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Optical measurement and modelling of parison sag and swell in blow moulding

机译:吹塑成型中型坯和膨胀的光学测量和建模

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Blow moulding is a process whereby a cylindrical parison is extruded first, then pinched between the two halves of a mould and, finally, blown into the product. Parison size and shape result from complex interactions between mandrel and die geometries, processing parameters and viscoelastic properties of the polymeric material. Moreover, parison size changes with time due to sag. An innovative, contactless and online measurement technique of the parison is shown to be an effective tool to measure precisely parison diameter and thickness and to capture dimensional changes with time. This technique employs laser lighting of the parison and hinges on the refractive properties of molten polymer. Images taken with a digital camera are processed to give a precise measurement of diameter and thickness, at different time step during extrusion. Thus, parison swell and sag have been recorded for a commercial HDPE. Influence of processing parameters such as the rotational screw speed or die gap width can be brought forward. Thickness swell is found to possess a different behaviour from diameter swell. Swell is a purely viscoelastic phenomenon, therefore requiring a numerical modelling with an integral viscoelastic constitutive equation. On the other hand, sag has been measured and could be modelled from a Newtonian perspective using one dimensional convected coordinates. A sagging susceptibility coefficient of the polymer is deduced.
机译:吹塑是一种方法,由此首先挤出圆柱形型坯,然后夹在模具的两半之间,最后吹入产品中。型坯尺寸和形状由心轴和模具几何形状之间的复杂相互作用,加工参数和聚合物材料的粘弹性性质。此外,由于凹陷,par析尺寸随时间而变化。型坯的创新,非接触和在线测量技术被证明是一种有效的工具,可以衡量型坯直径和厚度,并随着时间的推移捕获尺寸变化。该技术采用型坯和铰链对熔融聚合物的折射性的激光照明。处理用数码相机拍摄的图像,以精确测量直径和厚度,在挤出过程中的不同时间步长。因此,已经为商业HDPE记录了型坯膨胀和下垂。可以提高处理参数的影响,例如旋转螺杆速度或模隙宽度。发现厚度膨胀具有从直径膨胀的不同行为。膨胀是一种纯粘弹性现象,因此需要具有整体粘弹性本构体方程的数值建模。另一方面,已经测量了凹陷,并且可以使用一维对流坐标从牛顿角度进行建模。推导出聚合物的下垂敏感系数。

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