The present invention relates generally to articles for self-propulsion and, more particularly, to foot mounted articles for effecting movement through fluid media or the like.
Conventional foot mounted articles for effecting movement through fluid media. e.g., fins for swimming through water, generally take the form of fins which comprise a blade constructed of a relatively rigid material connected at the rear to a shoe made of a relatively yielding material. As set forth in the present description, the term “relatively rigid material” refers to a material such as, for example, polypropylene or the equivalent, while the term “relatively yielding material” in the present description refers to a material such as a thermoplastic polymer based essentially on SEBS elastomers or the equivalent.
Such materials are commonly used in the production of fins for swimmers.
In order to protect against scratches and cuts that may result when the fin comes into contact with reefs, stones and the like, longitudinal edges of the blade are often lined with a yielding material like that of the material comprising the shoe. More particularly, such lining is formed in lateral ribs that generally extend both above and below the plane of the blade so as to improve the propulsive efficacy of the fin without increasing the overall rigidity of the blade. According to a previous invention of the same applicant, these ribs may be constructed of a material having a rigidity intermediate between that of the shoe and the blade. In this manner, the designer has much more freedom of choice in the hydrodynamic and mechanical characteristics of the fin, which are often in contrast with each other.
Generally speaking, the efficiency of a fin depends on the above-mentioned characteristics. Accordingly, designers and manufacturers of fins concentrate on them, though not without considering that any modification to the structure of the fin that is intended to improve these characteristics must also be aesthetically pleasing as well as original.
More particularly, it has been found that the efficiency of a conventional swimming fin has a first limitation in that the rigid blade generally bends only in a plane substantially at right angles to the plane of the undeformed blade, its transverse sections being maintained substantially constant.
Second, it has been found, from a hydrodynamic point of view, that the fin's efficiency is to some extent negatively affected by the presence of buckles on the closing strap of the shoe. This is because the buckles typically project sideways and are thus an obstacle to the free flow of water along the fin.
An object of the present invention is to provide a fin for swimmers having improved propulsion efficiency as compared to conventional fins.
These objects and advantages are attained by improving the structure of the fin from both mechanical and hydrodynamic points of view. In particular, elastic hinges extending in both the longitudinal and diagonal direction are also provided on the blade of the fin to enable deformation of transverse sections of the fin. Moreover, along side portions of the shoe, sideways projecting fairings are utilized with a thickness at least equal to that of the buckle, so that fluid may flow above the buckle and not be negatively affected by its presence. Furthermore, with a view toward limiting any encumbrance caused by the buckle to the greatest possible extent, the blade has an outwardly convex hood at the connection point shaped in such a manner as to contain a connection element with which the buckle is provided to enable it to engage an appropriately shaped opening on the bottom of the hood.
Other characteristics and advantages of the present invention will become apparent from the description set forth below, which is exemplary and is not to be considered limiting in any way, such description making reference to the attached drawings in which:
The same numerals are used throughout the drawing figures to designate similar elements. Still other objects and advantages of the present invention will become apparent from the following description of the preferred embodiments.
Referring now to the drawings and, more particularly, to
As shown in
According to one embodiment, lateral ribs 3 are molded along a portion of the lateral edges of the blade and extend along sides 6 through to the root or base of their respective hoods.
As shown in
Shoe 2 is desirably molded onto blade 1 in the third stage of the molding process, which simultaneously fills the two slots 9 and two openings 11 preferably with the same material, thereby producing generally flattened ribs 12 and 13 that operate jointly as elastic hinges.
The thickness of flattened ribs 12 and 13, which fill slots 9 and openings 11, is preferably greater than the thickness of rigid blade 1. In particular, flattened ribs 12 and 13 are made of a material that is generally less rigid than the blade material. Their inferior mechanical characteristics are, therefore, at least partially compensated for using a greater thickness. Advantageously, flattened ribs 12 and 13, arranged in slots 9, may also be provided with relatively thin longitudinal fins 14 for directing the flow.
Along a free edge 10 of the blade, a relatively wide flattened curb 15 is preferably provided that closes longitudinal slots 9 of the blade. According to one aspect of the present invention, the curb is made of the same material as shoe 2 and, during the molding stage, is produced desirably using two thin feeder channels 16 that do not interrupt the continuity of the blade and are situated in its central part As shown in
The material of the shoe, namely, a partial lining 17, advantageously covers those portions of lateral ribs 3 that have the greatest likelihood of damage from contact with hard materials such as stones, reefs and the like. Toward free end 10 of the blade, the partial lining 17 preferably combines with or joins curb 15.
Flattened ribs 12 and 13, as areas of reduced rigidity on the blade, function as hinges. In particular, when subjected to the thrust of a swimmer's foot, the ribs enable the blade to assume substantially a concave form with substantially plane walls. Specifically, under these conditions, the blade assumes a trapezoidal-like profile in the transverse direction where its inclined sides are formed by portions of the blade between the lateral edges and fins 14, whereas its shorter base is formed by the central portion of the blade between fins 14 and extending as far as the flattened diagonal ribs 13 with a profile approximately equal to the one indicated by the broken line in
The elastic hinges provided on the blade, constituted by ribs 12 and 13 formed in slots 9 and openings 11, enable the blade to assume a concave shape both during the power stroke and during the return stroke, when the blade encounters lesser resistance, thereby improving the fin's overall performance.
It is desirable that the lining of relatively yielding material 17 extend along the flanks 6 of blade 1, from the lateral edges of the blade, through to the vicinity of hood 7. The cross section of lining 17 becomes considerably thicker along these flanks so as to generate respective fairings 19 that convey the flow of water to above a pair of buckles 20 arranged at the two ends of a strap 21 that closes the shoe. Advantageously and preferably, buckle 20 is of the so-called “fast” type, already used extensively for this application, and comprises a sheath 22 and a shutter 23, generally of three-pronged shape.
According to another aspect of the present invention, sheath 22 is provided on its interior face with a head 24 having a shape generally equal to that of opening 8 formed on hood 7 of flanks 6. As shown in
Various modifications and alterations to the invention may be appreciated based on a review of this disclosure. These changes and additions are intended to be within the scope and spirit of the invention as defined by the following claims.
| Number | Date | Country | Kind |
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| FI2002A0171 | Sep 2002 | IT | national |
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