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首页> 外文期刊>Journal of vibration and control: JVC >Machining dynamics involving whirling Part II: Machining motions described by nonlinear and linearized models
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Machining dynamics involving whirling Part II: Machining motions described by nonlinear and linearized models

机译:涉及回旋的加工动力学第二部分:非线性和线性模型描述的加工运动

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摘要

The nonlinear model presented in Part I is linearized and numerically evaluated to investigate the impact of linearization on interpreting turning dynamics. As described in Part 1, the equations of motion are so derived that the motion of the workpiece machining surface is in the plane orthogonal to the spindle axis and the motion of the tool is along the axis and coupled with the machining surface. The nonlinear 3D model is linearized about an operating point at (0, 0, Z(0)), where z(t) = Zo is the equilibrium location of the tool associated with the (x(2) = 0, y(2) = 0) position of the workpiece. The (0, 0, Z(0)) operating point is selected to satisfy the ultimate machining goal for always achieving precise workpiece geometry without surface error and waviness. Taylor series expansion about the operating point is applied to linearize the nonlinear equations of motion. Modifications are also made to the nonlinear tool stiffness term and the cutting force to minimize linearization errors. The mass and stiffness of the workpiece remain functions of time after the modifications are performed. Numerical results show that the linearized model underestimates tool vibrations in the time domain and overestimates system behavior in the frequency domain; whereas the nonlinear model agrees with the physical results reported in the literature in describing machining stability and chatter.
机译:对第一部分中介绍的非线性模型进行了线性化和数值评估,以研究线性化对解释转向动力学的影响。如第1部分所述,运动方程式的推导使工件加工表面的运动在与主轴轴线正交的平面内,而刀具的运动沿该轴线并与加工表面耦合。非线性3D模型围绕(0,0,Z(0))上的工作点线性化,其中z(t)= Zo是与(x(2)= 0,y(2)相关的工具的平衡位置)= 0)工件位置。选择(0,0,Z(0))工作点以满足最终加工目标,从而始终获得精确的工件几何形状而没有表面误差和波纹度。围绕工作点的泰勒级数展开用于线性化非线性运动方程。还对非线性刀具刚度项和切削力进行了修改,以最大程度地减少线性误差。修改后,工件的质量和刚度仍然是时间的函数。数值结果表明,线性化模型在时域中低估了工具的振动,而在频域中高估了系统的行为。非线性模型与文献报道的描述加工稳定性和颤振的物理结果一致。

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