Support frame assembly and method of use thereof
The support frame assembly for racing simulator cockpits addresses authenticity and rigidity issues by providing adjustable seat and pedal configurations, ensuring a stable and immersive racing experience across multiple configurations.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-03-08
- Publication Date
- 2026-03-16
AI Technical Summary
Racing simulator cockpits face issues with authenticity, rigidity, and ease of assembly due to individually supplied components that often result in damage, excessive deflection, and lack of interchangeability between configurations, compromising the driving experience.
A support frame assembly with adjustable seat and pedal configurations, including pivotable pedal support frames and seat brackets, allowing for easy assembly, disassembly, and adjustment to provide a rigid, authentic racing environment adaptable to multiple configurations.
The assembly ensures a stable, adjustable, and authentic racing experience by maintaining rigidity and allowing seamless transitions between Formula 1 and Grand Touring configurations, enhancing tactile feedback and reducing component movement.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a support frame assembly and components for a racing simulator cockpit, and a method of using the same.
Background Art
[0002] Racing simulator cockpits that utilize motion platforms are becoming increasingly popular not only as a recreational activity but also as training equipment for professional racing drivers.
[0003] Typically, such cockpits are provided in the form of kits or assemblies that can be shipped at any time. Such kits or assemblies include, among other things, a base frame, a seat, a pedal set, a steering assembly, and optionally a motion simulator.
[0004] A problem commonly faced by such kits or assemblies is that they are usually a mixture of individually supplied components that are roughly combined to form a simulator cockpit. Apart from the lack of authenticity of the driver's race car environment, such kits or assemblies often consist of inexpensive components that quickly rub and get damaged, and are also difficult to assemble, disassemble, or adjust. For example, such kits or assemblies generally include corner brackets for connection, which are difficult and time-consuming to assemble.
[0005] Another specific problem with such kits or assemblies concerns the use of seat sliders to adjustably connect the seat to the base frame. While the use of such seat sliders is considered necessary to make the simulator cockpit adjustable, the inventors have found that seat sliders result in excessive deflection and movement of the associated seat, thus compromising the authenticity of the race car environment. In fact, in some cases, the sliders dull haptic feedback from the motion simulator, so seat sliders can create a disconnect between the driver and the experience.
[0006] Another specific problem with such kits or assemblies is that, once assembled, the cockpit typically offers only a single racing configuration, such as grand touring ("GT") or Formula 1. Some kits or assemblies offer crude workarounds for swapping the cockpit between Formula 1 and GT racing configurations, but such workarounds often simply pivot the cockpit's base frame at one end and do not provide a truly interchangeable cockpit. Rather, such cockpits lack the necessary rigidity and evoke a rickety picnic, camping, or beach chair or recliner rather than the environment of driving a race car.
[0007] The specific problems described above are particularly evident when replica race car pedal sets, such as Heusinkveld™ Sim Pedals Ultimate+, are used in Formula 1 racing configurations. Such pedal sets can typically handle real forces up to 140 kg and include hydraulic braking when each pedal is activated. Consequently, when individual pedals are activated, the pedal set support frame supporting such a pedal set often flexes and moves, potentially confusing the driver and compromising driver performance and the overall simulated racing experience.
[0008] In fact, when such pedal sets are used, it's not uncommon for the Formula 1 racing pedal set to shift or move during the race, thus ruining the racing experience.
[0009] Where prior art publications are referenced herein, it will be clearly understood that such references do not constitute an acknowledgment that such publications form part of the common general knowledge of the art in Australia or any other country. [Overview of the Initiative]
[0010] Embodiments of the present invention provide a support frame assembly and its components for a racing simulator cockpit, as well as a method of using the same, which can at least partially address one or more of the problems or defects mentioned above, or which can provide a useful or commercial option to the public.
[0011] According to a first aspect of the present invention, a support frame assembly for a racing simulator cockpit is provided, the assembly comprising: A base frame defining the front end and the opposite rear end, A pair of opposing seat brackets for adjustable mounting of a seat, extending from opposite sides of the base frame at or near the rear end, the seat brackets being adapted to mount the seat interchangeably in Formula 1 racing and Grand Touring racing configurations. A steering wheel assembly support frame extending upward from the base frame, located between the seat bracket and the front end of the base frame, A pedal support frame for mounting a pedal set thereon, having a second opposite end that pivots to a steering wheel assembly support frame at a first end and is pivotable between a Formula 1 racing configuration and a Grand Touring racing configuration, A pedal set support bracket for supporting a pedal support frame, which extends upward from one of the opposite sides of the base frame at or near its front end, and is adapted to be pivotable relative to the base frame to selectively fix the pedal support frame between a Formula 1 racing configuration and a Grand Touring racing configuration. Includes.
