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Hehe, I’ll come up with a question too for everyone to discuss: Under the same atomization conditions, how does the particle size of the raw oil droplets change as the viscosity of the raw oil increases? What happens as surface tension increases? What happens as density increases? Please keep in touch more often
Under the same atomization conditions, the particle size of the raw oil droplets (increases) as the viscosity of the raw oil increases? Increases as surface tension increases? It increases as the density increases. Personal opinion. What is the standard answer according to the original poster?
The particle size of the raw oil droplets (decreases) as the viscosity of the raw oil increases, and (decreases) as the surface tension increases? Decreases (increases) as density increases
Under the same atomization conditions, the particle size of the raw oil droplets (increases) as the viscosity of the raw oil increases? Increases as surface tension increases? Increases as density increases?
It should all increase; as viscosity rises, the atomization effect deteriorates. Residual oil has higher viscosity and density compared to paraffin oil, so in terms of atomization performance, residual oil is slightly inferior. As for surface tension, it hasn’t been considered, but it’s likely similar.
The particle size of the raw oil mist, under identical atomization conditions, increases as the density, viscosity, and surface tension of the raw material increase.
Oh, the answer is that under the same atomization conditions, the particle size of the raw oil droplets increases as the viscosity of the raw oil increases, increases as the surface tension increases, and decreases as the density increases. The last one decreases as density increases; it doesn’t seem precise, so it’s been mentioned……
Oh, the answer is that under the same atomization conditions, the particle size of the raw oil droplets increases as the viscosity of the raw oil increases, increases as the surface tension increases, and decreases as the density increases. How is it that the last one decreases as density increases?
Oh, the answer is that under the same atomization conditions, the particle size of the raw oil droplets increases as the viscosity of the raw oil increases, increases as the surface tension increases, and decreases as the density increases. The last one decreases as density increases; it’s been proposed for discussion……
Oh, the answer is that under the same atomization conditions, the particle size of the raw oil droplets increases as the viscosity of the raw oil increases, increases as the surface tension increases, and decreases as the density increases. The last one decreases as density increases; it doesn’t seem precise, so it’s been mentioned……
The answer is that, under the same atomization conditions, the particle size of the raw oil droplets increases as the viscosity of the raw oil increases, increases as the surface tension increases, and decreases as the density increases. The last one decreases as density increases; it doesn’t seem precise, so it’s been mentioned……