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首页> 外文期刊>Journal of Materials Science >Simulation of aluminum foam formation and distribution uniformity
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Simulation of aluminum foam formation and distribution uniformity

机译:泡沫铝的形成和分布均匀性的模拟

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Effects of bubble size formed on orifice inside an aluminum melt and bubble distribution on a foaming chamber surface were studied by experimental simulation. The bubble size formed on the liquid surface is increased with the increase in air flow rate and pressure, orifice size, and immersion depth. The orifice with 45 taper head produces smaller bubbles than that with 60 taper and flat ones. A calculation formula is established to predict bubble size formed on the orifice inside a quiescent liquid at a given surface bubble size, and the calculation agrees well with the measurement data. Orifice reciprocal agitation improves cell size uniformity of the closed-cell aluminum foam, compared with orifice rotating. Although orifice rotating is effective in producing smaller bubbles, the agitation of orifice reciprocating produces more uniform bubble distribution on the liquid surface. The bubble distribution is further improved when evenly spaced orifices are replaced by nonequidistant orifices.
机译:通过实验模拟研究了形成的气泡尺寸对铝熔体内孔的影响以及气泡在发泡室表面的分布。随着空气流速和压力,孔口尺寸和浸入深度的增加,在液体表面上形成的气泡尺寸也增加。锥头为45的孔口比锥头为60的扁平孔口产生的气泡更小。建立计算公式,以预测在给定的表面气泡大小下在静态液体内部孔口上形成的气泡大小,该计算与测量数据非常吻合。与孔口旋转相比,孔口往复搅拌可改善闭孔铝泡沫的孔尺寸均匀性。尽管节流孔的旋转可有效地产生较小的气泡,但节流孔的往复搅拌可在液体表面产生更均匀的气泡分布。当用等距的孔代替均匀间隔的孔时,气泡分布得到进一步改善。

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