化工进展 ›› 2023, Vol. 42 ›› Issue (4): 1688-1697.DOI: 10.16085/j.issn.1000-6613.2022-1066
马润梅1(), 杨海超1, 李正大2, 李双喜1(), 赵祥1, 章国庆1
收稿日期:
2022-06-08
修回日期:
2022-08-30
出版日期:
2023-04-25
发布日期:
2023-05-08
通讯作者:
李双喜
作者简介:
马润梅(1968—),女,博士,副教授,研究方向为流体力学。E-mail:marm@mail.buct.edu.cn。
基金资助:
MA Runmei1(), YANG Haichao1, LI Zhengda2, LI Shuangxi1(), ZHAO Xiang1, ZHANG Guoqing1
Received:
2022-06-08
Revised:
2022-08-30
Online:
2023-04-25
Published:
2023-05-08
Contact:
LI Shuangxi
摘要:
为了揭示表面强化镀层有效改善高速轴承腔油润滑机械密封的耐磨性和稳定性机制,本文采用数值分析与试验相结合的方法,对端面镀Cr强化机械密封展开端面变形及摩擦磨损性能分析。通过热力耦合数值模拟分析了不同厚度Cr镀层摩擦副对端面温升、变形的影响,使用摩擦磨损试验机研究了相应摩擦副对摩擦系数和磨损量的影响,采用高速密封样机测试了端面温升、密封效果,探究了强化镀层密封端面摩擦磨损强化机理。结果表明:热力耦合作用下高速密封端面产生发散型变形,端面磨损以磨粒磨损为主,端面外侧出现局部黏着磨损;对比无镀层密封端面,Cr镀层端面变形小,温升低,更容易形成稳定的摩擦转移膜;适当增加Cr强化层厚度有利于降低端面温升,提高密封稳定性,高速轻载工况下较优镀层厚度约为0.15mm。本文研究结果可以为高速轴承腔油润滑机械密封材料选配和结构优化提供借鉴。
中图分类号:
马润梅, 杨海超, 李正大, 李双喜, 赵祥, 章国庆. 表面强化镀层对高速轴承腔密封端面变形及摩擦磨损影响分析[J]. 化工进展, 2023, 42(4): 1688-1697.
MA Runmei, YANG Haichao, LI Zhengda, LI Shuangxi, ZHAO Xiang, ZHANG Guoqing. Influence analysis of coating on deformation and frictional wear of mechanical seal end for high-speed bearing cavity[J]. Chemical Industry and Engineering Progress, 2023, 42(4): 1688-1697.
动静环材料 | 密度ρ/kg·m-3 | 比热容cp /J·kg-1·℃-1 | 肖氏硬度 | 抗压强度σbc/MPa | 线性热膨胀系数αt/℃-1 | 热导率K/W·m-1·℃-1 |
---|---|---|---|---|---|---|
MF-307石墨 | 1.94×103 | 690 | 75 | 196 | 5×10-5 | 120 |
38CrMoAlA | 7.85×103 | 475 | 90 | 830 | 12.3×10-6 | 44.5 |
Cr | 7.19×103 | 450 | 105 | 841 | 6.5×10-6 | 91.3 |
表1 动静环材料参数
动静环材料 | 密度ρ/kg·m-3 | 比热容cp /J·kg-1·℃-1 | 肖氏硬度 | 抗压强度σbc/MPa | 线性热膨胀系数αt/℃-1 | 热导率K/W·m-1·℃-1 |
---|---|---|---|---|---|---|
MF-307石墨 | 1.94×103 | 690 | 75 | 196 | 5×10-5 | 120 |
38CrMoAlA | 7.85×103 | 475 | 90 | 830 | 12.3×10-6 | 44.5 |
Cr | 7.19×103 | 450 | 105 | 841 | 6.5×10-6 | 91.3 |
介质材料 | 密度ρ/kg·m-3 | 比热容cp /J·kg-1·℃-1 | 介质热导率α/W·m-1·℃-1 | 运动黏度v/m2·s-1 | 普朗克系数Pr |
---|---|---|---|---|---|
空气 | 1.29 | 1.003 | 0.023 | 14.8×10-6 | 0.7 |
GPL104氟醚油 | 873 | 1.873 | 0.132 | 124.3×106 | 1532.4 |
表2 介质材料参数
介质材料 | 密度ρ/kg·m-3 | 比热容cp /J·kg-1·℃-1 | 介质热导率α/W·m-1·℃-1 | 运动黏度v/m2·s-1 | 普朗克系数Pr |
---|---|---|---|---|---|
空气 | 1.29 | 1.003 | 0.023 | 14.8×10-6 | 0.7 |
GPL104氟醚油 | 873 | 1.873 | 0.132 | 124.3×106 | 1532.4 |
编号 | 润滑方式 | 静环材料 | 动环材料 | 摩擦系数 |
---|---|---|---|---|
A1配对 | GPL104氟醚油 | MF-307石墨 | 38CrMoAlA | 0.14~0.19 |
A2配对 | GPL104氟醚油 | MF-307石墨 | 38CrMoAlA(Cr镀层厚度0.05mm) | 0.07~0.12 |
A3配对 | GPL104氟醚油 | MF-307石墨 | 38CrMoAlA(Cr镀层厚度0.15mm) | 0.05~0.11 |
表3 动静环配对方式与摩擦系数测量结果
编号 | 润滑方式 | 静环材料 | 动环材料 | 摩擦系数 |
---|---|---|---|---|
A1配对 | GPL104氟醚油 | MF-307石墨 | 38CrMoAlA | 0.14~0.19 |
A2配对 | GPL104氟醚油 | MF-307石墨 | 38CrMoAlA(Cr镀层厚度0.05mm) | 0.07~0.12 |
A3配对 | GPL104氟醚油 | MF-307石墨 | 38CrMoAlA(Cr镀层厚度0.15mm) | 0.05~0.11 |
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