IP Library Granted Patent US 9,534,692
Granted Patent B2
US 9,534,692 · App. 15/030,254 · Granted Jan 3, 2017

3 directional rotary seal for fluid handling machines

Inventor: Das Ajee Kamath (Pune, IN)
F16J15/3404F16J15/342F16J15/3452F04C15/0038F04C27/009
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Quick Facts
Patent No.
US 9,534,692
App. No.
15/030,254
Granted
Jan 3, 2017
Kind
B2
Abstract

A rotary seal ( 10 ) for a fluid handling machine comprising first circular body ( 12 ) with circumferential surface ( 28 ) and second circular body ( 16 ) with similar surface ( 27 ), such that the bodies when coaxially assembled, the circumferential surface ( 28 ) and similar surface ( 27 ) mate with each other forming a sealing surface contact. An internal end face ( 33 ) of rotary seal ( 10 ) is exposed to fluids with an inclination, such that the fluid pressure on internal end face ( 33 ) adds to contact force at sealing contact surface. The first circular body ( 12 ) is continuous and second circular body ( 16 ) with a split ( 17 ) has a spring characteristic such that two ends formed by the split ( 17 ), force away from each other, hence exerting a radial force on circumferential surface when assembled with first circular body ( 12 ) and compensating for circumferential wear during operation. The second circular body ( 16 ) exerts combination of axial, radial and tangential forces on circumferential surface ( 28 ) which results in force closure at sealing surface contact.

Claims (11)

1. A rotary seal ( 10 ) for a fluid handling machine comprising:

a first circular body ( 12 ) with a circumferential surface ( 28 ) that has an inclination to the central axis of said first circular body ( 12 ) and a second circular body ( 16 ) with a similar surface ( 27 ) that is inclined to the central axis of said second circular body ( 16 ) such that said second circular body ( 16 ) when assembled with said first circular body ( 12 ) coaxially, said circumferential surface ( 28 ) and said similar surface ( 27 ) mate with each other forming a sealing surface contact, wherein said first circular body ( 12 ) and said second circular body ( 16 ) is mounted on said fluid handling machine that constitute a rotor part ( 30 ) and a stator part ( 36 ), such that an internal end face ( 33 ) of said rotary seal ( 10 ) when assembled on fluid handling machine is exposed to fluids handled by said fluid handling machine, wherein said inclination is such that the fluid pressure on said internal end face ( 33 ) adds to the contact force at said sealing contact surface,

wherein said first circular body ( 12 ) is continuous and said second circular body ( 16 ) has a split ( 17 ) and said second circular body ( 16 ) has a spring characteristic such that the two ends formed by the split ( 17 ), force away from each other, hence exerting a radial force on said circumferential surface when assembled with said first circular body ( 12 ) and compensating for circumferential wear during operation, wherein said second circular body ( 16 ), includes an inclined surface ( 29 ) that results in exerting an axial force on said rotor part ( 30 ) of said fluid handling machine on which said second circular body ( 16 ) is mounted on, by an external spring ( 32 ) on an external end face ( 31 ), wherein said second circular body ( 16 ) exerts a combination of axial, radial and tangential forces on said circumferential surface ( 28 ) which results in the force closure at said sealing surface contact, such that said rotary seal ( 10 ) does not require complete shrouding of said internal end face ( 33 ) and the edge of said sealing surface contact, from fluid within the casing during operation.

2. The rotary seal as claimed in claim 1 , wherein said second circular body ( 16 ) has a lip ( 14 ) such that said spring characteristics imparts said lip ( 14 ) a tendency to flare outward wherein said lip ( 14 ) exerts a radial force on said circumferential surface ( 28 ) and compensates for wear along axial directions.

3. The rotary seal as claimed in claim 1 , wherein the rotor part ( 30 ) is fitted with a rotor body element that segregates the volume between said rotor part ( 30 ) shrouds said split ( 17 ), thus avoiding exposure of the split ( 17 ) from working fluid in fluid spaces and provides the rotor body elements as a point of its fixation for said spacer ( 24 ) on the rotor such that said second circular body ( 16 ) is imparted with torsion from the rotor part ( 30 ) for rotating said second circular body ( 16 ) along with rotor part ( 30 ).

4. The rotary seal as claimed in claim 1 , wherein said first circular body ( 12 ) and said second circular body ( 16 ) have said lip ( 14 ) that exerts contact pressure at the said sealing surface contact, wherein said first circular body ( 12 ) and said second circular body ( 16 ) includes said inclined surface ( 29 ) such that said inclination is such that the force by fluid pressure on said internal end face ( 33 ) adds to the force at said sealing surface contact.

5. The rotary seal as claimed in claim 1 , wherein the split ( 17 ) is fitted with a spacer ( 24 ) with a pair of legs with springiness that forms a second sealing contact surface with the two ends of said split ( 17 ) to block any leakage and to exert an additional parting force on the two ends of said split ( 17 ).

6. The rotary seal as claimed in claim 5 , wherein said spacer ( 24 ) is inclined in at least in any one of axial and radial directions.

7. The rotary seal as claimed in claim 1 , wherein said second circular body ( 16 ) comprises at least a manifold ( 23 ) for supply of lubricating oil through at least an oil hole ( 25 ) to a void ( 22 ) to supply oil through at least a groove ( 26 ) with distribution channel for the lubricant supply at said sealing surface contact between said first circular body ( 12 ) and said second circular body ( 16 ) such that the lubricating oil also acts as a coolant for cooling of said rotary seal ( 10 ).

8. The rotary seal as claimed in claim 7 , wherein said first circular body ( 12 ) and said second circular body ( 16 ) has at least a manifold ( 23 ) for supply of lubricating oil through at least an oil hole ( 25 ) to said void ( 22 ) to supply oil through at least a groove ( 26 ) with distribution channel for lubricant supply at said sealing surface contact between said first circular body ( 12 ) and said second circular body ( 16 ) such that the lubricating oil also acts as a coolant for cooling of said rotary seal ( 10 ).

9. The rotary seal as claimed in claim 8 , wherein at least one of said manifold ( 23 ) and said oil hole ( 25 ) is used for lubricating and at least one of said manifold ( 23 ) and said oil hole ( 25 ) is used for cooling.

Priority Claims (1)
IN 3249/MUM/2013 · Oct 16, 2013 · national
Continuity (1)
Related Publication 20160265666A1 · Sep 15, 2016