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Crash performance of strong-post W-beam guardrail with missing blockouts

机译:缺少障碍物的强力W型横梁护栏的碰撞性能

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摘要

Missing blockouts in a strong-post w-beam guardrail, a condition most commonly associated with environmental decay or crash damage, has never been thoroughly investigated. To determine the risks posed by the removal of a blockout, a combination of component-level pendulum testing and full-scale finite element models of crash tests was used to assess whether a missing blockout renders the guardrail performance unacceptable. Finite element models were developed for three pendulum tests. (1) A 30.1 -kph impact into a test installation with proper blockout installation resulting in containment, (2) a 30.5-kph impact into a test installation with one missing blockout resulting in splice rupture, and (3) a 26.7-kph impact into a test installation with one missing blockout resulting in containment. The finite element model was able to reproduce the splice failure in test 2 when the appropriate mesh quality and failure criteria were used. Full-scale crash test models of a 2000-kg pickup truck striking a 29 post guardrail at 25° were developed. The simulation results indicated that wheel snagging was not a major problem. Although a missing blockout increases the maximum rail tension and deflection by as much as 13%, such guardrails are still capable of safely redirecting of vehicles.
机译:从未彻底研究过在强力柱状W形护栏中缺少障碍物的情况,这种情况最常与环境衰减或碰撞损坏相关。为了确定移除障碍物所带来的风险,使用了组件级钟摆测试和碰撞测试的全尺寸有限元模型的组合,以评估缺少的障碍物是否会使护栏性能无法接受。开发了用于三个摆锤测试的有限元模型。 (1)对30.1 kph的冲击进入具有适当阻塞安装的测试装置,导致发生围堵;(2)对30.5 kph的冲击进入具有一个缺失阻塞的测试装置,导致接头破裂;(3)对26.7 kph的冲击进入一个测试安装,但缺少一个封锁导致了遏制。当使用适当的网格质量和破坏标准时,有限元模型能够重现测试2中的接头破坏。开发了2000公斤皮卡车在25°时撞击29个护栏的全面碰撞试验模型。仿真结果表明,轮箍不是主要问题。尽管缺少障碍物会使最大的钢轨拉力和挠度增加多达13%,但这种护栏仍然能够安全地对车辆进行重定向。

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