1. Field of the Invention
The present invention relates generally to a vessel, such as a reinforced plastic vessel, and a method of forming the vessel.
2. Related Art
Rotomolded storage tanks are used in various industries, such as chemical, industrial, aerospace, marine, and oil and gas industries. Plastic materials are often used to manufacture such tanks, particularly in aeronautical and deep-sea applications. The plastic material allows for the production of tanks that are watertight, lightweight, and of relatively low cost. It is often necessary, however, to reinforce these tanks so that they are strong enough to withstand structural loads due to the weight of the contents, operating pressures and temperatures, environmental conditions, etc.
Applying reinforcement material to these tanks can be problematic because most thermoplastics, and especially polyolefins, have very low surface energies that make it difficult or impossible to create a structural bond between the vessel wall and the reinforcing material.
It has been recognized that it would be advantageous to develop a vessel, or a reinforced vessel, that is lightweight, yet able to withstand structural loads due to the weight of the contents, operating pressures and temperatures, and/or environmental conditions, etc. In addition, it has been recognized that it would be advantageous to develop a reinforced plastic vessel. Furthermore, it has been recognized that it would be advantageous to develop a chemically inert vessel reinforced with a fiber and resin composite material.
The invention provides a vessel device with an intermediate or bondable layer mechanically attached to an inner layer forming a substantial enclosure. The intermediate or bondable layer can include a fibrous material, while the inner layer can include a chemically inert material. An outer layer is bonded to the intermediate layer, and surrounds at least a portion of the inner layer. The outer layer can be a reinforcement layer, and can include fiber in a resin matrix.
In accordance with a more detailed aspect of the present invention, the fibrous material of the intermediate layer can be at least partially imbedded in the inner layer. The intermediate layer can be at least partially bonded to the outer layer.
In addition, the invention provides a method for forming the vessel that includes disposing a bondable layer against an inner surface of a mold shaped to form a substantial enclosure. A preform formed of a plastic material is disposed into the mold. The preform is heated and pressurized causing the preform to expand to conform to the mold to form the substantial enclosure, and causing the plastic material to embed into an exposed portion of the bondable layer. The substantial enclosure with the bondable layer is removed from the mold. Another item is bonded to the bondable layer.
Additional features and advantages of the invention will be apparent from the detailed description which follows, taken in conjunction with the accompanying drawings, which together illustrate, by way of example, features of the invention.
a is a perspective view of a vessel in accordance with an embodiment of the present invention;
b is a detailed cross-sectional view of the vessel of
c is a perspective view of another vessel in accordance with an embodiment of the present invention;
a-5c are various schematic views of a method for forming a vessel in accordance with an embodiment of the present invention;
a is a perspective view of a mold shown in an open configuration;
b is a partial, cross-sectional side view of the mold of
a is a perspective view of the mold with a bondable layer on an inner surface thereof and a plastic material being introduced therein;
b is a partial, cross-sectional side view of the mold with a bondable layer therein of
ca is a perspective view of the mold with a bondable layer on an inner surface thereof and a preform formed of a plastic material being introduced therein;
a is a perspective view of the mold shown in a closed configuration and being subjected to heat and internal pressure;
b is a partial, cross-sectional side view of the mold with the bondable layer and a plastic material or inner layer conformed to the mold and embedded into the bondable layer;
a is a perspective view of a substantial enclosure with the bondable layer with a reinforcement layer being formed thereon;
b is a partial, cross-sectional side view of the substantial enclosure with the bondable layer of
c is an enlarged, partial, cross-sectional side view of the substantial enclosure with the bondable layer of
a is a perspective view of a vacuum mold;
b is a perspective view of the mold of
c is a perspective view of the mold of
d is a perspective view of the mold of
Reference will now be made to the exemplary embodiments illustrated in the drawings, and specific language will be used herein to describe the same. It will nevertheless be understood that no limitation of the scope of the invention is thereby intended. Alterations and further modifications of the inventive features illustrated herein, and additional applications of the principles of the inventions as illustrated herein, which would occur to one skilled in the relevant art and having possession of this disclosure, are to be considered within the scope of the invention.
