| Literature DB >> 32722006 |
Liangliang Li1, Zhufeng Liu1, Chongyu Wang2, Yonghui Xie1.
Abstract
Gas-lubricated microbearings are widely applied in multiple fields due to their advantages of high-speed, low friction level and other features. The operating environment of microbearings is complex, and the difference of temperature has an important influence on their comprehensive performance. In this investigation, FEM (finite element method) is employed to investigate the static, dynamic and limit characteristics of microbearings lubricated by different kinds of gas at different temperatures. The results show that the rise of temperature leads to the decline of equivalent viscosity of gas, which weakens the load capacity of microbearings, and furthermore, affects the operating stability of microbearings. The dynamic performances of microbearings at different temperatures are very different, and the two dynamic limit characteristics are more sensitive to temperature when it changes.Entities:
Keywords: dynamic limit performance; gas-lubricated microbearings; rarefaction effect; static and dynamic characteristics; temperature
Year: 2020 PMID: 32722006 PMCID: PMC7465627 DOI: 10.3390/mi11080716
Source DB: PubMed Journal: Micromachines (Basel) ISSN: 2072-666X Impact factor: 2.891
Figure 1Geometry and mesh of a typical gas-lubricated microbearings (a) geometry of bearing; (b) mesh of the finite element model (FEM).
Model parameters of the gas-lubricated microbearings.
| Parameters of Microbearings | Values |
|---|---|
| Length/radius ( | 0.125 |
| Clearance ( | 10 |
| Rotating speed ( | 500,000 |
| Gas type | Air, He, CO2, N2 |
| Gas temperature ( | 293, 473, 673, 873, 1073, 1273,1473 |
| Viscosity ( | correspond to temperature and gas type |
| Eccentricity ratio ( | 0.9 |
Figure 2Flow chart of solution.
Figure 3Center pressure comparison of two flow models.
Figure 4Static performances comparison between two calculation models (a) variation of dimensionless load capacity with eccentricity ratio; (b) variation of attitude angle with eccentricity ratio.
Figure 5Variation of μ and D0 at different temperatures.
Figure 6Influence of temperature on load capacity (a) and attitude angle (b).
Figure 7Influence of temperature on flow (a) and friction characteristics (b).
Figure 8Variation of dynamic coefficients. (a) direct damping coefficients; (b) cross damping coefficients; (c) direct stiffness coefficients; (d) cross stiffness coefficients.
Figure 9Influence of temperature on the +∞ dynamic limit coefficients. (a) D; (b) D; (c) D; (d) D; (e) K; (f) K; (g) K; (h) K.
+∞ dynamic limit coefficients of different kinds of gas.
| Gas Type | Temperature |
|
|
|
|
|
|
| |
|---|---|---|---|---|---|---|---|---|---|
| He | 293 K | 0.9769 | 0.8575 | 0.3783 | 0.3783 | 0 | 0 | 0 | 0 |
| 473 K | 1.0844 | 0.7183 | 0.3181 | 0.3181 | 0 | 0 | 0 | 0 | |
| 673 K | 1.1514 | 0.6337 | 0.2474 | 0.2474 | 0 | 0 | 0 | 0 | |
| 873 K | 1.1847 | 0.5916 | 0.1928 | 0.1928 | 0 | 0 | 0 | 0 | |
| 1073 K | 1.2019 | 0.5695 | 0.1532 | 0.1532 | 0 | 0 | 0 | 0 | |
| 1273 K | 1.2114 | 0.5571 | 0.1244 | 0.1244 | 0 | 0 | 0 | 0 | |
| 1473 K | 1.2168 | 0.5497 | 0.1032 | 0.1032 | 0 | 0 | 0 | 0 | |
| CO2 | 293 K | 0.8152 | 1.0912 | 0.3949 | 0.3949 | 0 | 0 | 0 | 0 |
| 473 K | 0.8656 | 1.0135 | 0.3983 | 0.3983 | 0 | 0 | 0 | 0 | |
| 673 K | 0.9234 | 0.9305 | 0.3927 | 0.3927 | 0 | 0 | 0 | 0 | |
| 873 K | 0.9758 | 0.8591 | 0.3787 | 0.3787 | 0 | 0 | 0 | 0 | |
| 1073 K | 1.0218 | 0.7985 | 0.3589 | 0.3589 | 0 | 0 | 0 | 0 | |
| 1273 K | 1.0605 | 0.7486 | 0.3358 | 0.3358 | 0 | 0 | 0 | 0 | |
| 1473 K | 1.0920 | 0.7086 | 0.3117 | 0.3117 | 0 | 0 | 0 | 0 | |
| N2 | 293 K | 0.8411 | 1.0505 | 0.3976 | 0.3976 | 0 | 0 | 0 | 0 |
| 473 K | 0.9024 | 0.9602 | 0.3959 | 0.3959 | 0 | 0 | 0 | 0 | |
| 673 K | 0.9656 | 0.8728 | 0.3821 | 0.3821 | 0 | 0 | 0 | 0 | |
| 873 K | 1.0203 | 0.8005 | 0.3597 | 0.3597 | 0 | 0 | 0 | 0 | |
| 1073 K | 1.0662 | 0.7414 | 0.3319 | 0.3319 | 0 | 0 | 0 | 0 | |
| 1273 K | 1.1020 | 0.6959 | 0.3028 | 0.3028 | 0 | 0 | 0 | 0 | |
| 1473 K | 1.1294 | 0.6614 | 0.2749 | 0.2749 | 0 | 0 | 0 | 0 |
Figure 10Influence of temperature on the 0 dynamic limit coefficients. (a) D; (b) D; (c) D; (d) D; (e) K; (f) K; (g) K; (h) K.
