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  • The presented article deals with the relationship between micromechanical properties of wood tissues and the angle of microfibrils in cells of spruce wood. Cell wall is composed of more layers of various spiral angles of cellulose microfibrils and their study is complicated because of the limited size and difficult identification. For this reason, we used a combination of optical microscopy and nanoindentation. In particular, optical microscopy was used to determine the topography of the sample and nanoindentation for mapping the micromechanical properties. Microfibril angle was consequently derived based on the recorded modulus of elasticity.
  • The presented article deals with the relationship between micromechanical properties of wood tissues and the angle of microfibrils in cells of spruce wood. Cell wall is composed of more layers of various spiral angles of cellulose microfibrils and their study is complicated because of the limited size and difficult identification. For this reason, we used a combination of optical microscopy and nanoindentation. In particular, optical microscopy was used to determine the topography of the sample and nanoindentation for mapping the micromechanical properties. Microfibril angle was consequently derived based on the recorded modulus of elasticity. (en)
Title
  • Influence of Morphology on Mechanical Properties of Wood Cell
  • Influence of Morphology on Mechanical Properties of Wood Cell (en)
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  • Influence of Morphology on Mechanical Properties of Wood Cell
  • Influence of Morphology on Mechanical Properties of Wood Cell (en)
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  • RIV/68407700:21460/14:00224585!RIV15-MSM-21460___
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  • 21518
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  • RIV/68407700:21460/14:00224585
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  • Micromechanical properties; spruce wood; geometry; nanoindentation; modulus mapping (en)
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  • [B15FDE5EE52D]
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  • Praha
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  • Prague
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  • Proceedings of the 5th Conference Nano & Macro Mechanics
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  • Králík, Vlastimil
  • Tesárek, Pavel
  • Nežerka, Václav
  • Topič, Jaroslav
  • Prošek, Zdeněk
  • Indrová, Kateřina
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  • České vysoké učení technické v Praze
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  • 978-80-01-05569-4
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  • 21460
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