Sealing of Dry Particles with Grease-Filled Non-Contacting Sealing Systems
Abstract
:1. Introduction
2. State of the Art
2.1. Design Examples of Grease-Filled Labyrinth Sealing Systems
2.2. Grease-Filled Labyrinth Sealing System to Seal against Particles
3. Relubrication of the Sealing System
3.1. Preliminary Experiment
- The offset is caused by a low shaft speed. The torque increases almost linearly with increasing shaft speeds of up to 1000 rpm. The torque is caused by the friction of the bearing. In addition, the grease is displaced by the bearing and gets into the gaps of the sealing system with increasing speed, where it is sheared.
- Between 1000 rpm and 1700 rpm, the friction torque appears not to depend on the shaft speed. This is because the grease is nearly completely displaced by the bearing. There is no new grease getting into the gaps. In addition, some gaps begin to open.
- At more than 1700 rpm, the friction torque decreases with increasing shaft speed. This is caused by the opening gaps.
- At more than about 2000 rpm, the friction torque increases slowly with increasing shaft speed. It corresponds to the friction torque of a bearing that is lubricated with a minimal amount of grease. It follows that all gaps are open, and there is no sheared grease left in the gaps.
3.2. Test Procedure
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- Fresh grease;
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- Aged grease;
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- Grease polluted with particles.
3.3. Results of Relubricating Experiments
3.4. Reduction of Complexity of the Sealing System
4. Functional Tests with the Optimized Sealing System
4.1. Test Procedure and Evaluation Method
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- Grease distribution run to ensure a opened gap; shaft speed is n = 500 rpm;
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- Contamination of the sealing system by spraying particles directly on entrance area of the sealing system normally for 10 min (other duration are given in the figures); shaft speed normally is n = 500 rpm;
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- Relubrication of the sealing system with m = 14 g, duration is t = 120 s.
4.2. Experiments with Constant Pollution
4.3. Pollution of the Grease at Different Positions
4.4. Experiments with Relubricating
4.5. Defining Two Functional Areas of the Sealing System
5. Conclusions
Author Contributions
Conflicts of Interest
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Bosch, F.; Haas, W. Sealing of Dry Particles with Grease-Filled Non-Contacting Sealing Systems. Lubricants 2017, 5, 38. https://doi.org/10.3390/lubricants5040038
Bosch F, Haas W. Sealing of Dry Particles with Grease-Filled Non-Contacting Sealing Systems. Lubricants. 2017; 5(4):38. https://doi.org/10.3390/lubricants5040038
Chicago/Turabian StyleBosch, Florian, and Werner Haas. 2017. "Sealing of Dry Particles with Grease-Filled Non-Contacting Sealing Systems" Lubricants 5, no. 4: 38. https://doi.org/10.3390/lubricants5040038
APA StyleBosch, F., & Haas, W. (2017). Sealing of Dry Particles with Grease-Filled Non-Contacting Sealing Systems. Lubricants, 5(4), 38. https://doi.org/10.3390/lubricants5040038