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Rheostructural studies on a synthetic mesophase pitch during transient shear flow

机译:瞬时剪切流动过程中合成中间相沥青的流变结构研究

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The steady, shear viscosities of a synthetic mesophase pitch (Mitsubishi AR-HP) obtained from rate-sweep experiments at 0.1-10 s~(-1) exhibited shear-thinning (region I) and plateau responses (region II), but displayed a hysteresis during the decreasing rate sweep. Transient tests revealed that the shear stress (and consequently the shear viscosity) displayed a local maximum and a minimum before approaching a steady state. Following steady flow at 1 s~(-1), a reversal of flow direction or a very short interruption in flow did not lead to the maxima or minima in the transient shear stress, but the maxima and the minima reappeared in the transient stress after a rest time of approx 1000 s. An experimental protocol was developed to preserve the rheological samples, and their microstructure was characterized in three orthogonal planes for the initial and final states. The initial microstructure was found to have a weak, but preferred, orientation of mesophase layers in the radial direction of the rheometer cone-plate (due to the initial squeezing flow). The initial microstructure changed to a flow-aligned fibrous structure after shearing in the viscometric flow.
机译:通过速率扫描实验在0.1-10 s〜(-1)上获得的合成中间相沥青(Mitsubishi AR-HP)的稳定剪切粘度表现出剪切稀化(区域I)和平稳响应(区域II),但显示速率减小扫描期间的磁滞。瞬态测试表明,剪切应力(以及剪切粘度)在达到稳态之前显示出局部最大值和最小值。在1 s〜(-1)处稳定流动之后,流动方向的反转或流动的非常短的中断不会导致瞬态剪应力的最大值或最小值,但最大值和最小值会在之后的瞬态应力中重新出现。大约1000秒的休息时间。开发了一种实验方案来保存流变样品,并在三个正交平面中对初始和最终状态表征了它们的微观结构。发现初始微结构在流变仪锥板的径向上具有弱但优选的中间相层取向(由于初始挤压流)。在粘度流中剪切后,初始的微观结构变成了与流向一致的纤维结构。

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