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首页> 外文期刊>Tribology Transactions >Parametric Testing and Heat Generation Modeling of 133-mm Bore Ball Bearings: Part I - Results with Metal Rolling Elements
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Parametric Testing and Heat Generation Modeling of 133-mm Bore Ball Bearings: Part I - Results with Metal Rolling Elements

机译:133毫米孔球轴承的参数测试和发热建模:第一部分-金属滚动体的结果

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摘要

133 mm bore ball bearings with metal rolling elements were tested at the following conditions: speeds from 1.5 × 10~6 to 2.6 × 10~6 DN; thrust loads from 13,350 to 53,400 N; oil delivery temperatures from 66 to 121℃ and oil flow rates from 7.3 to 11.4 L/min. The resulting bearing outer race temperature, oil exit temperature, and power loss determined from the shaft torque and power loss determined from the oil temperature rise are reported. Experimental power loss values are compared to the analytical results obtained with the computer code SHABERTH. The experimental data are also fitted to an empirical equation to predict the total bearing power loss. The results indicate that bearing operating temperature is a challenge for next-generation engines, primarily driven by limits of polyolester lubricants used in gas turbine engines. The results also indicate that the computer code SHABERTH under predicts the bearing lower loss at high load conditions. A new empirical model was able to reasonably predict the bearing power loss over the conditions studied.
机译:在以下条件下测试了带有金属滚动元件的133 mm内径球轴承:转速从1.5×10〜6到2.6×10〜6 DN;推力载荷从13350到53400 N;输油温度为66至121℃,油流量为7.3至11.4 L / min。报告了由此产生的轴承外圈温度,出油温度和由轴扭矩确定的功率损耗,以及由油温上升确定的功率损耗。将实验功率损耗值与使用计算机代码SHABERTH获得的分析结果进行比较。实验数据也适合于经验方程式,以预测总轴承功率损耗。结果表明,轴承的工作温度是下一代发动机的一个挑战,主要是由燃气涡轮发动机中使用的多元醇酯润滑剂的限制所驱动。结果还表明,计算机代码SHABERTH under可以预测高负载条件下轴承的较低损失。一个新的经验模型能够合理地预测所研究条件下的轴承功率损耗。

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