Abstract
We determined the isotropic indentation modulus of precipitates in cubic materials by using the indentation modulus of the matrix as a reference. This eliminates major practical difficulty of repeatedly switching between a sample and a reference for measurement of indentation modulus using atomic force acoustic microscopy. The methodology has been demonstrated for mapping the elastic stiffness of ∼500 nm sized M23 C6 precipitates in alloy 625 and ferritic steel with a spatial resolution of ∼50 nm. © 2008 American Institute of Physics.
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CITATION STYLE
Kumar, A., Rabe, U., Hirsekorn, S., & Arnold, W. (2008). Elasticity mapping of precipitates in polycrystalline materials using atomic force acoustic microscopy. Applied Physics Letters, 92(18). https://doi.org/10.1063/1.2919730
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