[0012] According to a second aspect of the present invention, a base frame member is provided for forming a base frame for a support frame assembly, the base frame can be connected to at least one other similar base frame member to form a base frame, the base frame member is A pair of opposite ends, At least four side walls extending longitudinally between opposite ends, including an upper side wall, an opposite lower side wall, an internal frame side wall, and an opposite external frame side wall, and The outer frame sidewalls include, Extending at least partially along the length of the outer frame sidewall between opposite ends, there is at least one fastener channel for receiving one or more fasteners for fastening assembly components to the base frame, An angled wall section defines a receiving opening that extends inward from the edge adjacent to the lower side wall and the outer frame side wall, defining a groove for receiving light inside. It has.
[0013] According to a third aspect of the present invention, a seat bracket is provided for use with the assembly of the first aspect, the seat bracket being configured to be mounted to the side of the base frame for adjustable mounting of the seat to the base frame, the seat bracket defining a plurality of mounting points for adjustable mounting of the seat in at least two configurations corresponding to Formula 1 racing and Grand Touring racing configurations.
[0014] According to a fourth aspect of the present invention, a pedal set support bracket is provided for use with the assembly of the first aspect, the support bracket being configured to extend upward from the base frame at or near the front end of the assembly to support the pedal set against the base frame, the pedal set support bracket being configured to pivot relative to the base frame between at least two configurations corresponding to Formula 1 racing and Grand Touring racing configurations.
[0015] According to a fifth aspect of the present invention, a seat slide assembly is provided for use with a support frame assembly of a racing simulator cockpit, the seat slide assembly being: At least one pair of slide brackets, each configured to slidably attach a seat to the base frame of a support frame, the base frame includes at least two base frame members to which it can be integrally connected, and each base frame member has at least one fastener channel defining at least one side of the base frame and extending at least partially along the length of the side, To releasably secure each slide bracket to the side of the base frame, at least one fastener channel on each base frame member and at least one pair of slide fasteners operably associated with each of them Includes.
[0016] According to a sixth aspect of the present invention, a mounting assembly for a pedal set support frame of a racing simulator cockpit is provided, the assembly comprising: A mounting bracket for interfaced the connection between the cockpit base frame and the steering wheel assembly support frame, and for pivotally mounting the pedal set support frame at or near a first end, having a pair of opposite flat surfaces interconnected by opposite edges, and having a plurality of apertures defined on the flat surfaces, through which fasteners for at least interconnecting the base frame and the steering wheel assembly support frame are received via the mounting bracket, A stabilization mount for stabilizing a pedal set support frame relative to a base frame, comprising a base frame mounting portion for engaging with the base frame, and a pedal set support frame mounting portion extending upward from the base frame mounting portion, wherein the pedal set support frame mounting portion comprises a plurality of apertures extending at least partially along the height of the pedal set support frame mounting portion, defined thereon in a stacked structure, each aperture defining a discrete mounting point, the discrete mounting points being configured to selectively receive fasteners for mounting the pedal set support frame at a position selected between a raised position and a lower position relative to the base frame, and Includes.
[0017] According to a seventh aspect of the present invention, a pedal set support frame assembly for a racing simulator cockpit is provided, the assembly comprising: A mounting bracket for interfaced connection between the cockpit base frame and the steering wheel assembly support frame, having a pair of opposite flat surfaces interconnected by opposite edges, and having a plurality of apertures defined on the flat surfaces, through which fasteners for at least interconnecting the base frame and the steering wheel assembly support frame are received via the mounting bracket, A pedal set support frame for mounting a pedal set thereon, the frame having a first end that can be pivoted to at least one mounting bracket, and a second end on the opposite side that is pivotable between a raised position and a lower position relative to a base frame, A stabilization mount for stabilizing a pedal set support frame relative to a base frame, comprising a base frame mounting portion for engaging with the base frame, and a pedal set support frame mounting portion extending upward from the base frame mounting portion, wherein the pedal set support frame mounting portion comprises a plurality of apertures extending at least partially along the height of the pedal set support frame mounting portion, defined thereon in a stacked structure, each aperture defining a discrete mounting point, the discrete mounting points being configured to selectively receive fasteners for mounting the pedal set support frame at a position selected between a raised position and a lower position relative to the base frame, and Includes.
