潁璋 Cold Bending 園地
1.0D套銲彎頭間隙沖蝕失效機制分析,暨基於ASME/API標準與空間配置之3D/5D冷作彎管(三合一工法)系統化改善策略 (Analysis of Erosion Failure Mechanisms in 1.0D Socket Weld Elbow Gaps, and Systematic Improvement Strategies for 3D/5D Cold Bending Pipes (Three-in-One Method) Based on ASME/API Standards and Spatial Layout)
一、 緒論 / I. Introduction 在
2026-09-23
1.5D電銲彎頭沖蝕現象綜合分析、退化機制與3D/5D冷作彎管系統化改善策略:基於CCPP廠管線維護與ASME/API國際標準之應用評估 (Comprehensive Analysis of Erosion Phenomena and Degradation Mechanisms of 1.5D Butt-Welded Elbows, and Systematic Improvement Strategies using 3D/5D Cold Bends: An Application Evaluation Based on CCPP Plant Piping Maintenance and ASME/API International Standards)
一、緒論與研究背景 / I. Introducti
2026-09-23
基於 ASME B31J 規範之電廠高能管線預製工法最佳化:冷作彎管在降低 P91 銲後熱處理風險與提升專案進度之效益分析 (Optimization of Power Plant High-Energy Piping Prefabrication Based on ASME B31J Standard: Benefit Analysis of Cold Bending in Mitigating P91 Post-Weld Heat Treatment Risks and Accelerating Project Schedules)
摘要 / Abstract 在全球能源轉型與追求極
2026-09-22
