Two wheeled vehicle

The modular motorcycle design with interchangeable components addresses the challenge of manufacturing multiple models by enabling cost-effective and efficient production through customization and component interchangeability.

JP2026016828APending Publication Date: 2026-02-03INDIAN MOTORCYCLE INTERNATIONAL LLC
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Patent Information

Application Number
JP2025193437
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2018-09-28
Filing Date
2025-11-13
Publication Date
2026-02-03

AI Technical Summary

Technical Problem

Manufacturing multiple motorcycles with unique components can be costly and time-consuming due to the variety of vehicle platforms, necessitating a vehicle that can be adapted to multiple platforms to reduce manufacturing time and costs.

Method used

A motorcycle design featuring a modular frame assembly with interchangeable components, including a removable airbox and throttle body assembly, and a drive assembly concealed by a cover, allowing for customization and adaptation to various platforms.

Benefits of technology

Enables cost-effective and time-efficient production of motorcycles by allowing for easy customization and component interchangeability, reducing manufacturing complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a motorcycle that can be configured with various accessories and other components that allow a driver to customize the vehicle to his or her preferences and needs.SOLUTION: The vehicle further includes an engine supported by the frame assembly and operatively coupled to the front and rear ground-engaging members, wherein the engine includes a throttle body assembly. The vehicle further includes an air intake assembly fluidly coupled to the engine and including an airbox and a mounting plate having first and second channels. The first and second channels are configured to align with a throttle body assembly. The mounting plate is configured to couple the airbox to the throttle body assembly.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present disclosure relates to motorcycles, and more particularly to motorcycles having a compact and modular configuration. [Background technology]

[0002] Various motorcycles can be configured for different uses and rider preferences. For example, a cruiser-type motorcycle may be suitable for riders who prefer comfort over speed when traveling long distances, while a sport or standard motorcycle may be preferred by riders who prefer increased speed performance. Typically, sport or standard motorcycles are smaller in overall size than other types of motorcycles, and therefore the configuration of various components on the bike is important. For example, a sport or standard motorcycle requires a fuel tank and air box that are large enough to sustain the performance of the powertrain, yet can be packed with other motorcycle components without increasing the size of the vehicle. Summary of the Invention [Problem to be solved by the invention]

[0003] Furthermore, because of the variety of vehicle platforms, manufacturing multiple motorcycles, each with unique components, can be costly and time-consuming. Thus, there is a need for a vehicle that can be adapted to multiple vehicle platforms to reduce manufacturing time and costs. For example, there is a need for a sport or standard type vehicle platform that can be configured with various accessories and other components that allow drivers to customize the vehicle to their preferences and needs. [Means for solving the problem]

[0004] In an exemplary embodiment of the present disclosure, a motorcycle includes a frame assembly having a front end and a rear end extending along a longitudinal centerline, a front ground-engaging member operably coupled to the front end of the frame assembly at a forward rotation axis, and a rear ground-engaging member operably coupled to the rear end of the frame assembly at a rear rotation axis. The vehicle further includes an engine supported by the frame assembly and operably coupled to the front and rear ground-engaging members. The engine includes a throttle body assembly. The vehicle further includes an intake assembly fluidly coupled to the engine and including an airbox and a mounting plate having a first channel and a second channel. The first channel and the second channel are configured to align with the throttle body assembly, and the mounting plate is configured to couple the airbox to the throttle body assembly.

[0005] A further exemplary embodiment of the present disclosure includes a motorcycle including a frame assembly having forward and rearward ends extending along a longitudinally extending centerline, a front ground-engaging member operably coupled to the front end of the frame assembly at a forward rotation axis, and a rear ground-engaging member operably coupled to the rear end of the frame assembly at a rear rotation axis. The vehicle also includes an engine supported by the frame assembly and operably coupled to the front and rear ground-engaging members. The engine includes at least a first cylinder and a second cylinder. The vehicle further includes an airbox fluidly coupled to the engine. The vehicle also includes a mounting member removably coupled to the engine and removably coupled to the airbox. The mounting member defines a first flow path configured to provide air from the airbox to a first cylinder of the engine and a second flow path configured to provide air from the airbox to a second cylinder of the engine.

[0006] A further exemplary embodiment of the present disclosure includes a motorcycle including a frame assembly having front and rear ends extending along a longitudinally extending centerline, a front ground engaging member operably coupled to the front end of the frame assembly at a forward rotation axis, and a rear ground engaging member operably coupled to the rear end of the frame assembly at a rear rotation axis. The vehicle also includes an engine supported by the frame assembly and operably coupled to the front and rear ground engaging members. The engine includes a throttle body assembly. The vehicle also includes an intake assembly fluidly coupled to the engine and including an airbox and a mounting plate. The airbox is removably coupled to an upper surface of the mounting plate, and the throttle body assembly is removably coupled to a lower surface of the mounting plate.

[0007] Another exemplary embodiment of the present disclosure includes a motorcycle including a frame assembly having front and rear ends extending along a longitudinally extending centerline, a front ground-engaging member operably coupled to the front end of the frame assembly at a forward rotation axis, and a rear ground-engaging member operably coupled to the rear end of the frame assembly at a rear rotation axis. The vehicle further includes an engine supported by the frame assembly and operably coupled to the front and rear ground-engaging members. The vehicle further includes a drive assembly operably coupled to the engine and including a drive sprocket, a driven sprocket, and a chain configured to rotate around the drive sprocket and the driven sprocket. The vehicle also includes a cover assembly configured to conceal at least a portion of the drive assembly. The cover assembly includes a lateral outer cover configured to conceal the drive sprocket from being seen from the side of the motorcycle, and a lateral inner cover configured to conceal the drive sprocket from being seen from the front of the motorcycle.

[0008] Another exemplary embodiment of the present disclosure includes a motorcycle including a frame assembly having a front end and a rear end extending along a longitudinally extending centerline, a front ground engaging member operably coupled to the front end of the frame assembly at a forward rotation axis, and a rear ground engaging member operably coupled to the rear end of the frame assembly at a rear rotation axis. The vehicle further includes an engine supported by the frame assembly and operably coupled to the front and rear ground engaging members. The front end of the frame assembly is configured to support at least a first accessory, and the rear end of the frame assembly is configured to support at least a second accessory. The first accessory is different from the second accessory.

