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Effect of age hardening to reclaim mechanical properties at different levels of temperature with prolong holding time on GTAW weldments

机译:时效硬化对GTAW焊件在不同温度水平下保持时间延长的机械性能的影响

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It is evident for heat treatable aluminum alloys, that a great reduction in mechanical properties was reported against the fusion arc welding process. This is considered an utmost industrial issue and direct usage of critical components in the automobile and aerospace industries are not acceptable without performing any post process that reclaims the properties up to a certain limit. The AA6061 aluminum alloy was considered as a base material and ER4047 as filler utilized in the GTAW process at constant parameters. After welding, all the specimens were solution treated at 500°C for 2 hours, age hardening cycle was performed at different temperatures ranging from 135-195°C at an interval of 30°C difference with considering prolong aging time of 7, 10 and 13 hours. A microstructure based comparison has been presented in the welded zone (WZ) at each combination of aging temperature and time. A change in mechanical properties has been observed due to dissolution and aging of precipitates in the WZ and heat affected zone (HAZ). A stage-wise comparison of hardness in the WZ and HAZ represented the gradual recovery in mechanical properties. Higher values of hardness and recovery were concluded in HAZ which is actually a heat treatable sensitive (AA6061) region and, up to 80.2% in contrast to BM was recorded. A significant improvement in WZ against the age hardening is also reported, up to 71% of hardness recorded but still less than HAZ. Therefore, it is considered to be an effective strategy to regain the acceptable range of mechanical properties in the affected zones.
机译:很明显,对于可热处理的铝合金,据报道,与熔融电弧焊接工艺相比,机械性能大大降低。这被认为是最严重的工业问题,在不执行任何将特性恢复到一定极限的后期处理过程中,不能直接在汽车和航空航天工业中使用关键组件。在恒定参数下,将AA6061铝合金用作基础材料,将ER4047用作GTAW工艺中使用的填料。焊接后,将所有试样在500°C固溶处理2小时,并在135-195°C的不同温度下以30°C的间隔进行时效硬化循环,并考虑延长7、10和10℃的时效时间。 13小时。在时效温度和时间的每种组合下,均已在焊接区(WZ)中进行了基于微观结构的比较。由于沉淀物在WZ和热影响区(HAZ)中的溶解和老化,已经观察到机械性能的变化。 WZ和HAZ硬度的阶段性比较代表了机械性能的逐渐恢复。在HAZ中得出了较高的硬度和回复率值,而HAZ实际上是可热处理的敏感(AA6061)区域,与BM相比,记录的硬度和回复率高达80.2%。还报道了抗老化的WZ的显着改善,记录的硬度高达71%,但仍小于HAZ。因此,被认为是恢复受影响区域的机械性能的可接受范围的有效策略。

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