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首页> 外文期刊>International Scholarly Research Notices >Modeling and Control of Cutter Vibration in the Presence of Random Distribution of Microhardness of Workpiece and Nonlinear Cutting Forces in Lathe Process
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Modeling and Control of Cutter Vibration in the Presence of Random Distribution of Microhardness of Workpiece and Nonlinear Cutting Forces in Lathe Process

机译:车削过程中工件显微硬度和非线性切削力随机分布的刀具振动建模与控制

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This work presents a comprehensive approach to the control of tool's position, in the presence of machine tool structure vibration, nonlinear cutting force, and random tool vibration due to random distribution of microhardness of workpiece material. The controller is combination of Proportional and linear quadratic gaussian- (P-LQG-) type constructed from an augmented model of both tool-actuator dynamics and a nonlinear dynamic model relating tool displacement to cutting forces. The latter model is obtained using black-box system identification of experimental orthogonal cutting data in which tool displacement is the input and cutting force is the output. The controller is evaluated and its performance is demonstrated.
机译:在存在机床结构振动,非线性切削力以及由于工件材料的显微硬度的随机分布而导致的随机刀具振动的情况下,这项工作提出了一种控制刀具位置的综合方法。该控制器是比例和线性二次高斯(P-LQG-)类型的组合,该类型由工具执行器动力学的增强模型和将刀具位移与切削力相关的非线性动力学模型构成。后一种模型是使用黑箱系统识别实验正交切削数据获得的,其中以刀具位移为输入,切削力为输出。评估控制器并演示其性能。

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