Wykaz publikacji wybranego autora

Rafał Zybała, dr inż.

asystent

Wydział Inżynierii Materiałowej i Ceramiki
WIMiC-kcn, Katedra Chemii Nieorganicznej


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OPI Nauka Polska




1
  • Analysis of possibilities of waste heat recovery in off-road vehicles
2
  • Anisotropy analysis of thermoelectric properties of ${Bi_{2}Te_{2,9}De_{0,1}}$ prepared by SPS method
3
  • Anisotropy analysis of thermoelectric properties of ${Bi_{2}Te_{2.9}Se_{0.1}}$ prepared by SPS method
4
  • Apparatus for characterization of thermoelectric modules for power generation
5
  • Comparison of waste heat recovery from the exhaust of a spark ignition and a diesel engine
6
  • Comparison of waste heat recovery from the exhaust of a spark ignition and a Diesel engine
7
  • Crystal structure, electronic and transport properties of ${AgSbSe_{2}}$ and ${AgSbTe_{2}}$
8
  • Development of the method for the preparation of ${Mg_{2}Si}$ by SPS technique
9
  • Development of the method for the preparation of ${Mg_{2}Si}$ by SPS technique
10
  • Experimental study of waste heat recovery in off-road vehicles
11
  • Grading of binary and ternary thermoelectric materials under strong gravitational field
12
13
  • Influence of back pressure on net efficiency of TEG generator mounted in the exhaust system of a Diesel engine
14
  • Influence of doping on structural and thermoelectric properties of $AgSbSe{_2}$
15
  • Influence of doping on structural and thermoelectric properties of $AgSbSe_{2}$
16
  • Innovative manufacturing method: gradation of thermoelectric materials under strong gravitational field
17
  • Performance characterization of high-efficiency segmented $Bi_{2}Te_{3}/CoSb_{3}$ unicouples for thermoelectric generators
18
  • Performance characterization of high-efficiency segmented $Bi_{2}Te_{3}/CoSb_{3}$ unicouples for thermoelectric generators
19
  • Preparation of functionally graded thermoelectric materials under strong gravitational field
20
  • Studies of efficiency of TEG generator fitted in the exhaust system of a Diesel engine
21
  • Test bed study of waste heat recovery from the exhaust of a spark ignition engine