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首页> 外文期刊>Journal of Fluid Mechanics >Edge behaviour in the glass sheet redraw process
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Edge behaviour in the glass sheet redraw process

机译:玻璃板重绘过程中的边缘行为

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摘要

Thin glass sheets may be manufactured using a two-part process in which a sheet is first cast and then subsequently reheated and drawn to a required thickness. The latter redrawing process typically results in a sheet with non-uniform thickness and with smaller width than the cast glass block. Experiments suggest that the loss of width can be minimized and the non-uniformities can be essentially confined to thickening at the sheet edges if the heater zone through which the glass is drawn is made very short. We present a three-dimensional mathematical model for the redraw process and consider the limits in which (i) the heater zone is short compared with the sheet width, and (ii) the sheet thickness is small compared with both of these length scales. We show that, in the majority of the sheet, the properties vary only in the direction of drawing and the sheet motion is one-dimensional, with two-dimensional behaviour and the corresponding thick edges confined to boundary layers at the sheet extremities. We present numerical solutions to this boundary-layer problem and demonstrate good agreement with experiment, as well as with numerical solutions to the full three-dimensional problem. We show that the final thickness at the sheet edge scales with the inverse square root of the draw ratio, and explore the effect of tapering of the ends to identify a shape for the initial preform that results in a uniform rectangular final product.
机译:可以使用两部分工艺来制造薄玻璃板,其中首先将玻璃板浇铸,然后再加热并拉伸到所需的厚度。后者的再拉伸过程通常导致片材的厚度不均匀,且宽度小于铸玻璃块的宽度。实验表明,如果拉制玻璃所经过的加热器区域非常短,则宽度的损失可以最小化,并且不均匀性可以基本上限制在板边缘处的变厚。我们为重绘过程提供了一个三维数学模型,并考虑了以下限制:(i)加热器区域与纸张宽度相比较短,并且(ii)与这两个长度比例相比,纸张厚度较小。我们表明,在大多数薄片中,属性仅在绘制方向上发生变化,并且薄片运动是一维的,具有二维行为,相应的厚边限制在薄片末端的边界层。我们提出了这个边界层问题的数值解,并证明了与实验以及与完整的三维问题的数值解的良好一致性。我们显示出板边缘的最终厚度与拉伸比的平方根成反比,并探索了端部逐渐变细的效果,以识别初始预成型件的形状,从而形成均匀的矩形最终产品。

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