表征高剪切速率下聚合物熔体瞬态流变响应的新技术

R. Feng, Y. Hu
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引用次数: 0

摘要

聚合物熔体瞬态流变响应的表征对于涉及聚合物熔体快速流动的制造工艺(如注塑和挤出)的计算机建模和优化具有重要意义。本文报道了一种利用科尔斯基扭杆技术的新型锥板流变仪。该流变仪可在100 μs内加速到1600 rad/s的角速度。它可以表征聚合物熔体在剪切速率高达104.1 /s、温度高达300°C、压力高达10 MPa、剪切应变高达1000%时的瞬态响应。给出了低密度聚乙烯熔体在780 ~ 68401 /s剪切速率下的实验数据。结果表明,材料中的剪切应力不仅随剪切速率的增大而增大,而且随剪切应变的增大而增大。本文还讨论了这一发现的意义。
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A New Technique for Characterizing the Transient Rheological Response of Polymer Melt at High Shear Rates
Characterization of the transient rheological response of polymer melts is important for computerized modeling and optimization of the manufacturing processes involving fast polymer melt flow such as injection molding and extrusion. In this paper, a new cone-and-plate rheometer utilizing the Kolsky torsion bar technique is reported. This rheometer can be accelerated to an angular velocity of 1600 rad/s within 100 μs. It enables characterization of the transient response of polymer melts for shear rates up to 104 1/s, temperatures up to 300°C, pressures up to 10 MPa, and shear strains up to 1000%. Experimental data are presented for a low-density polyethylene melt at shear rates between 780 1/s and 6840 1/s. The results show that the shear stress in the material increases not only with the shear rate but also more significantly with the shear strain. The significance of this finding is also discussed.
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