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Suspension mechanical performance and vehicle ride comfort applying a novel jounce bumper based on negative Poisson's ratio structure

机译:基于负泊松比结构的新型颠簸缓冲器的悬架机械性能和车辆乘坐舒适性

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Comparing with traditional honeycomb structures, Negative Poisson's Ratio (NPR) structures had better mechanical performances in some certain respects, especially the shear modulus and fracture toughness. However, few publications focused on the cylinder-shape NPR structure, which influence the diversity and possibility of NPR structure applications. In this paper, a cylindrical NPR structure was introduced and applied as a suspension jounce bumper in order to solve the issue that the ideal uniaxial compression load-displacement curve sometimes cannot be realized by traditional Polyurethane (PU) jounce bumper. The load-displacement curve of NPR jounce bumper was proved to be smoother and more ideal than that of traditional jounce bumper. Nevertheless, the influences of NPR jounce bumper on the suspension mechanical performance and vehicle ride comfort were not comprehended yet. In this study, the traditional and NPR jounce bumpers were both assembled into virtual prototypes of Macpherson, double wishbone and multi-link suspensions to conduct single wheel travel virtual tests. The results indicated that NPR jounce bumper can achieve more ideal wheel force vs. jounce height curve without adjusting free travel, which is beneficial to spare precise suspension space. Furthermore, a jounce bumper evaluation method using pulse ride comfort was proposed in this paper. The virtual ride comfort tests of travelling through bump and pothole were conducted using established vehicle virtual prototype. The maximum vertical accelerations and weighted root mean square (RMS) of acceleration of vehicle centroid at most speeds were reduced applying NPR jounce bumper. Thus, the NPR jounce bumper can apparently improve vehicle ride comfort.
机译:与传统的蜂窝结构相比,负泊松比(NPR)结构在某些方面具有更好的机械性能,尤其是剪切模量和断裂韧性。但是,很少有出版物关注圆柱型NPR结构,这会影响NPR结构应用的多样性和可能性。本文介绍了一种圆柱型NPR结构,并将其用作悬架防撞缓冲器,以解决传统的聚氨酯防撞缓冲器有时无法实现理想的单轴压缩载荷-位移曲线的问题。事实证明,NPR颠簸缓冲器的载荷-位移曲线比传统颠簸缓冲器更平滑,更理想。然而,尚未理解NPR颠簸缓冲器对悬架机械性能和车辆行驶舒适性的影响。在这项研究中,传统的和NPR的颠簸缓冲器都被组装成Macpherson,双叉骨和多连杆悬架的虚拟原型,以进行单轮行驶虚拟测试。结果表明,NPR颠簸缓冲器可以在不调节自由行程的情况下实现更理想的车轮力与颠簸高度曲线,这有利于节省精确的悬架空间。此外,本文提出了一种基于脉冲乘坐舒适性的颠簸保险杠评估方法。使用已建立的车辆虚拟样机进行了穿越颠簸和坑洼的虚拟行驶舒适性测试。使用NPR颠簸保险杠可降低大多数速度下车辆质心的最大垂直加速度和加权均方根(RMS)。因此,NPR颠簸缓冲器显然可以提高车辆的乘坐舒适性。

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