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- W3040893705 abstract "Development of lightweight parts made of fiber-reinforced polymer composites for aerospace and automotive industry has been focus of many studies over the past several decades. Nanofillers added to the epoxy matrices used in such composite parts results in remarkable improvement of matrix-dominated properties. Formation of interphases between inorganic nanofillers and polymer matrices is usually known to have a dominant impact on the properties of the nanocomposite. Underestimating the effect of such short- and long-range interactions between nanofillers and polymer matrices on properties on the nanocomposite, result in misprediction of material behavior. Here goal is to understand the interaction between nanofillers and the epoxy matrix, to probe the interphase and its properties and eventually to correlate the nanoscale properties to the macroscopic behavior of the material. Due to size limitations of various analytical methods it is difficult to determine properties of nanofillers and their interphases. Here we show that by using multiple atomic force microscopy (AFM) methods, information about physical, chemical and mechanical properties of a boehmite (BNP)/ epoxy nanocomposite at nanometer scale are provided and can be correlated to the macroscopic behavior. Using high resolution intermodulation AFM (ImAFM) results in recording complete force-distance curves from each pixel of the scanned area. Scanning Kelvin probe microscopy (SKPM) provides us with maps of potential which correlate to chemical structures of the heterogeneous material. Furthermore, infrared spectroscopy AFM (AFM-IR) is used to investigate the chemical structure of the interphase and heterogenous phases of the bulk matrix." @default.
- W3040893705 created "2020-07-16" @default.
- W3040893705 creator A5069905436 @default.
- W3040893705 date "2018-01-01" @default.
- W3040893705 modified "2023-09-23" @default.
- W3040893705 title "Nanomechanical properties of epoxy-boehmite nanocomposites with aerospace applications" @default.
- W3040893705 hasPublicationYear "2018" @default.
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