METHOD OF MANUFACTURING ROTOR OF SCREW-DOWNHOLE MOTOR
technique of construction of wells, particularly, rotors of screw downhole motors for drilling of oil and gas wells; applicable in production of oil and gas. SUBSTANCE: method includes shaping of profile of spiral tooth o produce intermediate profile of teeth in end face section in accordance with e...
Gespeichert in:
Hauptverfasser: | , , , , |
---|---|
Format: | Patent |
Sprache: | eng ; rus |
Schlagworte: | |
Online-Zugang: | Volltext bestellen |
Tags: |
Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
|
Zusammenfassung: | technique of construction of wells, particularly, rotors of screw downhole motors for drilling of oil and gas wells; applicable in production of oil and gas. SUBSTANCE: method includes shaping of profile of spiral tooth o produce intermediate profile of teeth in end face section in accordance with expressions xo=x-lambda Sin v and yo=y-lambda Cos v, where x, y are coordinates of nominal profile of rotor; v is an angle of inclination of tangent to nominal profile of rotor; lambda is deviation of rotor profile from nominal over perpendicular to it which is increased from tooth space to cog of rotor spiral tooth; application of wear-resistant coating to obtain nominal profile. Deviation lambda of rotor profile from nominal over perpendicular to it is calculated by formula lambda= (0,5(lambdaa+lambdaf))(1+coszdelta)-lambdaf+(lambdas-0,5(lambdaa+lambdaf))sin2zdelta,, where delta is a polar angle of rotor nominal profile; z is a number of rotor teeth; lambdaa is thickness of wear-resistant coating at teeth points; lambdaf is thickness of wear-resistant coating in tooth spaces; lambdas is thickness of wear-resistant coating on sides of teeth at middle of their height. EFFECT: nominal profile by wear-resistant coating, higher accuracy in engagement, reduced leakage of drilling mud due to formation of corrected profile on rotor, and increased service life. 4 cl, 3 dwg |
---|