Contoured boat propeller shield
11820477 ยท 2023-11-21
Inventors
Cpc classification
International classification
Abstract
A propeller shield to selectively shield rotating blades of a propeller. The propeller shield may include a shield element for placement adjacent to the propeller blades. The shield element may include multiple gates configured to open in response to water flow generated by the propeller. The gates may be configured to open away from the propeller in response to a forward movement of the boat, and to close towards the propeller in response to cessation of the forward movement.
Claims
1. A system to selectively shield blades of a boat propeller, comprising: a guard element for placement adjacent to and laterally circumscribing tips of blades of the boat propeller; a shield element comprising a pair of gates attached to the guard element by hinges, the pair of gates configured to open in response to water flow generated by the propeller, the propeller configured to rotate about an axis, wherein the shield element is transverse to the axis, and wherein each of the gates is configured to open away from the propeller in response to a forward movement of the boat; and a biasing element coupled to the guard element and to each of the gates, the biasing element configured to automatically close each of the gates towards the propeller in response to cessation of the forward movement, wherein each of the gates comprises an interior edge, wherein a first interior edge of a first gate is configured to substantially align with a second interior edge of a second gate in response to cessation of the forward movement.
2. The system of claim 1, wherein the biasing element comprises a spring-loaded hinge.
3. The system of claim 1, wherein the shield element comprises a substantially convex contour.
4. The system of claim 3, wherein the substantially convex contour forms a reservoir between the propeller and the shield element to provide increased water flow in response to a reverse movement of the boat.
5. The system of claim 1, wherein the shield element includes a plurality of apertures to enable water to flow therethrough.
6. The system of claim 5, wherein the water flow generated by the propeller exerts a force on a portion of the shield element surrounding the plurality of apertures to open the gates.
7. A method to selectively shield blades of a boat propeller, comprising: providing a shield element comprising pair of gates configured to open in response to water flow generated by a propeller, wherein the propeller is configured to rotate about an axis, wherein the shield element is adjacent to the blades of the boat propeller and transverse to the axis, and wherein each of the gates is configured to open away from the boat propeller in response to a forward movement of the boat; positioning a guard element adjacent to tips of blades of the propeller to laterally circumscribe a periphery of the propeller; and coupling each of the gates to the guard element with hinge biasing elements, the biasing elements bias each of the gates against the guard element such that the gates automatically close towards the propeller in response to cessation of the forward movement, and wherein each of the gates comprises an interior edge, wherein a first interior edge of a first gate is configured to substantially align with a second interior edge of a second gate in response to cessation of the forward movement.
8. The method of claim 7, wherein the shield element comprises a plurality of apertures in the shield element to enable a flow of water therethrough.
9. The method of claim 8, wherein the water flow generated by the propeller exerts a force on a portion of the shield element surrounding the plurality of apertures to open the gates.
10. The method of claim 7, wherein the biasing elements comprise spring-loaded hinges.
11. The method of claim 7, wherein the shield element comprises a substantially convex contour.
12. The method of claim 11, wherein the substantially convex contour forms a reservoir between the boat propeller and the shield element to provide increased water flow in response to a reverse movement of the boat.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) The objects and features of the present invention will become more fully apparent from the following description and appended claims, taken in conjunction with the accompanying drawings. Understanding that these drawings depict only typical embodiments of the invention and are, therefore, not to be considered limiting of its scope, the invention will be described and explained with additional specificity and detail through the use of the accompanying drawings in which:
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DETAILED DESCRIPTION OF THE INVENTION
(9) A description of embodiments of the present invention will now be given with reference to the Figures. It is expected that the present invention may take many other forms and shapes, hence the following disclosure is intended to be illustrative and not limiting, and the scope of the invention should be determined by reference to the appended claims.
(10) The disclosed propeller shield is an alternative configuration of the propeller shield disclosed in U.S. Pat. No. 8,257,121, which patent is incorporated herein by reference. The disclosed propeller shield may be used with any suitable propeller guard that covers the propeller's lateral-most edges. One particularly effective propeller guard is disclosed in U.S. Pat. No. 6,159,062, which patent is incorporated herein by reference.
