...
首页> 外文期刊>Rheologica Acta >Simultaneous determination of shear and extensional viscosities and wall slip by on-line rheometry with parameter fitting: an application to EPDM rubber
【24h】

Simultaneous determination of shear and extensional viscosities and wall slip by on-line rheometry with parameter fitting: an application to EPDM rubber

机译:在线流变仪和参数拟合同时测定剪切和拉伸粘度以及壁滑,在EPDM橡胶中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

Shear and extensional viscosities and wall slip are determined simultaneously under extrusion processing conditions using an on-line rheometer. Because it is not possible to independently control flow rate and temperature, classical methods for interpretation of capillary data cannot be used with on-line rheometry. This limitation is overcome using computational optimization to fit parameters in a flow model. This consists of three parts, representing shear viscosity, extensional viscosity, and wall slip. Three-parameter, power law forms, based on local instantaneous deformation rates and including temperature dependence, are used for each, and analytic solutions applied for entry flow and flow in the capillary. For entry flow, the Cogswell–Binding approach is used, and for developed flow in the capillary a solution incorporating wall slip is derived. The rheometer, with interchangeable capillaries, is mounted in place of the die on a rubber profile extrusion line. Pressure drops and temperatures for extrusion of an EPDM rubber through 2 mm diameter capillaries of length 0, 2, 3, 4, and 5 mm are logged and flow rates determined for a range of extruder speeds (5 to 20 rpm). Pressures ranged from 60 to 75 bar and temperatures from 86 to 116 °C. Mean flow velocity in the capillaries was between 5 × 10?3 and 5 × 10?1 m s?1. The nine material parameters are optimized for best fit of the analytic pressure drops to experimental data, using about 100 data points, with the Levenberg–Marquardt method. It is concluded that flow is dominated by extension and wall slip. Shear flow appears to play little part. The slip model indicates that slip velocity increases much more rapidly than the wall shear stress (in the range 0.5–1 MPa) and decreases with temperature for a given stress level. Results for the (uniaxial) extensional viscosity represent an engineering approximation to this complex phenomenon at the high strains (approximately 200) and high extension rates (up to 800 s?1) applying in the extrusion. Results indicate a slight extension hardening and a decrease with temperature. Results are put into the context of the available studies in the literature, which, particularly with regard to wall-slip and extensional flow, consider conditions far removed from those applying in industrial extrusion. The present methods provide a powerful means for flow characterization under processing conditions, providing data suitable for use in computer simulations of extrusion and optimization of die design.
机译:使用在线流变仪在挤出加工条件下同时测定剪切和拉伸粘度以及壁滑度。由于不可能独立控制流速和温度,因此在线流变仪不能使用经典的毛细管数据解释方法。使用计算优化来拟合流模型中的参数可以克服此限制。它由三部分组成,分别代表剪切粘度,延伸粘度和墙滑度。基于局部瞬时变形率并包括温度相关性的三参数幂定律形式分别用于分析流动和毛细管中的流动。对于进入流,使用Cogswell-Binding方法,对于毛细管中发达的流,可得出包含壁滑的溶液。流变仪具有可互换的毛细管,安装在橡胶型材挤出线上,代替模具。记录用于通过长度为0、2、3、4和5 mm的2 mm直径的毛细管挤出EPDM橡胶的压降和温度,并确定一定范围的挤出机速度(5至20 rpm)下的流速。压力范围为60至75 bar,温度范围为86至116°C。毛细血管中的平均流速在5×10?3 和5×10?1 m s?1 之间。使用Levenberg-Marquardt方法,使用约100个数据点对九种材料参数进行了优化,以使分析压降最适合实验数据。可以得出结论,流动主要由延伸和壁滑引起。剪切流似乎起着很小的作用。滑移模型表明,在给定应力水平下,滑移速度的增长速度快于壁面剪应力的增长速度(在0.5-1 MPa范围内),而随温度的降低而降低。 (单轴)拉伸粘度的结果代表了在挤出过程中施加的高应变(大约200)和高拉伸速率(高达800 s?1 )下对该复杂现象的工程近似值。结果表明轻微的延伸硬化,并随温度降低。将结果放入文献中的可用研究范围内,这些研究尤其是关于壁滑和扩展流动的问题,考虑了与工业挤出中所应用的条件相去甚远的条件。本方法提供了用于在加工条件下进行流动表征的有力手段,提供了适用于挤出的计算机模拟和模具设计优化的数据。

著录项

  • 来源
    《Rheologica Acta》 |2007年第6期|847-860|共14页
  • 作者单位

    Centre for Polymer Processing Simulation and Design C2EC School of Engineering University of Wales Swansea Wales Swansea SA2 8PP UK;

    Centre for Polymer Processing Simulation and Design C2EC School of Engineering University of Wales Swansea Wales Swansea SA2 8PP UK;

    Centre for Polymer Processing Simulation and Design C2EC School of Engineering University of Wales Swansea Wales Swansea SA2 8PP UK;

    Centre for Polymer Processing Simulation and Design C2EC School of Engineering University of Wales Swansea Wales Swansea SA2 8PP UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    On-line rheometry; Parameter optimization; EPDM rubber; Wall slip; Extensional viscosity;

    机译:在线流变学;参数优化;EPDM橡胶;墙滑;延伸粘度;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号