论文标题

毫米波多普勒传感器,用于材料的无损评估

Millimeter Wave Doppler Sensor for Nondestructive Evaluation of Materials

论文作者

Liao, S., Bakhtiari, S., Elmer, T., Lawrence, B., Koehl, E. R., Gopalsami, N., Raptis, A.

论文摘要

在这些频率上激发时,共振模式是对象的内在特征。探测共振标志可以揭示有关材料组成,几何形状,缺陷的存在以及正在测试对象的其他特征的有用信息。振动光谱可以使用毫米波(MMW)多普勒传感器和远程激发源以高度灵敏度进行远程测量。这种新型的无损评估(NDE)方法可以以非接触方式起作用,作为常规NDE方法(例如基于声学/超声波和光学技术)的替代或互补方法。毫米波振动法可用于广泛的民用和国家安全应用。例子包括检测缺陷和降解材料组件的诊断和预后的降解以及对违禁品的屏蔽/密封容器的快速对峙检查。在本文中,我们评估了Argonne开发的紧凑型MMW振动仪的性能。我们的94 GHz I-Q多普勒传感器监视审问中对象的机械振动特征,该特征是由连续波激发引起的。为了证明原则证明,使用正弦波在从直流到200 Hz的各种频率下,通过电子控制的振动器机械地激发了测试对象。我们将介绍许多实验室测试结果,并将讨论该方法对某些实际NDE应用程序的适用性。

Resonance modes are intrinsic characteristics of objects when excited at those frequencies. Probing the resonance signatures can reveal useful information about material composition, geometry, presence of defects, and other characteristics of the object under test. Vibration spectra can be measured remotely with high degree of sensitivity using a millimeter wave (mmW) Doppler sensor and a remote excitation source. This novel nondestructive evaluation (NDE) method can work in a non-contact manner as an alternative or complementary approach to conventional NDE methods such as those based on acoustic/ultrasonic and optical techniques. Millimeter wave vibrometry can be used for a wide range of civil and national security applications. Examples include detection of defects and degradation for diagnostics and prognostics of materials components and rapid standoff inspection of shielded/sealed containers for contraband. In this paper, we evaluate the performance of a compact mmW vibrometer developed at Argonne. Our 94 GHz I-Q Doppler sensor monitors the mechanical vibration signature of the object under interrogation that is induced by continuous wave excitation. For proof-of-principle demonstrations, the test objects were mechanically excited by an electronically controlled shaker using sinusoidal waves at various frequencies ranging from DC to 200 Hz. We will present a number of laboratory test results and will discuss the method's applicability to some practical NDE applications.

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