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Cellulose lattice strains and stress transfer in native and delignified wood.
Spies, Paul-Antoine; Keplinger, Tobias; Horbelt, Nils; Reppe, Friedrich; Scoppola, Ernesto; Eder, Michaela; Fratzl, Peter; Burgert, Ingo; Rüggeberg, Markus.
Afiliação
  • Spies PA; Wood Materials Science, Institute for Building Materials, ETH Zürich, 8093 Zürich, Switzerland; WoodTec group, Cellulose and Wood Materials, Empa - Swiss Federal Laboratories for Materials Science and Technology, 8600 Dübendorf, Switzerland.
  • Keplinger T; Wood Materials Science, Institute for Building Materials, ETH Zürich, 8093 Zürich, Switzerland.
  • Horbelt N; Department of Biomaterials, Max-Planck-Institute of Colloids and Interfaces, Wissenschaftspark Golm, Am Muhlenberg 1, 14476 Potsdam, Germany.
  • Reppe F; Department of Biomaterials, Max-Planck-Institute of Colloids and Interfaces, Wissenschaftspark Golm, Am Muhlenberg 1, 14476 Potsdam, Germany.
  • Scoppola E; Department of Biomaterials, Max-Planck-Institute of Colloids and Interfaces, Wissenschaftspark Golm, Am Muhlenberg 1, 14476 Potsdam, Germany.
  • Eder M; Department of Biomaterials, Max-Planck-Institute of Colloids and Interfaces, Wissenschaftspark Golm, Am Muhlenberg 1, 14476 Potsdam, Germany.
  • Fratzl P; Department of Biomaterials, Max-Planck-Institute of Colloids and Interfaces, Wissenschaftspark Golm, Am Muhlenberg 1, 14476 Potsdam, Germany.
  • Burgert I; Wood Materials Science, Institute for Building Materials, ETH Zürich, 8093 Zürich, Switzerland; WoodTec group, Cellulose and Wood Materials, Empa - Swiss Federal Laboratories for Materials Science and Technology, 8600 Dübendorf, Switzerland. Electronic address: iburgert@ethz.ch.
  • Rüggeberg M; Institute of Forest Utilization and Forest Technology, TU Dresden, 01737 Tharandt, Germany.
Carbohydr Polym ; 296: 119922, 2022 Nov 15.
Article em En | MEDLINE | ID: mdl-36087976
Small specimens of spruce wood with different degrees of delignification were studied using in-situ tensile tests and simultaneous synchrotron X-ray diffraction to reveal the effect of delignification and densification on their tensile properties at relative humidities of 70-80 %. In addition to mechanical properties, these analyses yield the ratio of strains in the cellulose crystals and in the bulk, which reflects the stress-transfer to crystalline cellulose. While the specific modulus of elasticity slightly increases from native wood by partial or complete delignification, the lattice strain ratio does not show a significant change. This could indicate a compensatory effect from the decomposition of the amorphous matrix by delignification and from a tighter packing of cellulose crystals that would increase the stress transfer. The reduced strain to failure and maximum lattice strain of delignified specimens suggests that the removal of lignin affects the stress-strain behavior with fracture at lower strain levels.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Madeira / Picea Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Madeira / Picea Idioma: En Ano de publicação: 2022 Tipo de documento: Article