The present disclosure relates generally to an air deflector for a vehicle and, more particularly, to a wrap for promoting aerodynamics and preventing air drag on a conventional tank trailer.
Air or aerodynamic deflectors on vehicles, including trailers, are known to reduce wind drag and thereby increase fuel efficiency. While a variety of different aerodynamic deflectors have been used on cabs and conventional trailers to reduce air drag, there has been little effort directed specifically to improve the aerodynamics of tank trailers. More particularly, tank trailers typically include components and associated surfaces that increase air drag compared to other types of conventional trailers (e.g., flat bed trailers and enclosed trailers). For example, conventional tank trailers include a tank having a plurality of silos and associated piping components that increase air drag. As such, there remains a need for air deflectors that improve aerodynamics of tank trailers.
According to an illustrative embodiment of the present disclosure, an aerodynamic tank trailer wrap includes a first side assembly extending vertically between a first upper end and a first lower end, and a first upper coupler configured to couple the first upper end of the first side assembly to a first side of a tank trailer. The aerodynamic tank trailer wrap further includes a second side assembly extending vertically between a second upper end and a second lower end, and a second upper coupler configured to couple the second upper end of the second side assembly to a second side of the tank trailer. A lower attachment member extends below a tank of the tank trailer and couples together the first lower end of the first side assembly and the second lower end of the second side assembly.
According to another illustrative embodiment of the present disclosure, an aerodynamic tank trailer wrap includes an upper panel, and an upper coupler configured to support the upper panel for pivoting movement about an upper longitudinal pivot axis. The aerodynamic tank trailer wrap further includes a lower panel extending below the upper panel, and a lower coupler coupling the upper panel with the lower panel, the lower coupler supporting the lower panel for pivoting movement about a lower longitudinal pivot axis.
According to a further illustrative embodiment of the present disclosure, a tank trailer includes a frame, a tank supported by the frame, and a plurality of fixtures supported by the frame below the tank. An aerodynamic tank trailer wrap includes a first side assembly extending vertically between a first upper end and a first lower end, a first upper coupler configured to couple the first upper end of the first side assembly to a first side of the tank trailer. The aerodynamic tank trailer wrap further includes a second side assembly extending vertically between a second upper end and a second lower end, and a second upper coupler configured to couple the second upper end of the second side assembly to a second side of the tank trailer. A lower connecting member extends below the tank of the tank trailer and couples together the first lower end of the first side assembly and the second lower end of the second side assembly.
According to another illustrative embodiment of the present disclosure, an aerodynamic tank trailer wrap includes a first side assembly configured to be supported to a side of a tank trailer, the first side assembly including a first center portion extending between a first upper end and a first lower end, and between a front end and a rear end, the first side assembly further including a forward aerodynamic deflector supported by the front end of the center portion, and a rear wheel aerodynamic deflector supported by the rear end of the center portion. The aerodynamic tank trailer wrap further includes a second side assembly configured to be supported to a side of a tank trailer, the second side assembly positioned in laterally spaced relation to the first side assembly, the second side assembly including a second center portion extending between a second upper end and a second lower end, and between a front end and a rear end, the second side assembly further including a forward aerodynamic deflector supported by the front end of the center portion, and a rear wheel aerodynamic deflector supported by the rear end of the center portion. A forward aerodynamic nose deflector is positioned longitudinally forward of the front end of the first side assembly and the front end of the second side assembly, and is positioned laterally intermediate the first side assembly and the second side assembly.
Additional features and advantages of the present invention will become apparent to those skilled in the art upon consideration of the following detailed description of the illustrative embodiment exemplifying the best mode of carrying out the invention as presently perceived.
The detailed description of the drawings particularly refers to the accompanying figures in which:
Various embodiments of the invention described herein are not intended to be exhaustive or to limit the invention to precise forms disclosed. Rather, the embodiments selected for description have been chosen to enable one skilled in the art to practice the invention.
