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Application of the Advanced Surface Modification Process to the ASME Code Case for Sections III and XI of Nuclear Power Plants

机译:先进的表面修改过程在核电站章节和XI的ASME代码案中的应用

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摘要

The advanced surface modification process is known as a promising solution to improve the performance of machine components and systems, especially for vehicles, nuclear power plants, biomedical device, etc. There have been several successful applications of water jet peening and underwater laser peening to nuclear components in Japan since 2001 which resulted in inspection and repair cost savings. The prerequisite condition for the application of the advanced surface modification process to nuclear power plants is the approval of the American Society of Mechanical Engineers (ASME) Code Case, so performance criteria and requirements (PCRs) in the ASME Code Case for repair and maintenance of nuclear power components are explained. A challenging project to apply advanced surface modification processes, such as ultrasonic nanocrystal surface modification and air laser peening to new nuclear power plants and new canisters, was created with the goal to develop a technical basis and the PCRs for ASME Section III (New Manufacturing). The results of this work will be an ASME Section III Code Case which is currently in progress. An initial draft of the new Code Case with the intermediate results of this work is introduced. Four kinds of advanced surface modification processes are explained and compared briefly.
机译:先进的表面改性过程称为提高机器部件和系统性能的有希望的解决方案,特别是对于车辆,核电厂,生物医学装置等。有几种成功的水喷射喷射和水下激光喷洒到核的成功应用自2001年以来日本的组成部分导致储蓄的检查和维修成本。应用先进的表面改装过程对核电厂的先决条件是美国机械工程师(ASME)代码案件的批准,因此在ASME代码案件中的性能标准和要求(PCR)进行维修和维护解释核电部件。采用先进的表面改性工艺的具有挑战性的项目,如超声纳米晶体表面改装和喷头到新的核电站和新罐中的空气激光器,以实现技术基础和ASME第三节(新制造业)的PCR 。这项工作的结果将成为目前正在进行的ASME第三节代码案。介绍了新的代码案件的初步草案,具有这项工作的中间结果。简要解释并比较四种先进的表面改性过程。

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