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首页> 外文期刊>SN Applied Sciences >New manufacturing methodology for boron‑based rods for remedial treatments of wood: solubilities and some physical and thermal properties of the rods
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New manufacturing methodology for boron‑based rods for remedial treatments of wood: solubilities and some physical and thermal properties of the rods

机译:基于硼的补救治疗的硼杆的新制造方法:溶解度和杆的一些物理和热性质

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摘要

Boron-based rods are ideal for remedial treatments in wood attacked by decay fungi, insects and termites as well as for preventive treatments of high-risk areas in structural timbers and logs internally. This study evaluated the solubility, some physical and thermal properties of the boron-based rods manufactured from either raw ulexite mineral, raw colemanite mineral, di-sodium octaborate tetrahydrate (DOT), and their combination of silica-based plasticizer. This is the first attempt to produce ulexite and colemanite-based boron rods with/without additional compound by an extruder. To take the advantages of boron minerals, rods were produced with paste mixtures of boron compounds and plasticizer by a single-screw extrusion method. Solubility and thermal resistance tests as well as micro-hardness tests were performed to determine the quality and strength of the rods for discussing the on-site applications. The paste content was an important factor affecting the transport processes during single screw extrusion with special emphasis on the rod formation. No macro-structural changes were observed when the boron rods were exposed to heat at 30, 50, 70, 100, and 200 °C. According to the Kruskal–Wallis test, no significant difference was observed in micro-hardness values of thermally treated boron-based rods; however, at high temperatures up to 50 °C, there was a decrease in hardness of DOT rods. The rods manufactured by extrusion methods showed similar water solubility when compared to raw ulexite and colemanite minerals.
机译:基于硼的杆是由腐烂的真菌,昆虫和白蚁攻击的木材的防护治疗的理想选择,以及在结构木材中的高风险地区的预防性处理和内部的原木。该研究评估了由原料尿道矿物质,原核素矿物,二钠额外制造的四水合物(DOT)制造的基于硼的棒的溶解度,一些物理和热性质,以及它们的二氧化硅基增塑剂的组合。这是第一次尝试通过挤出机与/没有额外的化合物生产乌希尔特和基于科学矿石的硼棒。为了采取硼矿物的优点,通过单螺杆挤出方法用硼化合物和增塑剂的糊状混合物生产棒。进行溶解度和热阻试验以及微硬度测试以确定杆的质量和强度,用于讨论现场应用。糊状含量是在单螺杆挤出过程中影响运输过程的重要因素,特别强调杆状。当硼棒暴露于30,50,70,100和200℃时,不会观察到宏观结构变化。根据Kruskal-Wallis测试,在热处理的硼基杆的微硬度值中没有观察到显着差异;然而,在高达50℃的高温下,点棒的硬度降低。与原料含孔矿和科学土矿矿物相比,通过挤出方法制造的棒与含水溶解度相似。

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  • 来源
    《SN Applied Sciences》 |2020年第11期|1790.1-1790.12|共12页
  • 作者单位

    Department of Chemical Engineering Faculty of Chemistry‑Metallurgical Yıldız Technical University 34210 Davutpasa Esenler Istanbul Turkey;

    Department of Forest Biology and Wood Protection Technology Faculty of Forestry Istanbul University-Cerrahpaşa 34473 Bahcekoy Istanbul Turkey;

    Department of Forest Biology and Wood Protection Technology Faculty of Forestry Istanbul University-Cerrahpaşa 34473 Bahcekoy Istanbul Turkey;

    Department of Chemical Engineering Faculty of Chemistry‑Metallurgical Yıldız Technical University 34210 Davutpasa Esenler Istanbul Turkey;

    Department of Statistics Faculty of Arts and Science 34210 Davutpasa Esenler Istanbul Turkey;

    Department of Chemical Engineering Faculty of Chemistry‑Metallurgical Yıldız Technical University 34210 Davutpasa Esenler Istanbul Turkey;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rods; Boron; Ulexite; Colemanite; Remedial treatments; Wood;

    机译:棒;硼;乌希尔特;CONEMANITE;补救治疗;木头;

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