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Dynamical behaviour of machine tools during friction stir welding

机译:搅拌摩擦焊接机床的动力学行为

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摘要

Friction stir welding (FSW) is a promising joining technology that is quickly becoming the preferred joining process for a wide range of applications. Because of their high static values, the process forces occurring during FSW still are a major factor concerning the development or the choice of friction stir welding machines. However, until now, the vast majority of research projects only consider the static force components or the maximum loads that occur during a given welding operation. But, like during turning or milling, the tool does generate oscillating process forces that induce vibrations into the machine structure and should not be neglected. Thus, the key aspect of this work is the comprehensive characterization of the dynamical nature of the process forces and their effect on the machine structure. These results are then used for the development of a process force model and the design of a machine model to simulate the response to these loads. These two models are combined in one simulation environment and interact with each other to predict the process stability for a certain combination of process parameters and machine.
机译:搅拌摩擦焊(FSW)是一种很有前途的连接技术,正在迅速成为广泛应用中的首选连接工艺。由于其较高的静态值,在FSW期间产生的过程力仍然是摩擦搅拌焊接机的发展或选择的主要因素。但是,到目前为止,绝大多数研究项目仅考虑静力分量或给定焊接操作过程中出现的最大载荷。但是,就像在车削或铣削过程中一样,该工具确实会产生振荡过程力,从而将振动引入机器结构中,因此不应忽略。因此,这项工作的关键方面是过程力的动力学性质及其对机器结构的影响的全面表征。然后将这些结果用于过程力模型的开发和机械模型的设计,以模拟对这些负载的响应。这两个模型在一个模拟环境中组合在一起,并且彼此交互以预测过程参数和机器的某种组合的过程稳定性。

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