Al-Hetty Hussein Riyadh Abdul Kareem, Al-Dulaimi Abdulla A, Saleem Hiba Muwafaq, Kianfar Ehsan
Department of Biology, College Of Education For Pure Sciences, University Of Anbar, Ramadi, Anbar, 31001, Iraq.
College of Nursing, University of Al Maarif, Al Anbar, 31001, Iraq.
BMC Chem. 2025 May 9;19(1):120. doi: 10.1186/s13065-025-01495-1.
In this study, evaluation and prediction of diffusion depth of deterrents of Butyl-NENA and Polyethylene-glycol-di-methacrylate into the propellant and the effect of different conditions on diffusion stability, such as variations of concentration, temperature and aging with time, were performed by using COMSOL Multi-physics 4.4 to lower the laboratory costs and saving time. Diagrams indicated that diffusion of deterrents occurs to a certain depth of the propellant radius and variations of concentration in allowed ranges, does not affect the final diffusion depth significantly. Also, variations in temperature and aging with time had a little effect on the diffusion depth. Results showed that substances were used for nitrocellulose propellant coating, have excellent diffusion stability. simulation results were compared torelated experimental results and showed good agreement with them. concentration profiles of Butyl-Nena at two concentrations of 10% and 20%, measured at 70˚C for 10 h. the concentration profile at 10% is shown, and a gentle increase in concentration is observed for small to medium radii. While the 20% profile shows a faster and more significant increase in concentration, reaching high values at larger radii. These results indicate a significant effect of Butyl-Nena concentration on its concentration distribution pattern with increasing radius. the concentration profiles of deterrent polymers at two concentrations of 2% and 12%, measured at 70˚C for 10 h. the deterrent concentration at 2% gradually increases and reaches significant values, while at 12%, the concentration rapidly approaches a maximum value. These results indicate a significant effect of deterrent concentration on the concentration profiles with increasing radius.The aim of the present work was predicting the influence of various conditions such as, concentration, temperature and time on deterrents diffusion stability by COMSOL Multi-physics.
在本研究中,通过使用COMSOL Multiphysics 4.4软件,对丁基-NENA和聚乙二醇二甲基丙烯酸酯两种钝感剂在推进剂中的扩散深度进行了评估和预测,并研究了不同条件(如浓度、温度和老化时间变化)对扩散稳定性的影响,以降低实验室成本并节省时间。图表表明,钝感剂在推进剂半径的一定深度处发生扩散,且在允许范围内的浓度变化不会显著影响最终扩散深度。此外,温度和老化时间的变化对扩散深度影响较小。结果表明,用于硝化纤维素推进剂涂层的物质具有优异的扩散稳定性。模拟结果与相关实验结果进行了比较,两者吻合良好。给出了丁基-NENA在10%和20%两种浓度下,于70˚C测量10小时后的浓度分布曲线。给出了10%浓度下的浓度分布曲线,从中等半径范围内浓度呈平缓上升趋势。而20%浓度的曲线则显示浓度上升更快且更显著,在较大半径处达到较高值。这些结果表明,随着半径增加,丁基-NENA浓度对其浓度分布模式有显著影响。给出了两种浓度(2%和12%)的钝感聚合物在70˚C测量10小时后的浓度分布曲线。2%浓度的钝感剂浓度逐渐增加并达到显著值,而12%浓度时,浓度迅速接近最大值。这些结果表明,随着半径增加,钝感剂浓度对浓度分布曲线有显著影响。本研究的目的是通过COMSOL Multiphysics软件预测浓度、温度和时间等各种条件对钝感剂扩散稳定性的影响。