Zero dynamic limit coefficients of different kinds of gas.
| Temperature |
|
|
|
|
| ||||
|---|---|---|---|---|---|---|---|---|---|
| He | 293 K | 0.0416 | 0.0718 | 0.0157 | 0.0931 | 0.1262 | 0.0904 | 0.1092 | 0.0678 |
| 473 K | 0.0154 | 0.0261 | −0.0026 | 0.0500 | 0.1216 | 0.0486 | 0.0710 | 0.0475 | |
| 673 K | 0.0041 | 0.0104 | −0.0061 | 0.0288 | 0.1022 | 0.0266 | 0.0414 | 0.0285 | |
| 873 K | 0.0006 | 0.0050 | −0.0058 | 0.0188 | 0.0833 | 0.0169 | 0.0250 | 0.0174 | |
| 1073 K | −0.0005 | 0.0027 | −0.0049 | 0.0133 | 0.0683 | 0.0122 | 0.0160 | 0.0112 | |
| 1273 K | −0.0007 | 0.0016 | −0.0042 | 0.0100 | 0.0568 | 0.0094 | 0.0107 | 0.0075 | |
| 1473 K | −0.0007 | 0.0010 | −0.0036 | 0.0078 | 0.0481 | 0.0077 | 0.0075 | 0.0053 | |
| CO2 | 293 K | 0.1043 | 0.2603 | 0.0970 | 0.2073 | 0.0873 | 0.1524 | 0.1299 | 0.0600 |
| 473 K | 0.0814 | 0.1754 | 0.0612 | 0.1628 | 0.1055 | 0.1363 | 0.1311 | 0.0697 | |
| 673 K | 0.0591 | 0.1115 | 0.0333 | 0.1228 | 0.1194 | 0.1131 | 0.1228 | 0.0718 | |
| 873 K | 0.0420 | 0.0726 | 0.0160 | 0.0937 | 0.1261 | 0.0909 | 0.1096 | 0.0679 | |
| 1073 K | 0.0296 | 0.0486 | 0.0059 | 0.0732 | 0.1274 | 0.0722 | 0.0949 | 0.0610 | |
| 1273 K | 0.0205 | 0.0336 | 0.0000 | 0.0583 | 0.1249 | 0.0573 | 0.0806 | 0.0531 | |
| 1473 K | 0.0139 | 0.0239 | −0.0033 | 0.0474 | 0.1202 | 0.0460 | 0.0679 | 0.0455 | |
| N2 | 293 K | 0.0920 | 0.2123 | 0.0770 | 0.1831 | 0.0974 | 0.1449 | 0.1317 | 0.0660 |
| 473 K | 0.0668 | 0.1317 | 0.0422 | 0.1363 | 0.1151 | 0.1218 | 0.1267 | 0.0719 | |
| 673 K | 0.0451 | 0.0791 | 0.0189 | 0.0989 | 0.1252 | 0.0952 | 0.1125 | 0.0690 | |
| 873 K | 0.0300 | 0.0493 | 0.0062 | 0.0738 | 0.1275 | 0.0728 | 0.0954 | 0.0613 | |
| 1073 K | 0.0193 | 0.0317 | −0.0007 | 0.0563 | 0.1243 | 0.0552 | 0.0783 | 0.0518 | |
| 1273 K | 0.0120 | 0.0212 | −0.0040 | 0.0441 | 0.1181 | 0.0425 | 0.0636 | 0.0429 | |
| 1473 K | 0.0073 | 0.0147 | −0.0056 | 0.0354 | 0.1106 | 0.0334 | 0.0516 | 0.0352 |