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Research on Machining Distortion due to Residual Stresses of Large Monolithic Beam

机译:大型整体梁残余应力引起的加工变形研究

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Machining-induced distortion of large monolithic parts with thin walled structures creates problems in aircraft manufacturing industry. Typical monolithic beams of airframe are machined by NC machine and machining distortions are recorded. Thin walled structures are prone to distortions and dimensional instabilities due to internal stresses; therefore, stress-relieved vibration method is applied to reduce the internal stresses in blank material and results in better machining performance and dimension stability. But vibration stress-relief method doesn't work always due to unknown reasons. Machining simulations in ANSYS are performed to predict the residual stress-induced machining distortion and simulation result is compared with the machining measurements to validate the simulation process. Cutting simulations have been executed by the element deactivation technique after developing the initial residual stresses via sequential coupled field analysis. The possibility of residual stress being relieved more reasonably and less distortion by optimized machining sequence through simulation is discussed.
机译:机加工引起的具有薄壁结构的大型整体零件的变形在飞机制造行业中造成了问题。典型的机身整体梁由数控机床加工,并记录加工变形。薄壁结构由于内部应力而易于变形和尺寸不稳。因此,采用消除应力的振动方法来减少毛坯材料的内部应力,从而获得更好的加工性能和尺寸稳定性。但是,由于未知原因,振动应力消除方法并不总是有效。在ANSYS中进行加工仿真以预测残余应力引起的加工变形,并将仿真结果与加工测量值进行比较以验证仿真过程。通过顺序耦合场分析产生初始残余应力后,通过元素去激活技术执行了切削模拟。讨论了通过仿真优化加工顺序,可以更合理地消除残余应力并减少变形的可能性。

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