As illustrated in
As described above, applying a reinforcement material to a vessel can be problematic because a chemically inert material of the vessel can have a very low surface energy that makes it difficult or impossible to create a structural bond between the vessel and the reinforcing material. Thus, the reinforcement can fail to sufficiently attach, or can later delaminate. Therefore, the vessel 10 or substantial enclosure 14 advantageously includes a bondable layer or intermediate layer 22 disposed between the substantial enclosure 14 and the reinforcement layer 18. The bondable or intermediate layer 22 can be mechanically coupled to the substantial enclosure 14 and bonded to the reinforcement layer 18. Therefore, the bondable or intermediate layer 22 couples the reinforcement layer 18 to the substantial enclosure 14.
Although the vessel 10 and the substantial enclosure 14 are shown in the Figures as having a cylindrical shape, it will be appreciated that the vessel and substantial enclosure can have any desired shape, or a non-cylindrical shape. For example, the vessel 10 and the substantial enclosure 14 can be square, rectangular, circular, spherical, pie-shaped, etc. As another example, a vessel 10c can have a conformal shape, or a shape that conforms to, keys into, or matches another shape or structure, such as conforming to an allocated space in an airframe of fuselage of an aircraft. The term “substantial enclosure” is used herein to describe an enclosure shaped to hold or contain a material, such as liquid, and can be shaped as a bowl, tank, container, etc. The substantial enclosure 14 can include an opening 24 therein, and can be sealable, such as with a lid or cap. Thus, the substantial enclosure can be watertight. The material for the substantial enclosure can include plastic, thermoplastic, polyolefin, polyethylene, polypropylene, polyurethane, etc. The substantial enclosure 14 can form an inner layer of the vessel 10.
The bondable layer 22 can include a fibrous material with a plurality of fibers 26. Examples of the fibrous material include a fiber fabric, cloth, weave or mat. The fibers 26 can be configured in various different orientations. For example, the fibers 26 can be provided in a weave with fibers disposed in transverse orientations, weaving back and forth and overlapping other fibers. As another example, the fibers 26 can be provided in chopped strands. In addition, the bondable layer 22 or fibrous material can have a thickness formed by numerous overlapping fibers. The bondable layer 22 can have an inner side 30 and an outer side 34. The fibers 26 can extend between the inner and outer sides 30 and 34. The bondable layer 22 or fiber 26 can include graphite, fiberglass, etc.
The reinforcement layer 18 can include a fiber in a resin matrix, indicated together at 38. The fiber of the reinforcement layer 18 can include continuous fibers wrapped around the substantial enclosure 14. The fiber can be graphite, fiberglass, etc.
As illustrated in
Referring to
Referring to
Heating and pressurizing the mold 100 and the plastic material of the preform 108 causes the plastic material to conform to the mold 100, and to form the substantial enclosure 14. In addition, heating and pressurizing the plastic material 108 causes the plastic material to embed into the exposed portion 30 of the bondable layer 22 on the inner surface 104 of the mold 100. The plastic material permeates into a thickness of the bondable layer, and embeds into the fibrous material and around individual fibers or portions of individual fibers. The plastic material can substantially surround portions of the fiber, forming a mechanical attachment. For example, individual fibers can weave back and forth, into and out of the plastic material, indicated at 112 in
While the exposed portion 30 of the bondable layer 22 is embedded into the plastic material of the substantial enclosure 14, the attachment portion 34 of the bondable layer becomes exposed when removed from the mold. The bondable layer 22, attached to the substantial enclosure 14 or inner layer, allows other items to be secured to the substantial enclosure 14 by attaching to the bondable layer, or attachment portion 34 thereof. Referring to
Other types of thermal forming can be used to form the vessels, including for example, vacuum forming or similar processes. Referring to
Referring to
Alternatively, the mold 200 can have a protrusion, as opposed to a cavity, with the plurality of apertures therein; and the sheet 212 can be formed against the protrusion.
Other types of molding or thermoforming can be used, including for example, resin transfer molding (RTM), twin sheet forming, etc.
It is to be understood that the above-referenced arrangements are only illustrative of the application for the principles of the present invention. Numerous modifications and alternative arrangements can be devised without departing from the spirit and scope of the present invention while the present invention has been shown in the drawings and fully described above with particularity and detail in connection with what is presently deemed to be the most practical and preferred embodiments(s) of the invention, it will be apparent to those of ordinary skill in the art that numerous modifications can be made without departing from the principles and concepts of the invention as set forth in the claims.