Waterproof and explosion-proof circuit board and electronic valve actuator for flow control applications
US-2019363475-A1 · Nov 28, 2019 · US
US9989176B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9989176-B2 |
| Application number | US-201514733179-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 8, 2015 |
| Priority date | Jun 22, 2011 |
| Publication date | Jun 5, 2018 |
| Grant date | Jun 5, 2018 |
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A method of sealing an opening in a bulkhead with a fitting assembly having a tube, a mounting flange, a thermal shell, an adapter, a bushing, and a jam nut may include inserting the tube through the opening; placing the mounting flange against the bulkhead, the mounting flange attached to the thermal shell, the thermal shell attached to the tube, and the mounting flange attached to the adapter so that the adapter extends away from the mounting flange and from the thermal shell through the opening; forming an air pocket by spacing a portion of the thermal shell away from the tube; placing the bushing on the adapter; and tightening the jam nut on the adapter to sandwich the bulkhead between the mounting flange and the bushing to form a seal between the mounting flange and the bushing to seal the opening.
Opening claim text (preview).
What is claimed is: 1. A method of sealing an opening in a bulkhead with a fitting assembly having a tube, a mounting flange, a thermal shell, a plurality of mounting studs extending away from the mounting flange, a plurality of bushings, and a plurality of nuts, the method comprising: inserting the tube through the opening; placing the mounting flange against the bulkhead, the mounting flange attached to the thermal shell, the thermal shell attached to the tube, and the plurality of mounting studs attached to the mounting flange to extend away from the mounting flange shell through the bulkhead; forming an air pocket by spacing a portion of the thermal shell away from the tube; placing the plurality of bushings on the plurality of mounting studs such that the plurality of bushings completes a current path from the tube to the mounting flange, from the mounting flange to the plurality of bushings, and from the plurality of bushings to the bulkhead; and tightening the plurality of nuts on the plurality of mounting studs to sandwich the bulkhead between the mounting flange and the plurality of bushings to form a seal between the mounting flange and the plurality of bushings to seal the opening. 2. The method of claim 1 , wherein forming the air pocket includes connecting a shoulder of the thermal shell to the tube, the shoulder being substantially perpendicular to the tube. 3. The method of claim 2 , wherein connecting a shoulder of the thermal shell to the tube includes forming a perimeter shoulder extending radially outward from the tube, the perimeter shoulder forming a first part of the thermal shell. 4. The method of claim 3 , further comprising joining the mounting flange and the tube by a perimeter weld between the perimeter shoulder of the tube and the cylindrical shell. 5. The method of claim 1 , wherein placing the mounting flange against the bulkhead includes receiving the tube through a central opening in the mounting flange. 6. The method of claim 5 , wherein placing the mounting flange against the bulkhead includes attaching the mounting flange to the cylindrical shell so that the cylindrical shell extends axially away from the central opening. 7. The method of claim 1 , further comprising placing an O-ring between the mounting flange and the bulkhead to form a seal therebetween. 8. The method of claim 1 , further comprising providing a thin-walled dielectric layer between the mounting flange and the bulkhead to electrically isolate the bulkhead from the mounting flange. 9. The method of claim 1 , further comprising fabricating the thermal shell from a material selected from a titanium alloy and a corrosion-resistant steel alloy. 10. The method of claim 1 , further comprising providing a fillet seal around a perimeter of the mounting flange. 11. The method of claim 1 , further comprising forming the fitting assembly as a continuous metal part. 12. The method of claim 1 , further comprising forming the fitting assembly from a metal selected from a titanium alloy and a corrosion-resistant steel alloy. 13. The method of claim 1 , further comprising placing an O-ring about the perimeter of the mounting flange between the mounting flange and the bulkhead. 14. The method of claim 13 , further comprising placing a plurality of separate O-rings about the peripheries of each of the mounting studs between the mounting flange and the bulkhead. 15. The method of claim 1 , further comprising making the tube, the mounting flange, the thermal shell, and the plurality of mounting studs as a single-piece welded metal part. 16. The method of claim 1 , wherein inserting the tube through the opening includes inserting the tube through the opening such that the mounting flange is on a wet side of the bulkhead, and the tube extends through the opening to a dry side of the bulkhead. 17. The method of claim 1 , further comprising insulating the mounting flange from the bulkhead to prevent sparking from the mounting flange to the bulkhead. 18. The method of claim 17 , wherein insulating the mounting flange from the bulkhead includes placing a thin-walled dielectric layer between the mounting flange and the bulkhead that encompasses a full mounting surface between the mounting flange and the bulkhead. 19. A method of sealing an opening in a bulkhead of a tank, the bulkhead having a wet side and a dry side, with a fitting assembly, the method comprising: inserting a tube of the fitting assembly through the opening; placing a mounting flange of the fitting assembly against the bulkhead, the mounting flange attached to a thermal shell, the thermal shell attached to the tube, and the fitting assembly including a plurality of mounting studs attached to the mounting flange to extend away from the mounting flange shell through the bulkhead; forming an air pocket by spacing a portion of the thermal shell away from the tube; placing the plurality of bushings on the plurality of mounting studs such that the plurality of bushings completes a current path from the tube to the mounting flange, from the mounting flange to the plurality of bushings, and from the plurality of bushings to the bulkhead; and tightening a plurality of nuts on the plurality of mounting studs to sandwich the bulkhead between the mounting flange and the plurality of bushings to form a seal between the mounting flange and the plurality of bushings to seal the opening. 20. A method of making a fitting assembly for sealing an opening in a bulkhead, the method comprising: attaching a tube to a thermal shell to form an air pocket by spacing a portion of the thermal shell away from the tube; attaching the thermal shell to a mounting flange having a plurality of mounting studs, wherein the tube is shaped to be inserted through the opening in the bulkhead, the mounting flange is shaped to be placed against the bulkhead, and the mounting studs are positioned to extend through the bulkhead; placing a plurality of bushings on the plurality of mounting studs such that the plurality of bushings completes a current path from the tube to the mounting flange, from the mounting flange to the plurality of bushings, and from the plurality of bushings to the bulkhead; and securing the plurality of bushings on the mounting studs by tightening a plurality of nuts on the plurality of mounting studs, the bushings shaped to sandwich the bulkhead between the mounting flange and the plurality of bushings to form a seal between the mounting flange and the plurality of bushings to seal the opening.
by means of axial screws compressing a ring or sleeve · CPC title
by means of a swivel nut compressing a ring or sleeve · CPC title
characterised by the tensioning members, e.g. specially adapted bolts or C-clamps · CPC title
the flanges being held against a shoulder · CPC title
against fire or other external sources of extreme heat · CPC title
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