中国有色金属学报(英文版)
中國有色金屬學報(英文版)
중국유색금속학보(영문판)
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA
2013年
7期
1977-1984
,共8页
石永华%郑泽培%黄晋
石永華%鄭澤培%黃晉
석영화%정택배%황진
水下焊接%焊缝尺寸%敏感度分析%药芯焊丝焊接(FCAW)
水下銲接%銲縫呎吋%敏感度分析%藥芯銲絲銲接(FCAW)
수하한접%한봉척촌%민감도분석%약심한사한접(FCAW)
underwater welding%bead geometry%sensitivity analysis%flux cored arc welding (FCAW)
设计了正交试验并在高压舱内进行了0.2~60 m的水下湿法药芯焊丝焊接,利用多元曲线回归方法从试验数据中建立了焊接工艺参数和焊缝成形尺寸之间的数学模型。然后,进行敏感度分析来预测焊缝几何尺寸,并量化评估工艺参数如焊接电流、电压、焊接速度、导电嘴至工件距离(CTWD)和水深对焊缝几何尺寸的影响。结果表明,当焊接水深较浅(小于10 m)时,水深对焊缝几何尺寸的影响比其他参数的大。在较大的水深下(大于10 m),焊接速度的变化对焊缝尺寸的影响最大。
設計瞭正交試驗併在高壓艙內進行瞭0.2~60 m的水下濕法藥芯銲絲銲接,利用多元麯線迴歸方法從試驗數據中建立瞭銲接工藝參數和銲縫成形呎吋之間的數學模型。然後,進行敏感度分析來預測銲縫幾何呎吋,併量化評估工藝參數如銲接電流、電壓、銲接速度、導電嘴至工件距離(CTWD)和水深對銲縫幾何呎吋的影響。結果錶明,噹銲接水深較淺(小于10 m)時,水深對銲縫幾何呎吋的影響比其他參數的大。在較大的水深下(大于10 m),銲接速度的變化對銲縫呎吋的影響最大。
설계료정교시험병재고압창내진행료0.2~60 m적수하습법약심한사한접,이용다원곡선회귀방법종시험수거중건립료한접공예삼수화한봉성형척촌지간적수학모형。연후,진행민감도분석래예측한봉궤하척촌,병양화평고공예삼수여한접전류、전압、한접속도、도전취지공건거리(CTWD)화수심대한봉궤하척촌적영향。결과표명,당한접수심교천(소우10 m)시,수심대한봉궤하척촌적영향비기타삼수적대。재교대적수심하(대우10 m),한접속도적변화대한봉척촌적영향최대。
To investigate influence of welding parameters on weld bead geometry in underwater wet flux cored arc welding (FCAW), orthogonal experiments of underwater wet FCAW were conducted in the hyperbaric chamber at water depth from 0.2 m to 60 m and mathematical models were developed by multiple curvilinear regression method from the experimental data. Sensitivity analysis was then performed to predict the bead geometry and evaluate the influence of welding parameters. The results reveal that water depth has a greater influence on bead geometry than other welding parameters when welding at a water depth less than 10 m. At a water depth deeper than 10 m, a change in travel speed affects the bead geometry more strongly than other welding parameters.