[0018] According to an eighth aspect of the present invention, a mounting bracket is provided for interface with the connection between the base frame and the steering wheel assembly support frame of a racing simulator cockpit, and for use in pivoting the pedal set support frame to the racing simulator cockpit, or for use in conjunction with the assembly of the sixth or seventh aspect, the mounting bracket having a pair of opposite flat surfaces interconnected by opposite edges, and having a plurality of apertures defined on the flat surfaces through which fasteners for interconnecting at least the base frame and the steering wheel assembly support frame around the mounting bracket are received.
[0019] According to a ninth aspect of the present invention, there is provided a stabilization mount for use in stabilizing a pedal set support frame relative to a base frame of a racing simulator cockpit, or a stabilization mount when used with the assembly of the sixth or seventh aspect therefor, the mount including a base frame attachment portion for engaging the base frame and a pedal set support frame attachment portion extending upwardly from the base frame attachment portion, the pedal set support frame attachment portion including a plurality of apertures defined thereon in a stack structure and at least partially extending along the height of the pedal set support frame attachment portion, each aperture defining a discrete attachment point, the discrete attachment point being configured to selectively receive a fastener for attaching the pedal set support frame between a raised position and a lowered position relative to the base frame through the discrete attachment point.
[0020] According to a tenth aspect of the present invention, there is provided an end cap for an end of a frame member having at least one fastener channel extending at least partially along the length of a side of the frame member, the end cap being configured to be operatively associated with the end of the frame member and having at least one aperture defined in an edge of the end cap and configured to be in fluid communication with the at least one fastener channel, whereby a slide fastener can be inserted into or removed from the at least one fastener channel without removing the end cap.
[0021] According to an eleventh aspect of the present invention, there is provided a tool holder for use with the support frame assembly of the first aspect, the holder having a body configured to be releasably secured to a frame member of the support frame assembly, the body defining at least one aperture for at least partially receiving and holding a tool.
[0022] According to a twelfth aspect of the present invention, there is provided a cable clip for use with the support frame assembly of the first aspect, said clip having a body configured to be releasably secured to a frame member of the support frame assembly, said body defining a pair of opposed clamping members configured to releasably clamp at least one cable therebetween.
[0023] Advantageously, the present invention provides a support frame assembly that is easy to assemble, disassemble, and / or modify and has the rigidity necessary to provide a truly authentic driver's racing car environment.
[0024] Furthermore, the assembly components can be easily adjusted relative to one another to adapt the assembly to various racing configurations while still maintaining their required rigidity.
[0025] Furthermore, the seat slide assembly of the present invention removes any gap between the driver and the experience, so that the driver can receive real tactile feedback from the motion simulator while still being able to easily adjust the seat position.
[0026] Finally, according to the mounting assembly of the present invention, the pedal set support frame can be stably mounted to the base frame of the racing simulator cockpit while still being able to pivot the pedal set support frame, and thus the pedal set, between raised and lowered positions, including between Formula 1 racing configurations and Grand Touring ("GT") racing configurations, and other racing configurations. Thus, the assembly removes any gap between the driver and the experience, so that the driver can receive real tactile feedback from the pedal set without the risk that the pedal set support frame will move, i.e., shift, during the race.
[0027] As shown, the support frame assembly and its components for the racing simulator cockpit are interchangeable between at least two configurations, including a Formula 1 racing configuration and a Grand Touring ("GT") racing configuration, and also provide a more authentic racing experience.
[0028] As used herein, the term “Formula 1 racing configuration” means a cockpit configuration in which the seat is angled at least 120° rearward with respect to the horizontal plane, and the pedal set is positioned relative to the cockpit configuration at an angle of at least 45° with respect to the horizontal plane. Generally, in a Formula 1 racing configuration, the pedal support brackets extend substantially vertically upward from the base frame so that the pedal set mounted on the pedal support brackets is mounted at an angle of at least 45° with respect to the horizontal plane.
[0029] As used herein, the term “Grand Touring Racing Configuration,” or “GT Racing Configuration,” refers to a racing configuration in which the seat is more upright compared to Formula 1 racing, typically having an angle of less than 120° to the horizontal plane, and the pedal set is deployed in a substantially horizontal orientation. Generally, in a GT racing configuration, the pedal support brackets are deployed substantially forward from the base frame so that the pedal set mounted on the pedal support brackets is mounted in a substantially horizontal orientation.
[0030] In some embodiments, the support frame assembly can provide three or more racing configurations. For example, the assembly may further include a hybrid racing configuration in which the seat is mounted in the same or similar orientation and / or position as in the GT racing configuration, and the pedal set is mounted in the same or similar orientation and / or position as in the Formula 1 racing configuration.
