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  • Separation of particular material components occurring during shear flow of PIM feedstocks has a detrimental effect on the quality of the resulting parts. Currently, there is a lack of reliable methods describing separation in a quantitative way. Scanning electron microscopy and energy dispersive spectroscopy combined with analytical computation provide an approach to analyse this phenomenon quantitatively, and compare tendency to separation as a function of material composition and/or processing parameters. Further, surface quality of the sintered parts is determined quantitatively with a contactless scanner with a First Interface Detection testing mode in order to obtain fractal dimensions of both reject and fine surface structures of the final products.
  • Separation of particular material components occurring during shear flow of PIM feedstocks has a detrimental effect on the quality of the resulting parts. Currently, there is a lack of reliable methods describing separation in a quantitative way. Scanning electron microscopy and energy dispersive spectroscopy combined with analytical computation provide an approach to analyse this phenomenon quantitatively, and compare tendency to separation as a function of material composition and/or processing parameters. Further, surface quality of the sintered parts is determined quantitatively with a contactless scanner with a First Interface Detection testing mode in order to obtain fractal dimensions of both reject and fine surface structures of the final products. (en)
Title
  • Quantitative Analysis of Surface Properties Resulting from Powder-Binder Separation
  • Quantitative Analysis of Surface Properties Resulting from Powder-Binder Separation (en)
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  • Quantitative Analysis of Surface Properties Resulting from Powder-Binder Separation
  • Quantitative Analysis of Surface Properties Resulting from Powder-Binder Separation (en)
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  • RIV/70883521:28610/13:43870122!RIV14-MSM-28610___
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  • P(ED2.1.00/03.0111), S
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  • 101200
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  • RIV/70883521:28610/13:43870122
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  • powder injection molding, feedstock, surface roughness, powder-binder Separation (en)
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  • [FD09F426E1CB]
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  • Gothenburg
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  • Vienna
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  • EURO PMA 2013 Developing the Powder Metallurgy Future
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  • Hausnerová, Berenika
  • Sanétrník, Daniel
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number of pages
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  • European Powder Metallurgy Association
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  • 978-1-899072-41-5
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  • 28610
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