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A Small-Angle Scattering Environment for In Situ Ultrasound Studies

机译:用于原位超声研究的小角度散射环境

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摘要

Ultrasonic devices are common tools in laboratory and industrial settings to produce cavitation events for cleaning, emulsification, cell lysis and other materials applications. Effects of sonication at the macroscopic scale can be visible while effects at the molecular and nano-scales are not easily probed and, therefore, not fully understood. We present a new small angle scattering sample environment designed specifically to study structural changes occurring in various types of dispersions at the nano-scale due to ultrasonic acoustic waves. The sample environment features two face-to-face high-intensity focused ultrasound transducers coaxially aligned and normal to the neutron/x-ray beam propagation direction. A third broadband transducer is fixed beneath the scattering volume to acoustically monitor for cavitation events. By correlating acoustic data to scattering data, measured structural changes can be correlated to changes in parameters such as frequency, acoustic pressure, or cavitation pressure threshold. Several example applications of colloidal systems effectively influenced by ultrasound fields are also presented to demonstrate the capabilities of the device and to motivate future work on in-situ scattering analysis of ultrasound materials processing methods.
机译:超声波设备是实验室和工业环境中产生清洁,乳化,细胞裂解和其他材料应用中空化事件的常用工具。宏观上声处理的效果是可见的,而分子和纳米级的效果则不容易探究,因此尚未完全理解。我们提出了一种新的小角度散射样品环境,该环境专门设计用于研究由于超声波而在纳米级的各种类型的分散体中发生的结构变化。样品环境具有两个同轴排列且垂直于中子/ x射线束传播方向的面对面的高强度聚焦超声换能器。第三个宽带传感器固定在散射体下方,以声学方式监测空化事件。通过将声学数据与散射数据相关联,可以将测得的结构变化与诸如频率,声压或空化压力阈值之类的参数变化相关联。还介绍了受到超声场有效影响的胶体系统的几个示例应用,以演示该设备的功能并激发未来对超声材料处理方法进行原位散射分析的工作。

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