[0009] The above-mentioned and other features of the invention, as well as the manner in which they are achieved, will become more apparent, and the invention itself will be better understood, by referring to the following description of embodiments of the invention in conjunction with the accompanying drawings. [Brief explanation of the drawings]

[0010] [Figure 1] FIG. 1 is a front left perspective view of a vehicle of the present disclosure. [Figure 2] FIG. 2 is a front left perspective view of a frame assembly of the vehicle of FIG. 1. [Figure 3] FIG. 3 is a rear right perspective view of the frame assembly of FIG. 2. [Figure 4] FIG. 3 is an exploded view of the frame assembly of FIG. 2. [Figure 5] FIG. 2 is a rear right perspective view of the taillight of the vehicle of FIG. 1. [Figure 6] FIG. 6 is a front right perspective view of the taillight of FIG. 5. [Figure 7] FIG. 2 is a rear left perspective view of a passenger footpeg of the vehicle of FIG. 1. [Figure 8] FIG. 8 is an exploded view of the passenger footpeg of FIG. [Figure 9] FIG. 2 is a front left perspective view of a sprocket and a chain guard of the vehicle of FIG. 1. [Figure 10]FIG. 10 is a further front left perspective view of the sprocket and chain guard of FIG. [Figure 11A] FIG. 2 is an exploded view of the airbox assembly of the vehicle of FIG. 1. [Figure 11B] FIG. 11B is a further exploded view of the airbox assembly of FIG. 11A. [Figure 12] FIG. 11B is a right perspective view of the airbox assembly of FIG. 11A. [Figure 13] FIG. 11B is a perspective view of the mounting plate of the airbox assembly of FIG. 11A. [Figure 14] FIG. 2 is a rear perspective view of a heat shield for the ABS module of the vehicle of FIG. 1. [Figure 15] FIG. 15 is a rear right perspective view of the heat shield and ABS module of FIG. [Figure 16] FIG. 2 is a front left perspective view of the windshield of the vehicle of FIG. 1. [Figure 17] FIG. 17 is a rear perspective view of the windshield of FIG. 16. [Figure 18] FIG. 2 is an exploded view of the windshield and headlight mounting bracket. [Figure 19] FIG. 2 is a rear perspective view of an alternative windshield embodiment for the vehicle of FIG. 1. [Figure 20] FIG. 2 is a rear-right perspective view of a mounting bracket for multiple accessories of the vehicle of FIG. 1, including a high-mounted exhaust assembly and a side license plate. [Figure 21] FIG. 21 is an exploded view of the mounting bracket and high-mounted exhaust system of FIG. [Figure 22] FIG. 21 is a rear right perspective view of the mounting bracket and saddlebag support member of FIG. 20. [Figure 23] FIG. 23 is an exploded view of the mounting bracket and saddlebag support member of FIG. 22. [Figure 24] FIG. 21 is a rear right perspective view of a high license plate holder coupled to the mounting bracket of FIG. 20; [Figure 25] FIG. 25 is an exploded view of the license plate holder and mounting bracket of FIG. 24. [Figure 26]2 is a rear right perspective view of a luggage rack coupled to the vehicle of FIG. 1; [Figure 27] FIG. 27 is an exploded view of the luggage rack of FIG. 26. [Figure 28] FIG. 21 is a rear right perspective view of the seat cowl and the mounting bracket of FIG. 20; [Figure 29] FIG. 29 is an exploded view of the seat cowl and mounting bracket of FIG. 28. DETAILED DESCRIPTION OF THE INVENTION

[0011] Corresponding reference characters indicate corresponding parts throughout the several views. The drawings are to scale unless otherwise specified.

[0012] The embodiments disclosed below are not intended to be exhaustive or to limit the invention to the precise forms disclosed in the following detailed description. Rather, the embodiments are chosen and described so that others skilled in the art can utilize their teachings. Although the present invention relates primarily to motorcycles, it should be understood that the present invention is applicable to other types of vehicles, such as all-terrain vehicles, watercraft, utility vehicles, snowmobiles, scooters, golf carts, and mopeds, as well as all types of motorcycles or other two-wheeled vehicles.

[0013] Referring to FIG. 1 , an exemplary embodiment of a motorcycle (two-wheeled vehicle) 2 is shown. Vehicle 2 can be configured as any type of motorcycle, such as a sport or standard motorcycle, a touring motorcycle, a cruiser motorcycle, or other embodiments of motorcycle-type vehicles. Vehicle 2 extends along a longitudinal centerline L from a front end 4 to a rear end 6. Front end 4 of vehicle 2 includes at least one ground-engaging member, i.e., a front wheel 8 configured to rotate about a front wheel axis of rotation 5, and rear end 6 of vehicle 2 includes at least one rear ground-engaging member, e.g., a rear wheel 9 configured to rotate about a rear wheel axis of rotation 7. While vehicle 2 is shown as a two-wheeled vehicle, it will be understood that various embodiments of the present teachings can be practiced with three-wheeled, four-wheeled, six-wheeled, etc. vehicles.

[0014] 1, the rear wheels 9 are coupled to a powertrain assembly 10 via a drive assembly 12 so as to propel the vehicle 2 via the rear wheels 9, as further disclosed herein. The drive assembly 12 includes a drive shaft 14, a drive sprocket 16 (FIG. 10) operably coupled to the drive shaft 14, and a driven sprocket 18 operably coupled to the drive sprocket 16 via a belt or chain 19 (FIG. 1).

[0015] The powertrain assembly 10 includes both an engine 20 and a transmission 22. The transmission 22 is coupled to the engine 20, which provides power to the rear wheels 9 via a driveshaft 14. In the illustrated embodiment, the engine 20 is a V-twin gasoline engine that includes a first or front cylinder 24 and a second or rear cylinder 26 operably coupled together with a crankshaft (not shown) configured to rotate about an axis of rotation. The first cylinder 24 and the second cylinder 26 and the crankshaft are generally supported on a crankcase 28 of the engine 20. By way of example, the first cylinder 24 and the second cylinder 26 define a 60-degree V-shaped configuration. In other embodiments, the engine 20 includes any number of cylinders arranged in any configuration (e.g., 90 degrees). Each of the cylinders 24, 26 includes a cylinder head 30, and a piston (not shown) is configured to reciprocate within each cylinder 24, 26, thereby causing rotation of the crankshaft. Further details of engine 20 may be found in U.S. Patent Application Publication No. 14 / 213,161, entitled "TWO-WHEELED VEHICLE," filed March 14, 2014 (Attorney Docket No. PLR-05-25858.05P), and U.S. Patent Application Publication No. 14 / 214,033, entitled "ENGINE," filed March 14, 2014 (Attorney Docket No. PLR-05-25844.02P), the entire disclosures of which are expressly incorporated by reference herein. While engine 20 is shown as a gasoline engine, it will be understood that electric motors and other suitable torque generators are also possible with various embodiments of the present disclosure. Additionally, in one embodiment, powertrain assembly 10 includes a continuously variable transmission.

