The present invention pertains to pressurized transportation vessels, and more particularly to containers for transporting and storing pressurized hazardous materials.
Containers used to store toxic or hazardous chemicals are well known in the art. For many years manufacturers and users of various chemical substances have purchased containers to transport and store these substances. Some of the chemicals stored in these containers include chlorine, sulfur dioxide, as well as numerous other chemicals. It is appreciated that while these substances are useful for their intended purpose, in a certain state they may be hazardous if brought into contact with human beings.
One type of container for transporting hazardous substances is the multi-unit tank car. The containers may be sized and configured to store a particular amount of chemical for transportation. Typically the containers of this type are constructed from carbon steel. For safety purposes certain characteristics, such as wall thickness and material type, may be mandated by governmental regulations pertaining to containers for handling hazardous substances. In general, the containers are extremely durable and have a usable life cycle of many years or even decades. Durability is important in ensuring the longevity of storing these substances safely.
As more and more containers are manufactured and as the life cycle of these containers is relatively long, the need for containers of this type may diminish. Therefore, it is important to be able to compete cost effectively in the industry. What is needed is a container for storing hazardous substances and a method for constructing the containers that reduces costs while maintaining the standards to which these containers must be made.
In one embodiment the subject invention includes a vessel and a method of constructing a vessel that includes providing a generally tubular or cylindrical body having an end portion, the end portion having a peripheral lip, providing at least a first end member having a peripheral edge, the first end member having a convex configuration, i.e. convex to the pressure side of the vessel, positioning the peripheral edge of the first end member interior to the peripheral lip of the cylindrical body forming a lap joint, and, welding the peripheral edge of the first end member to the peripheral lip of the cylindrical body.
One aspect of the method of constructing a welded pressure vessel includes positioning the first end member such that the convex portion of the first member is facing interior to the generally cylindrical body.
Another aspect of the method of constructing a welded pressure vessel includes providing a generally cylindrical body having an end portion, the end portion having a peripheral lip and wherein the peripheral lip is angled inward to a centerline axis of the cylindrical body.
Still another aspect of the method of constructing a welded pressure vessel includes fillet welding the lap joint forming an interior weld joint between the cylindrical body and the end member.
Even another aspect of the method of constructing a welded pressure vessel includes providing a generally cylindrical body having an end portion, the end portion having a peripheral lip, wherein the body is constructed from 516 grade 70 carbon steel.
Yet another aspect of the method of constructing a welded pressure vessel includes providing a safety relief valve, and, affixing the safety relief valve to the at least a first end member.
In another embodiment of the present invention, a vessel for containing pressurized material includes a body portion defining an interior region, at least a first end member having a curved portion, wherein the at least a first end member is affixed to the body portion such that the curved portion is convex with respect to the interior region, and wherein the at least a first end member is fusion welded to the body portion and wherein the at least a first end member and the body portion may form a lap joint that is interior with respect to the body portion.
Referring now to the drawings wherein the showings are for purposes of illustrating embodiments of the invention only and not for purposes of limiting the same,
With continued reference to
With continued reference to
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With continued reference to all of the FIGURES, a process of constructing a container 3 will now be discussed. The container 3 may be constructed by roll forming planar sheet steel into a straight cylindrical body having openings at distal ends of the body. The longitudinal joint of the cylindrical body may then be welded and stress relieved as necessary. First and second end members each having a convex configuration with respect to the interior of the body may then be inserted into the respective ends of the body. The end members may then be juxtaposed to the lip of the body such that peripheral edge of the end members and the lip form a lap joint, or a fillet lap joint, interior to the body cavity. The joint may then welded sealing the interface of the components, i.e. end members and body, in a manner suitable for pressurization of the container. At any place in the process of constructing the container, holes may be bored in the components of the container and threaded for use in receiving valves, plugs or any other item suitable use in a container storing pressurized and hazardous material.
The invention has been described herein with reference to the preferred embodiment. Obviously, modifications and alterations will occur to others upon a reading and understanding of this specification. It is intended to include all such modifications and alternations in so far as they come within the scope of the appended claims or the equivalence thereof.
This utility patent application claims priority to U.S. provisional patent application Ser. No. 60/746,820 filed May 9, 2006, which is incorporated herein by reference in its entirety.
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Number | Date | Country | |
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20080156813 A1 | Jul 2008 | US |
Number | Date | Country | |
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60746820 | May 2006 | US |