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爆炸參數計算軟體

THERMOCHEMICAL COMPUTER CODE 型號:EXPLO5
EXPLO5 是一種多用途工具,能夠根據化學式、形成熱和密度預測單一化合物或混合物的能量特性、可能的危險物質的爆炸性、理想和非理想炸藥和推進劑的性能指標以及煙火成分。所含的代碼包括一個大型反應物和生成物資料庫。
  • EXPLO5™ 是一種多用途工具,能夠根據化學式、形成熱和密度預測單一化合物或混合物的能量特性、可能的危險物質的爆炸性、理想和非理想炸藥和推進劑的性能指標以及煙火成分。所含的代碼包括一個大型反應物和生成物資料庫。
                                              
    應用

    EXPLO5 可用於廣泛的應用領域,包括安全管理(化學/製藥實驗室內)、高能量材料的數值建立模型、新型高能量化合物的配方以及工業爆破作業的最佳化。
    此程式碼的典型使用者包括合成化學家、風險評估經理、爆破工程師、研究人員 以及高能量材料領域的其它專家。
     

    EXPLO5的輸入視窗 計算的衝擊壓縮與等絕熱膨脹曲線


    優勢和特點

    • EXPLO5 可計算各種放熱反應的熱力學參數。
    • 資料庫包含 550 多種反應物(炸藥成分)和 950 多種生成物。
    • 該程式碼可處理 48 種不同的化學元素。
    • 在描述起爆/燃燒產物時,採用了 Becker-Kistiakowsky-Wilson (BKW)、分子流體 EXP-6、理想氣體、Virial 和 Murnaghan 狀態方程式。
    • 動力學爆炸模組能夠進行非理想各種爆炸計算。
  •  The EXPLO5™ is a multipurpose tool able to predict the energetic properties of single compounds or mixtures, the explosibility of possibly dangerous substances, the performance indicators of ideal and non-ideal explosives and propellants and the pyrotechnic compositions on a basis of chemical formula, heat of formation, and density. The code includes a large database of reactants and products.


    APPLICATIONS

     The EXPLO5 may be used for a wide range of applications including safety management (within chemical/pharmaceutical labs), the numerical modelling of energetic materials, the formulation of new energetic compounds, and the optimization of industrial blasting operations. Typical users of the code are synthetic chemists, risk assessment managers, blasting engineers, researchers and any other specialists in the fields of energetic materials.

     Input window of EXPLO5  Calculated shock compression and isoentropic expansion curves 


    ADVANTAGES & FEATURES

    • The EXPLO5 calculates the thermodynamic parameters of all kinds of exothermic reactions
    • Database contains over 550 reactants (explosives components) and 950 products
    • The code handles 48 different chemical elements
    • Becker-Kistiakowsky-Wilson (BKW), molecular fluid EXP-6, Ideal gas, Virial, and Murnaghan equations of state are employed for the description of detonation/burning products
    • Kinetic detonation module is able to perform non-ideal detonation calculations