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A study of surface fracture in paste extrusion using signal processing

机译:利用信号处理研究糊料挤出中的表面断裂

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摘要

Gross circumferential fracture (GCF) is a surface defect sometimes observed during the extrusion of particulate pastes. In this study particular attention was paid to the frequency of fracture in pastes undergoing ram extrusion through dies with circular, square and rectangular slot cross section. Three methods for estimating the fracture frequency were employed. The first was determined from the observed fracture periodicity, the second was determined from the application of short time Fourier transformation (STFT) techniques to the pressure signal measured at the die plate and the third was the application of the geometrical result first reported by Domanti and Bridgwater (2000). All were found to be in agreement within experimental error where failure was observed. In some materials the fracture frequency was still observed in the frequency domain after fracture ceased in the extrudate, indicating the existence of a flow instability in the paste: if the extrudate was smooth throughout the process STFT detected no peak. Fracture was more pronounced with short dies and/or where the paste experienced high wall shear stress. Square dies were more prone to fracture than circular dies (corner effects) and the fracture spacing could be related directly to the hydraulic diameter. Rectangular slot dies were more prone to irregular fracture. It was shown that lowering the die wall friction by using Teflon-lined dies reduced the propensity of the paste to fracture for all die geometries tested.
机译:大圆周断裂(GCF)是一种表面缺陷,有时在颗粒糊剂的挤出过程中观察到。在这项研究中,应特别注意通过圆形,正方形和矩形缝隙横截面的冲模进行糊料挤压时,浆料的断裂频率。采用了三种估计断裂频率的方法。第一个是根据观察到的断裂周期确定的,第二个是通过将短时傅里叶变换(STFT)技术应用于在模板处测量的压力信号来确定的,第三个是由Domanti和布里奇沃特(2000)。发现所有结果均在观察到故障的实验误差范围内一致。在某些材料中,在挤出物中断裂停止后,仍在频域中观察到断裂频率,这表明浆料中存在流动不稳定性:如果挤出物在整个过程中是光滑的,则STFT不会检测到峰。短模具和/或糊料承受高壁切应力的地方,断裂更为明显。方形模具比圆形模具更容易断裂(角效应),并且断裂间距可能与水力直径直接相关。矩形槽模更容易发生不规则断裂。结果表明,通过使用特氟龙衬里的模具降低模具壁的摩擦力,可以降低糊剂在所有测试的模具几何形状中的断裂倾向。

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  • 来源
    《Journal of Materials Science》 |2006年第10期|2895-2906|共12页
  • 作者单位

    Department of Chemical Engineering New Museums Site;

    IRC in Materials Processing University of Birmingham;

    Department of Chemical Engineering New Museums Site;

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  • 正文语种 eng
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