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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Experimental study on surface residual stress of titanium alloy curved thin-walled parts by ultrasonic longitudinal-torsional composite milling
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Experimental study on surface residual stress of titanium alloy curved thin-walled parts by ultrasonic longitudinal-torsional composite milling

机译:超声波纵向扭转复合材料研磨钛合金弯曲薄壁零件表面残余应力的实验研究

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摘要

The production of thin-walled titanium alloy curved surfaces is of great significance to aerospace manufacturing industry. The magnitude and distribution of residual stress are one of the important factors affecting the surface integrity of the workpiece. In order to obtain larger surface residual compressive stress, improve the surface integrity of the workpiece, and realize the fatigue-resistant manufacturing, the ultrasonic longitudinal-torsional composite milling method was proposed. Orthogonal and single-factor experiments were carried out on titanium alloy curved thin-walled parts, and the differences of cutting force, cutting temperature, and residual stress between conventional milling and ultrasonic longitudinal-torsional composite milling were compared and analyzed, and the influence of different process parameters on the surface residual stress of titanium alloy thin-walled parts was explored. Compared with conventional milling, the surface residual stress values of ultrasonic longitudinal-torsional composite milling workpiece were negative and significantly increased, with the maximum increase rate of 54.88%.The cutting force was greatly reduced, and F-x and F-y decreased by 31.6% and 45.33%, respectively. The instantaneous cutting temperature was also greatly reduced, the maximum reduction of which is 17.53%. With the increase of ultrasonic amplitude and feed per tooth, the surface residual compressive stress increases gradually but decreases with the increase of spindle speed and curvature. The experimental results show that ultrasonic longitudinal-torsional composite milling is a reliable method for machining titanium alloy curved thin-walled parts, which can obtain larger residual compressive stress and improve the machined surface integrity.
机译:钛合金薄壁曲面的生产对航空航天制造业具有重要意义。残余应力的大小和分布是影响工件表面完整性的重要因素之一。为了获得较大的表面残余压应力,提高工件的表面完整性,实现抗疲劳制造,提出了超声纵扭复合铣削方法。对钛合金弯曲薄壁件进行了正交试验和单因素试验,对比分析了常规铣削和超声纵扭复合铣削在切削力、切削温度和残余应力方面的差异,探讨了不同工艺参数对钛合金薄壁件表面残余应力的影响。与常规铣削相比,超声纵扭复合铣削工件表面残余应力值为负值,显著增加,最大增加率为54.88%。切削力大大降低,F-x和F-y分别降低了31.6%和45.33%。瞬时切削温度也大大降低,最大降低17.53%。随着超声振幅和每齿进给量的增加,表面残余压应力逐渐增大,但随着主轴转速和曲率的增加而减小。实验结果表明,超声纵扭复合铣削是加工钛合金曲面薄壁零件的可靠方法,可以获得较大的残余压应力,提高加工表面的完整性。

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