Institut d'Investigació per a la Gestió Integrada de les Zones Costaneres, Universitat Politècnica de València, C/Paranimf 1, 46730 Grau de Gandia, Spain.
J Acoust Soc Am. 2013 Aug;134(2):1463-72. doi: 10.1121/1.4812865.
The phenomenon of the displacement of the position along the axis of the pressure, intensity, and radiation force maxima of focused acoustic beams under increasing driving voltages (nonlinear focal shift) is studied for the case of a moderately focused beam. The theoretical and experimental results show the existence of this shift along the axis when the initial pressure in the transducer increases until the acoustic field reaches the fully developed nonlinear regime of propagation. Experimental data show that at high amplitudes and for moderate focusing, the position of the on-axis pressure maximum and radiation force maximum can surpass the geometrical focal length. On the contrary, the on-axis pressure minimum approaches the transducer under increasing driving voltages, increasing the distance between the positive and negative peak pressure in the beam. These results are in agreement with numerical KZK model predictions and the existed data of other authors and can be explained according to the effect of self-refraction characteristic of the nonlinear regime of propagation.
当超声换能器中的初始压力增加直到声场达到完全发展的非线性传播模式时,研究了在中等聚焦情况下,随着驱动电压增加,聚焦声束的压力、强度和辐射力最大值的位置沿着轴向的位移现象(非线性焦点移动)。理论和实验结果表明,在高幅度和中等聚焦的情况下,轴上压力最大值和辐射力最大值的位置可以超过几何焦距。相反,随着驱动电压的增加,轴上压力最小值接近换能器,从而增加了光束中正负峰值压力之间的距离。这些结果与数值 KZK 模型预测以及其他作者的已有数据一致,可以根据非线性传播模式的自折射特性的影响来解释。