潁璋 Cold Bending 園地
燃氣複循環機組高能管線幾何不連續性破壞機制分析:異質厚壁套銲接頭與冷作彎管工法之力學響應比較 (Failure Mechanism Analysis of Geometric Discontinuities in High-Energy Piping of Combined Cycle Power Plants: A Comparison of Mechanical Responses Between Dissimilar Thick-Walled Socket Welded Joints and Cold Bending Processes)
一、 緒論與產業熱力學挑戰之演進 在全球能源結構轉
2026-07-09
基於 ASME B31.1 最新規範之高能 P91/P92 蒸汽管線壽命延長策略:3D/5D 冷作彎管與 IH-PBHT 整合工法之應用與效益分析 (Life Extension Strategies for High-Energy P91/P92 Steam Piping Based on the Latest ASME B31.1 Code: Application and Benefit Analysis of Integrated 3D/5D Cold Bending and IH-PBHT Method)
摘要 隨著全球超超臨界(A-USC)燃煤機組與先進
2026-07-08
基於 ASME B31J 規範之 P91 厚壁高能管線冷作彎管與傳統電銲彎頭之綜合評估與效益分析報告 : 解決總包商「建造成本與工期」以及業主「長期運轉安全與維運成本」 (Comprehensive Evaluation and Cost-Benefit Analysis of P91 Heavy-Wall High Energy Piping Cold Bends vs. Traditional Welded Elbows Based on ASME B31J: Addressing EPC Contractors’ “Construction Costs and Schedule” and Owners’ “Long-Term Operational Safety and Maintenance Costs”)
一、 緒論 在全球能源結構急遽轉型與脫碳淨零碳排政
2026-07-07
基於 ASME B31J 與高逼真度三維有限元素分析之 2″ XXS P91 高壓管線應力與經濟效益深度研究:1.5D 對銲彎頭與 5D 冷作彎管之比較 (An In-Depth Study on the Stress and Economic Benefits of 2″ XXS P91 High-Pressure Piping Based on ASME B31J and High-Fidelity 3D Finite Element Analysis: A Comparison Between 1.5D Butt-Welded Elbows and 5D Cold-Formed Bends)
一、 緒論與高能管線系統之力學挑戰 在全球能源結構
2026-07-06
