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Effect of Droplet Distortion on Surface Tension in Electromagnetic Levitation Method

机译:电磁悬浮法中液滴变形对表面张力的影响

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The surface tension of molten Si was measured using the electromagnetic levitation method under a microgravity condition. The experiments were carried out over a wide temperature range between 1460K (below the melting point) and 1880K. The atmosphere was Ar + 3 H_2 purified by Platinum asbestos and magnesium perchlorate. The oxygen partial pressure is estimated to be at least than 1.1 × 10~(-14)Pa. The shape of the droplet is controlled by changing the output ratio for two different coils. the equilibrium shape of the oscillating droplet was precisely determined by calibrating the apparent change in the droplet shape. The effect of the droplet distortion on the shift in the oscillation frequencies and the calculated surface tension value was also investigated. When the equilibrium shape of the levitating droplet is spherical, the surface tension of molten Si was obtained with very small scatter. The value is expressed as follows: γ = -0.07464L-1678) + 735γ: Surface tension (mN/m), T: Temperature(K).
机译:使用电磁悬浮法在微重力条件下测量熔融Si的表面张力。实验是在1460K(低于熔点)和1880K的较宽温度范围内进行的。气氛为Ar + 3 H_2,通过石棉铂和高氯酸镁纯化。氧分压估计至少为1.1×10〜(-14)Pa。通过改变两个不同线圈的输出比率来控制液滴的形状。通过校准液滴形状的表观变化,可以精确地确定振荡液滴的平衡形状。还研究了液滴变形对振荡频率偏移和计算出的表面张力值的影响。当悬浮液滴的平衡形状为球形时,获得的熔融硅的表面张力具有很小的散射。该值表示如下:γ= -0.07464L-1678)+735γ:表面张力(mN / m),T:温度(K)。

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