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  • 1.
    Blomberg, Jonas
    Dalarna University, School of Technology and Business Studies, Materials Technology.
    Elastic strain at semi-isostatical compression of Scots pine (pinus sylvestris L.)2005In: Journal of Wood Science, ISSN 1435-0211, E-ISSN 1611-4663, Vol. 51, no 4, p. 401-404Article in journal (Refereed)
    Abstract [en]

    Quarter-sawn and plain-sawn specimens of Scots pine were semi-isostatically compressed at 5, 15, 50, and 140MPa in a Quintus press. Elastic strain was measured using a telescope device that was pushed together when wood was compressed and remained in this position at release of pressure. Delayed elastic and plastic strains were assessed through repeated callipering during 5 years after densification. At 140MPa, wood reached an almost compact structure (rho approximate to 1450kg/m(3)) but as a result of elastic springback the density decreased to just below 1000kg/m(3). At 140MPa, the elastic and delayed elastic strains were 14.6% and 1.8%, respectively, in quarter-sawn specimens, and were 13.1% and 0.8%, respectively, in plain-sawn specimens. The higher elastic strains in quarter-sawn specimens can be attributed to elastic springback in the tangentially deformed latewood bands.

  • 2.
    Blomberg, Jonas
    et al.
    Dalarna University, School of Technology and Business Studies, Wood Technology.
    Persson, Bengt
    Dalarna University, School of Technology and Business Studies, Wood Technology.
    Plastic deformation in small clear pieces of Scots Pine (Pinus sylvestris L.) during densification with the Calignum® process2004In: Journal of Wood Science, ISSN 1435-0211, E-ISSN 1611-4663, Vol. 50, no 4, p. 307-314Article in journal (Refereed)
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