[0031] As shown, the support assembly preferably includes a base frame defining the front end and the opposite rear end of the support assembly, with opposite sides extending between them.
[0032] The base frame may be of any suitable size, shape, and structure for supporting the support assembly against the support surface, and may be formed from any suitable one or more materials. For example, the base frame may be formed from one or more metal and / or plastic materials, preferably plastic materials, more preferably aluminum, steel, titanium, or composites thereof.
[0033] The frame may be rectangular, circular, triangular, pentagonal, hexagonal, heptagonal, octagonal, or any variation or combination thereof, but a rectangular shape is preferred.
[0034] Typically, a frame can be formed from two or more frame members, preferably four frame members, that are joined together as a single unit.
[0035] The frame members may be tubular or three-dimensional, and tubular frame members are preferred. Each frame member may have a substantially circular, elliptical, or rectangular cross-section, and a rectangular cross-section is preferred.
[0036] Each frame member may include an elongated body having a pair of opposite ends and at least one side wall extending linearly between them, preferably in a linear direction. The elongated body may preferably be defined by four side walls, including an upper side wall, a lower side wall on the opposite side, an internal frame side wall, and an external frame side wall on the opposite side. Each end and / or end portion may be adapted to connect directly or indirectly to other frame members to assemble a frame.
[0037] Frame members can be constructed in any suitable way. For example, frame members can be mechanically folded from sheet metal, or they may be extruded, typically by extrusion.
[0038] Appropriately, the frame members may be frame members of any length suitable for forming a desired shape, preferably a rectangular frame.
[0039] Similarly, the frame members can have any suitable width and height. For example, the frame members can have a width and / or height ranging from about 20 mm to about 200 mm, preferably from about 40 mm to about 160 mm, and more preferably from about 40 mm to about 100 mm.
[0040] As shown, frame members can be joined or connected directly or indirectly, in any suitable manner, from end to end, or from end portion to end portion, to form a base frame. Typically, frame members can be joined at right angles (90°) to each other to form a rectangular base frame. Typically, each joint can include at least two frame members.
[0041] Any type of joint can be used between adjacent frame members.
[0042] For example, when frame members are directly joined or connected as a whole, the joints may be butt joints, diagonal joints, overlapping joints, or mortise and tenon joints, and are typically butt joints.
[0043] In some embodiments, each frame member may include a mating end that mates with or connects to the respective ends of other frame members, such as a screw connection, interference fit (snap fit), bayonet type connection, or friction fit connection.
[0044] In some such embodiments, the first end of a frame member may include a male structure configured to be inserted into or coupled with a female structure at the second end of another frame member.
[0045] In other embodiments, frame members can be joined together via coupling components adapted to be operationally associated with the ends of the frame members being joined. Each joint may include one or more coupling components.
[0046] The connecting components can be operationally associated with each end or end portion of the frame members in any suitable manner. For example, the connecting components can be fastened to each frame member or one of the frame members by one or more fasteners or adhesives.
[0047] In some embodiments, the connecting components may include brackets, such as corner brackets.
[0048] In other embodiments, the coupling component may include a corner connector.
[0049] In a preferred embodiment, the base frame may be formed by four integrally connected frame members, including a pair of side frame members that extend substantially parallel to each other in the longitudinal direction, and the pair of side frame members are integrally connected by a pair of cross frame members that extend substantially parallel to each other in the transverse direction relative to the side frame members.
[0050] The pair of intersecting frame members can be extended between the respective end portions of the side frame members, and can also define the front and rear ends of the base frame.
[0051] Each cross frame member and side frame member can preferably be joined together at a butt joint using one or more mechanical fasteners. The end portion of each side frame member may include one or more openings extending through the inner frame sidewall and outer frame sidewall at or near each end, and the end portion of each cross frame member may include one or more corresponding openings configured to align with the aperture in the side frame member, through which mechanical fasteners are received, joining the side frame member and the cross frame member together.
[0052] As shown, each frame member may include at least one fastener channel extending at least partially along the length of the outer frame wall between the opposite ends, preferably along the entire length.
[0053] The channel may be of any suitable size and shape, and may have any suitable contour shape for releasably fastening, preferably slidably, one or more fasteners thereon.
[0054] In a preferred embodiment, the channel can be sized and shaped such that the fastener can slide along the channel, while preventing lateral movement of the fastener away from the channel, i.e., separation.
[0055] In some such embodiments, the channel may have a C-shaped cross-section.
[0056] In other such embodiments, the channel may have a T-shaped or trapezoidal cross-section.
