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首页> 外文期刊>Structural and multidisciplinary optimization >Multi-objective robust design optimization of a novel NPR energy absorption structure for vehicles front ends to enhance pedestrian lower leg protection
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Multi-objective robust design optimization of a novel NPR energy absorption structure for vehicles front ends to enhance pedestrian lower leg protection

机译:用于车辆前端的新型NPR能量吸收结构的多目标鲁棒设计优化,以增强行人小腿保护

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摘要

The unique structure of negative Poisson's ratio (NPR) materials provides a good energy absorption capacity that has found wide application in automotive and aeronautics industries. The present work proposes a novel NPR energy absorption structure installed between the bumper and anti-collision beam of automobiles for improving pedestrian lower leg protection. The performance of the proposed NPR structure based on tibia acceleration, knee bending angle, and knee shear displacement is evaluated by comparison with the performance of a conventional energy absorption structure. The performance of the proposed structure is further improved by conducting multi-objective design optimization with consideration for the perturbation induced by parameter uncertainties. For optimization, a parametric model of the NPR structure is first established based on the relationships between parameters. To promote computational efficiency, an optimal Latin hypercube sampling technique and the dual response surface method are combined to build surrogate models between responses and inputs. A multi-objective particle swarm optimization algorithm and six sigma criteria are then applied to obtain the optimal design parameters of the structure. The optimization results are validated by comparisons with the results of multi-objective deterministic optimization. The comparison results show that the proposed NPR energy absorption structure improves pedestrian lower leg protection significantly, and its performance is further improved by the proposed multi-objective robust design optimization. This study serves as a good example of the safety promotion provided by applying NPR structures with enhanced energy absorption capacity in vehicles.
机译:负泊松比(NPR)材料的独特结构提供了良好的能量吸收能力,在汽车和航空工业中发现了广泛的应用。本工作提出了一种新的NPR能量吸收结构,在汽车的保险杠和防碰撞束之间安装,用于改善行人小腿保护。通过与传统能量吸收结构的性能进行比较来评估基于胫骨加速,膝弯曲角度和膝剪切位移的提出的NPR结构的性能。通过考虑参数不确定因素诱导的扰动来进行多目标设计优化,进一步提高了所提出的结构的性能。为了优化,首先基于参数之间的关系建立NPR结构的参数模型。为了促进计算效率,组合了最佳的拉丁语超立方体采样技术和双响应表面方法,以在响应和输入之间构建代理模型。然后应用多目标粒子群优化算法和六种Σ标准以获得结构的最佳设计参数。通过比较验证优化结果,与多目标确定性优化的结果进行了比较。比较结果表明,所提出的NPR能量吸收结构显着改善了行人小腿保护,其性能进一步改善了拟议的多目标稳健设计优化。本研究作为通过应用车辆中的能量吸收能力增强的能量吸收能力提供的安全促销的一个很好的例子。

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