publication . Article . 2020

Effect of the Drying Method of Pine and Beech Wood on Fracture Toughness and Shear Yield Stress

Kazimierz ORLOWSKI; Kazimierz ORLOWSKI; Daniel Chuchala; Daniel Chuchala; Jakub Sandak; Jakub Sandak; Tomasz Ochrymiuk; Tomasz Ochrymiuk;
Open Access
  • Published: 01 Oct 2020 Journal: Materials, volume 13, page 4,692 (eissn: 1996-1944, Copyright policy)
  • Publisher: MDPI AG
Abstract
<jats:p>The modern wood converting processes consists of several stages and material drying belongs to the most influencing future performances of products. The procedure of drying wood is usually realized between subsequent sawing operations, affecting significantly cutting conditions and general properties of material. An alternative methodology for determination of mechanical properties (fracture toughness and shear yield stress) based on cutting process analysis is presented here. Two wood species (pine and beech) representing soft and hard woods were investigated with respect to four diverse drying methods used in industry. Fracture toughness and shear yiel...
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Subjects
free text keywords: General Materials Science, cutting process, sawing process, cutting power, drying process, beech wood, shear yield stress, Article, Composite material, Yield (engineering), Shear (sheet metal), Woodworking, Materials science, Fracture toughness, Wood drying, Pine wood, Beech, biology.organism_classification, biology, Process analysis, lcsh:Technology, lcsh:T, lcsh:Electrical engineering. Electronics. Nuclear engineering, lcsh:TK1-9971, lcsh:Engineering (General). Civil engineering (General), lcsh:TA1-2040, lcsh:Microscopy, lcsh:QH201-278.5, lcsh:Descriptive and experimental mechanics, lcsh:QC120-168.85
Funded by
EC| InnoRenew CoE
Project
InnoRenew CoE
Renewable materials and healthy environments research and innovation centre of excellence
  • Funder: European Commission (EC)
  • Project Code: 739574
  • Funding stream: H2020 | SGA-CSA
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