FLUID PRESSURE VESSEL EMPLOYING FILTER BAGS
A flow through fluid pressure vessel of the type containing filter bags formed by a tubular shell, a one-piece cast bottom closure with an integral outlet port fitting welded to one end of the shell, a one-piece cast combination bulkhead and flange ring welded to the opposite end of the shell, a cast inlet fitting inserted through an aperture in the shell and connected to an inlet opening through the bulkhead and welded to the shell aperture. A cast closure/lid forms an inlet plenum with the bulkhead and is releasably sealed over the flange ring.
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The present disclosure relates to fluid pressure vessels of the type containing filter media such as bags for filtering flow of fluid such as water and aqueous solutions employed in systems in which pressurized fluid enters the vessel through an inlet, is filtered through the filtering media such as filter bags, and exits the pressure vessel through an outlet port connected to the fluid system. The pressure vessels of this type typically have a closure or lid which is, upon depressurization of the vessel, removable for access to the filter for cleaning or replacement of the filter media.
Heretofore, pressure vessels of the aforesaid type typically are fabricated of preformed components such as by a combination of cast pieces and sheet formed pieces which are assembled by weldment. This has resulted in a relatively costly arrangement due to the large amount of welding required to join the components in addition to the complexity of fixtures required for positioning the pieces for welding during assembly.
Thus, it has been desired to provide a way or means of fabricating a fluid pressure vessel employing removable filter media with a lid or closure which is readily removable for access to the filter media and which has a significantly reduced manufacturing cost and yet is capable of maintaining the vessel integrity for extended periods of time required in the fluid system applications for which the vessel is intended.
BRIEF DESCRIPTIONThe present disclosure describes a unique pressure vessel employing fluid filter media for filtering flow between the inlet port and the outlet port with a removable lid or closure for permitting access to the filter media such as filter bags. The vessel shell is constructed of a rolled sheet and welded to form a tubular shell with a one-piece cast closure and outlet port welded to one end of the tubular shell. A one-piece cast combination bulkhead and rim flange is welded to the opposite end of the tubular shell. A one-piece cast inlet port fitting is inserted through an aperture in the tubular shell and connects to a central aperture in the bulkhead and is welded to the bulkhead and shell. The inlet port fitting and the outlet port on the one-piece cast closure are each formed with an integral standard process connection, such as a circular flange for attachment to fluid pressure conduits for installation in a fluid system. A one-piece cast lid or closure is pivotally attached to the end of the tubular shell over the bulkhead and is releasably clamped thereon to permit opening of the lid for access to the interior of the vessel. The space between the bulkhead and lid forms an inlet plenum. The bulkhead has additional apertures therein through which are attached filter media, such as bags, which may be readily removed and replaced upon opening of the lid. The pressure vessel of the present disclosure thus is comprised of only four pieces secured by weldment on which the removable lid or closure is mounted thereby providing a relatively low cost, simplified construction of the pressure vessel. In one embodiment, the removable lid is clamped by circular clamp bars; and, in another embodiment, the flange is provided with pivotal attachment lugs for swing bolts and the lid has slotted lugs permitting the bolts to engage the lid lugs for securing the lid to the flange with ring nuts threaded onto the swing bolts.
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In the present practice, the tubular shell 14 may be formed from flat sheet stock and seam welded to provide the cylindrical tubular configuration illustrated in the drawings. The shell 14 may also be formed of corrosion resistant material such as stainless steel such as AISI type 304, although other materials may be used. The tubular shell 14 is formed with an aperture 28 through the side thereof for insertion of a fitting as will hereinafter be described.
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In the version 10, the lid 12 is cast of corrosion resistant material such as AISI type 304 stainless steel; however, other materials may be used. Lid 12 has a plurality of radially outwardly extending circumferentially spaced lugs 52 formed thereon integrally therewith into each of which is received a swing bolt 54 pivotally mounted on pins 56 provided in the lugs 36 formed on the flange 34. The swing bolts 54 are secured in the lugs 52 by ring nuts 66.
The shell 14 has attached thereto, such as by weldment, supporting brackets 58 which support a counter balance spring mechanism 60 which has a pivot pin 62 provided thereon. A pair of arms 64, 65 extend outwardly from and are formed integrally with the lid 12 and/or hinged on pin 62 for pivotal raising of the lid upon release of the swing bolts 54.
In practice, the closure member 16 has provided thereon disposed about the outer periphery thereof, in circumferentially spaced arrangement, a plurality of mounting lugs 68 which may be integrally cast with the member 16. Referring to
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Lid 122 has attached thereto in the central region thereof and extending vertically upwardly therefrom a pressure relief valve indicated generally at 142 as shown in
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The clamping bands 144, 146 each have a pair of clevis plates attached to the free ends thereof such as plates 158, 160 attached to clamping band 144 as shown in
Clevis pin 168 for clamp band 144 is threadedly engaged, in a direction transversely to its pivotal connection to the plates 158, 160, by a threaded hand wheel shaft 172. Upon clockwise rotation of the hand wheel 174, the clevis pins 168, 170 are drawn together closing the clamping bands 144, 146 over the tapered surfaces of the lid and the shelf flange thereby clamping the lid to the shell member 104 and effecting sealing of the lid about the flange by seal ring 156.
