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首页> 外文期刊>Journal of Applied Polymer Science >DETERMINATION OF STEADY-STATE ELONGATIONAL VISCOSITY FOR RUBBER COMPOUNDS USING BELL-MOUTHED DIES
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DETERMINATION OF STEADY-STATE ELONGATIONAL VISCOSITY FOR RUBBER COMPOUNDS USING BELL-MOUTHED DIES

机译:用钟罩模测定橡胶化合物的稳态伸长粘度。

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摘要

A bell-mouthed die geometry was designed to cause convergent flow at a constant, uniform, elongational strain rate. An equation was derived, which showed that steady-state elongational viscosity could be calculated from a plot of pressure drop due to elongation against a simple function of die length. To obtain values of pressure drop due to elongation, it was necessary to correct the total pressure drop measured across the bell-mouthed dies for the contribution from shear occurring near the die wall. For this purpose, a simplified shape for the bell-mouthed dies was assumed, comprising several parallel sided segments. Applying a formula to pressure drop data measured across straight dies corresponding to these segments gave an estimate of the pressure drop due to shear across the bell-mouthed dies. Pressure drops due to elongation were determined by subtracting the pressure drop due to shear from the total pressure drop measured across the bell-mouthed dies. Measurements were also carried out with lubrication to validate the shear correction method. The results indicate that for the compound used in this study, a combination of bell-mouthed and straight-sided dies can be used in a conventional capillary rheometer to determine steady-state elongational viscosity. An elongational viscosity of 190 kPa s at 90 degrees C and at a strain rate of 10 s(-1) was determined for a simple styrene-butadiene rubber compound. (C) 1997 John Wiley & Sons, Inc. [References: 17]
机译:钟形口模的几何形状设计成以恒定,均匀,伸长的应变率引起会聚流动。推导了一个方程,该方程表明可以根据相对于模具长度的简单函数的伸长引起的压降图来计算稳态伸长粘度。为了获得由于伸长引起的压降值,有必要校正在钟形模头上测得的总压降,以补偿在模壁附近发生的剪切作用。为此,假定钟形模具的简化形状包括几个平行的侧面部分。将公式应用到与这些段相对应的直模上测得的压降数据,可以估算出由于钟形模上的剪切而产生的压降。通过从在钟形模具上测得的总压降中减去由于剪切引起的压降来确定由于伸长引起的压降。还通过润滑进行测量以验证剪切校正方法。结果表明,对于本研究中使用的化合物,钟形和直边模具的组合可用于常规毛细管流变仪中,以确定稳态伸长粘度。对于简单的苯乙烯-丁二烯橡胶胶料,在90摄氏度和10 s(-1)的应变速率下的拉伸粘度为190 kPa s。 (C)1997 John Wiley&Sons,Inc. [参考:17]

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