[0016] Continuing with reference to FIG. 1 , the vehicle 2 generally also includes a steering assembly 32, e.g., a handlebar. The handlebar may include driver controls, such as a throttle and braking inputs, for maneuvering the vehicle 2. Additionally, the vehicle 2 may include foot controls for braking and / or throttle control. The steering assembly 32 may be operably coupled to a triple clamp assembly 34 defined by a lower triple clamp 34a and an upper triple clamp 34b, and to a front fork 36, which may include a front suspension assembly 38. Additionally, the vehicle 2 includes a rear suspension assembly 40 ( FIG. 5 ). As shown in FIG. 5 , a seat 42 may be at least partially positioned above a portion of the rear suspension assembly 40. For example, the seat 42 is configured as a straddle seat to support at least the driver, but may also be configured to support at least one passenger behind the driver. Cargo or storage containers (not shown) may also be included on the vehicle 2, either in front of or behind the seat 42. Additionally, the seat 42 is positioned generally rearward of a fuel tank 44.

[0017] 1-4, the vehicle 2 includes a frame assembly 50 supported by front wheels 8 and rear wheels 9 (FIG. 1). The frame assembly 50 includes a main frame 52 and a subframe 55 coupled together. Various portions of the main frame 52 may be constructed of a metallic material, such as steel, and the main frame 52 includes an upper longitudinally extending member 56 and a lower longitudinally extending member 58. Both the upper longitudinally extending member 56 and the lower longitudinally extending member 58 are coupled to a head tube (not shown), which is configured to receive a portion of the steering assembly 32 (FIG. 1). The upper longitudinally extending frame member 56 and the lower longitudinally extending frame member 58 are coupled to each other via a plurality of cross members 59.

[0018] By way of example, the main frame 52 generally surrounds the powertrain assembly 10 and, more particularly, extends above and forward of the engine 20 and transmission 22. By way of example, the longitudinally extending members 56, 58 may be coupled to a subframe 55 of the frame assembly 50 via a coupling member 60. The main frame 52, including the coupling member 60, may be constructed from a metallic material and, in one embodiment, may be a casting constructed from steel. As shown in FIGS. 2-4 , the coupling member 60 may be integral with the longitudinally extending members 56, 58, or alternatively, may be detachable from the longitudinally extending members 56, 58 by removable fasteners (not shown).

[0019] Coupling member 60 is removably coupled to subframe 55 by removable fasteners 62. Fasteners 62 are received through mounting bores 64 in subframe 55 and mounting bores 66 in coupling member 60. Subframe 55 is removably coupled to main frame 52 and is constructed from cast aluminum.

[0020] The subframe 55 further includes a rear mounting bore 68 configured to receive a removable fastener 69 therethrough. More specifically, the mounting bore 68 is defined in a complementary protrusion 70 of the subframe 55. The illustrated subframe 55 includes a first lateral portion 55a and a second lateral portion 55b, which are positioned on the left and right sides of the vehicle 2, respectively, and together define the clamshell configuration of the subframe 55. A first protrusion 70a of the first lateral portion 55a extends inward toward the longitudinal centerline L (FIG. 1) and toward a second protrusion 70b of the second lateral portion 55b, which also extends inward toward the longitudinal centerline L. In this manner, the first protrusion 70a and the second protrusion 70b further define the clamshell configuration of the subframe 55 and are coupled to one another by the fastener 69. When the side portions 55a, 55b of the subframe 55 are coupled together, the seat 42 can be supported thereon. It can be seen from the exemplary embodiment of Figures 2-4 that the protrusions 70a, 70b can be integrally formed with the respective side portions 55a, 55b.

[0021] 5 and 6, the subframe 55 further supports the tail light 72, eliminating the need for an additional rear body panel to mount the tail light 72 on the vehicle 2. More specifically, the subframe 55 includes a mounting member 74 that couples to a forward portion of the tail light 72 to support the tail light 72 directly on the subframe 55, without an additional body panel. For example, in one embodiment, the mounting members 74 of the subframe 55 each include an aperture configured to receive at least one removable fastener 76, as best shown in FIG. 6. The clamshell configuration of the subframe 55 also allows a housing 78 of the tail light 72 to be supported between the side portions 55 a, 55 b. The housing 78 can support various components of the tail light 72, such as electrical wires, a bulb, and other such components.

[0022] 5, 7, and 8, vehicle 2 is configured to support both a driver and a passenger on seat 42, and vehicle 2 also includes rear or passenger footpegs 80 for the passenger seated on seat 42. As best shown in FIG. 8, vehicle 2 includes right and left footpegs 80 that are coupled to a portion of subframe 55. By way of example, footpegs 80 each include a forward mounting portion 84 that is coupled to subframe 55 by at least one removable fastener 86. In this manner, footpegs 80 are coupled to subframe 55.

[0023] With respect to the right footpeg 80 of the vehicle 2, the right footpeg 80 is further supported by a bracket 82. The exemplary right footpeg 80 includes a rear mounting portion 88 that is coupled to the bracket 82 by a removable fastener 90. The bracket 82 is secured to a portion of an exhaust system assembly 92 of the vehicle 2, and more particularly, is permanently secured to a muffler 94 of the exhaust system assembly 92 via a weld nut or other permanent connection mechanism. As best shown in FIG. 7 , the bracket 82 is secured to an inner portion and upper surface of the muffler 94 and extends upwardly therefrom. In this manner, the muffler 94 is supported from the bracket 82 so that it depends therefrom.

[0024] Bracket 82 includes a mounting aperture that receives fastener 90. The aperture includes a bushing 91 (FIG. 8) that is constructed from a damping material (e.g., rubber) to isolate footpeg 80 from any vibration or other movement in muffler 94. In the exemplary embodiment of FIG. 5, bracket 82 further supports a rear portion of a shock absorber of rear suspension assembly 40, and it will be apparent that fastener 90 may be configured to extend through footpeg 80, bracket 82, and a portion of the shock absorber to couple them together.

