Kosturek Robert, Ślęzak Tomasz, Torzewski Janusz, Bucior Magdalena, Zielecki Władysław, Śnieżek Lucjan, Sęp Jarosław
Faculty of Mechanical Engineering, Military University of Technology, 2 Gen. S. Kaliskiego Str., 00-908 Warsaw, Poland.
Department of Manufacturing Processes and Production Engineering, Rzeszow University of Technology, 8 Powstańców Warszawy Str., 35-959 Rzeszow, Poland.
Materials (Basel). 2023 Nov 11;16(22):7131. doi: 10.3390/ma16227131.
In this investigation, an AA2519-T62 FSW butt joint was subjected to shot peening with an air pressure of p = 0.6 MPa, a processing time of t = 10 min (per side), and a steel ball diameter of d = 1.5 mm. In order to evaluate the impact of shot peening on the low-cycle behavior, the samples were tested with coefficient R = 0.1 at total strain amplitudes of 0.35%, 0.4%, and 0.5%. The shot-peened welds are characterized by a higher value of stress amplitude, a lower value of plastic strain amplitude, and their fatigue life increased slightly. The cyclic strength coefficient and the cyclic strain hardening exponent were reduced by 45% and 55%, respectively, as the result of the surface layer hardening. The shot peening process had no noticeable effect on the character of crack initiation and propagation. Almost in all cases, the cracking started in the area under the weld face, located close to the boundary between the thermo-mechanically affected zone and the stir zone at the advancing side. Only at the heaviest loadings (ε = 0.5%) were cracks initiated in the heat-affected zone at the retreating side. Despite the introduction of small cracks in the stir zone, their presence did not affect the decohesion character of the welded joint. Overall, it was observed that there is a minimal, positive impact of shot peening on the properties of the investigated joints.
在本研究中,对AA2519-T62搅拌摩擦焊对接接头进行喷丸处理,气压p = 0.6 MPa,处理时间t = 10分钟(每侧),钢球直径d = 1.5 mm。为了评估喷丸处理对低周性能的影响,对样品在总应变幅值为0.35%、0.4%和0.5%时进行系数R = 0.1的测试。喷丸处理后的焊缝具有较高的应力幅值、较低的塑性应变幅值,其疲劳寿命略有增加。由于表面层硬化,循环强度系数和循环应变硬化指数分别降低了45%和55%。喷丸处理过程对裂纹萌生和扩展特性没有明显影响。几乎在所有情况下,裂纹都起始于焊缝面下方靠近前进侧热机械影响区与搅拌区边界的区域。仅在最高载荷(ε = 0.5%)时,裂纹才在后退侧的热影响区萌生。尽管在搅拌区引入了小裂纹,但它们的存在并未影响焊接接头的脱粘特性。总体而言,观察到喷丸处理对所研究接头的性能有最小的积极影响。