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首页> 外文期刊>Composites >Larch tannin-based rigid phenolic foam with high compressive strength, low friability, and low thermal conductivity reinforced by cork powder
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Larch tannin-based rigid phenolic foam with high compressive strength, low friability, and low thermal conductivity reinforced by cork powder

机译:用软木粉增强的高抗压强度,低脆性和低导热性的落叶松单宁硬质酚醛泡沫

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摘要

Phenolic foam (PF) has recently been spotlighted because of their excellent flame resistance, low smoke emission, and low production costs. However, PF is mainly prepared from petroleum-based products, and it exhibits poor mechanical strength and high friability. In this study, larch tannin-based rigid phenolic foams (LTPFs) and cork powder was used as filler to prepare cork powder-reinforced LTPFs (CLTPFs). The chemical structure, cell morphology, compressive mechanical properties, friability, thermal properties, and flame retardancy of the foams were evaluated. The results indicated that the LTPFs showed inferior cell morphology, compressive strength and thermal properties, high friability and high flame retardancy as compared with the neat PF. LTPF10 presented the maximal limiting oxygen index (LOI) of 47.8%. As compared with the unreinforced LTPFs, CLTPFs possessed excellent cell morphology, high compressive strength, low thermal conductivity, low friability, and good thermal properties. At a cork powder dosage of 1 wt%, the compressive strength and modulus of CLTPFs increased by 14.84% and 16.18%, respectively; the pulverization ratio and thermal conductivity of CLTPFs decreased by 18.4% and 32.29%, respectively, as compared with those of the LTPF. In addition, the introduction of cork powder improved the thermal stability of LTPFs. The LOI values of the CLTPFs were slightly lower than those of LTPFs. LTPF reinforced with 1 wt% cork powder exhibited the best combination of the features.
机译:酚醛泡沫(PF)最近因其出色的阻燃性,低烟尘排放和低生产成本而备受关注。然而,PF主要由石油基产品制备,并且表现出差的机械强度和高脆性。在这项研究中,落叶松基于单宁的硬质酚醛泡沫(LTPF)和软木粉被用作填充剂,以制备软木粉增强的LTPF(CLTPF)。评价了泡沫的化学结构,泡孔形态,压缩机械性能,脆性,热性能和阻燃性。结果表明,与纯PF相比,LTPF具有较差的细胞形态,抗压强度和热性能,高脆性和高阻燃性。 LTPF10的最大极限氧指数(LOI)为47.8%。与未增强的LTPF相比,CLTPF具有出色的泡孔形态,高抗压强度,低导热性,低脆性和良好的热性能。在软木粉剂量为1 wt%的情况下,CLTPF的抗压强度和模量分别增加了14.84%和16.18%。与LTPF相比,CLTPF的粉碎率和导热率分别降低了18.4%和32.29%。此外,引入软木粉可改善LTPF的热稳定性。 CLTPF的LOI值略低于LTPF。用1wt%的软木粉增强的LTPF表现出这些特征的最佳组合。

著录项

  • 来源
    《Composites》 |2019年第1期|368-377|共10页
  • 作者单位

    Ministry of Education, Key Laboratory of Wood Materials Science and Utilization, Beijing Forestry University|Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University;

    Ministry of Education, Key Laboratory of Wood Materials Science and Utilization, Beijing Forestry University|Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University;

    Ministry of Education, Key Laboratory of Wood Materials Science and Utilization, Beijing Forestry University|Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University;

    Ministry of Education, Key Laboratory of Wood Materials Science and Utilization, Beijing Forestry University|Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University;

    Ministry of Education, Key Laboratory of Wood Materials Science and Utilization, Beijing Forestry University|Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University;

    Ministry of Education, Key Laboratory of Wood Materials Science and Utilization, Beijing Forestry University|Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University;

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

    Larch tannin; Phenolic foam; Cork powder; Compressive strength; Friability; Thermal conductivity;

    机译:落叶松单宁;酚醛泡沫;软木粉;抗压强度;易碎性;导热系数;

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