炭化泡桐木平行于纹理的抗压强度

Peihang Wu, Supan Wang
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引用次数: 0

摘要

木材是建筑火灾中常见的易燃物,也是野外火灾中的主要燃料。在这项研究中,通过不同的辐射热通量和加热时间对木材试样表面进行预热,以获得不同的炭化层厚度。通过电子万能试验机(WDW-20)获得了平行于颗粒的抗压强度与不同炭化厚度的关系。实验结果表明,较高的热通量和较长的加热时间可促进炭层的形成,但抗压强度与炭化厚度的关系先是下降到最小值,然后保持稳定。在 7 kW/m2 的情况下,抗压强度在 5-7 个加热周期内迅速下降。例如,最初 5 分钟后的抗压强度为 31.7 兆帕,最初 7 分钟后为 3.69 兆帕。当辐射热通量从 7 千瓦/平方米增加到 10 千瓦/平方米时,抗压强度的降低率将从最初 5 分钟的 1.32 兆帕/分钟增加到 3.75 兆帕/分钟,并从最初 7 分钟加热期的 4.95 兆帕/分钟增加到 5.34 兆帕/分钟。这项研究有助于我们了解炭化过程对木材机械性能和木材结构失效的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compressive Strength parallel to grains of Charred Paulownia Wood
Wood is a common flammable in the building fire and the dominant fuel in the wildland fire. In this study, the surface of wood specimens has been pre-heated by various radiative heat fluxes and heating times to achieve varying char layer thicknesses. The compressive strength parallel to grains versus various charring thicknesses has been obtained by an electronic universal testing machine (WDW-20). Experimental results demonstrate that a higher heat flux and longer heating times promote the formation of the char layer, but the compressive strength versus the charring thickness first decreases to its minimum value and subsequently remains stable. For the 7 kW/m2 case, there is a rapid decrease in compressive strength for the 5-7 heating period. For example, the compressive strength is 31.7 MPa after the initial 5-minute period, and 3.69 MPa after the initial 7-minute period. For the radiative heat fluxes from 7 kW/m2 to 10 kW/m2, the reduction rate of compressive strength will increase from 1.32 MPa/min to 3.75 MPa/min for the initial 5-minute period, and increase from 4.95 MPa/min to 5.34 MPa/min for the initial 7-minute heating period. This study helps us understand the influence of charring processes on the mechanical properties of wood and the failure of timber structures.
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