[0057] Any suitable type of fastener can be releasably fixed to the channel, preferably in a slidable manner.
[0058] Generally, a fastener may be a slide fastener configured to be slidably attached to a channel to releasably fasten components thereon.
[0059] Typically, a fastener can include an expanding head and a threaded shank that extends away from the head.
[0060] Ideally, the magnifying head can be slidably mounted in the channel via its end and configured to slide in place. The head can be sized and shaped such that it slides along the length of the channel, while lateral separation, i.e., disengagement from the channel, is not possible.
[0061] The shank may include a threaded shank portion.
[0062] In some embodiments, the fastener may further include a nut configured to be screwed onto the shank. This nut may be a wing nut. Alternatively, the nut may also include one or more handles extending away from the nut to facilitate tightening and loosening the nut on the shank.
[0063] In other embodiments, various components for securing to the channel may include threaded openings configured to be screwed to the shank.
[0064] In some embodiments, each frame member may include two or more fastener channels that extend at least partially along its length.
[0065] For example, each frame may include one or more clamping channels extending along at least two side walls, preferably all side walls. Similarly, each frame member may include one or more clamping channels extending along the same side wall, preferably in a parallel arrangement.
[0066] In some embodiments, each side wall of the frame member may include a single fastener channel that extends at least partially along the length of the frame member, which is preferably the entire length.
[0067] In other embodiments, the upper and lower side walls of the frame member may each include a single fastener channel extending at least partially along the length of the frame member, and the inner frame side wall and the opposite outer frame side wall may each have a pair of fastener channels extending at least partially and substantially parallel to each other along the length of the frame member.
[0068] As shown, in some embodiments, at least some frame members may further include receiving openings defined by angled wall portions that extend inward from edges adjacent to the lower sidewalls and outer frame sidewalls, defining grooves, preferably base frames, of the frame members. Preferably, the receiving openings and grooves can extend along the entire length of the frame member.
[0069] The angled wall section can extend inward from the edge at any appropriate angle relative to the lower side wall. For example, the angled wall section can extend inward from the lower side wall at an angle ranging from approximately 20° to approximately 85°, typically from approximately 50° to approximately 75°, preferably at an angle of approximately 70°.
[0070] As shown, the resulting groove may be any suitable size and shape to receive lighting inside, preferably strip lighting such as an LED strip. Advantageously, strip lighting can enhance the aesthetic appeal of racing simulator cockpits and racing / gaming experiences. Preferably, the resulting groove can be sized and shaped to receive lighting inside, at least partially, so that the lighting is at least partially concealed.
[0071] In some embodiments, the external surface of an angled portion can also be used for marking. Advantageously, the angle makes any marking applied thereto easily visible, especially when illuminated by lighting positioned directly above.
[0072] The pair of opposing seat brackets may be of any suitable size, shape, and structure for adjustingly mounting the seat to the base frame at or near the rear end of the base frame.
[0073] In some embodiments, each bracket may have a substantially L-shaped cross-section, having a base-frame engaging portion that can be fastened directly or indirectly to the top of the base frame, and a seat engaging portion adapted to be fastened to the seat. The seat engaging portion may preferably be angled perpendicular to the base-frame engaging portion from a common, i.e., shared edge.
[0074] Each section may include one or more apertures, and these apertures may be sized and shaped to receive mechanical fasteners, etc., for fastening those sections to the base frame and seat, respectively, through their apertures.
[0075] In some such embodiments, each part may include multiple apertures, thereby providing multiple mounting points for adjustablely attaching the seat to the base frame.
[0076] Preferably, each bracket can be extended vertically between the rearward-facing edge and the opposite, frontward-facing edge.
[0077] In a preferred embodiment, the sheet engagement portion of each bracket preferably includes a plurality of elongated apertures defined on or near the rear-facing edge and unfolding in a stacked structure along the height of the portion, and a plurality of substantially circular apertures defined on or near the front-facing edge and unfolding in a stacked structure along the height of the portion. These elongated apertures, in conjunction with the substantially circular apertures, allow the sheet to be precisely mounted at a desired angle to a base frame corresponding to at least one of at least two configurations during use.
[0078] As shown, in some embodiments, the seat can be indirectly attached to the base frame via the slide bracket of the seat slide assembly.
[0079] In some such embodiments, each seat bracket may be slidable relative to the base frame via at least one slide bracket that is slidably mounted to at least one fastener channel that is associated with the seat bracket and extends at least partially along the side of the base frame, preferably along the length of the outer frame sidewall of the side frame member. The at least one slide bracket can be slidably mounted to at least one fastener channel using the slide fasteners already described.
