About: Experimental verification of hematite ingot mould heat capacity and its direct utilisation in simulation of casting process     Goto   Sponge   NotDistinct   Permalink

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  • Heat capacity of alloys (metals) is one of the crucial thermophysical parameters used for process behaviour prediction in many applications. Heat capacity is an input variable form many thermodynamical (e.g. Thermocalc, Pandat, MTData) and kinetic programs (e.g. IDS-Solidifications analysis package) The dependences of heat capacity on common variables (temperature, pressure) are also commonly used as the input data in software packages (e.g. ProCAST, Magmasoft, ANSYS Fluent) that are applicable in the field of applied research for simulations of technological processes. It follows from the above that heat capacities of materials, alloys in our case, play a very important role in the field of basic and applied research. Generally speaking, experimental data can be found in literature, but corresponding (needed) data for given alloy can very seldom be found or can differ from the tabulated ones. The knowledge of proper values of heat capacities of alloys at the corresponding temperature can be substantially used for addition to and thus towards the precision of the existing database and simulation software. This study presents the values of Cp measured for the hematite ingot mould and comparison of the measured data with Cp values obtained using the software CompuTherm with respect to simulation of technological casting process.
  • Heat capacity of alloys (metals) is one of the crucial thermophysical parameters used for process behaviour prediction in many applications. Heat capacity is an input variable form many thermodynamical (e.g. Thermocalc, Pandat, MTData) and kinetic programs (e.g. IDS-Solidifications analysis package) The dependences of heat capacity on common variables (temperature, pressure) are also commonly used as the input data in software packages (e.g. ProCAST, Magmasoft, ANSYS Fluent) that are applicable in the field of applied research for simulations of technological processes. It follows from the above that heat capacities of materials, alloys in our case, play a very important role in the field of basic and applied research. Generally speaking, experimental data can be found in literature, but corresponding (needed) data for given alloy can very seldom be found or can differ from the tabulated ones. The knowledge of proper values of heat capacities of alloys at the corresponding temperature can be substantially used for addition to and thus towards the precision of the existing database and simulation software. This study presents the values of Cp measured for the hematite ingot mould and comparison of the measured data with Cp values obtained using the software CompuTherm with respect to simulation of technological casting process. (en)
Title
  • Experimental verification of hematite ingot mould heat capacity and its direct utilisation in simulation of casting process
  • Experimental verification of hematite ingot mould heat capacity and its direct utilisation in simulation of casting process (en)
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  • Experimental verification of hematite ingot mould heat capacity and its direct utilisation in simulation of casting process
  • Experimental verification of hematite ingot mould heat capacity and its direct utilisation in simulation of casting process (en)
skos:notation
  • RIV/25877950:_____/13:#0000058!RIV14-MPO-25877950
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  • P(FR-TI3/243)
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  • 1
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  • 74147
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  • RIV/25877950:_____/13:#0000058
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  • heat capacity; DTA; 3D DSC; phase transtion temperatures; computation; simulations; real process (en)
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  • NL - Nizozemsko
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  • [477FB9F619B0]
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  • Journal of Thermal Analysis and Calorimetry
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  • 112
http://linked.open...iv/tvurceVysledku
  • Dobrovská, Jana
  • Gryc, Karel
  • Klus, Petr
  • Machovčák, Pavel
  • Michalek, Karel
  • Smetana, Bedřich
  • Tkadlečková, Markéta
  • Zlá, Simona
  • Žaludová, Monika
  • Řeháčková, Lenka
issn
  • 1388-6150
number of pages
http://bibframe.org/vocab/doi
  • 10.1007/s10973-013-2964-z
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