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The present disclosure describes a unique pressure vessel of the type containing filter media for flow through filtering of fluid in a fluid system such as hydraulic fluid in hydraulically operated equipment or machinery in which the vessel has a removable closure or lid for permitting access to the interior for replacement of the filter media. The pressure vessel of the present disclosure has a tubular shell with an annular flange formed on the upper end thereof which flange is cast as a one-piece member having a bulkhead portion and a rim provided for sealing with the lid. The bulkhead portion is provided with an inlet aperture for attachment of an inlet fitting through the wall of the shell to permit fluid to enter the vessel and flow to a plenum formed between the lid and the bulkhead and through apertures in the bulkhead to the filter media contained in the shell. The lower end of the vessel shell is closed by a one-piece cast closure including an integral outlet port fitting to provide a complete pressure vessel assembly comprised of only four structural members. The pressure vessel of the present disclosure thus provides for an improved lower cost and simplified construction for a fluid pressure vessel containing filter media for a flow through filtering.
The exemplary versions have been described, obviously, modifications and alterations will occur to others upon reading and understanding the preceding detailed description. It is intended that the exemplary versions be construed as including all such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.
Claims
1. A pressure vessel of the type having a plurality of removable filter elements therein with a removable cover comprising:
- (a) a tubular shell;
- (b) an end closure attached to an end of the shell and having a fitting defining an outlet fitting with a port formed integrally therewith as one piece;
- (c) a bulkhead with an annular flange formed as one piece provided on an open end of the shell opposite the end closure, the bulkhead having apertures therein for communicating with the filter elements;
- (d) a fluid inlet fitting attached through the wall of the shell and configured to provide an inlet port through the bulkhead;
- (e) a removable cover/lid with surfaces adapted for sealing and disposed over and operable for sealing on the flange; and,
- (f) clamping means operative to releasably secure and effect sealing of the lid to the flange.
2. The pressure vessel of claim 1 with a seal ring disposed for sealing between the sealing surfaces and the flange.
3. The pressure vessel of claim 1, wherein the end closure is formed by casting.
4. The pressure vessel of claim 1, wherein the cover is formed by casting.
5. The pressure vessel defined in claim 1, wherein the clamping means includes threaded fasteners and the annular flange includes attachment surfaces for the fasteners.
6. The pressure vessel defined in claim 1, wherein the bulkhead and annular flange are formed by casting as a one piece member.
7. The pressure vessel defined in claim 1, wherein the end closure and cover are formed of cast corrosion resistant steel.
8. The pressure vessel defined in claim 1, wherein the fluid inlet fitting is formed of cast corrosion resistant steel.
9. The pressure vessel defined in claim 1, wherein the annular flange is attached to the shell by weldment.
10. The pressure vessel defined in claim 1, wherein the inlet fitting is attached to the shell by weldment.
11. The pressure vessel defined in claim 1, wherein the clamping means includes fasteners pivotally mounted on the flange connected to lugs formed on the cover.
12. The pressure vessel defined in claim 1, wherein the annular flange cover, end closure and inlet fitting are formed of AISI type 304 stainless steel.
13. The pressure vessel defined in claim 1, wherein the outlet fitting includes an annular flange adapted for attachment thereto.
14. The pressure vessel of claim 1, wherein the flange includes a plurality of spaced lugs integrally formed therewith adapted for receiving fasteners therein.
15. The pressure vessel of claim 1, wherein the clamping means includes an annular clamping band.
16. The pressure vessel defined in claim 1, wherein the bulkhead has an aperture therein communicating with the inlet fitting.
17. The pressure vessel defined in claim 1, further comprising a plurality of supports attached to the shell.
18. The pressure vessel of claim 17, wherein the supports are attached to the shell by weldment.
19. The pressure vessel defined in claim 1, wherein the bulkhead includes means for retaining the filter elements.
20. The pressure vessel defined in claim 19, wherein the retaining means includes hold down rings and retaining clips on the bulkhead.
21. A method of making a fluid pressure vessel of the type having flow through filters therein with a removable lid/closure for filter access comprising:
- (a) forming a tubular shell;
- (b) casting a one-piece closure with an integrally formed outlet fitting thereon and welding the closure to one end of the tubular shell;
- (c) casting a one-piece bulkhead with an inlet port therein and having an annular rim flange and welding the rim flange to an end of the tubular shell opposite the one end;
- (d) casting an inlet fitting and inserting one end of the inlet fitting through an aperture in the tubular shell and securing the one end to the bulkhead inlet port and welding the inlet fitting to the aperture; and,
- (e) casting a one-piece closure/lid and disposing the closure/lid for removably closing on the rim flange.
22. The method defined in claim 21, wherein the step of casting an inlet fitting includes integrally casting an attachment flange.
23. The method defined in claim 21, wherein the step of securing the one end to the bulkhead inlet fitting includes welding.
24. The method defined in claim 21, wherein the step of disposing the closure/lid includes pivotally mounting on the tubular shell.
25. The method defined in claim 21, wherein the step of casting a closure includes integrally casting a flange on the outlet fitting.
26. The method defined in claim 21, further comprising integrally casting a signal port outlet fitting on the closure outlet fitting.
27. The method defined in claim 21, further comprising integrally casting a signal port fitting on the inlet fitting.
Type: Application
Filed: Nov 19, 2010
Publication Date: May 24, 2012
Applicant:
Inventors: Scott K. Bailey (Greenwood, SC), Winfried Beyel (Nideggen), Christopher S. Rau (Battle Creek, MI), Lidia Hamilton (Hasbrouck Heights, NJ), Florito Montano (Union, NJ), Mark Quintel (Kalamazoo, MI), Derek R. Thelen (Edison, NJ)
Application Number: 12/949,966
International Classification: F17C 1/00 (20060101); B22D 25/02 (20060101); B22D 23/00 (20060101);