开发、设计和测试用于研究创新型多晶金刚石轴承的新型测试装置

Eng Pub Date : 2024-07-25 DOI:10.3390/eng5030085
A. Cascino, A. Amedei, E. Meli, A. Rindi
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引用次数: 0

摘要

多晶金刚石是一种具有优异机械和化学特性的材料,主要用于钻探行业。这种材料制成的轴承由于摩擦系数极低、耐磨性强,因此无需润滑。因此,它们是替代传统油轴承的首选材料,无需辅助系统,从而降低了环境风险。为此,我们设计了一个创新的试验台,由于采用了新颖的倾斜框架,该试验台在垂直和水平配置下均能达到最高 6000 rpm 的转速。此外,通过高度模块化,还可以测试三种不同的径向 PCD 轴承。获得并详细阐述了动态数据,以评估轨道、加速度和吸收扭矩,最后对这些不同配置进行比较,从而更好地了解轴承的几何特性如何影响动态行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development, Designing and Testing of a New Test Rig for Studying Innovative Polycrystalline Diamond Bearings
This paper reports the preliminary experimental studies carried out on an innovative sliding bearing made of polycrystalline diamond, a material with excellent mechanical and chemical characteristics, used mainly in the drilling industry. Bearings crafted from this material do not necessitate lubrication due to their extremely low coefficient of friction and high resistance to wear. For this reason, they are prime candidates for replacing traditional oil bearings, eliminating the need for auxiliary systems and thereby reducing environmental risks. In this regard, an innovative test rig was designed, capable of reaching speeds up to 6000 rpm both in vertical and horizontal configurations thanks to a novel tilting frame. Moreover, with a high modularity it was possible to test three different kinds of radial PCD bearings. Dynamic data were acquired and elaborated to evaluate orbits, acceleration and absorbed torque, to finally compare these different configurations to better understand how dynamic behavior is influenced by bearings’ geometrical characteristics.
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Eng
Eng
CiteScore
2.10
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