Fire retardancy of sol–gel derived titania wood-inorganic composites

被引:5
|
作者
Muhammad Shabir Mahr
Thomas Hübert
Martin Sabel
Bernhard Schartel
Horst Bahr
Holger Militz
机构
[1] BAM Federal Institute for Materials Research and Testing,Wood Biology and Wood Products, Burckhardt Institute
[2] Georg-August-University Göttingen,undefined
来源
关键词
Precursor Solution; Heat Release Rate; Flame Spread; Fire Behavior; Cone Calorimeter;
D O I
暂无
中图分类号
学科分类号
摘要
Sol–gel technology was applied in tailoring novel wood-made-inorganic composites with improved thermal and fire properties. In practice, composites materials were prepared by impregnating pine sapwood wood with nano-scaled precursor solutions derived from titanium(IV) isopropoxide followed by a thermal curing process. Thermal and fire properties were evaluated by thermal analysis and cone calorimetry, whereas flammability was specified by oxygen index (LOI) and UL 94 test. Peak heat release rates were moderately reduced indicating fire retardance potential in terms of flame spread attributed to the appropriate protection layer action of the titania-based depositions. LOI (oxygen index) values of these composites were increased up to 38 vol.% in comparison to 23 vol.% for untreated wood. The flame retardancy performance depends on the fire scenario and is strongly influenced by wood loading and crack-free deposition of the titania layers inside the composite.
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页码:6849 / 6861
页数:12
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