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PROBABILISTIC RESPONSE OF COMPOSITE PLATES FOR DAMAGE INITIATION DUE TO LOW VELOCITY IMPACT

机译:由于低速冲击,复合材料板损伤破坏的概率响应

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The low velocity impact (LVI) result of laminated targets is an imperative study to evaluate its failure for applications to inconsequential structures. The work has extensive applications to off shore and naval industry. Safety and reliability assessment as per the international standards is one of the basic objectives of the study. LVI on composite plates is performed taking the material parameters and loading condition as random variables. Graphite fiber reinforced laminated plates are vulnerable to damage due to impact by foreign objects and in plane loading. In order to evaluate the safe load carrying capacity and the reliability under impact, dynamic analysis of composite plate subjected to LVI is carried out. Probabilistic finite element method (PFEM) is performed to determine the stochastic response. During impact, the in-plane damage modes such as matrix cracking, fiber failure and shear cracking are modeled using a failure criterion. The out of plane de-lamination is modeled using cohesive surfaces. The randomness associated with the system properties due to the inherent scatter in the geometric and material properties and input loads are modeled in a stochastic fashion. Random parameters represent various characteristics appearing in the performance function. The stochastic response and reliability forecast of the system is determined by Gaussian processes response surface method (GPRSM) and validity of method for the present problem is establish using Monte Carlo simulation (MCS) procedure. The safety level qualification is achieved in terms of reliability level targeted.
机译:层压目标的低速冲击(LVI)结果是一个必要的研究,以评估其对无关紧要结构的应用失败。这项工作具有广泛应用于岸和海军行业。根据国际标准的安全和可靠性评估是该研究的基本目标之一。在复合板上的LVI进行材料参数和作为随机变量的加载条件进行。石墨纤维增强层压板容易受到异物的影响和平面负载的损坏。为了评估安全负荷承载能力和在冲击下的可靠性,进行了对LVI进行的复合板的动态分析。进行概率有限元方法(PFEM)以确定随机响应。在冲击期间,使用故障标准建模诸如矩阵裂化,纤维失败和剪切裂纹的面内损坏模式。使用粘性表面建模平面除叠层。由于几何和材料特性和输入负载中固有的散射而与系统属性相关联的随机性以随机方式建模。随机参数表示性能函数中出现的各种特征。系统的随机响应和可靠性预测由高斯工艺响应表面方法(GPRSM)确定,并使用Monte Carlo仿真(MCS)程序建立目前问题的方法的有效性。安全水平资格是针对可靠性水平的实现。

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