国产装甲运兵车装甲壳体:动态特性的计算机和实体模型建模

A. Grabovskiy, Anton Vasyliev, M. Tkachuk, I. Voloshina, Oleg Loznyi, M. Tkachuk, I. Khramtsova, Olha Kokhanovska, Yevhen Peleshko, A. Nabokov, V. Trotsenko
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引用次数: 0

摘要

在轻型装甲车装甲体的设计研究阶段,确定装甲体的固有频率范围和固有振动形式是非常重要的。为此,通常采用有限元法。有必要确定有限元模型的参数,为这类结构的动力特性的数值模拟提供一个可接受的精度水平。为此,采用了装甲运兵车装甲车体模型的并行数值和实验研究数据。以适当的比例制作了装甲船体上部投影的模型。材料是薄钢。该模型在振动台上受到动态激励。记录谐振激励频率,以及自然振动形式。对装甲船体模型进行了冲击脉冲激励。对这种激励的响应用加速度计记录下来。然后,从这些示波图中确定固有振动频率的频谱。同时,对装甲船体模型的固有频率和固有振动形式进行了数值模拟。在此基础上,对数值和实验结果进行了比较。通过改变有限元模型的参数,使数值计算结果与实验测量结果符合得很好。具体而言,确定了以下内容:所使用有限元的可接受类型;满足类似结构动力特性数值模拟精度所需的有限元单元数;建议增厚的区域——有限元网格的稀疏等。根据研究结果,建立了轻装甲车辆全尺寸装甲壳体动力学过程及性能的有限元模型参数。关键词:轻型装甲车,实体模型,固有频率,固有振动频谱
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ARMORED HULLS OF DOMESTIC ARMORED PERSONNEL CARRIERS: COMPUTER AND MOCK-UP MODELING OF DYNAMIC PROPERTIES
At the stage of design research of armored bodies of lightly armored vehicles it is extremely important to determine the range of their natural frequencies and natural forms of oscillation. For this purpose, the finite element method is usually used. It is necessary to substantiate the parameters of the finite element model, which provide an acceptable level of accuracy of numerical modeling of dynamic properties of this type of structures. For this purpose, data from parallel numerical and experimental studies of the mock-up of the armored hull of the armored personnel carrier are used. The mock-up of the upper projection of the armored hull is made in the appropriate scale. The material is sheet steel. This mock-up is subjected to dynamic excitation on a vibrating table. Resonant excitation frequencies are recorded, as well as the natural vibration forms. Shock-pulse excitation of the armored hull’s mock-up was also performed. The response to this excitation is recorded using accelerometers. Then, the spectrum of natural vibration frequencies is determined from these oscillograms. In parallel, numerical modeling of natural frequencies and natural vibration forms of the armored hull’s mock-up is carried out. After that, the results of numerical and experimental studies are compared. By varying the parameters of the finite element model, a satisfactory correspondence between the results of numerical calculations and experimental measurements is achieved. In particular, the following are determined: the acceptable type of used finite elements; the number of finite elements required to satisfy the accuracy of numerical modeling of the dynamic properties of similar structures; zones of the recommended thickening-rarefaction of a grid of finite elements, etc. According to the research results, the parameters of finite-element models have been established, which can be used to study the dynamic processes and properties of full-scale armored hulls of lightly armored vehicles. Keywords: lightly armored vehicle, mock-up, natural frequency, spectrum of natural vibration frequencies
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