[0025] When configured to support a passenger's foot, the footpeg 80 further includes a foot portion 96 that extends generally perpendicular to the longitudinal centerline L (FIG. 1). However, as shown in FIG. 8, the foot portion 96 may be configured to pivot forward and / or rearward about a pivot pin or member 98 to move the foot portion 96 between a closed position that is generally parallel to the longitudinal centerline L and an open position that is generally perpendicular to the longitudinal centerline L.

[0026] 9 and 10, a portion of the drive assembly 12 is shown. In particular, the drive sprocket 16 is generally concealed by a cover 100 and a sprocket / chain guard 102. The cover 100 and the sprocket / chain guard 102 are supported by the crankcase 28 and both generally include a rounded or curved forward portion configured to receive and enclose at least a portion of the drive sprocket 16. The sprocket / chain guard 102 is coupled to the cover 100 by removable fasteners and is positioned laterally inward of the cover 100.

[0027] The exemplary sprocket / chain guard 102 includes a channel 104 defined intermediate an outer surface 106 and an inner surface 108 of the sprocket / chain guard 102. The channel 104 is configured to receive a wire or other electrical line to prevent interference with the chain or belt 19 and also to conceal the wire or line from view outside the vehicle 2. By way of example, the inner surface 108 is positioned adjacent the seat or belt 19, and the outer surface 106 defines an outer surface of the sprocket / chain guard 102 that is visible on the vehicle 2. In this manner, the channel 104 and the wire or line housed therein are concealed from view on the vehicle 2 and from the chain or belt 19. As best shown in FIG. 9 , the sprocket / chain guard 102 is configured as an extension of the cover 100 such that the sprocket / chain guard 102 and the cover 100 are aesthetically complementary to one another.

[0028] Additionally, as best shown in FIG. 10, the sprocket / chain guard 102 includes multiple inlets and / or outlets 110, 112, 114, 116 at which wires or electrical cables can be inserted into or withdrawn from the channel 104.

[0029] 11A-13, vehicle 2 further includes an air intake assembly 120 including an airbox 122 supported within a portion of main frame 52 and generally positioned between upper longitudinally extending member 56 and lower longitudinally extending member 58 along longitudinal centerline L (FIG. 1). In one embodiment, airbox 122 is directly coupled to engine 20 via a throttle body assembly, as further disclosed herein. Airbox 122 includes an upper housing portion 124 and a lower housing portion 126 that are hingedly or removably coupled to one another. As such, upper housing portion 124 can be opened or removed to expose interior air volume 128. Airbox 122 further includes a panel 125 that includes a filter 129 that filters incoming air before it flows to engine 20. Panel 125 is removably coupled to upper housing portion 124 by fasteners 127, and filter 129 extends within air volume 128 longitudinally forward of tube 123, which is fluidly coupled to engine 20. In operation, air box 122 is configured to receive ambient air and channel the air through air volume 128 to provide filtered air to throttle body assembly 130 of engine 20. More specifically, lower housing portion 126 includes a first outlet 132 configured to align with and fluidly couple to a first throttle body 134 to provide filtered air to front cylinders 24 for combustion therein. Additionally, lower housing portion 126 includes a second outlet 136 configured to align with and fluidly couple to a second throttle body 138 to provide filtered air to rear cylinders 26 for combustion therein.

[0030] 11A-13, a mounting plate 140 can be used to couple the air box 122 to the throttle body assembly 130. The mounting plate 140 is positioned vertically intermediate the air box 122 and the throttle body assembly 130, such that the air box 122 is coupled to an upper surface 170 of the mounting plate 140 and the throttle body assembly 130 is coupled to a lower surface 172 of the mounting plate 140. More specifically, the mounting plate 140 is configured to couple to a lower surface 142 of the lower housing portion 126 of the air box 122 via upper-mounted fasteners 144. For example, as shown in FIGS. 11A and 11B, the fasteners 144 extend through the lower surface 142 and the upper surface of the mounting plate 140. In one embodiment, the mounting plate 140 includes a seal, e.g., a gasket 148, which includes an aperture 146 configured to receive the fastener 144 such that the air box 122 is coupled to the mounting plate 140 via the seal 148. The fastener 144 is configured to extend downward from the lower surface 142 of the airbox 122 and through the upper surface 174 of the seal 148 .

[0031] The seal 148 generally surrounds a body portion 150 of the mounting plate 140. The body portion 150 includes a first channel or boot 152 configured to align with and fluidly couple to the first outlet 132 and the first throttle body 134, and a second channel or boot 154 configured to align with and fluidly couple to the second outlet 136 and the second throttle body 138. The channels 152, 154 define first and second flow paths, respectively, through the mounting plate 140, thereby defining a first flow path from the first outlet 132 to the first throttle body 134 and a second flow path from the second outlet 136 to the second throttle body 138, respectively. The channels 152, 154 may be overmolded boots that are integral with the body portion 150. Nevertheless, channels 152, 154 are separate, separate air flow paths that are separated from one another by a portion of body portion 150 to provide separate volumes of air to first cylinder 24 and second cylinder 26. Channels 152, 154 may be constructed from a polymeric and / or metallic material and are configured to seal against lower surface 142 of air box 122 and throttle body assembly 130. In this manner, mounting plate 140 is configured to facilitate alignment, sealing, and coupling of air box 122 to throttle body assembly 130.

[0032] Channels 152, 154 each include an upper portion 178 that extends upwardly from body portion 150 and is configured to be at least partially received within air box 122. More specifically, upper portion 178 of channel 152 is configured to be at least partially received within first outlet 132 and extend upwardly toward air volume 128. Additionally, upper portion 178 of channel 154 is configured to be at least partially received within second outlet 136 and extend upwardly toward air volume 128.

[0033] Channels 152, 154 also each include a lower portion 179 that extends downwardly from body portion 150 and is configured to be at least partially received within throttle body assembly 130 or to at least partially receive a portion of throttle body assembly 130. More specifically, lower portion 179 of channel 152 is configured to be at least partially received within first throttle body 134 or to receive a portion of first throttle body 134. Additionally, lower portion 179 of channel 154 is configured to be at least partially received within second throttle body 138 or to receive a portion of second throttle body 138.

