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An Experimental Study on Bubble Growth in Laponite RD as Thixotropic Yield Material

机译:Laponite Rd泡沫生长作为触变产量材料的实验研究

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摘要

The growth and release of the leading major bubble at the tip of a needle in the thixotropic yield material Laponite RD was different from subsequent minor bubbles. The gas injection experiments combined with high-speed camera were conducted. The results showed that the shape of the major bubbles transformed from an inverted carrot shape to an inverted teardrop shape, while the shape of the minor bubbles tended to be elliptical. In addition, the pressure of bubble emergence consisted of hydrostatic pressure, capillary pressure, and cracking pressure. The major and minor bubbles differed only in the cracking pressure. The pressure when the minor bubble detached could be estimated from the lateral hydrostatic pressure. It can be deduced from dimensionless numbers that buoyancy and viscous forces were, respectively, the main driving force and resistance of bubble growth. The yield stress of Laponite RD and inertial force at the initial moment resulted in distinctive behavior of the major bubble. In addition to the viscosity resistance, surface tension, and hydrostatic pressure had a non-negligible influence on minor bubbles and still accounted for 10–20% of the total resistance in the later stage but less than 5% in major bubble growth.
机译:触变性产量材料Laponite Rd尖端在针尖端的主要泡沫的生长和释放与随后的轻微气泡不同。对高速相机结合的气体注射实验进行了。结果表明,从倒的胡萝卜形状转化为倒泪珠形状的主要气泡的形状,而小气泡的形状往往是椭圆形的。此外,气泡出苗的压力由静水压压力,毛细管压力和开裂压力组成。主要和微小气泡仅在裂化压力下不同。当次要气泡分离时的压力可以从横向静水压力估计。它可以从无量纲数字推导出浮力和粘性力量,分别是血泡生长的主要驱动力和抗性。初始瞬间的丙酮RD和惯性力的屈服应力导致了主要泡沫的独特行为。除了粘度抗性,表面张力和静水压力之外对轻微气泡的影响不可能是不可忽略的影响,并且仍然占后期总抗性的10-20%,但在主要泡沫生长中少于5%。

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