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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Investigation of ultrasonic cavitation noise induced near elastic solid boundaries with different elastic modulus
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Investigation of ultrasonic cavitation noise induced near elastic solid boundaries with different elastic modulus

机译:不同弹性模量弹性固体边界附近超声空化噪声的研究

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Accompanying with cavitation, cavitation noise generated due to the bubble dynamics is always inevitable, but wholly undesirable, especially for the propeller of marine vehicles which requires high concealment. Nowadays, polymer composite material with good sound absorption capability and high cavitation inception speed due to its elastic deformation characteristics has been used to make propeller blades. Bubble dynamics near elastic boundaries is more complicated and has drawn more and more study interests. Yet, the effect of the elastic modulus on the cavitation noise is lack of attention and still not clear. Here, we show that the total sound pressure level (TSPL) of the measured cavitation noise is nonlinear with the elastic modulus of the solid wall. We adjusted the elastic modulus of polydimethylsiloxane (PDMS) by changing its base-to-agent ratio n and found that TSPL of PDMS3 (n = 20, E = 1.0 MPa) was 8 dB lower than that of PDMS1 (n = 5, E = 3.7 MPa) and 6 dB lower than PDMS2 (n = 10, E = 2.7 MPa). Yet, with further decrease in the elastic modulus (PDMS4, n = 30, E = 0.65 MPa), TSPL bounced back to almost the same value of PDMS1. It is attributed to the influence of the elastic boundary on the bubble dynamics. Only when the bubble collapsed with microjet totally away from the boundary, the lowest TSPL could be achieved. Furthermore, we found that the bubble dynamics of a single laser-induced bubble could be used as a point of reference for the cavitation noise of bubble clusters.
机译:伴随着空化,气泡动力学产生的空化噪声总是不可避免的,但完全是不可取的,特别是对于要求高隐蔽性的船舶螺旋桨。如今,由于其弹性变形特性,具有良好的吸声能力和较高的空化起始速度的高分子复合材料已被用于制造螺旋桨叶片。弹性边界附近的气泡动力学更加复杂,引起了越来越多的研究兴趣。然而,弹性模量对空化噪声的影响尚未引起人们的注意,目前还不清楚。在这里,我们表明测得的空化噪声的总声压级(TSPL)与实心壁的弹性模量是非线性的。通过改变聚二甲基硅氧烷(PDMS)的碱剂比n来调整其弹性模量,发现PDMS3的TSPL(n = 20,E = 1.0 MPa)比PDMS1(n = 5,E = 3.7 MPa)低8 dB,比PDMS2(n = 10,E = 2.7 MPa)低6 dB。然而,随着弹性模量的进一步降低(PDMS4,n = 30,E = 0.65 MPa),TSPL反弹到与PDMS1几乎相同的值。这归因于弹性边界对气泡动力学的影响。只有当气泡在微射流完全远离边界的情况下坍塌时,才能达到最低的TSPL。此外,我们发现单个激光诱导气泡的气泡动力学可以作为气泡团簇空化噪声的参考点。

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