铬镍铁合金825焊接过程中焊件面积及焊缝极限抗拉强度的研究

Bishub Choudhury, M. Chandrasekaran, M. Thirugnanasambandam
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摘要

本文研究了航空航天工业中常用的镍基合金(Inconel 825)的钨极气体保护焊的焊接特性。采用Box-Behnken设计(BBD),以焊接电流(I)、焊接速度(V)、气体流速(GFR)和弧长(N)为焊接参数,对焊缝的焊件面积(WA)和极限抗拉强度(UTS)两项焊接特性进行了27次试验。采用回归分析对焊缝特性进行建模。开发的模型被验证其充分性,并被发现足以实现。在最大极限抗拉强度(UTS)和最小焊件面积(WA)的同时,进一步采用可取性方法获得最佳焊接参数。焊接参数isI=100A, V=208.78mm/min, GFR=9.93l/min, N=2.49mm的最佳组合,WA=7.0980mm2, UTS=588.86MPa。绘制了模型图,并进行了方差分析,以确定显著过程因素及其对响应的影响。进一步进行显微硬度研究,在热影响区(HAZ)观察到硬度值最高,其次是母材和焊缝区。本文研究了航空航天工业中常用的镍基合金(Inconel 825)的钨极气体保护焊的焊接特性。采用Box-Behnken设计(BBD),以焊接电流(I)、焊接速度(V)、气体流速(GFR)和弧长(N)为焊接参数,对焊缝的焊件面积(WA)和极限抗拉强度(UTS)两项焊接特性进行了27次试验。采用回归分析对焊缝特性进行建模。开发的模型被验证其充分性,并被发现足以实现。在最大极限抗拉强度(UTS)和最小焊件面积(WA)的同时,进一步采用可取性方法获得最佳焊接参数。焊接参数isI=100A, V=208.78mm/min, GFR=9.93l/min, N=2.49mm的最佳组合,WA=7.0980mm2, UTS=588.86MPa。绘制模型图并进行方差分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of weldment area and ultimate tensile strength of weld during GTAW of Inconel 825
In this work investigate weld characteristics of gas tungsten arc welding (GTAW) of popular nickel based alloy (Inconel 825) used is aerospace industry. A Box-Behnken design (BBD) of 27 experimental runs was performed with welding current (I), welding speed (V), gas flow rate (GFR) and arc length (N) considered as weld parameters to investigate two welding characteristics such as weldment area (WA) and ultimate tensile strength (UTS) of the weld. The modeling of the weld characteristics is carried out using regression analysis. The developed models are validated for its adequacy and are found adequate enough for possible implementation. Desirability approach is further carried out to obtain optimum weld parameters by simultaneously maximizing the ultimate tensile strength (UTS) while minimizing the weldment area (WA). The optimum combination of weld parameters isI=100A, V=208.78mm/min, GFR=9.93l/min, and N=2.49mm, which results in WA=7.0980mm2 and UTS=588.86MPa. Model graphs are plotted and ANOVA analysis is carried out for identifying the significant process factors and its influence on the responses. Micro Hardness investigation is further carried out and highest hardness values are observed in the heataffected zone (HAZ) followed by base metal and weld zone.In this work investigate weld characteristics of gas tungsten arc welding (GTAW) of popular nickel based alloy (Inconel 825) used is aerospace industry. A Box-Behnken design (BBD) of 27 experimental runs was performed with welding current (I), welding speed (V), gas flow rate (GFR) and arc length (N) considered as weld parameters to investigate two welding characteristics such as weldment area (WA) and ultimate tensile strength (UTS) of the weld. The modeling of the weld characteristics is carried out using regression analysis. The developed models are validated for its adequacy and are found adequate enough for possible implementation. Desirability approach is further carried out to obtain optimum weld parameters by simultaneously maximizing the ultimate tensile strength (UTS) while minimizing the weldment area (WA). The optimum combination of weld parameters isI=100A, V=208.78mm/min, GFR=9.93l/min, and N=2.49mm, which results in WA=7.0980mm2 and UTS=588.86MPa. Model graphs are plotted and ANOVA analysis...
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