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  • Feedstocks used in the process of powder injection moulding characterized by the flow of highly filled (60 vol.%) compound into a mould cavity, sometimes exhibit non-monotonous flow behaviour of viscosity in dependence on shear rate. A new 7-parameter rheological model was proposed and applied to the feedstock based on aluminium oxide powder and multicomponent partly water-soluble polymeric binder. Structural changes of the feedstock caused by shear deformation were quantified in terms of yield stresses obtained using the classical monotonous Herschel-Bulkley and Casson models. Unlike these models the newly proposed 7-parameter rheological model is valid in the whole shear rate range measured.
  • Feedstocks used in the process of powder injection moulding characterized by the flow of highly filled (60 vol.%) compound into a mould cavity, sometimes exhibit non-monotonous flow behaviour of viscosity in dependence on shear rate. A new 7-parameter rheological model was proposed and applied to the feedstock based on aluminium oxide powder and multicomponent partly water-soluble polymeric binder. Structural changes of the feedstock caused by shear deformation were quantified in terms of yield stresses obtained using the classical monotonous Herschel-Bulkley and Casson models. Unlike these models the newly proposed 7-parameter rheological model is valid in the whole shear rate range measured. (en)
Title
  • On the modelling of non-monotonous viscosity describing feedstock behaviour in powder injection moulding
  • On the modelling of non-monotonous viscosity describing feedstock behaviour in powder injection moulding (en)
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  • On the modelling of non-monotonous viscosity describing feedstock behaviour in powder injection moulding
  • On the modelling of non-monotonous viscosity describing feedstock behaviour in powder injection moulding (en)
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  • RIV/67985874:_____/12:00378950!RIV13-GA0-67985874
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  • P(GA103/08/1307)
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  • 156428
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  • RIV/67985874:_____/12:00378950
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  • powder injection moulding; non-monotonous viscosity; highly-filled suspensions (en)
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  • [9400DE917727]
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  • St. Julian's
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  • Pretoria
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  • Proceedings of the 9th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics (HEFAT2012)
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  • Filip, Petr
  • Hausnerová, B.
  • Čučová, L.
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number of pages
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  • HEFAT
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  • 978-1-86854-986-3
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