[0034] It can be seen that during assembly of the air box 122 to the vehicle 2, the mounting plate 140 is first attached to the throttle body assembly 130 through the lower portions 179 of the channels 152, 154. The air box 122 is then positioned over the top of the mounting plate 140, and one of the fasteners 144 is received within a portion of the air volume 128 through an aperture in the lower housing portion 126, as shown at 147 in FIG. 11B. An additional fastener 144 is positioned in and received through apertures 143, 145 in the upper and lower housing portions 124, 126, respectively, which are positioned on the periphery of the housing portions 124, 126, as shown in FIG. 11B. The fasteners 144 position the air box 122 adjacent to and connect it to the upper surface 170 of the mounting plate 140.

[0035] 14 and 15 , vehicle 2 includes an electrical assembly 160 that may include various electrical components. In one embodiment, electrical assembly 160 includes taillights 72 and other lighting components, as further disclosed herein. Additionally, electrical assembly 160 may include an anti-lock brake system or assembly (“ABS”) module 162 that is also supported on a portion of frame assembly 50, as shown in FIG. 14 . As shown therein, ABS module 162 is positioned directly above a portion of swingarm 54 ( FIG. 1 ). ABS module 162 is operably coupled to the brakes of each of front wheels 8 and / or rear wheels 9 to facilitate braking in response to driver input.

[0036] A heat shield 164 is positioned longitudinally intermediate the rear cylinder 26 and the ABS module 162 to protect the ABS module 162 from heat buildup from the engine 20. More specifically, the heat shield 164 is positioned longitudinally intermediate the cylinder head 30 of the rear cylinder 26 and the ABS module 162. The heat shield 164 may also include a support member 166 that supports the ABS module 162 on the frame assembly 50. For example, the support member 166 may be integrated with the heat shield 164 such that the heat shield 164 and the support member 166 are a single part or component. However, in other embodiments, the support member 166 may be removably coupled to the heat shield 164 by removable fasteners. The support member 166 is coupled to the frame assembly 50, particularly to the coupling member 60 of the main frame 52, by removable fasteners 168.

[0037] 16-29, the vehicle 2 is configured to support a number of accessories that can be removed from and attached to the vehicle 2 at the discretion of the driver. For example, as shown in FIGS. 16-19, the vehicle 2 is configured to include a windshield or windscreen 180. The vehicle 2 is configured to accept and support a number of windshields 180, such as windshields 180 and 180' shown in FIGS. 16 and 19, respectively. In addition to those shown in FIGS. 16 and 19, the vehicle 2 can support additional configurations of windshields, such as those with larger or smaller concave lower surfaces and those with longer or shorter vertical lengths, as disclosed further herein.

[0038] 16-19 , windshield 180 is positioned longitudinally forward of the handlebars of steering assembly 32 and generally above triple clamp assembly 34 and front fork 36. More specifically, windshield 180 includes a windscreen portion 182, illustratively constructed from polycarbonate, and a support assembly 184 configured to couple portion 182 to vehicle 2. In one embodiment, windshield 180 is configured to be supported on a housing or carrier 186 for a headlight 188 of vehicle 2. Carrier 186 may be coupled to a nacelle or outer housing 183, which is coupled to triple clamp assembly 34, by removable fasteners 187 ( FIG. 1 ) received through apertures 185 ( FIG. 16 ). Nacelle 183 is configured to conceal and is positioned longitudinally forward of carrier 186, although various embodiments of vehicle 2 may not include nacelle 183.

[0039] By way of example, support assembly 184 includes a first frame member 190 and a second frame member 192, which are configured to be removably coupled to a threaded boss 194 on an aft side or face 196 of carrier 186 by a removable fastener 198. First frame member 190 includes an upper arm 200 defining a first grommet or fitting 202 for coupling to a first location 204 on portion 182 of windshield 180. Upper arm 200 also includes a second fitting 206 configured to receive fastener 198 and configured to couple with threaded boss 194 of carrier 186. First frame member 190 also includes a lower arm 208 defining a third grommet or fitting 210 for coupling to a second location 212 on portion 182 of windshield 180. Similarly, second frame member 192 includes an upper arm 214 defining a fourth grommet or fitting 216 for coupling to a third location 218 on portion 182 of windshield 180. Upper arm 214 also includes a fifth fitting 220 configured to receive fastener 198 and configured to couple with threaded boss 194 of carrier 186. Second frame member 192 also includes a lower arm 222 defining a sixth grommet or fitting 224 for coupling to a fourth location 226 on portion 182 of windshield 180. It can be seen that fittings 206, 220 are bent plates welded to arms 200, 214, respectively, allowing fastener 198 (e.g., a screw) to be received within boss 194 on rear face 196 of carrier 186. In one embodiment, boss 194 is die-cast and integral with carrier 186.

[0040] The support assembly 184 can also be used with different configurations of the windshield 180, such as the windshield 180' of FIG. 19. As shown in FIG. 19, the windshield 180' has a vertical length 230' that is longer than the vertical length 230 of the windshield 180 of FIG. 16. The vertical length 230 of the windshield 180 is defined as the length extending generally vertically between a lower surface 232 and an upper surface 234 of the windshield 180, and the vertical length 230' of the windshield 180' is defined as the length extending generally vertically between a lower surface 232' and an upper surface 234' of the windshield 180'. The lower surface 232 of the windshield 180 and the lower surface 232' of the windshield 180' include recessed portions 236, 236' configured to receive portions of the carrier 186 and the nacelle 183, respectively. As shown in FIG. 19 , the recessed portion 236′ of the windshield 180′ spans a smaller lateral extent than the recessed portion 236 of the windshield 180 of FIG. 18 , but is still configured to receive a portion of the carrier 186 so that a variety of windshields can be used on the vehicle 2. The windshield 180′ of FIG. 19 may not be used on the vehicle 2 if the vehicle 2 also uses a nacelle 183, although a variety of windshield configurations can be used with or without the nacelle 183 on the vehicle 2. The additional windshield can include the vertical length 230 of the windshield 180 with the smaller recessed portion 236′ of the windshield 180′, or the vertical length 230′ of the windshield 180′ with the larger recessed portion 236 of the windshield 180. In this manner, the vehicle 2 is configured to support multiple windshields thereon.

