首页> 外文会议>ASME international mechanical engineering congress and exposition >MICROHARDNESS AND MICROSTRUCTURAL STUDIES ON UNDERWATER FRICTION STIR WELDING OF 5052 ALUMINUM ALLOY
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MICROHARDNESS AND MICROSTRUCTURAL STUDIES ON UNDERWATER FRICTION STIR WELDING OF 5052 ALUMINUM ALLOY

机译:5052铝合金水下摩擦搅拌焊接的显微硬度和显微组织研究

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As compared to normal Friction Stir Welding (FSW) joints, the Underwater Friction Stir Welding (UFSW) has been reported to be obtainable in consideration of enhancement in mechanical properties. A 5052-Aluminum Alloy welded joints using UFSW method with plate thickness of 6 mm were investigated, in turn to interpret the fundamental justification for enhancement in mechanical properties of material through UFSW. Differences in microstructural features and mechanical properties of the joints were examined and discussed in detail. The results indicate that underwater FSW has reported lower hardness value in the HAZ and higher hardness value in the intermediate of stir zone (SZ). The average hardness value of underwater FSW increases about 53% greater than its base material (BM), while 21% greater than the normal FSW. The maximum micro-hardness value was three times greater than its base material (BM), and the mechanical properties of underwater FSW joint is increased compared to the normal FSW joint. Besides, the evaluated void-area fraction division in the SZ of underwater FSW joint was reduced and about one-third of the base material (BM). The approximately estimated average size of the voids in SZ of underwater FSW also was reduced to as low as 0.00073 mm2, when compared to normal FSW and BM with approximately estimated average voids size of 0.0024 mm2 and 0.0039 mm2, simultaneously.
机译:与普通的摩擦搅拌焊接(FSW)接头相比,据报道,考虑到机械性能的提高,可获得水下摩擦搅拌焊接(UFSW)。研究了采用UFSW方法的5052铝合金焊接接头,板厚为6 mm,从而解释了通过UFSW增强材料机械性能的基本理由。对接头的微观结构特征和机械性能的差异进行了检查和详细讨论。结果表明,水下FSW在热影响区具有较低的硬度值,而在搅拌区(SZ)的中间具有较高的硬度值。水下FSW的平均硬度值比其基础材料(BM)高出约53%,而比普通FSW高出21%。最大显微硬度值是其基础材料(BM)的三倍,并且水下FSW接头的机械性能与普通FSW接头相比有所提高。此外,水下FSW接头的SZ中评估的空隙面积分数的划分减少了,约占基础材料(BM)的三分之一。与正常的FSW和BM同时具有大约0.0024 mm2和0.0039 mm2的估计平均空隙尺寸相比,水下FSW的SZ中的空隙的大约估算平均尺寸也降低至0.00073 mm2。

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