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首页> 外文期刊>Modern Applied Science >Finite Element Analysis’s Interrelationship Equation to Predict the Deflection of Rolled Homogeneous Armor Steel Plate Due to Explosion based on Different Explosive Masses and Plate Thicknesses
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Finite Element Analysis’s Interrelationship Equation to Predict the Deflection of Rolled Homogeneous Armor Steel Plate Due to Explosion based on Different Explosive Masses and Plate Thicknesses

机译:基于不同炸药质量和板厚的有限元分析的相互关系方程,以预测轧制均质装甲钢板爆炸引起的变形

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This paper presents the interrelationship equation to predict the deformations of square rolled homogeneous armor steel plate subjected to spherical shape trinitrotoluene charge by using finite element analysis software i.e. AUTODYN 3D. The investigation starts by producing computer simulation process using AUTODYN 3D so that a set of experimental tests deformations’ data of rolled homogeneous armor steel plate from a published work can be used to validate the computer simulations outputs and good agreements are observed. Parametric studies are then performed on the design parameters of the explosive and the rolled homogeneous armor steel plate, where the mass of the explosive and the thickness of the rolled homogeneous amour steel plate are varied and analyzed by using the AUTODYN 3D computer simulations. Curve fitting method is then performed to produce the interrelationship equation that could be utilized by researchers as an initial prediction method in determining the deformation of rolled homogeneous armor steel plate subjected to explosive charge and the interrelation equation is valid and can be utilized for a standoff distance of 200 mm, plate’s thickness of 15 mm to 30 mm and explosive mass of 1.5 kg to 10 kg.
机译:本文提出了一种相互关系方程,使用有限元分析软件AUTODYN 3D预测了球形三硝基甲苯带电的方形轧制均质装甲钢板的变形。该研究首先使用AUTODYN 3D进行计算机仿真,然后使用一组实验测试出版的作品对轧制均质装甲钢板的变形数据进行验证,以确保计算机仿真输出并观察到良好的一致性。然后,对炸药和轧制均质装甲钢板的设计参数进行参数研究,通过使用AUTODYN 3D计算机仿真来改变并分析炸药的质量和轧制均质爱慕钢板的厚度。然后进行曲线拟合法以产生相互关系方程,研究人员可以将其用作确定爆炸装药的轧制均质装甲钢板变形的初始预测方法,并且该相互关系方程是有效的并且可以用于隔离距离200毫米的炸药,板的厚度为15毫米至30毫米,炸药重量为1.5千克至10千克。

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