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Reduction of Disassembly Forces for Detaching Components with Solidified Assembly Connections

机译:减少通过牢固的装配连接拆卸组件的拆卸力

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摘要

The disassembly of components with solidified assembly connections is often difficult to plan. A typical example can be found in the aviation industry, where turbine blades solidify in the turbine disc due to operational loads. The solidification of the joining partners has several causes such as thermal stress or high centrifugal forces so that the disassembly forces cannot be estimated exactly. The forces in manual disassembly, e.g. when striking the assembled part with a hammer, are often too high and thus difficult to control. An automated approach is investigated, in which a piezo stack actuator induces vibrations to the joined components and force amplitudes are reduced based on a simplified model of the solidification. For this purpose, simulations are presented to determine forms of excitation for the piezo actuator and to control the disassembly process.
机译:具有坚固的装配连接的零件拆卸通常很难计划。一个典型的例子可以在航空工业中找到,在该工业中,由于运行载荷,涡轮叶片在涡轮盘中凝固。连接伙伴的凝固有多种原因,例如热应力或高离心力,因此无法准确估算拆卸力。手动拆卸时的力,例如当用锤子敲打组装好的零件时,通常太高,因此难以控制。研究了一种自动方法,其中压电叠层致动器根据简化的凝固模型将振动引入连接的组件,并减小了力幅值。为此,提供了模拟以确定压电致动器的励磁形式并控制拆卸过程。

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