首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.5: High-Pressure Technology... >MINIMUM PRESSURIZATION TEMPERATURE AND PRESSURE-TEMPERATURE ENVELOPE OF A 1(1/4)CR-1/2Mo STEEL HEAVY WALL VESSEL
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MINIMUM PRESSURIZATION TEMPERATURE AND PRESSURE-TEMPERATURE ENVELOPE OF A 1(1/4)CR-1/2Mo STEEL HEAVY WALL VESSEL

机译:1(1/4)CR-1 / 2Mo钢质厚壁容器的最低压力温度和压力温度包络

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An aged heavy wall pressure vessel for high temperature-high pressure service was to be reused in a new service. The vessel was built in the late sixties with 1(1/4)Cr-1/2Mo alloy steel. The integrity of "old vintage" Cr-Mo steel vessels for high pressure service depends heavily on whether the material of construction has sufficient toughness and if they have remained crack free. Cracks or discontinuities may trigger brittle fracture. Because brittle fracture is more likely to occur when the vessel is cold, the planned hydrotest for future conditions as well as the normal start-up and shutdown procedures needed to be established to reduce the risk of brittle fracture by unstable crack propagation.A fracture mechanics and current engineering practice assessment was performed to determine the recommended hydrotest temperature and Minimum Pressurization Temperature (MPT) to avoid brittle fracture. A safe pressure-temperature envelope for future start-up and shutdown procedures was also developed.The evaluation was based on removal of actual test samples using LR Capstone's proprietary device, the Scoop Sampler~(SM). Results showed that methods based on chemistry, while conservative, can be overly restrictive.
机译:用于高温高压的老化的重壁压力容器将在新的服务中重复使用。该船是在60年代后期用1(1/4)Cr-1 / 2Mo合金钢建造的。用于高压服务的“老式” Cr-Mo钢容器的完整性在很大程度上取决于结构材料是否具有足够的韧性,以及它们是否保持无裂纹。裂纹或不连续性可能会导致脆性断裂。由于在冷的容器中更容易发生脆性断裂,因此需要制定计划中的未来条件水压试验以及正常的启动和关闭程序,以减少由于不稳定的裂纹扩展而导致的脆性断裂的风险。并进行了当前的工程实践评估,以确定推荐的水压试验温度和最低加压温度(MPT),以避免脆性断裂。还开发了用于将来启动和关闭程序的安全压力-温度范围。评估是基于使用LR Capstone专有设备Scoop Sampler〜(SM)去除实际测试样品而得出的。结果表明,基于化学的方法虽然保守,但可能过于严格。

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