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一种模仿手枪虾的空化发生器的开发。

Development of a Cavitation Generator Mimicking Pistol Shrimp.

作者信息

Soyama Hitoshi, Tanaka Mayu, Takiguchi Takashi, Yamamoto Matsuo

机构信息

Department of Finemechanics, Tohoku University, Sendai 980-8579, Japan.

School of Dentistry, Showa University, Tokyo 145-8515, Japan.

出版信息

Biomimetics (Basel). 2024 Jan 12;9(1):47. doi: 10.3390/biomimetics9010047.

Abstract

Pistol shrimp generate cavitation bubbles. Cavitation impacts due to bubble collapses are harmful phenomena, as they cause severe damage to hydraulic machinery such as pumps and valves. However, cavitation impacts can be utilized for mechanical surface treatment to improve the fatigue strength of metallic materials, which is called "cavitation peening". Through conventional cavitation peening, cavitation is generated by a submerged water jet, i.e., a cavitating jet or a pulsed laser. The fatigue strength of magnesium alloy when treated by the pulsed laser is larger than that of the jet. In order to drastically increase the processing efficiency of cavitation peening, the mechanism of pistol shrimp (specifically when used to create a cavitation bubble), i.e., , was quantitatively investigated. It was found that a pulsed water jet generates a cavitation bubble when a shrimp snaps its claws. Furthermore, two types of cavitation generators were developed, namely, one that uses a pulsed laser and one that uses a piezo actuator, and this was achieved by mimicking a pistol shrimp. The generation of cavitation bubbles was demonstrated by using both types of cavitation generators: the pulsed laser and the piezo actuator.

摘要

手枪虾会产生空化气泡。由于气泡坍塌而产生的空化冲击是有害现象,因为它们会对诸如泵和阀门等液压机械造成严重损坏。然而,空化冲击可用于机械表面处理,以提高金属材料的疲劳强度,这被称为“空化喷丸”。通过传统的空化喷丸,空化是由淹没式水射流产生的,即空化射流或脉冲激光。用脉冲激光处理时镁合金的疲劳强度大于用水射流处理时的疲劳强度。为了大幅提高空化喷丸的加工效率,对手枪虾产生空化气泡的机制进行了定量研究。研究发现,当虾合拢爪子时,脉冲水射流会产生空化气泡。此外,通过模仿手枪虾,开发了两种类型的空化发生器,一种使用脉冲激光,另一种使用压电致动器。通过使用这两种类型的空化发生器(脉冲激光和压电致动器)都证明了空化气泡的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2093/10813229/01501eff7b7a/biomimetics-09-00047-g015.jpg

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