Mechanical face seal
US-2016369896-A1 · Dec 22, 2016 · US
US10876633B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10876633-B2 |
| Application number | US-201716313853-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 24, 2017 |
| Priority date | Jul 1, 2016 |
| Publication date | Dec 29, 2020 |
| Grant date | Dec 29, 2020 |
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Official abstract text for this publication.
An end surface-contact mechanical seal providing a shielding seal between a liquid area (A) and an atmospheric area (B) by a relative rotation, while in a contact state, of opposing end surfaces ( 4 a , 6 a ) of a case-side sealing ring ( 4 ), which is fixed to a seal case, and a ceramic shaft-side sealing ring ( 6 ), which is held on the sleeve ( 22 ) of a rotary shaft ( 2 ). A rubber O-ring ( 5 ) is installed between a sealing ring-side seal surface ( 63 a ), which is formed on the inner peripheral surface of the shaft-side sealing ring ( 6 ), and a shaft-side seal surface ( 22 c ), which is formed on the outer peripheral surface of the sleeve ( 22 ), so as to be relatively movable in the axial direction while sealing the surfaces. A diamond film ( 14 a ) is formed over the entire surface of the sealing ring-side seal surface ( 63 a ).
Opening claim text (preview).
The invention claimed is: 1. A mechanical seal, comprising: a case-side sealing ring fixed to a seal case, the case-side sealing ring including a case-side sealing ring seal end surface; and a shaft-side sealing ring held on a rotary shaft via an annular packing made of an elastic material, the shaft-side sealing ring being movable in an axial direction of the rotary shaft, and the shaft-side sealing ring including a shaft-side sealing ring seal end surface; wherein: the case-side sealing ring and the shaft-side sealing ring are configured to be rotated relative to each other while the case-side sealing ring seal end surface and the shaft-side sealing ring seal end surface are in contact, thereby forming a shield seal between a liquid area and a gas area, wherein the liquid area is one of an inner peripheral area and an outer peripheral area of the case-side sealing ring seal end surface and the shaft-side sealing ring seal end surface, and the gas area is a different one of the inner peripheral area and the outer peripheral area of the case-side sealing ring seal end surface and the shaft-side sealing ring seal end surface, the gas area different than the liquid area; the shaft-side sealing ring is formed from a ceramic or cemented carbide; the shaft-side sealing ring seal end surface is formed at a distal end part thereof, and an inner peripheral part of the shaft-side sealing ring has a sealing ring-side seal surface which is concentric and parallel to a shaft-side seal surface which is an outer peripheral surface of the rotary shaft; the annular packing is provided between the sealing ring-side seal surface and the shaft-side seal surface so as to be relatively movable in the axial direction in such state that a space between the sealing ring-side seal surface and the shaft-side seal surface is sealed; and a diamond film is formed on the sealing ring-side seal surface. 2. The mechanical seal according to claim 1 , wherein a diamond film contiguous with the diamond film formed on the sealing ring-side seal surface is formed on a surface portion of the shaft-side sealing ring excluding the shaft-side sealing ring seal end surface, the surface portion being a portion that is in contact with a liquid of the liquid area. 3. The mechanical seal according to claim 1 , wherein: the shaft-side sealing ring is formed on the inner peripheral part thereof with a latching surface which is an annular surface perpendicular to the sealing ring-side seal surface of the shaft-side sealing ring and is not in contact with the shaft-side seal surface, the latching surface configured to prevent protrusion of the annular packing toward the inner peripheral area from between the sealing ring-side seal surface and the shaft-side seal surface due to a pressure of the outer peripheral area when the outer peripheral area of the shaft-side sealing ring seal end surface and the case-side sealing ring seal end surface is higher in pressure than the inner peripheral area thereof; and a diamond film contiguous with the diamond film formed on the sealing ring-side seal surface is formed on the latching surface. 4. The mechanical seal according to claim 3 , wherein between the latching surface and the annular packing, a plastic backup ring is fitted to the shaft-side seal surface in such a state that a relative movement thereof is possible in the axial direction. 5. The mechanical seal according to claim 1 , wherein the case-side sealing ring is comprised of a stationary ring, which is fixed to the seal case, and a floating ring, which is linked to the stationary ring in such a state that a relative rotation with the stationary ring is prevented, and which is provided between the stationary ring and the shaft-side sealing ring. 6. The mechanical seal according to claim 1 , wherein the annular packing is a rubber O-ring. 7. The mechanical seal according to claim 1 , wherein the diamond film has a thickness of at least 1 μm.
with slip-ring pressed against a more or less radial face on one member · CPC title
with non-metallic packing · CPC title
and characterised by parts or details relating to lubrication, cooling or venting of the seal · CPC title
using sealing-rings · CPC title
with metal reinforcement or covering · CPC title
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