CEA, DAM, Le Ripault, BP 16, F-36260 Monts, France.
J Hazard Mater. 2010 Apr 15;176(1-3):313-22. doi: 10.1016/j.jhazmat.2009.11.030. Epub 2009 Nov 13.
To satisfy the need of energetic materials chemists for reliable and efficient predictive tools in order to select the most promising candidates for synthesis, a custom software package is developed. Making extensive use of publicly available software, it integrates a wide range of models and can be used for a variety of tasks, from the calculation of molecular properties to the prediction of the performance of heterogeneous materials, such as propellant compositions based on ammonium perchlorate/aluminium mixtures. The package is very easy to use through a graphical desktop environment. According to the material provided as input, suitable models and parameters are automatically selected. Therefore, chemists can apply advanced predictive models without having to learn how to use complex computer codes. To make the package more versatile, a command-line interface is also provided. It facilitates the assessment of various procedures by model developers.
为了满足高能材料化学家对可靠且高效的预测工具的需求,以便为合成选择最有前途的候选物,开发了一个定制软件包。该软件包广泛利用了公开可用的软件,集成了广泛的模型,可用于各种任务,从分子性质的计算到异质材料性能的预测,例如基于高氯酸铵/铝混合物的推进剂成分。该软件包通过图形桌面环境非常易于使用。根据提供的材料作为输入,自动选择合适的模型和参数。因此,化学家可以应用先进的预测模型,而无需学习如何使用复杂的计算机代码。为了使该软件包更加通用,还提供了命令行接口。它方便了模型开发人员对各种程序的评估。