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首页> 外文期刊>International journal of structural integrity >Finite element simulation of road tanks for ADR and fatigue assessments
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Finite element simulation of road tanks for ADR and fatigue assessments

机译:用于ADR和疲劳评估的公路油箱的有限元模拟

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Purpose - The paper aims to illustrate the application of a state-of-the-art fatigue prediction concept (IIW recommendations) to the ADR calculation requirements, in order to include failure-critical weld details to the strength assessment of road tanks. The level of calculation accuracy and, therefore, safety of such structures transporting dangerous goods can be substantially increased. Design/methodology/approach - A case study of a 2-compartment aluminum alloy LBGF tank used for the transportation of gasoline/petroleum products is conducted adopting the meshing directives of the structural hot spot stress concept (SHSSC) of the IIW recommendations for the weld details of the structure. The stresses on the prescribed Hot Spots are extracted from the solutions of each load case described in the ADR legislation and assessed both in terms of static strength according to EN 14286 and fatigue strength using the standardized IIW assessment curves (FAT curves). Findings - The detailed analysis of the road tank has successfully allocated the failure critical points of the structure. Additionally it has illustrated the ability of the embedded fatigue concept to accurately calculate the stresses which can later be used for the durability evaluation, providing that at least some operational load spectra become available. Research limitations/implications - The use of a global meshing and calculation concept offers a relatively limited accuracy level considering any individual weld detail. On the other hand, it offers a sufficient overview of the whole structure with minimum effort and costs. Practical implications - Time-consuming integrity inspections of road tanks can be minimized, as the failure critical locations are identified and therefore easily monitored. Furthermore, the transformation of the fatigue life prediction issued by the proposed calculation into actual operational time may be used to determine realistic time intervals between service pauses required for the safe operation of such structures. Originality/value - The present study constitutes the first approach of embedding the SHSSC into the calculation of large-scale structures such as road tanks and verifies the applicability of this concept beyond simple geometries and load cases.
机译:目的-本文旨在说明最先进的疲劳预测概念(IIW建议)在ADR计算要求中的应用,以便将关键故障焊接细节包括在公路储罐的强度评估中。这样的运输危险货物的结构的计算精度以及因此的安全性可以大大提高。设计/方法/方法-采用IIW建议焊接的结构热点应力概念(SHSSC)的啮合指令,对用于汽油/石油产品运输的2室铝合金LBGF储罐进行了案例研究结构细节。从ADR法规中描述的每种负荷情况的解决方案中提取规定热点上的应力,并根据EN 14286根据静态强度评估疲劳强度,并使用标准IIW评估曲线(FAT曲线)评估疲劳强度。调查结果-对道路储罐的详细分析已成功分配了结构的破坏关键点。此外,它说明了嵌入式疲劳概念准确计算应力的能力,该条件可用于以后的耐久性评估,前提是至少要有一些可用的工作负荷谱。研究局限性/含义-考虑到任何单独的焊缝细节,使用全局网格划分和计算概念提供的精度水平相对有限。另一方面,它以最小的努力和成本提供了整个结构的充分概述。实际意义-由于可以识别并因此易于监控故障关键位置,因此可以最大程度地减少耗时的公路储罐完整性检查。此外,由所提出的计算得出的疲劳寿命预测到实际运行时间的转换可以用于确定这种结构的安全运行所需的服务暂停之间的实际时间间隔。独创性/价值-本研究构成了将SHSSC嵌入到大型结构(例如公路储罐)的计算中的第一种方法,并验证了此概念在简单的几何形状和载荷情况下的适用性。

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