潁璋 Cold Bending 園地
基於CCPP熱循環累積效應探討 P91/P92 高壓蒸汽管線銲口退化機制:以冷作彎管工法降低返修風險之效益評估 (Investigating the Degradation Mechanisms of P91/P92 High-Pressure Steam Piping Welds Based on Cumulative Thermal Cycling Effects in CCPPs: A Benefit Assessment of Cold Bending for Mitigating Repair Risks)
摘要 隨著全球先進超超臨界(A-USC)與大型燃氣
2026-07-21
高溫高壓管線銲道潛變失效型態(Type I~IV)之演變特徵、多軸應力驅動機制與現代麻田散鐵鋼防護策略 (Evolutionary Characteristics, Multiaxial Stress-Driven Mechanisms, and Modern Martensitic Steel Protection Strategies for Type I~IV Creep Failure Modes in High-Temperature and High-Pressure Pipeline Welds)
前言 在當代全球能源結構轉型與超超臨界(Ultra
2026-07-20
基於CCPP熱循環累積效應探討 P91/P92 高壓蒸汽管線銲口退化機制:以冷作彎管工法降低返修風險之效益評估 (Investigating the Degradation Mechanisms of P91/P92 High-Pressure Steam Piping Welds Based on Cumulative Thermal Cycling Effects in CCPPs: A Benefit Assessment of Cold Bending for Mitigating Repair Risks)
摘要 隨著全球先進超超臨界(A-USC)與大型燃氣
2026-07-20
突破ASME B31J剛體悖論之三維高逼真度有限元素分析與參數解耦技術:應用於高壓厚壁管線系統之應力最佳化與API 610負載控制 (Resolving the ASME B31J Rigid-Body Paradox via 3D High-Fidelity Finite Element Analysis and Parameter Decoupling: Application to Stress Optimization and API 610 Load Control in High-Pressure Thick-Walled Piping Systems)
一、 緒論與管線應力分析之歷史演進 在現代超臨界(
2026-07-20
