Face seal assembly for machine system having metallic sealing ring with stiffness relief groove to compensate for out-of-plane sealing face
US-10746304-B2 · Aug 18, 2020 · US
US9574666B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9574666-B2 |
| Application number | US-201414162061-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 23, 2014 |
| Priority date | Jan 23, 2013 |
| Publication date | Feb 21, 2017 |
| Grant date | Feb 21, 2017 |
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An improved mechanical face seal is provided which includes a pair of relatively rotatable seal rings having opposing seal faces. At least one of the seal faces includes a reverse trapezoidal face pattern having a sine wave depth profile wherein individual face features are circumferentially spaced over the seal face. The reverse trapezoidal face pattern serves to generate a hydrodynamic lift which provides a stable separation of the seal faces that permits formation of a fluid film between the seal faces. The individual trapezoidal grooves have a sinusoidal or similarly shaped depth profile wherein the trapezoid shape is arranged with the narrower edge communicating with the high pressure side of the seal, and the wider edge forms a circumferential dam region towards the low pressure side of the seal. Alternatively, the reverse trapezoidal face pattern may also be provided as a primary face pattern on a dry gas seal in combination with a secondary face pattern wherein the faces operate with a controlled gap under normal pressure conditions as well as when the pressure direction across the seal face is reversed.
Opening claim text (preview).
We claim: 1. A mechanical seal ring having a hydrodynamic face pattern, said face pattern comprising: a reverse trapezoidal face pattern comprising at least one hydrodynamic lift groove recessed in a seal face of said seal ring to generate a fluid film over said seal face, each said groove being defined by outer side edges extending radially, and by narrower and wider circumferential edges extending circumferentially between said side edges wherein said wider circumferential edge intersects with said side edges to define circumferentially spaced corner areas of said groove, said narrower circumferential edge being located at one of inner and outer ring diameters of said seal ring to receive higher pressure fluid therein, and said wider circumferential edge being spaced radially from the other of said inner and outer ring diameters, said groove having a sine wave depth profile extending circumferentially between said side edges with a deepest depth being provided in a central region of said groove and shallowest depths being disposed along said side edges, said depth profile defining a variable depth amplitude which varies radially and circumferentially such that said depth profile is circumferentially narrowest at said narrower circumferential edge and circumferentially widens away from said wider circumferential edge so that said depth profile has a maximum circumferential width spaced radially away from said narrower circumferential edge and extending into said corner areas, said depth profile being progressively shallower radially from said narrower circumferential edge toward said wider circumferential edge and wherein a deepest depth amplitude is defined in a central contour located centrally in said central region of said groove at said narrower circumferential edge, and said depth profile varies across progressively shallower contours with said shallowest depth being defined along said side edges circumferentially spaced from said central contour and within said corner areas. 2. The seal ring according to claim 1 , wherein said narrow circumferential edge opens radially from said one of said inner and outer ring diameters. 3. The seal ring according to claim 2 , wherein said wider circumferential edge is spaced radially from said other of said inner and outer ring diameters to form a circumferential dam region on said seal face. 4. The seal ring according to claim 3 wherein said dam region is defined by an annular portion of said seal face which is located radially between said other of said inner and outer ring diameters and said wider circumferential groove edge. 5. The seal ring according to claim 1 , wherein said contours allow high pressure fluid to hydrodynamically flow radially into as well as circumferentially through said grooves during shaft rotation. 6. The seal ring according to claim 1 , wherein said groove is at said inner ring diameter. 7. The seal ring according to claim 1 , wherein said groove is at said outer ring diameter. 8. The seal ring according to claim 1 , wherein said side edges angle away from each other in opposite circumferential directions, and said reverse trapezoid shape is canted with one of said side edges being longer than the other of said side edges. 9. The seal ring according to claim 1 , wherein said depth profile is recessed into said seal face such that said shallowest depths disposed along said side edges and within said corner areas are greater than zero. 10. The seal ring according to claim 9 , wherein a step-like side face is defined along each of said side edges to recess said shallowest depths into said seal face, said depth profile deepening in directions extending circumferentially away from said side face along each said side edge. 11. The seal ring according to claim 10 , wherein said side face extends continuously along said side edges and along said wider circumferential edge, said depth profile deepening in a radial direction extending away from said wider circumferential edge. 12. The seal ring according to claim 1 , wherein said depth profile has said shallowest depths disposed along said side edges wherein said shallowest depths are substantially zero along said side edges so as to merge into said seal face and said depth profile deepening from said shallowest depth within said corner areas. 13. The seal ring according to claim 12 , wherein said shallowest depths are substantially zero at said side edges and a step-like side face is defined along said wider circumferential edge in a central edge portion disposed circumferentially between said side edges. 14. A mechanical seal ring having a hydrodynamic face pattern formed on seal face extending between first and second seal ring diameters, said face pattern comprising: a primary face pattern along said first ring diameter and a secondary face pattern along said second ring diameter, said primary face pattern being operable on a normally higher pressure side of said seal ring to create lift under normal operating conditions, said primary face pattern comprising a plurality of hydrodynamic primary grooves which are circumferentially spaced apart by lands, said primary grooves having one circumferential edge opening from said first ring diameter and extending radially to a primary groove edge which is spaced radially from said second ring diameter to define an annular dam region on said seal face; and said secondary face pattern being provided on said second ring diameter towards a normally lower pressure side of said seal face and being operable under reverse pressure conditions wherein said higher and lower pressures switch from one of said first and second ring diameters to the other to create lift under reversed pressure conditions where the normally lower pressure side reaches a higher pressure than the normally higher pressure side, said secondary face pattern comprising circumferentially separated secondary grooves formed as sinusoidal waves; and said primary grooves being formed with a reverse trapezoidal face pattern comprising a plurality of said primary grooves recessed in said seal face of said seal ring and having a reverse trapezoid shape to generate a fluid film over said seal face, said primary groove edge of each said primary groove being defined by side edges extending radially so as to angle away from each other in opposite circumferential directions, and by narrower and wider circumferential edges extending circumferentially between said side edges wherein said wider circumferential edge intersects with said side edges to define circumferentially spaced corner areas of said primary groove, said narrower circumferential edge being located at said first ring diameter of said seal ring to receive higher pressure fluid therein, and said wider circumferential edge being spaced radially from said second ring diameter, said primary groove having a sine wave depth profile extending circumferentially between said side edges with a deepest depth being provided in a central region of said primary groove at said narrower circumferential edge and shallowest depths being disposed along said side edges, said depth profile being progressively shallower radially from said narrower circumferential edge toward said wider circumferential edge, wherein said depth profile defines a variable depth amplitude which varies radially and circumferentially such that said depth profile is circumferentially narrowest at said narrower circumferential edge and circumferentially widens toward said wider circumferential edge so that said depth profile has a maximum circumferential width spaced radially away from said narrower circumferential edge and extending int
with cavities (F16J15/3424 takes precedence) · CPC title
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