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HYDROTEST PROTOCOL FOR APPLICATIONS INVOLVING LOWER-TOUGHNESS STEELS

机译:用于涉及较低韧性钢的应用的Hydrotest协议

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Hydrotesting has been used by the transmission pipeline industry for decades, and remains the only effective means to control stress-corrosion cracking until in-line inspection is proven. This paper addresses the conditions for effective proof-pressure testing in terms of ductile fracture referenced to peak pressure and hold-time, and then contrasts these to the response in low-toughness situations. Fracture properties typical of an early-vintage electrical-resistance weld (ERW) seam were determined and used as the basis to simulate the response at toughness levels typical of some lower-toughness steels. Fracture properties characterized via Charpy-vee notch (CVN) energy showed low energy to failure, and confined inelastic response characteristic of linear-elastic fracture mechanics. Hydrotest and service breaks associated with cracking in an ERW seam showed a very small shear lip and often showed chevrons pointing back toward the origins - features consistent with the CVN results and characteristic of low fracture ductility. The results indicate hydrotest protocols derived and effective for ductile fracture are not directly applicable when brittle-like fracture controls. Hydrotesting was indicated to be an effective means to expose defects in ERW seams, as rupture is indicated to occur under typical hydrotest conditions. Simulated growth of the scope of defect lengths and depths evident along hydrotest breaks showed virtually no time dependent cracking, which means the hold time at maximum pressure should be reduced to the minimum time required to ensure all pipe in the test section has reached its target pressure.
机译:传输管道行业已经使用了多液体,几十年来,仍然是控制压力腐蚀开裂的唯一有效手段,直至证明在线检查。本文针对峰值压力和持有时间的延展性骨折方面解决了有效证明压力测试的条件,然后将这些与低韧性情况的反应造影。确定典型的早期老式电阻焊缝(ERW)接缝的裂缝性能作为模拟一些低韧性钢的典型韧性水平的响应的基础。通过夏巴 - vee凹口(CVN)能量表征的骨折性能显示出低能量到破坏,并且线性弹性骨折力学的狭窄的非弹性响应特性。与ERW缝的开裂相关的Hydrotest和Service Break展示了一个非常小的剪切唇,并且经常显示脚轮指向朝向的起源 - 与CVN结果一致的特征和低断裂延展性的特征一致。结果表明,当脆性骨折对照时,衍生和有效的水溶性方案不可用于韧性骨折。水溶病被表明是一种有效的方法,以暴露ERW接缝中的缺陷,因为在典型的水层条件下表明破裂。模拟缺陷长度范围和沿热压断裂的深度的生长显得几乎没有时间依赖性裂缝,这意味着应将最大压力的保持时间减少到确保测试部分中所有管道达到其目标压力所需的最小时间。

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