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QUANTITATIVE NONDESTRUCTIVE EVALUATION OF RAILROAD TANK CARS

机译:铁路坦克车的定量非破坏性评估

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摘要

A rulemaking issued by the Department of Transportation (DOT) revises Hazardous Materials Regulations (HMR) to replace the hydrostatic pressure test with appropriate nondestructive evaluation (NDE) methods. The rule change is contained in Federal Register 49 Code of Federal Regulations (CFR) Part 180.509, "Requirements for inspection and test of specification tank cars," paragraph (e) "Structural integrity inspection tests" [1]. The CFR authorizes liquid penetrant (PT), magnetic particle (MT), radiography (RT), ultrasonic (UT), and optically aided visual testing (VT) as allowable NDE methods for structural integrity inspections and tests. Other NDE methods may be allowed under special exemption issued by the Federal Railroad Administration (FRA) Office of Safety. Also included under the requirements of 49 CFR Part 179.7 is the need to qualify not only NDE personnel, but the procedures used to perform NDE reliably. In order to be effective, federal regulations require that the NDE methods have a proven sensitivity and reliability for finding the type and size of flaws likely to cause a tank car failure. In the early 1970s, an internationally accepted quantitative approach that assesses the probability of detection (POD) was developed for the National Aeronautics and Space Association (NASA) and was published in NASA CR-2369, February 1974 [2]. Transportation Technology Center, Inc. (TTC1), under contract with the FRA, and along with industry participation, uses the NASA approach to determine the POD for various NDE methods used in the inspection of railroad tank car circumferential butt welds (girth seam welds), fillet welds, and leak test samples. The emergence of a damage tolerance approach to determine inspection intervals for an engineered structure - in this case a railroad tank car - requires the quantification of the detectable flaw size for the NDE methods used during inspection. Damage tolerance techniques have initiated an evolution in NDE understanding, methods, and requirements. National Transportation Safety Board safety recommendations R-92-21 through R-92-24 address the suggested process of performing reliable inspection of railroad tank cars based on a damage tolerance approach [3]. NDE quantification using the POD approach is a key measure of NDE effectiveness and is integral to damage tolerance requirements. TTCI, working with the FRA, Railroad Tank Car Industry and D&W Enterprises (A NDE consulting company providing expertise in the area of NDE POD), has developed baseline POD curves for the allowed NDE methods. Initial evaluations were performed on the inspection of tank car circumferential butt welds. Subsequent efforts focused on butt welds, longitudinal fillet welds and leak test samples requiring inspection under the CFR. This paper reports quantitative results obtained during this research effort that address system safety and risk analysis during handling and transportation of railroad tank cars carrying hazardous materials.
机译:运输部(DOT)颁布的一项法规修订了《有害物质法规》(HMR),以适当的无损评估(NDE)方法代替静水压力测试。规则更改包含在《联邦公报》第49联邦法规(CFR)第180.509部分“规范罐车的检查和测试要求”(e)“结构完整性检查测试” [1]中。 CFR授权使用液体渗透剂(PT),磁粉(MT),射线照相(RT),超声(UT)和光学辅助视觉测试(VT)作为允许的NDE方法进行结构完整性检查和测试。根据联邦铁路管理局(FRA)安全办公室发布的特殊豁免,可以允许使用其他NDE方法。根据49 CFR Part 179.7的要求,不仅需要对NDE人员进行资格鉴定,而且还需要对用于可靠执行NDE的程序进行鉴定。为了有效,联邦法规要求NDE方法必须具有经过验证的灵敏度和可靠性,才能发现可能导致油罐车故障的缺陷的类型和大小。 1970年代初期,美国国家航空航天学会(NASA)开发了一种评估检测概率(POD)的国际公认的定量方法,并于1974年2月发表在NASA CR-2369 [2]中。运输技术中心有限公司(TTC1)与FRA签订了合同,并与业界合作,使用NASA方法来确定用于铁路罐车周向对接焊缝(环缝焊缝)检查的各种NDE方法的POD。 ,角焊缝和泄漏测试样品。为了确定工程结构(在这种情况下为铁路罐车)的检查间隔而确定的损坏容限方法的出现,要求对检查过程中使用的NDE方法的可检测缺陷尺寸进行量化。损害容忍技术已开始推动NDE理解,方法和要求的发展。美国国家运输安全委员会(National Transportation Safety Board)的安全建议R-92-21至R-92-24提出了基于损伤容限方法对铁路罐车进行可靠检查的建议过程[3]。使用POD方法进行NDE量化是NDE有效性的关键指标,并且是破坏容限要求的组成部分。 TTCI与FRA,铁路油罐车行业和D&W企业(一家在NDE POD领域提供专业知识的NDE咨询公司)合作,为允许的NDE方法开发了基准POD曲线。初步评估是在检查罐车周向对接焊缝时进行的。随后的工作集中在对接焊缝,纵向角焊缝和需要根据CFR进行检查的泄漏测试样品上。本文报告了在这项研究工作中获得的定量结果,这些结果涉及在处理和运输载有危险物质的铁路罐车期间的系统安全性和风险分析。

著录项

  • 来源
  • 会议地点 Pueblo CO(US);Pueblo CO(US)
  • 作者单位

    Transportation Technology Center, Inc. 55500 D.O.T. Road Pueblo, Colorado, USA 81001;

    Federal Railroad Administration Office of Research and Development Room W36-409. Mail Stop: 20 1200 New Jersey Avenue S.E. Washington D.C. 20005;

    DW Enterprises, LTD 8776 W. Mountainview Lane, Littleton, CO 80125-9406;

    Federal Railroad Administration U.S. Department of Transportation 200 W. Adams Street, Suite 310 Chicago, IL. 60606;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 铁路运输;
  • 关键词

  • 入库时间 2022-08-26 14:08:39

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