(11) Referring now to
(12) Some known propeller guards may completely inhibit a flow of water directly into the propeller during a turn, thereby causing cavitation in the area of the propeller. This cavitation may cause a loss of thrust of the motor, which in turn may cause a loss of steering control. Embodiments of a propeller shield 100 in accordance with the present invention may minimize boat performance drops and other issues that may otherwise result from impeded water flow to the propeller. Some embodiments of a propeller shield 100 may also improve boat control characteristics such as planing, top speed, acceleration, and steering.
(13) In some embodiments, a propeller shield 100 to selectively shield blades of a propeller in accordance with embodiments of the invention may include a shield element 102 for placement adjacent to blades of a propeller. In some embodiments, the shield element 102 may be formed of aluminum, stainless steel, or other suitable metals or metal alloys. In other embodiments, the shield element 102 may include materials such as plastics, woods, carbon fiber, or any other suitable material or composite material known to those in the art.
(14) In some embodiments, as shown in
(15) As shown in
(16) In some embodiments, a biasing element 106a, 106b, such as a hinge or pivot mechanism, may be coupled to each of the gates 104a, 104b to automatically close the gates 104a, 104b in response to cessation of the forward movement. In some embodiments, the gates 104a, 104b may include one or more surface recesses to facilitate attachment of the biasing element 106a, 106b. In some embodiments, as shown in
(17) In some embodiments, the biasing element 106a, 106b may include a spring, gravity force, or other design known to those in the art to assist the opening and closing of the one or more gates 104a, 104b. In these and other embodiments, the biasing element 106a, 106b may be attached to the one or more gates 104a, 104b using any reliable method, including but not limited to the use of fasteners, welding, brazing, integral design, etc., or any combination thereof. In some embodiments, the biasing element 106a, 106b may be mounted on an inner surface and/or outer surface of the one or more gates 104a, 104b.
(18) In some embodiments, the one or more gates 104a, 104b can be made from any material that has sufficient strength to withstand the forces exerted by fast moving water. The material may also be durable and water resistant. In some embodiments, the one or more gates 104a, 104b may be flat or curved, including concave and convex, relative to the guard element 118 opening. In one non-limiting embodiment, the one or more gates 104a, 104b are convex. The thickness and shape of the one or more gates 104a, 104b may be designed to minimize resistance to water flow in all forward directions and turn radii while maximizing strength to deflect objects in the reverse direction.
(19) In some embodiments, each of the gates 104a, 104b may include an interior edge 108a, 108b. The gates 104a, 104b may be configured such that an interior edge 108a of a first gate 104a may substantially align with an interior edge 108b of a second gate 104b in response to cessation of the forward movement.
(20) Referring now to
(21) In some embodiments, the propeller 400 may be configured to rotate about an axis 406. In some embodiments, the shield element 102 may be configured for placement transverse to the axis 406. In some embodiments, the shield element 102 may include a substantially convex contour. This substantially convex contour may form a reservoir 112 between the propeller 400 and the shield element 102 to provide increased water flow in response to a reverse movement of the boat.
(22) In some embodiments, the shield element 102 may include multiple apertures 114 formed in the gates 104a, 104b to enable water to flow therethrough. In these and other embodiments, the water flow generated by the propeller 400 may exert a force on a portion 116 of the shield element 102 surrounding the apertures 114 to open the gates 104a, 104b.
(23) In some embodiments, as illustrated in
(24) The guard element 118 may be configured for placement adjacent to tips 402 of the blades and circumscribing a periphery of the propeller 400. In some embodiments, the biasing element 106a, 106b may be mounted on an inner surface and/or an outer surface of the guard element 118. In some embodiments, the guard element 118 may include one or more surface recesses to facilitate attachment of the biasing element 106a, 106b.
(25) The present invention may be embodied in other specific forms without departing from its spirit or essential characteristics. The described embodiments are to be considered in all respects only as illustrative and not restrictive. The scope of the invention is, therefore, indicated by the appended claims, rather than by the foregoing description. All changes which come within the meaning and range of equivalency of the claims are to be embraced within their scope.