Referring initially to
The tank 12 illustratively includes a substantially cylindrically shaped main body 28 and includes a first side 30 and a second side 32 (
With reference to
With further reference to
The upper panel 54 illustratively includes an upper edge 62, a lower edge 64, a first side edge 66 and a second side edge 68. Illustratively, the side edges 66 and 68 extend substantially parallel to each other in a vertical direction. In the illustrative embodiment of
The lower panel 56 illustratively includes an upper edge 70, a lower edge 72, a first side edge 74 and a second side edge 76. Illustratively, the side edges 74 and 76 extend substantially parallel to each other in a vertical direction. In the illustrative embodiment of
An upper coupler 82 illustratively couples the upper edge 62 of the upper panel 54 proximate a vertical mid-point of the tank 12. The upper coupler 82 illustratively includes at least one upper hinge 84 to support the upper panel 54 for pivoting movement about an upper longitudinal pivot axis 86. A top support channel 88 may be secured (e.g., via welding) to the tank trailer 10 to support the upper hinge 84. A lower coupler 90 illustratively couples the upper edge 70 of the lower panel 56 to the lower edge 64 of the upper panel 54. The lower coupler 90 illustratively includes at least one lower hinge 92 to support the lower panel 56 for pivoting movement about a lower longitudinal pivot axis 94. The upper and lower hinges 84 and 92 may comprise double reinforced hinges.
The upper panel 54 extends up from the lower panel 56 which, in turn, extends or wraps under the belly of the tank trailer 10 to enclose exposed components. More particularly, the lower panels 56 cover the lower portions of the silos 34, the piping 30, and the valves 38. As such, the side assemblies 52a and 52b direct airflow away from these components, thereby improving aerodynamics of the tank trailer 10.
At least one lower connecting member 96 couples together the lower panels 56 of the opposing side assemblies 52a and 52b. Illustratively, the lower connecting members 96 comprise a plurality of rubber straps or bands 98. A fastener 100 illustratively permanently secures a first end of each strap 98 to the lower edge 72 of the lower panel 56 of first side assembly 52a, while a fastener clip 102 releasably secures a second end of the strap 98 to the lower edge 72 of the lower panel 56 of second side assembly 52b (
With further reference to
Referring now to
With reference to
Each side assembly 152 illustratively includes an upper portion 154 and a lower portion 156. The upper portion 154 extends substantially vertical in parallel relation to the side 30, 32 of the tank 12. The lower portion 156 is angled inwardly toward a center (e.g., a longitudinal center axis 157) of the trailer 10 below the tank 12. An upper end of the lower portion 156 may be coupled to a lower end of the upper portion 154 via a pivot coupling, similar to the hinge 92 as detailed above. Each side assembly 152 illustratively includes a center portion 158 extending between opposing upper and lower ends 160 and 162, and between opposing front and rear ends 164 and 166.
With reference to
Aerodynamic panels 184 and 186 are illustratively coupled to the framework 168 and 170, respectively. The panels 184 and 186 may be formed of a polymer, such as a fiberglass reinforced plastic (frp), coupled to the framework 168 and 170 via conventional fasteners, such as screws 188 (
Each side assembly 152 illustratively includes a forward aerodynamic deflector 192 and a rear wheel aerodynamic deflector 194. The forward aerodynamic deflector 192 is configured to deflect air around the side assemblies 152. The rear wheel aerodynamic deflector 194 is configured to deflect air around the rear suspension 20 of the trailer 10. The forward aerodynamic deflector 192 illustratively includes framework 196 supporting aerodynamic panels 198 (
With reference to
With reference to
Although the invention has been described in detail with reference to certain preferred embodiments, variations and modifications exist within the spirit and scope of the invention as described and defined in the following claims.
The present application is a continuation of U.S. patent application Ser. No. 16/585,950, filed Sep. 27, 2019, which is a continuation of U.S. patent application Ser. No. 16/156,777, filed Oct. 10, 2018 and issued as U.S. Pat. No. 10,427,729, which claims priority to U.S. Provisional Patent Application Ser. No. 62/570,335, filed Oct. 10, 2017, and U.S. Provisional Patent Application Ser. No. 62/645,790, filed Mar. 20, 2018. The entire disclosures of all of the above applications are expressly incorporated herein by reference.
Number | Date | Country | |
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62570335 | Oct 2017 | US | |
62645790 | Mar 2018 | US |
Number | Date | Country | |
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Parent | 16585950 | Sep 2019 | US |
Child | 17337746 | US | |
Parent | 16156777 | Oct 2018 | US |
Child | 16585950 | US |