[0041] To couple the windshield to the vehicle 2, if the vehicle 2 includes a nacelle 183, the nacelle 183 is first removed from the front fork 36 by removing the fasteners 187 ( FIG. 1 ) received through the apertures 185. The carrier 186 is then exposed, and can be removed from the triple clamp assembly 34 by removing the fasteners (not shown) extending through apertures 189 in the lower triple clamp 34 a and the upper triple clamp 34 b. The headlight 188 can be unplugged and removed from the vehicle 2. With the headlight 188 removed, the support assembly 184 is coupled to the carrier 186 by the fasteners 198 and bosses 194. With the support assembly 184 in place, the headlight 188 and carrier 186 can be reinstalled on the vehicle 2. The nacelle 183 is then reattached to the front fork 36 and then the portion 182 is positioned over the top surface of the nacelle 183 and attached to the support assembly 184 by the grommets 202 , 210 , 216 , 224 .

[0042] 20 and 21, the vehicle 2 is further configured to support an accessory exhaust system assembly 92'. In particular, compared to the exhaust system assembly 92 of FIG. 5, the exhaust system assembly 92' of FIG. 20 can be configured as a high-mounted exhaust system assembly such that the muffler 94' is positioned vertically higher on the vehicle 2 than the muffler 94 of FIG. 5. At least the muffler 94' is supported at the rear end 6 of the vehicle 2 by a support frame 240. The support frame 240 is coupled to the subframe 55 of the frame assembly 50 via a mounting bracket 242. The support frame 240 includes an arm 262 having a coupler 264 integrally formed therewith.

[0043] As disclosed further herein, mounting bracket 242 is configured to support multiple accessories at the rear end 6 of vehicle 2. As shown in FIGS. 20 and 21 , mounting bracket 242 may be constructed from a metallic material (e.g., sheet metal such as coated steel) and includes a body portion 244, a lower mounting tab 246 extending from body portion 244, and an upper mounting tab 248 extending from body portion 244. Tabs 246, 248 may be integrally formed with body portion 244 and may include apertures 250, 254, respectively. Additionally, body portion 244 may include an additional aperture 252 positioned generally adjacent to aperture 250 in lower mounting tab 246. Mounting bracket 242 is configured to be coupled to subframe 55 through mounting bores or bosses 256 on subframe 55. In particular, the removable fastener 258 is configured to extend through the aperture 254 in the upper mounting tab 248 and is received within the mounting bore 256 in the subframe 55 .

[0044] In one embodiment, the mounting bracket 242 extends below a handle 260 for a passenger positioned on the seat 42. The handle 260 can be removed from the vehicle 2 if desired. As best shown in FIGS. 20 and 28 , the handle 260 at least partially conceals the fasteners 258 to enhance the aesthetics of the vehicle 2. For example, the handle 260 can be first removed from the vehicle 2, then the mounting bracket 242 is coupled to the subframe 55 by the fasteners 258, and then the handle 260 is reattached to the vehicle 2, this assembly sequence allowing the handle 260 to conceal the fasteners 258 such that the handle 260 prevents any visibility of the mounting or attachment points.

[0045] To support the accessory exhaust assembly 92′ on the vehicle, the coupler 264 of the arm 262 aligns with the aperture 250 of the lower mounting tab 246 and is configured to receive a removable fastener 266 therein. In this manner, the support frame 240 couples at least the muffler 94′ of the accessory exhaust assembly 92′ to the subframe 55 via the mounting bracket 242 along the right side of the vehicle 2.

[0046] 22 and 23 , the mounting brackets 242 are also configured to support other accessories, such as a saddlebag frame 270, on the subframe 55. In one embodiment, the mounting bracket 242 on the left side of the vehicle 2 can support the saddlebag frame 270, while the mounting bracket 242 on the right side of the vehicle 2 supports other accessories, such as the accessory exhaust assembly 92′. In this manner, the mounting brackets 242 are configured to simultaneously support multiple accessories on the vehicle 2. Alternatively, the mounting brackets 242 on both the right and left sides of the vehicle 2 can each be coupled to a saddlebag frame 270.

[0047] 22 and 23 , saddlebag frame 270 includes a main portion 272 configured to receive a saddlebag, a first support arm 274, and a second support arm 276. Main portion 272 includes mounting tabs 278 each provided with an aperture 280 configured to receive a removable fastener 282. Saddlebag frame 270 is further coupled to frame assembly 50 via mounting tabs 284 of first support arm 274 such that removable fasteners 286 are received through apertures 288 in mounting tabs 284 to couple first support arm 274 to mounting bores 290 in subframe 55. Additionally, the saddlebag frame 270 is further coupled to the frame assembly 50 via the mounting tab 292 of the second support arm 276 such that a removable fastener 294 is received through an aperture 296 in the mounting tab 292 to couple the second support arm 276 to a mounting bore 298 in the rear mounting portion 88 of the footpeg 80.

[0048] 24 and 25, vehicle 2 is further configured to support an attached license plate holder 300′. License plate holder 300 (FIG. 1) may be supported on vehicle 2 at a lower position than the position of attached license plate holder 300′ (FIGS. 24 and 25), making attached license plate holder 300′ a high-mounted license plate holder. Again, mounting bracket 242 may be used to couple attached license plate holder 300′ to subframe 55.

[0049] More specifically, accessory license plate holder 300′ includes license plate portion 302, support frame 304, and other components 306, such as accessory lighting. Support frame 304 is coupled to mounting bracket 242 via fasteners 308, 309 that are received in mounting bores 310 in support frame 304 and apertures 250 in mounting bracket 242.

[0050] Mounting bracket 242 further couples fender and / or mud flap 312 to subframe 55 and support frame 304 of attached license plate holder 300′. Fender 312 includes mounting bores 314 configured to receive removable fasteners 316. Fasteners 316 extend through apertures 252 in mounting bracket 242, through mounting bores 314 in fender 312, and are received within mounting bores 318 in support frame 304.

[0051] The mounting bracket 242 itself is coupled to a mounting bore 256 in the subframe 55 by a fastener 258 extending through an aperture 254 in the mounting tab 248. The mounting bore 256 in the subframe 55 is positioned below a threaded boss 320 that is configured to receive a removable fastener 322 to couple the handle 260 to the vehicle 2. More specifically, the fastener 322 is received through a mounting bore 324 in the alternative handle 260′ and extends into the threaded boss 320, allowing the passenger handle 260 to be coupled to the subframe 55. When coupling the accessory license plate holder 300′ and the fender 312 to the subframe 55, the mounting bracket 242 and the handle 260′ can remain on the vehicle 2, with the support frame 304 coupled to the laterally inboard side of the mounting bracket 242 while the fender 312 is coupled to the laterally outboard side of the mounting bracket 242. It may be necessary to couple the fender 312 to the vehicle 2 after the handle 260' has been coupled, as a portion of the fender 312 may obscure a lower portion of the handle 260 when attached to the vehicle 2. As shown in FIG. 25 , the handle 260' differs from the handle 260 because it includes a turn signal 370.

