首页> 外文会议>ASME Pressure Vessels Piping Conference >MATERIAL PROPERTIES OF NON-IRRADIATED ZIRCALOY 4 IN SUPPORT OF ASME CODE ACCEPTANCE FOR PRESSURE VESSEL DESIGN1
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MATERIAL PROPERTIES OF NON-IRRADIATED ZIRCALOY 4 IN SUPPORT OF ASME CODE ACCEPTANCE FOR PRESSURE VESSEL DESIGN1

机译:支持容器设计的ASME规范接受非辐照ZIRCAOLOY 4的材料特性1

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A program underway at Oak Ridge National Laboratory (ORNL) to support private industry design of a system for production of ~(99)Mo includes review of Zircaloy-4 (Zry-4) properties as a potential material for a primary vessel in the system. Because Zry-4 is not a material specified in the ASME Boiler and Pressure Vessel Code, a review has been performed to obtain the necessary data in the non-irradiated condition from the literature and from additional testing of Zry-4 to enable creation of tables of material properties required for ASME Code Section III Article ND-3000 design. A strategy for an in-vessel surveillance program is also recommended for early detection of potential corrosion and irradiation degradation issues during operational life of the vessel. Additionally, the ASME Code Section II, Part D was reviewed to ascertain the requirements for proposing a new material for Code approval. A plate of Zry-4 procured by ORNL was used to obtain tensile properties that were used as the basis for determining the maximum allowable stresses applicable to the vessel design. The materials properties of primary interest for ASME Code application are tensile properties, fracture toughness, fatigue, and five specific physical properties required by the Code for approval of a new material. The literature review revealed that all reported experimental data showed tensile strengths to substantially exceed the minimum specifications in ASTM B352. Sufficient fracture toughness and fatigue data are available to conclude that Zry-4 has sufficient fracture and fatigue resistance in the unirradiated condition for vessel design and operation. Of the physical properties reviewed, only thermal conductivity revealed a discrepancy that is recommended for further review. A surveillance program plan has been developed that is probably the maximum that would need to be implemented for the specific vessel design considered. Once adequate non-irradiated and irradiated data are available from preproduction testing of the Zry-4 and weld metal and HAZ materials, the program could be reduced to reflect that either initial properties are very good and/or the effects of embrittlement appear to be minimal. However, the overall design of a surveillance program is, of course, also dependent on the ASME Code design class for the pressure vessel.
机译:橡树岭国家实验室(ORNL)正在实施一项计划,以支持私营企业设计〜(99)Mo生产系统,其中包括对Zircaloy-4(Zry-4)性能的审查,以作为系统中主要容器的潜在材料。 。由于Zry-4不是ASME锅炉和压力容器规范中指定的材料,因此已经进行了审查,以从文献和Zry-4的额外测试中获得未经辐照条件下的必要数据,从而能够创建表格ASME规范第三节ND-3000设计所需的材料性能。还建议采用船上监视程序的策略,以便在船的使用寿命期间及早发现潜在的腐蚀和辐射降解问题。此外,还对ASME规范第二部分D部分进行了审核,以确定提出新材料以批准规范的要求。使用由ORNL购买的Zry-4板获得拉伸性能,该拉伸性能用作确定适用于容器设计的最大允许应力的基础。适用于ASME规范的主要材料性能是拉伸性能,断裂韧性,疲劳以及该规范批准新材料所需的五种特定物理性能。文献综述显示,所有报告的实验数据均显示拉伸强度大大超过了ASTM B352中的最低要求。有足够的断裂韧性和疲劳数据可得出结论,Zry-4在未辐照条件下具有足够的断裂和抗疲劳性,可用于容器设计和操作。在所审查的物理性质中,只有热导率显示出差异,建议进一步审查。已经制定了一个监视计划计划,该计划可能是所考虑的特定船舶设计需要实施的最大计划。一旦从Zry-4以及焊缝金属和HAZ材料的生产前测试中获得了足够的非辐照和辐照数据,就可以简化该程序以反映出要么初始性能非常好和/或脆化的影响最小化。但是,监视程序的总体设计当然也取决于压力容器的ASME规范设计等级。

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