首页|烟火剂爆燃光谱示温反演研究

烟火剂爆燃光谱示温反演研究

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如何在高温、高压、高辐射状态下准确测温一直是一个难题,为解决该难题,以辐射光谱测温技术为基础,实现对多元烟火剂爆燃过程的非接触温度测量,为进一步明确烟火剂的反应步骤与爆燃产物提供了基础参数.通过建立多元烟火剂与示温颗粒的辐射光谱测温模型,给出基于凝聚相小灰体颗粒的发射率计算方法,开展凝聚相颗粒辐射谱线获取实验并进行连续热辐射谱线的示温反演.为提高反演的准确性,提出了一种方法以降低在多元烟火剂爆燃时出现的离子峰展宽影响,该方法采用维恩变换分析光谱曲线,使用Bisquare算法和最小二乘算法的双平方加权拟合去除非热辐射谱线,开展热辐射温度的反演.发现了烟火剂爆燃二次升温规律,温度出现升温-降温-再升温-再降温的二次放热的现象.该研究为炸药一类物质爆燃的温度场温度变化检测提供了一种新的反演思路和方法.
Study on temperature inversion of deflagration spectrum of pyrotechnics
Objective Accurate temperature measurement under high temperature,high pressure,and high radiation conditions is always a difficult task.To address this challenge,we realize the non-contact temperature measurement of multi-component pyrotechnic composition deflagration process based on the radiation spectral temperature measurement technology,providing basic parameters for further defining the reaction steps and deflagration products of pyrotechnic compositions.Methods By establishing the radiation spectral temperature retrieval model of multi-component pyrotechnic compositions and temperature indicating particles,a calculation method based on the emissivity of small condensed phase gray-body particles is given,and the radiation spectrum of the condensed phase particles is obtained by experiment to retrieve the temperature as indicated by the continuous thermal radiation spectrum.In order to improve the temperature retrieval accuracy,we propose an improved method to reduce the influence of ion peak broadening during the deflagration of multi-component pyrotechnic compositions by using the Wien transformation to analyze the spectral curve,we also use double square weighted fitting by combining the Bisquare algorithm and the least squares algorithm to remove the non-thermal radiation spectral lines to improve the accuracy of the retrieved temperature variation curve.This method provides a fast and anti-interference way for non-contact spectral temperature retrieval under specific conditions.Results and Discussions The detonation of pyrotechnic agents mainly involves two exothermic processes.The first process is:under initial conditions,the oxidant and reducing agent undergo a violent reaction and generate a large amount of heat,and the pyrotechnic agent undergoes instantaneous detonation,with an instantaneous temperature rise to 2 795 K;Afterwards,the temperature gradually decreased and a brief uniform distribution of temperature appeared around 25 ms,and before 100 ms,the temperature uniformly decreased to 1485 K.The second process followed by a second increase in temperature,which is analyzed to be due to the presence of cellulose,lignin,and unburned particulate dust in the charcoal that have not been thermally decomposed in the first stage.Under continuous heating conditions,surface carbonization cracks appear and cause combustion to release a large amount of heat.When the accumulated energy exceeds a certain critical value,intense combustion occurs,resulting in a second exothermic peak.After 150 ms,the secondary exothermic reaction had ended,and most of the carbon particles were consumed through secondary deflagration.The thermal radiation spectrum mainly came from alumina temperature indicating particles,and their good thermal conductivity led to a rapid decrease in system temperature,which was significantly faster than the first temperature decrease process.Conclusions The entire temperature change process during the detonation of pyrotechnic agents exhibits a secondary exothermic phenomenon of a characteristic pattern of heating,cooling,reheating,and final cooling.This article determines whether there are non thermal radiation spectral lines based on the line shape and dispersion degree of the spectral lines,and adds weight coefficients of the Bisquare algorithm to improve the anti-interference ability of inversion to ion peaks and noise.It provides a new inversion idea and method for detecting temperature changes in the temperature field of pyrotechnic explosive detonation.This method can detect and analyze the secondary heating phenomenon in the detonation of pyrotechnic agents.

deflagration spectrumtemperature retrievalimproved Wien criterionBisquare algorithm

赵猛、夏惠军、晁瑞泽、邵铭、程相正、鲁蓝霜、邱征、刘海梦、谭勇

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长春理工大学 物理学院 吉林省光谱探测科学与技术重点实验室,吉林长春 130000

西南技术物理研究所,四川成都 610041

西北工业集团有限公司 设计三所,陕西西安 710005

光电对抗测试评估技术重点实验室,河南洛阳 471003

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爆燃光谱 示温反演 改进型维恩判据 Bisquare算法

吉林省自然基金主题引导基金

YDZJ202201ZYTS510

2024

红外与激光工程
中国航天科工集团公司第三研究院第八三五八研究所

红外与激光工程

CSTPCD北大核心
影响因子:0.754
ISSN:1007-2276
年,卷(期):2024.53(6)