[0052] 26 and 27, the vehicle 2 may also be configured to support a luggage or cargo rack 330 thereon. By way of example, the luggage rack assembly 330 may be defined by a first luggage rack 332 having a coupler 334 for mounting to the subframe 55, or alternatively may be defined by a second luggage rack 336 having a coupler 338 for mounting to the subframe 55. As shown in FIG. 27, the second luggage rack 336 may include a platform 337 for securing cargo thereto. In one embodiment, the first luggage rack 332 may be coupled to the vehicle 2 if the saddlebag frame 270 is also used. However, the first luggage rack 332 and the second luggage rack 336 may be used with additional components and accessories of the vehicle 2. Removable fasteners 339 may be used to couple the first luggage rack 332 or the second luggage rack 336 to the threaded bosses 320 of the subframe 55. When the luggage rack 332 or 336 is coupled to the subframe 55, the passenger handle 260 is removed from the vehicle 2, but it can be understood that the luggage rack 332, 336 can be used as a passenger handle in addition to supporting cargo thereon.

[0053] 28 and 29, the vehicle 2 may also support an accessory seat cowl 340. The seat cowl 340 may be positioned rearward of at least the driver portion of the seat 42 (FIG. 1) and disposed above the passenger portion of the seat 42. The seat cowl 340 is also coupled to a portion of the subframe 55 via a plate 342. More specifically, the plate 342 is coupled to the seat cowl 340 by removable fasteners 344 that are received through apertures 350 in the plate 342 and also through a coupler 346 and an aperture 348 in the seat cowl 340. The plate 342 is also coupled to the handle 260, 260′ by fasteners 322 that are received through apertures 352 in the plate 342 and within threaded bosses 320 of the subframe 55. In this manner, the seat cowl 340 and the handlebars 260 are coupled to each other via the plate 342. To attach the seat cowl 340 to the vehicle 2, the handlebars 260 can be first removed, the seat cowl 340 can be coupled to the vehicle 2, and then the handlebars 260 can be reattached to the vehicle 2.

[0054] 28 and 29 , the seat cowl 340 is positioned above the mounting bracket 242, thereby leaving the mounting bracket 242 available to couple with another accessory for the vehicle 2 so that the driver can use the seat cowl 340 and an additional accessory simultaneously. For example, as shown in FIG. 28 , the vehicle 2 is also configured to support a side license plate 360. The side license plate 360 ​​may be used to identify a racing number or other such indicia and is attached to the subframe 55 via the mounting bracket 242 and the frame assembly 362. In one embodiment, the frame assembly 362 is coupled to the mounting bracket 242 by removable fasteners 364, 366, which are received through apertures 250, 252 in the mounting bracket 242, respectively. The side license plate 360 ​​can be coupled to the vehicle with other accessories, such as a seat cowl 340 or ancillary exhaust assembly 92' as shown in FIG. 20 or a high license plate holder 300' (FIG. 24).

[0055] As disclosed herein, the mounting bracket 242 is configured to simultaneously and individually couple multiple accessories for the vehicle 2. More specifically, the mounting bracket 242 allows various accessories to be coupled to both the laterally inner and laterally outer sides of the vehicle 2, and the mounting bracket 242 includes multiple dedicated accessory apertures 250, 252 such that multiple accessories can be simultaneously coupled to the vehicle 2 via the mounting bracket 242. While various accessories can be coupled to the mounting bracket via the dedicated accessory apertures 250, 252, a handle 260 or other vehicle component or accessory can be coupled to the subframe 55 via a boss 320 positioned above the mounting bracket 242. Furthermore, because at least the handle 260 conceals at least the fasteners 258, the attachment points for the mounting bracket 242 are hidden from view from outside the vehicle 2, thereby improving the aesthetics of the vehicle 2.

[0056] The list of accessories disclosed herein, such as the windshield 180, 180′, high exhaust assembly 92′, saddlebag frame 270, high license plate holder 300′, fender 312, luggage rack 32, 336, seat cowl 340, handle 260′, and side license plate 360, does not define an exhaustive list of accessories that may be accommodated on vehicle 2. For example, additional accessories such as additional seats, lighting, and / or other components may be supported on vehicle 2.

[0057] Further details of Vehicle 2 may be found in U.S. Patent Application Publication No. 15 / 911,343, entitled "TWO-WHEELED VEHICLE," filed March 5, 2018 (Attorney Docket No. PLR-12-28125.01P-US), the entire disclosure of which is expressly incorporated herein by reference.

[0058] While this invention has been described as having exemplary designs, the invention can be further modified within the spirit and scope of this disclosure. Accordingly, this application is intended to cover any variations, uses, or adaptations of the invention using its general principles. Further, this application is intended to cover such departures from the present disclosure as come within known or customary practice in the art to which this invention pertains.

Claims

1. A motorcycle, a frame assembly having a forward end and an aft end extending along a longitudinally extending centerline; a front ground engaging member operably coupled to the front end of the frame assembly at a forward pivot axis; a rear ground engaging member operably coupled to the rear end of the frame assembly at a rear pivot axis; an engine supported by the frame assembly and operably coupled to the front and rear ground engaging members, the engine including a throttle body assembly; an intake assembly fluidly coupled to the engine and including an airbox and a mounting plate having a first channel and a second channel, the first channel and the second channel configured to align with the throttle body assembly, and the mounting plate configured to couple the airbox to the throttle body assembly; including motorcycles.

2. The motorcycle according to claim 1 , wherein the mounting plate is positioned vertically midway between the air box and the throttle body assembly.

3. 2. The motorcycle of claim 1, wherein the first channel defines a first overmolded boot configured to align with a first outlet of the air box and a first throttle body of the throttle body assembly, and the second channel defines a second overmolded boot configured to align with a second outlet of the air box and a second throttle body of the throttle body assembly.

4. The motorcycle according to claim 3 , wherein the first overmolded boot and the second overmolded boot are integral with a main body portion of the mounting plate.

5. The motorcycle of claim 1 , wherein an outer surface of the air box is coupled to the mounting plate with an upper fastener.

6. The motorcycle of claim 5 , wherein the mounting plate includes a seal that generally surrounds the first channel and the second channel, and the fastener is received through a portion of the seal.

