Affiliation:
1. School of Mechatronic Engineering, Southwest Petroleum University, Chengdu 610500, China
Abstract
The existing seal is not designed with a special sand retaining structure, and it is difficult to discharge the mud particles after entering, resulting in serious wear of the seal and premature failure. Therefore, a special-shaped sealing structure for sand blocking of roller cone bits is proposed to solve the problem of sealing wear. Starting from the structural principle, the structural parameters of the special-shaped seal of the sand-retaining flap are designed based on the O-ring, and the sealing principle is analyzed, the formula of grease leakage is derived, and the simulation and optimization analysis are completed with the aid of APDL. This proved the feasibility of the design. The influence law of structural parameters on contact pressure and leakage is obtained, and the formula of leakage is verified; The influence of structural parameters on the contact gap of the sand flap is obtained. Under the condition of optimal combination of structural parameters, the grease leakage is 43 mg/h, a decrease of 85%. Theoretically, it takes 580 h to exhaust the grease, and the contact gap of the sand flap is 0.00019479 mm, a decrease of 95%, which can greatly reduce the wear of the main seal. This study opens up a new idea for seal design.
Subject
Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science
Reference29 articles.
1. Study on the sealing performance of a new type of high temperature resistant rubber for roller bit;Zeng;Southwest Pet. Univ.,2019
2. Study on Sealing Performance of W Type Structure of Cone Bit;Liu;Petro Chem. Equip.,2018
3. Day, J., Yu, J., and Baker, R. (2010, January 18–20). Innovative Bearing and Seal Package Improves Rollercone Bit Performance and Reliability. Proceedings of the SPE Asia Pacific Oil and Gas Conference and Exhibition, Brisbane, QC, Australia.
4. Orazzini, S., Kasirin, R., Ferrari, G., Bertini, A., Bizzocchi, I., Ford, R., Li, Q., and Zhang, M. (2012, January 6–8). New HT/HP Technology for Geothermal Application Significantly Increases On-Bottom Drilling Hours. Proceedings of the IADC/SPE Drilling Conference and Exhibition, San Diego, CA, USA.
5. Thermo-elastic hydrodynamic lubrication model of hydraulic rod O-ring seals under mixed lubrication;Wang;Tribol. Int.,2019