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  Surname Name Title Thesis status   Supervisors Reviewers Type of thesis Date of def. Title
Student Type of thesis - - - - - - - - - -
Item shown in detail Hýlová Includes the selected person into the timetable overlap calculation. Lenka The Influence of Beta Radiation on Micro-Hardness of Polymers The Influence of Beta Radiation on Micro-Hardness of Polymers Thesis finished and defended successfully (DUO).   Staněk Michal Hudec Ivan, Kocman Karel Doctoral thesis 1573081200000 07.11.2019 The Influence of Beta Radiation on Micro-Hardness of Polymers Thesis finished and defended successfully (DUO).
Lenka Hýlová Doctoral thesis 0XX 0XX 0XX 0XX 0XX 0XX 0XX 0XX 0XX 0XX

Thesis info Vliv beta záření na mikro-tvrdost polymerů

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Name Hýlová Lenka Includes the selected person into the timetable overlap calculation.
Acad. Yr. 2015/2016
Assigning department TUVI
Date of defence Nov 7, 2019
Type of thesis Doctoral thesis
Thesis status Thesis finished and defended successfully (DUO). Thesis finished and defended successfully (DUO).
Completeness of mandatory entries - All mandatory fields for this Thesis are filled in.
Main topic Vliv beta záření na mikro-tvrdost polymerů
Main topic in English The Influence of Beta Radiation on Micro-Hardness of Polymers
Title according to student Vliv beta záření na mikro-tvrdost polymerů
English title as given by the student The Influence of Beta Radiation on Micro-Hardness of Polymers
Parallel name -
Subtitle -
Thesis supervisor Staněk Michal, prof. Ing. Ph.D.
External examiner Hudec Ivan, prof. Ing. Ph.D., Kocman Karel, prof. Ing. DrSc.
Annotation Tato studie se zabývá vlivem záření elektronového paprsku v dávkách 0, 66, 99 a 132 kGy na mikro-mechanické vlastnosti polymerů, konkrétně polyamidu 6 plněného 1 - 6 hm. % síťovacím urychlovačem triallylisokyanurátem (TAIC). Z mikro-mechanických vlastností byla naměřena indentační tvrdost, indentační modul pružnosti a indentační kríp. Pro ověření zesíťování materiálu byla zvolena metoda termo-mechanické analýzy (TMA) a pro důkaz degradace materiálu byla zvolena Fourierova transformační infračervená spektroskopie (FTIR). Pro doplnění byla zkoumána také topografie povrchu pomocí mikroskopie atomárních sil (AFM).
Annotation in English The study deals with the influence of electron beam radiation in the doses of 0, 66, 99 and 132 kGy on micro-mechanical properties of polymers, especially polyamide 6 filled with 1 - 6 wt. % of crosslinking agent triallylisocyanurate (TAIC). Indentation hardness, indentation elasticity modulus and indentation creep were measured from micro-mechanical properties. As a proof of cross-linking, the method of thermo-mechanical analysis (TMA) and of degradation, the Fourier transfor infrared spectroscopy (FTIR) were chosen. In addition, surface topography using atomic force microscopy (AFM) was also investigated.
Keywords polyamid 6, záření elektronového paprsku, síťování, mikro-mechanické vlastnosti, mikro-tvrdost
Keywords in English polyamide 6, electron beam radiation, cross-linking, micro-mechanical properties, micro-hardness
Length of the covering note 135
Language CZ
Annotation
Tato studie se zabývá vlivem záření elektronového paprsku v dávkách 0, 66, 99 a 132 kGy na mikro-mechanické vlastnosti polymerů, konkrétně polyamidu 6 plněného 1 - 6 hm. % síťovacím urychlovačem triallylisokyanurátem (TAIC). Z mikro-mechanických vlastností byla naměřena indentační tvrdost, indentační modul pružnosti a indentační kríp. Pro ověření zesíťování materiálu byla zvolena metoda termo-mechanické analýzy (TMA) a pro důkaz degradace materiálu byla zvolena Fourierova transformační infračervená spektroskopie (FTIR). Pro doplnění byla zkoumána také topografie povrchu pomocí mikroskopie atomárních sil (AFM).
Annotation in English
The study deals with the influence of electron beam radiation in the doses of 0, 66, 99 and 132 kGy on micro-mechanical properties of polymers, especially polyamide 6 filled with 1 - 6 wt. % of crosslinking agent triallylisocyanurate (TAIC). Indentation hardness, indentation elasticity modulus and indentation creep were measured from micro-mechanical properties. As a proof of cross-linking, the method of thermo-mechanical analysis (TMA) and of degradation, the Fourier transfor infrared spectroscopy (FTIR) were chosen. In addition, surface topography using atomic force microscopy (AFM) was also investigated.
Keywords
polyamid 6, záření elektronového paprsku, síťování, mikro-mechanické vlastnosti, mikro-tvrdost
Keywords in English
polyamide 6, electron beam radiation, cross-linking, micro-mechanical properties, micro-hardness
Research Plan -
Research Plan
-
Recommended resources -
Recommended resources
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Týká se praxe No
Enclosed appendices -
Appendices bound in thesis -
Taken from the library No
Full text of the thesis
Appendices
Reviewer's report
Supervisor's report
Defence procedure record file