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Wall slip phenomena in talc-filled polypropylene compounds

机译:滑石填充的聚丙烯化合物的壁滑现象

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摘要

Slip velocities of unfilled and talc-filled polypropylene (PP) compounds, detectable at the die wall during pressure driven shear flow, have been determined using capillary rheometry. The presence of low molar mass, polar additives is responsible for the detection of wall slip in unmodified PP. Slip velocity increases with shear stress, beyond the critical onset condition. Increasing talc concentration in the PP compounds reduces slip velocity systematically, according to the talc volume fraction, whilst talc particle morphology appears to modify the wall slip behaviour to a greater extent than particle size. In comparison to PP-talc composites based on untreated filler, the presence of surface coatings tends to increase wall slip velocity, at any given shear stress, when the coating concentration exceeds monolayer level. These observations are explained in terms of a mechanism for wall slip in a low cohesive strength interphase, rich in low molar mass amide species, close to the flow boundary. This behaviour has also been modelled using a power law, to define wall slip parameters as a function of shear stress and talc concentration that can be used to enhance process simulation. It is demonstrated that the onset and magnitude of wall slip may be controllable by compound formulation and process conditions, creating exploitation potential to enhance process control and product properties of particle-modified PP composites.
机译:已使用毛细管流变仪确定了在压力驱动的剪切流过程中在模具壁处可检测到的未填充和滑石填充的聚丙烯(PP)化合物的滑移速度。低摩尔质量的极性添加剂的存在是检测未改性PP中壁滑的原因。滑移速度随切应力的增加而增加,超过临界开始条件。根据滑石的体积分数,增加PP化合物中滑石的浓度会系统地降低滑移速度,而滑石的颗粒形态似乎比颗粒尺寸更能改变壁滑的行为。与基于未经处理的填料的PP-滑石复合材料相比,当涂层浓度超过单层水平时,在任何给定的剪切应力下,表面涂层的存在都会增加壁滑速度。这些观察结果是根据在低内聚强度的中间相中壁滑移的机理来解释的,该相较于流动边界处富含低摩尔质量的酰胺类。还使用幂定律对该行为进行了建模,以定义壁滑参数作为剪切应力和滑石浓度的函数,可用于增强过程仿真。结果表明,墙面滑移的发生和大小可通过化合物配方和工艺条件来控制,从而创造了开发潜力,可增强颗粒改性PP复合材料的工艺控制和产品性能。

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  • 来源
    《Journal of Materials Science》 |2005年第13期|3325-3337|共13页
  • 作者

    B. Haworth; S. W. Khan;

  • 作者单位

    Institute of Polymer Technology Materials Engineering (IPTME) Loughborough University;

    Institute of Polymer Technology Materials Engineering (IPTME) Loughborough University;

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  • 原文格式 PDF
  • 正文语种 eng
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