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Both sea battles and testing of ship in underwater explosions reveal unacceptably poor anti-shock performance of important shipboard equipment. Anti-shock performance of shipboard equipment is a significant factor determining fighting strength and survivability. The anti-shock performance of a shipboard gear case based on BV043/85 was investigated using numerical simulation. A geometric model of the gear case was built using MDT software and meshed in HyperMesh software, and then the finite element model of the gear case was formed. Using ABAQUS software, the anti-shock performance of the gear case was simulated. First, shock response of typical regions of gear case was determined. Next, some generalizations were made about the anti-shock performance of the gear case by analyzing the Mises stress of typical regions varied with shock inputs. Third, weak regions were determined from simulation results. The threshold values of shock resistance of the gear case at different impulse widths were obtained through interpolating the numerical simulation results selected from the most dangerous spot. This research provides a basis for further optimization of the design of gear cases. 相似文献
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YAO Xiong-liang FENG Lin-han ZHANG A-man ZHOU Qi-xin 《船舶与海洋工程学报》2007,6(4):18-26
The non-linear finite element software ABAQUS was used to simulate the dynamic response of a marine supercharged boiler when subjected to impact loading. Shock resistance was analyzed by the time-domain simulation method. After exhaustive simulations,the effect of air pressure induced by different working conditions on the shock response of a supercharged boiler was reviewed,leading to conclusions about the variability of structural response with different loading parameters. In order to simulate the real impulsive environments of supercharged boilers,the integration of equipment and ship structure was then primarily used to analyze shock response. These distinctly different equipment shock test methods,run under equivalent work conditions,were compared and the causes of discrepancy were analyzed. The main purpose of this paper is to present references for the anti-shock design of marine supercharged boilers. 相似文献
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在水下爆炸冲击波作用下的新型冲击因子 总被引:4,自引:3,他引:1
为了衡量水中结构物在水下爆炸作用下的冲击环境强弱和研究模型与实际结构的相似性,从爆炸入射能量角度提出了一种新型的冲击因子来描述水下爆炸载荷。为验证其有效性,以双层加肋圆柱壳结构为模型,用该新型冲击因子和另外两种常用冲击因子设计了三个系列的工况,使用ABAQU S软件进行了数值实验,从结构的动能、势能和结构的冲击响应谱三个方面对计算结果进行了分析。结果表明,在新型冲击因子相等条件下,结构的动能、势能、冲击谱响应接近,而另外两种形式的冲击因子相等的工况,结构的动能、势能、冲击谱响应有较大差异。其原因为,旧的冲击因子没有考虑冲击波振面的球面特征和爆心与结构的相对位置,难以较好地反映水下爆炸载荷的特性,而新型冲击因子能够弥补上述缺陷。 相似文献
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