Plain bearing and/or systems incorporating such bearings
US-2016333926-A1 · Nov 17, 2016 · US
US10844962B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10844962-B2 |
| Application number | US-201615145514-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 3, 2016 |
| Priority date | Oct 7, 2015 |
| Publication date | Nov 24, 2020 |
| Grant date | Nov 24, 2020 |
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Valve body insert apparatus and related methods are described. An example valve includes a valve body made of a first material and having a fluid flow passageway and a first shaft bore. The fluid flow passageway defines a first axis and the first shaft bore defines a second axis that is substantially non-parallel relative to the first axis of the fluid flow passageway. A first insert is positioned in the first shaft bore. The first insert is made of a second material different than the first material such that the second material has a higher corrosion resistance characteristic than the first material.
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What is claimed is: 1. A rotary valve comprising: a valve body having a fluid flow passageway and a first shaft bore, the fluid flow passageway defining a first axis and the first shaft bore defining a second axis that is substantially non-parallel relative to the first axis of the fluid flow passageway, the valve body defining a first shoulder located in the first shaft bore between a first end of the first shaft bore and a second end of the first shaft bore opposite the first end; a first insert positioned in the first shaft bore, the first insert having an outer surface defining an outer step located between a first edge of the first insert and a second edge of the first insert opposite the first edge, the outer step to engage the first shoulder of the first shaft bore to locate the first insert in the first shaft bore at a desired location, the first edge being recessed relative to the first end of the first shaft bore and the second edge to at least partially extend in the fluid flow passageway beyond the second end of the first shaft bore opposite the first end, the first insert to engage an inner surface of the first shaft bore at an interface between the first shaft bore and the fluid flow passageway, the first insert to protect the inner surface of the first shaft bore from corrosion; a first cladding material applied to wetted surfaces of the fluid flow passageway, the first cladding material to at least partially encase the second edge of the first insert; and a second cladding material applied adjacent the first end of the first shaft bore, the second cladding material to at least partially encase the first edge of the first insert such that the first insert is positioned between the first cladding material and the second cladding material. 2. The rotary valve as defined in claim 1 , wherein the first insert has a cylindrical body defining an inner surface and an outer surface. 3. The rotary valve as defined in claim 2 , wherein the first insert includes a longitudinal bore extending through an entire length of the cylindrical body defining a first opening to receive a drive shaft of the rotary valve. 4. The rotary valve as defined in claim 3 , wherein the first insert includes an integral packing ring box. 5. The rotary valve as defined in claim 1 , further comprising a second shaft bore coaxially aligned with the first shaft bore, the first shaft bore and the second shaft bore defining the second axis. 6. The rotary valve as defined in claim 5 , further comprising a second insert positioned within the second shaft bore. 7. A rotary valve comprising: a valve body having a fluid flow passageway and a first shaft bore, the fluid flow passageway defining a first axis and the first shaft bore defining a second axis that is substantially non-parallel relative to the first axis of the fluid flow passageway; a first insert positioned in the first shaft bore, the first insert having a first edge recessed relative to a first end of the first shaft bore and a second edge to at least partially extend in the fluid flow passageway beyond a second end of the first shaft bore opposite the first end, the first insert having a cylindrical body defining an inner surface and an outer surface and a longitudinal bore extending through an entire length of the cylindrical body defining a first opening to receive a drive shaft of the valve, the first insert including a counterbore defining a second opening to receive a bushing, the second opening coaxially aligned with the first opening, the first insert to engage an inner surface of the first shaft bore at an interface between the first shaft bore and the fluid flow passageway, the first insert to protect the inner surface of the first shaft bore from corrosion; a first cladding material applied to wetted surfaces of the fluid flow passageway, the first cladding material to at least partially encase the second edge of the first insert; and a second cladding material applied adjacent the first end of the first shaft bore, the second cladding material to at least partially encase the first edge of the first insert such that the first insert is positioned between the first cladding material and the second cladding material. 8. The rotary valve as defined in claim 7 , wherein the second opening has a diameter that is greater than a diameter of the first opening. 9. The rotary valve as defined in claim 7 , wherein the first insert includes a cavity to receive a packing assembly, the cavity coaxially aligned with the first opening. 10. The rotary valve as defined in claim 9 , wherein the cavity has a diameter that is greater than a diameter of the first opening. 11. A rotary valve assembly comprising: a valve body defining a fluid flow passageway between an inlet and an outlet, the valve body having a drive shaft bore formed on a drive side portion of the valve body; a first insert positioned in the drive shaft bore and coupled to the valve body to line an inner surface of the drive shaft bore leading to the fluid flow passageway, wherein the first insert is configured to protect the inner surface of the drive shaft bore from corrosion or erosion, the first insert including: a first counterbore to receive a first bushing, the first counterbore defining a first inner wall to restrict movement of the first bushing; and a stepped outer wall formed on an outer surface of the first insert, the stepped outer wall to be positioned in the drive shaft bore and to engage the valve body to position the first insert in the drive shaft bore; and a cladding material provided in the fluid flow passageway, the cladding material to at least partially encase the first insert and the first bushing, the cladding material to encase wetted surfaces of the fluid flow passageway between the inlet and the outlet, wherein the cladding material is not applied to an inner surface of the drive shaft bore that is lined by the first insert. 12. The rotary valve assembly of claim 11 , wherein the first insert includes a second counterbore to define a cavity that receives a packing assembly. 13. The rotary valve assembly of claim 11 , wherein the stepped outer wall is formed adjacent a midpoint of a longitudinal length of the first insert. 14. The apparatus of claim 11 , wherein at least a portion of the first bushing extends into the fluid flow passageway and is exposed to fluid. 15. The rotary valve assembly of claim 11 , further comprising a follower shaft bore formed in a follower side portion of the valve body. 16. The rotary valve assembly of claim 15 , further comprising a second insert positioned in the follower shaft bore, the second insert having a second counterbore to receive a second bushing, the second counterbore defining a second inner wall to restrict movement of the second bushing. 17. The rotary valve assembly of claim 16 , wherein the cladding material is to at least partially encase the second insert and the second bushing. 18. An apparatus comprising: a valve body made of a first material having a low corrosion or erosion resistant characteristic, the valve body defining a fluid flow passageway and a first shaft bore; a first sleeve positionable in the first shaft bore to line a first inner surface of the first shaft bore to protect the first inner surface of the first shaft bore from corrosion or erosion, the first sleeve made of a second material different than the first material, the second material having a higher corrosion or erosion resistance characteristic than the first material, the first sleeve having a cylindrical body
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