[0080] In other such embodiments, the seat slide assembly may include at least a pair of slide brackets, each configured to be slidably mounted on each side of the base frame and interconnected by frame members extending between them.
[0081] Each slide bracket can be fastened to the end of the frame member, preferably via mechanical fasteners received through apertures defined within the slide bracket and within the end of the frame member.
[0082] As in the embodiments already described, each slide bracket can be slidably mounted to at least one fastener channel that extends at least partially along the length of an adjacent side of the base frame, preferably along the outer frame side wall of the side frame member. In this case as well, each slide bracket can be slidably mounted to at least one fastener channel using the slide fasteners already described.
[0083] Furthermore, in such embodiments, the base frame engagement portion of each seat bracket can be fastened to the frame member of the seat slide assembly by one or more slide fasteners fastened to at least one fastener channel that preferably extends at least partially along the upper side wall of the frame member. The shanks of one or more fasteners can extend upward from the channel through an aperture defined within the base frame engagement portion, and each seat bracket can be fastened in place by one or more nuts screwed to the shanks.
[0084] As shown, the support frame assembly includes at least one pedal set support bracket extending upward from one of the opposite sides of the base frame at or near its front end to support a pair of pedal set support brackets extending upward from opposite sides of the base frame.
[0085] The bracket may be any suitable size, shape, and structure that supports the pedal set against the base frame and is pivotable relative to the base frame between at least two configurations, preferably with adjustable height.
[0086] Each bracket can directly support a pedal set or support it indirectly. In the case of indirect support, the bracket can support a pedal support frame on which the pedal set is mounted.
[0087] Generally, a bracket can have an elongated, flat shape. A bracket can include a pair of opposite surfaces, including an inner surface and an outer surface on the opposite side. These opposite surfaces can be substantially parallel to each other and can be interconnected by their opposite edges.
[0088] The bracket may include opposite ends, including a base frame mounting end and a pedal set engagement end on the opposite side. The bracket may extend longitudinally between the opposite ends in an arc that curves backward, preferably toward the rear end of the base frame.
[0089] The base frame mounting end may include one or more apertures defined thereon, through which one or more mechanical fasteners for fastening the bracket to the base frame, preferably one or more slide fasteners for fastening the end to at least one fastening channel. The one or more apertures may be substantially circular, elongated and / or arched in shape. The arched shape can advantageously facilitate pivoting the bracket between at least two configurations, or adjusting the position of the pedal set.
[0090] When the pedal set is mounted directly, the engaging end of the pedal set may include one or more apertures defined thereon, through which one or more mechanical fasteners are received for fastening the pedal set to the end in the desired orientation.
[0091] When the pedal set is mounted indirectly, the engaging end of the pedal set may include a shaped aperture that defines two or more mounting or locking positions for mounting or locking the pedal support frame to the base frame in a desired orientation.
[0092] The shaped aperture may include an elongated aperture portion that partially unfolds toward the base frame mounting end, the elongated aperture portion including two or more mounting or locking aperture portions that branch off from the elongated aperture portion at a certain angle and spaced apart from each other to slidably receive one or more fasteners that mount or lock the pedal support frame to at least one bracket in a desired orientation.
[0093] The pedal support frame may be any suitable size, shape, and structure for mounting a pedal set on it and for slidably mounting it to a pedal set support bracket.
[0094] Typically, the pedal support frame may include a pair of opposite side frame members, pivoted at one end to the steering wheel assembly support frame and integrally connected at the opposite end, or near thereto, by at least one cross frame member. The pedal support frame may also be pivotable, along with at least one bracket, between at least two configurations corresponding to Formula 1 racing and GT racing configurations.
[0095] Preferably, at least one of a pair of opposite side frame members can be slidably mounted to a pedal set support bracket, and both can be slidably mounted to their respective pedal set support brackets.
[0096] In some embodiments, at least one side frame member and at least one bracket of the pedal support frame can be slidably attached together by at least one slide fastener operably associated with at least one fastener channel that extends at least partially along the length of the frame member, and can be releasably fastened to a shaped aperture of the bracket.
[0097] In a preferred embodiment, the support assembly may include a pair of brackets opposite to each other, and each side frame member of the pedal support frame may be slidably attached to an adjacent bracket by at least one slide fastener operably associated with at least one fastener channel unfolding along the frame member, and may be releasably fastened to a shaped aperture of the adjacent bracket.
[0098] During use, the pedal support frame and the pedal set mounted thereon may be pivotable to two or more pivot positions corresponding to two or more mounting or locking positions of the bracket's shaped aperture, relative to the base frame and the steering wheel support frame. Advantageously, pivoting the pedal support frame relative to the base frame allows for greater height adjustment of any pedal set mounted thereon.
