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基于激光的超声技术测定微观结构的材料特性。

Determination of the material properties of microstructures by laser based ultrasound.

作者信息

Profunser D M, Vollmann J, Dual J

机构信息

Center of Mechanics, Swiss Federal Institute of Technology, CH-8092 Zürich, Switzerland.

出版信息

Ultrasonics. 2004 Apr;42(1-9):641-6. doi: 10.1016/j.ultras.2004.01.049.

Abstract

In most applications of MEMS the mechanical properties of the used materials are key parameters for the perfect working of the microsystems. Measuring bulk acoustic waves excited in MEMS structures with ultra-short laser pulses is a powerful method for the accurate and non-destructive evaluation as well as for the characterization of material properties. The pump-probe laser-based acoustic method generates bulk acoustic waves in a thermo-elastic way by absorbing the pump laser pulses. The acoustic waves are partly reflected at any discontinuity of the acoustic impedance. At the surface of the specimen the reflected acoustic pulses cause changes of the optical reflection coefficient, which are measured with the probe laser pulses. Thin membranes are part of numerous microelectromechanical systems (MEMS) like sensors, activators and bulk acoustic wave (BAW) filters for example. The described non-destructive and non-contact method is the right approach for testing such thin and brittle structures like membranes. Results of measurements on freestanding aluminium-silicon nitride multi-layer membranes with total thicknesses in the order of several hundred nanometers are presented and compared with thermo-elastic models and with measurements of the supported case. The measured results are used for the determination of the moduli of the membranes.

摘要

在大多数微机电系统(MEMS)应用中,所用材料的机械性能是微系统完美运行的关键参数。用超短激光脉冲测量MEMS结构中激发的体声波,是一种用于准确无损评估以及材料性能表征的强大方法。基于泵浦 - 探测激光的声学方法通过吸收泵浦激光脉冲以热弹性方式产生体声波。声波在声阻抗的任何不连续处都会部分反射。在样品表面,反射的声脉冲会导致光学反射系数发生变化,这是用探测激光脉冲进行测量的。薄膜是众多微机电系统(MEMS)的组成部分,例如传感器、致动器和体声波(BAW)滤波器。所描述的无损和非接触方法是测试诸如薄膜之类的薄而脆结构的正确方法。给出了对总厚度在几百纳米量级的独立式氮化铝硅多层膜的测量结果,并与热弹性模型以及支撑情况下的测量结果进行了比较。测量结果用于确定薄膜的模量。

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