摩擦滞后对颗粒-固体系统自激振动的影响

Q4 Materials Science Tribologie und Schmierungstechnik Pub Date : 2021-09-21 DOI:10.24053/tus-2021-0020
Thomas Fürstner, Matthias Kröger
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引用次数: 0

摘要

将通过实验和数值模型研究颗粒-固体系统中摩擦滞后对自激的影响。为此,将提供一个试验台。该试验台可以测量实际作用摩擦力。此外,还将提出一个数值模型,该模型对滑动和粘滞中随时间变化的摩擦行为进行了区分。在系统行为中可以观察到更大的差异——即使测量到的摩擦滞后的曲线质量相似。例如,在具有PVC-W颗粒的系统中,稳定粘滑振荡区域和沉降振荡区域之间存在尖锐的边界。与此相比,具有PMMA颗粒的系统在这两个区域之间具有平滑的过渡区域。随后的仿真研究表明,自激机制是滑动和粘滞过程中随时间变化的行为与外部平均系统速度之间的复杂相互作用。
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Einfluss einer Reibhysterese auf selbsterregte Schwingungen von Partikel-Festkörper-Systemen
The influence of a friction hysteresis on the self-exciting in a particle-solid-system will be investigated by experiments and a numerical model. For this, a test rig will be presented. This test rig allows to measure the actual acting friction force. Furthermore, a numerical model will be presented which has a differentiation between a time-dependent friction behavior in sliding and sticking. Bigger differences can be observed in the system behavior – even with a quality similar curve of the measured friction hysteresis. For example, in a system with PVC-W particles exists a sharp boundary between an area of stable stick-slip oscillation and an area of subsiding oscillation. In comparison to this, a system with PMMA particles has a smooth transition region between these two areas. The followed simulation studies shown, that the selfexciting mechanism is a complex interaction between the time-dependent behavior during the sliding and sticking and the external average system velocity.
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来源期刊
Tribologie und Schmierungstechnik
Tribologie und Schmierungstechnik Materials Science-Surfaces, Coatings and Films
CiteScore
0.50
自引率
0.00%
发文量
22
期刊最新文献
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