[0099] As shown, the support frame assembly includes a steering wheel assembly support frame that extends upward from the base frame at a position between the seat bracket and the pedal support bracket, for supporting at least the steering wheel assembly, and preferably also for supporting the gear stick shifter assembly and / or the handbrake support assembly. The steering wheel assembly support frame is preferably optionally adjustable so that the height, angle, and / or distance of the steering wheel assembly can be customized to the driver's desired position.
[0100] The support frame may be any suitable size, shape, and structure for supporting at least the steering wheel assembly relative to the base frame.
[0101] For example, in some embodiments, the support frame may include an L-shaped frame member comprising a first portion extending upward from the side of the base frame to a movable height, and a second portion extending perpendicularly from the first portion for supporting the steering wheel assembly against the base frame.
[0102] In other embodiments, the support frame may include a U-shaped frame member comprising a first and third portion extending upward from opposite sides of the base frame to a movable height, and a second portion extending between the upper end of the first portion and the upper end of the third portion for supporting the steering wheel assembly against the base frame.
[0103] In other embodiments, the frame may include at least one frame member extending upward from the side of the base frame to its upper end, and at least one support bracket extending horizontally from the upper end of the at least one frame member for supporting the steering wheel assembly relative to the base frame.
[0104] In a preferred embodiment, the frame may include a pair of opposite frame members extending upward from opposite sides of the base frame, and at least one support bracket extending between the upper ends of the frame members for supporting a steering wheel assembly relative to the base frame. The at least one support frame may be slidably mounted on the opposite frame members to allow for height adjustment of the steering wheel assembly mounted thereon.
[0105] In such embodiments, the various frame members may be as described above, and they can be integrally joined by any one of the joints or connecting components described above.
[0106] The support bracket may be any suitable size, shape, and structure for mounting the steering wheel assembly on it.
[0107] Typically, a bracket can have an elongated, flat shape. A bracket may include a pair of opposite surfaces, including an upper surface and a lower surface on the opposite side. These opposite surfaces may extend substantially parallel to each other and may be interconnected by their opposite edges.
[0108] The bracket may include opposite ends that can be connected to the upper end of the frame member. The bracket can extend vertically between these opposite ends.
[0109] The opposite surfaces of the bracket may include one or more apertures defined on those surfaces, through which one or more fasteners for fastening the steering wheel assembly to the support bracket may be received.
[0110] In some embodiments, one or both of the opposite ends may include folded, preferably right-angled, flange portions for connecting to adjacent frame members. Similar to the opposite surfaces, each folded flange portion may also include one or more apertures defined thereon, through which one or more fasteners may be fastened to the upper end of an adjacent frame member, preferably using the slide fastener and fastener channel structures already described.
[0111] Each frame member may include a pair of opposite ends, including an upper end and a base frame mounting end on the opposite side.
[0112] The base frame mounting end can be attached directly or indirectly to at least one fastener channel that extends at least partially along the side of the base frame, preferably along the length of the outer frame side wall of the side frame member. The base frame mounting end can be slidably attached to at least one fastener channel using one or more slide fasteners as described above.
[0113] When mounted indirectly, the base frame mounting end may include a mounting bracket that is operationally associated with the end and configured to be slidably mounted to at least one fastener channel using one or more of the slide fasteners already described.
[0114] The frame members can be unfolded upward from the base frame in any suitable orientation relative to the base frame members, preferably in the same orientation.
[0115] For example, in some embodiments, the frame members can be unfolded upward in a substantially vertical orientation.
[0116] In other embodiments, the frame members can be extended upward at a certain angle relative to the base frame. For example, the frame members can be extended upward at an acute or obtuse angle, preferably an obtuse angle, relative to the front end of the base frame.
[0117] In some embodiments, the frame members can be extended upwards at an angle of about 91° to about 140° relative to the front end of the base frame, preferably in the range of about 91° to about 120°, and more preferably at an angle of about 110°.
[0118] As shown, in some embodiments, the pedal support frame can be pivoted to the steering wheel assembly support frame, preferably to at least one of the frame members extending upward from the base frame.
[0119] In some such embodiments, the opposite side frame members of the pedal support frame can be pivoted to the respective frame members of the steering wheel assembly support frame. Typically, the pedal support frame can be pivoted via coupling brackets slidably fastened to at least one fastener channel that extends at least partially along the front-facing side wall of each frame member of the steering wheel assembly support frame, preferably near the base frame mounting end.
