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Fracture characteristics of acetylated young Scots pine

机译:乙酰化年轻苏格兰松树的骨折特征

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摘要

A study on the fracture characteristics of unmodified and chemically modified Scots pine (Pinus sylvestris) is presented. The investigated material consisted of small-dimension sawn timber originating from young logs (thinnings), aged 30-40 years. The modified samples were acetylated with acetic anhydride in an industrial scale process without the use of any catalyst, reaching an acetyl content of approximately 20%. Clear wood specimens, consisting of either heartwood or sapwood, were extracted and conditioned to equilibrium at a relative humidity of 60% and a temperature of 20 degrees C. The fracture energy for mode I loading in tension perpendicular to the grain was determined using single edge notched beam (SENB) specimens, subjected to three-point bending. Additionally, the modulus of elasticity along the grain and the tensile strength perpendicular to the grain were determined for sapwood specimens. The findings demonstrated a significant decrease (between 36 and 50%) in the fracture energy for the acetylated specimens, compared to the unmodified specimens. No significant effect of the acetylation process on the modulus of elasticity, nor on the tensile strength could be concluded. This study indicates that the acetylation process used results in an increased brittleness for Scots pine. Further studies are needed to analyse why the fracture energy is impaired, and to examine whether and how current timber engineering design provisions can or should be revised to account for the increased brittleness of acetylated Scots pine.
机译:提出了对未改性和化学改性苏格兰松树(松树Sylvestris)的裂缝特性的研究。调查的材料由源自幼小日志(薄薄)的小维度锯材包括30-40岁。在不使用任何催化剂的情况下,在工业规模过程中乙酰化改性样品在工业规模过程中乙酰化,达到约20%的乙酰含量。由心脏或Sapwood组成的透明木质标本,并将其在60%的相对湿度和20℃的相对湿度下平衡。使用单边缘测定垂直于晶粒的张力的裂缝能量的裂缝能量缺口梁(SENB)标本,经过三点弯曲。另外,针对Sapwood标本测定沿谷物的弹性模量和垂直于晶粒的拉伸强度。与未修饰的标本相比,该研究结果证明了乙酰化标本的断裂能量显着降低(36至50%)。可以结束对弹性模量没有乙酰化过程的显着影响,也可以得出抗拉强度。该研究表明,乙酰化过程导致苏格兰松树的脆性增加。需要进一步的研究来分析骨折能量受损的原因,并检查当前的木材工程设计规定是否可以或应如何修改,以考虑乙酰化苏格兰松树的脆性增加。

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  • 来源
    《European journal of wood and wood products》 |2020年第4期|693-703|共11页
  • 作者单位

    Lund Univ Fac Engn LTH Div Struct Mech POB 118 S-22100 Lund Sweden;

    Lund Univ Fac Engn LTH Div Struct Mech POB 118 S-22100 Lund Sweden;

    Lund Univ Fac Engn LTH Div Struct Mech POB 118 S-22100 Lund Sweden;

    Lund Univ Fac Engn LTH Div Solid Mech POB 118 S-22100 Lund Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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