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Test data for uniaxial creep on material ALLOY 800H at 850 Celsius and a stress of 15.08 MPa

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https://odin.jrc.ec.europa.eu/alcor/DOIDisplay.html?p_RN5=200390107
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The creep rupture data in this collection were determined for the high temperature reactor projects (the direct cycle helium turbine project, the nuclear process heat project and the district heating project) of the Federal Republic of Germany and the State of North Rhine Westphalia, the aim being to qualify the candidate constructional alloys for service at temperatures up to 950°C. Several batches of each alloy were investigated and special attention was given to the effects of the service environments (helium containing different impurity gases, such as hydrogen, water vapour, carbon monoxide and methane, all at microbar levels, and methane reforming gas mixture) on the properties. In the test machines, these test environments led to carburisation of test pieces. However, analysis of the data showed that the stress rupture data for tests in air, in impure helium and in methane reforming gas lay in the same scatterband at each temperatures tested. The data were used for the formulation of draft nuclear design rules for the high temperature reactor systems, which are summarised in 'Proceedings of the Workshop on Structural Design Criteria for HTR', G Breitbach, F Schubert, H Nickel, Jül-Conf-71, April 1989, Berichte der Kernforschungsanlage Jülich GmbH, ISSN 0344-5798.

本数据集收录的蠕变断裂数据,是为德意志联邦共和国及北莱茵-威斯特伐利亚州的高温反应堆项目(直接循环氦气轮机项目、核工艺热项目及区域供热项目)所测得,旨在为服役温度最高可达950℃的候选结构合金完成服役资质认证。 研究覆盖了每种合金的多个批次,并重点考察了服役环境对合金性能的影响:这类环境包括含微量(微巴级)氢、水蒸气、一氧化碳、甲烷等杂质气体的氦气,以及甲烷重整混合气。 试验过程中,上述测试环境会引发试样渗碳。但数据分析结果显示,在各测试温度下,空气、不纯氦气及甲烷重整气环境下测得的应力断裂数据均处于同一离散带内。 本数据集已用于高温反应堆系统(High Temperature Reactor, HTR)核设计导则草案的编制,相关内容总结于《高温堆结构设计准则研讨会论文集》,由G Breitbach、F Schubert、H Nickel编撰,会议编号Jül-Conf-71,发表于1989年4月,由于利希核研究中心有限公司(Kernforschungsanlage Jülich GmbH)出版,国际标准刊号ISSN 0344-5798。
提供机构:
European Commission JRC Institute for Energy and Transport
创建时间:
2014-10-23
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