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Experimental Study on the Fire Properties of Nitrocellulose with Different Structures

机译:不同结构硝化纤维素燃烧性能的实验研究

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In order to ensure the safety of inflammable and explosive chemical substance such as nitrocellulose (NC) mixtures in the process of handing, storage, and usage, it is necessary to obtain the fire properties of NC with different exterior structures. In present study, fire properties of two commonly used nitrocelluloses with soft fiber structure and white chip structure were investigated by scanning electron microscope (SEM) and the ISO 5660 cone calorimeter. Experimental findings revealed that the most important fire properties such as ignition time, mass loss rate and ash content exhibited significant differences between the two structures of NC. Compared with the soft fiber NC, chip NC possesses a lower fire hazard, and its heat release rate intensity (HRRI) is mainly affected by the sample mass. In addition, oxygen consumption (OC) calorimetry method was compared with thermal chemistry (TC) method based on stoichiometry for HRRI calculation. HRRI results of NC with two structures obtained by these two methods showed a good consistency.
机译:为了确保易燃易爆化学物质(如硝化纤维(NC)混合物)在处理,储存和使用过程中的安全性,必须获得具有不同外部结构的NC的防火性能。在本研究中,通过扫描电子显微镜(SEM)和ISO 5660锥形量热仪研究了两种具有软纤维结构和白片结构的常用硝化纤维的防火性能。实验结果表明,最重要的着火性能,如着火时间,质量损失率和灰分含量在两种NC结构之间表现出显着差异。与软纤维NC相比,芯片NC具有更低的着火危险,其放热率强度(HRRI)主要受样品质量的影响。此外,比较了基于化学计量的耗氧量(OC)和热化学(TC)方法进行HRRI计算。通过这两种方法获得的具有两种结构的NC的HRRI结果显示出良好的一致性。

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