能器,与墙壁齐平,用于确定完全发育的流动区域的压力下降,从而直接从完全剪切压力开发的压力梯度。独立变化质量流量和间隙开口的能力允许人们执行壁滑校正,因此获得壁滑速与剪切应力数据,然后可以用作模拟模拟和挤出流期间的边界条件,同时允许确定精确的剪切粘度数据。系统地收集的一组数据 - 线狭缝流变仪具有连续可调节的间隙,以表征壁滑速以及Lova配方的剪切粘度材料功能,作为变形速率,溶剂浓度和温度的函数,用于说明上的工作原理线路和离线可调间隙流变仪。

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