7. The motorcycle of claim 6, wherein the upper fastener extends downwardly through a lower surface of the airbox and is received through an upper surface of the seal.

8. A motorcycle, a frame assembly having a forward end and an aft end extending along a longitudinally extending centerline; a front ground engaging member operably coupled to the front end of the frame assembly at a forward pivot axis; a rear ground engaging member operably coupled to the rear end of the frame assembly at a rear pivot axis; an engine supported by the frame assembly and operably coupled to the front and rear ground engaging members, the engine including at least a first cylinder and a second cylinder; an airbox fluidly coupled to the engine; a mounting member removably coupled to the engine and removably coupled to the airbox, the mounting member defining a first flow path configured to provide air from the airbox to the first cylinder of the engine and a second flow path configured to provide air from the airbox to the second cylinder of the engine; including motorcycles.

9. The motorcycle according to claim 8 , wherein the first flow path is spaced apart from the second flow path.

10. 10. The motorcycle of claim 9, wherein the mounting member includes a body portion, and the first flow path is defined by a first channel extending through the body portion, and the second flow path is defined by a second channel extending through the body portion, and the first channel and the second channel are separated from one another by a portion of the body portion.

11. The motorcycle of claim 10, wherein the first channel defines a first overmolded boot and the second channel defines a second overmolded boot.

12. The motorcycle of claim 8 , wherein the mounting member includes a seal that defines an outer surface of the mounting member.

13. The motorcycle of claim 12, wherein the seal includes a coupling location for securing the mounting member to the airbox.

14. A motorcycle, a frame assembly having a forward end and an aft end extending along a longitudinally extending centerline; a front ground engaging member operably coupled to the front end of the frame assembly at a forward pivot axis; a rear ground engaging member operably coupled to the rear end of the frame assembly at a rear pivot axis; an engine supported by the frame assembly and operably coupled to the front and rear ground engaging members, the engine including a throttle body assembly; an intake assembly fluidly coupled to the engine and including an air box and a mounting plate, the air box being removably coupled to an upper surface of the mounting plate and the throttle body assembly being removably coupled to a lower surface of the mounting plate; including motorcycles.

15. 15. The motorcycle of claim 14, wherein the airbox includes a plurality of fasteners extending from a lower surface of the airbox and configured to be received within an upper surface of the mounting plate.

16. 15. The motorcycle of claim 14, wherein the mounting plate includes a first overmolded boot sealingly coupled to the air box and a first throttle body of the throttle body assembly, and a second overmolded boot sealingly coupled to the air box and a second throttle body of the throttle body assembly.

17. 17. The motorcycle of claim 16, wherein the first overmolded boot and the second overmolded boot each extend at least partially within a portion of the airbox.

18. 18. The motorcycle of claim 17, wherein the first overmolded boot and the second overmolded boot each extend at least partially within a portion of the throttle body assembly.

19. The motorcycle of claim 14 , wherein the mounting plate includes a seal that defines an outer surface of the mounting plate.

20. 20. The motorcycle of claim 19, wherein the mounting plate includes a body portion, and the seal generally surrounds the body portion, and the seal includes at least one coupling location for coupling the mounting plate to the airbox.

21. A motorcycle, a frame assembly having a forward end and an aft end extending along a longitudinally extending centerline; a front ground engaging member operably coupled to the front end of the frame assembly at a forward pivot axis; a rear ground engaging member operably coupled to the rear end of the frame assembly at a rear pivot axis; an engine supported by the frame assembly and operably coupled to the forward and rear ground engaging members; a drive assembly operably coupled to the engine and including a drive sprocket, a driven sprocket, and a chain configured to rotate around the drive sprocket and the driven sprocket; a cover assembly configured to conceal at least a portion of the drive assembly, the cover assembly including a lateral outer cover configured to conceal the drive sprocket from being seen from the side of the motorcycle, and a lateral inner cover configured to conceal the drive sprocket from being seen from the front of the motorcycle; including motorcycles.

22. 22. The motorcycle of claim 21, wherein the laterally inner cover defines a sprocket guard having an outer surface facing away from the drive sprocket, an inner surface facing toward the drive sprocket, and a channel positioned intermediate the outer and inner surfaces.

23. 23. The motorcycle of claim 22, wherein the channel is configured to receive at least one electrical wire.

24. 24. The motorcycle of claim 23, wherein the at least one electrical wire is spaced from the drive sprocket and the chain by the inner surface of the lateral inner cover.

25. 24. The motorcycle of claim 23, wherein the outer surface of the lateral inner cover defines a plurality of inlets and outlets for the channels.

26. A motorcycle, a frame assembly having a front end and a rear end extending along a longitudinally extending centerline, the front end of the frame assembly configured to support at least a first accessory and the rear end of the frame assembly configured to support at least a second accessory, the first accessory being different from the second accessory; a front ground engaging member operably coupled to the front end of the frame assembly at a forward pivot axis; a rear ground engaging member operably coupled to the rear end of the frame assembly at a rear pivot axis; an engine supported by the frame assembly and operably coupled to the forward and rear ground engaging members; including motorcycles.

27. 27. The motorcycle of claim 26, further comprising a headlight assembly, wherein the first accessory is a windshield configured to be coupled to a portion of the headlight assembly.

28. 28. The motorcycle of claim 27, wherein the headlight assembly includes a light and a carrier configured to support the light, and the windshield is coupled to a rear surface of the carrier.

29. 28. The motorcycle of claim 27, wherein the windshield includes a windscreen portion and a support frame assembly, and the support frame assembly includes a plurality of grommets configured to mate with the windscreen portion.

30. 27. The motorcycle of claim 26, wherein the second accessory includes at least one of a high-mounted exhaust assembly, a high-mounted license plate holder, a rear fender, a saddlebag support, a seat cowl, a passenger handle, a luggage rack, and a side license plate.

31. 31. The two-wheeled vehicle of claim 30, further comprising a mounting bracket coupled to the frame assembly at the rear end and including an upper mounting portion and a lower mounting portion, the upper mounting portion configured to support the mounting bracket on the frame assembly and the lower mounting portion configured to support the second accessory.

32. 32. The motorcycle of claim 31, wherein the lower mounting portion defines a first plurality of apertures and a second plurality of apertures.

33. 32. The motorcycle of claim 31, wherein the rear end of the frame assembly defines a subframe, and the subframe is removably coupled to a mainframe that defines the front end of the frame assembly.