[0120] In some embodiments, the steering wheel assembly support frame may further include subframes for supporting the gear stick shifter assembly and, preferably, the handbrake support assembly as well. In some embodiments, the subframes may further support other accessories, including, but not limited to, a keyboard, mouse holder, tablet holder, and / or button box holder.
[0121] The subframe may be of any appropriate size, shape, and structure, and may be associated with the support frame in any appropriate manner.
[0122] Typically, the subframe can be deployed from one side of the support frame and may include one or more frame members for supporting the gear stick shifter assembly and / or handbrake support assembly against the base frame.
[0123] For example, in some embodiments, the subframe may include an L-shaped frame member that includes a first portion extending outward from the frame member of the steering wheel assembly support frame, and a second portion extending downward from the first portion for coupling with the side frame member of the base frame. In such embodiments, the first portion may be configured to mount the gear stick shifter assembly and / or handbrake support assembly thereon.
[0124] In other embodiments, the subframe may include a first frame member extending rearward from the outer frame sidewall of the frame member of the steering wheel assembly support frame, and a second frame member extending downward from the rearmost end of the first frame member.
[0125] Typically, the first frame member and the second frame member can be joined together, and they can also be joined to the frame member of the steering wheel assembly support frame and the side frame member of the base frame, respectively, using the fastener channel and slide fastener structure described above.
[0126] In some such embodiments, the gear stick shifter assembly and / or handbrake support assembly can be mounted directly to the top of the first frame member.
[0127] The first frame member can be slidably mounted on the steering wheel assembly support frame and the second frame member, so that the height of the gear stick shifter assembly and / or handbrake support assembly mounted thereon can be adjusted.
[0128] In other such embodiments, the subframe may further include a mounting bracket configured to be fastened to the top of a first frame member for mounting a gear stick shifter assembly and / or a handbrake support assembly thereon. The bracket may include one or more apertures defined thereon, through which one or more mechanical fasteners are received for fastening the gear stick shifter assembly and / or handbrake support assembly to the bracket.
[0129] As shown in the sixth, seventh, eighth, and ninth aspects of the present invention, in some embodiments, at least one mounting bracket is provided for interface the connection between the base frame and the steering wheel assembly support frame and for pivotally mounting the pedal set support frame.
[0130] The mounting bracket may be of any suitable size, shape, and structure, and may be formed from any suitable one or more materials, typically from a rigid material, preferably metal, that can stabilize the connection between the base frame and the steering wheel assembly support frame.
[0131] Generally, mounting brackets can have a substantially flat shape. Brackets can have a substantially triangular, rectangular, or polygonal shape, and are preferably substantially rectangular.
[0132] The mounting bracket may include a pair of opposing surfaces, one an inner surface configured to engage with the base frame, and the other an outer surface configured to engage with the steering wheel assembly support frame. The opposing surfaces may be positioned substantially parallel to each other.
[0133] During use, the mounting bracket is configured to be attached between the outer surface of the side frame member of the base frame and the inner surface of the side frame member of the steering wheel assembly support frame, thereby interconnecting them.
[0134] Surfaces opposite each other can be interconnected by edges opposite each other. These opposite edges may include a lower edge, an upper edge on the opposite side, a front edge facing the front end of the base frame, and a rear edge on the opposite side.
[0135] The lower and upper edges can be extended substantially parallel to each other and substantially horizontally.
[0136] The front and rear edges can also be extended substantially parallel to each other, preferably at an angle toward the rear, such that they coincide with the angle the steering wheel assembly support frame makes toward the rear relative to the base frame.
[0137] In some embodiments, the rear edge may include a notch that is at least partially defined along the rear edge and the upper edge. Advantageously, the notch may complement the angle at which the steering wheel assembly support frame extends upward from the base frame to provide a desirable aesthetic finish.
[0138] As shown, the mounting bracket may include multiple apertures defined thereon, through which it receives fasteners for at least interconnecting the base frame and the steering wheel assembly support frame.
[0139] These apertures can be sized and shaped appropriately to receive fasteners, preferably mechanical fasteners, through them.
[0140] Similarly, these apertures can be mounted on mounting brackets in any suitable structure to provide a stable interconnection between the base frame and the steering wheel assembly support frame.
[0141] Typically, these apertures can be arranged in a spaced configuration around the mounting bracket.
[0142] For example, in some embodiments, the mounting bracket interconnects the lower end of the steering wheel assembly support frame and the side frame members of the base frame, spaced apart along the lower edge of the bracket, and may include at least four apertures for connecting the bracket to the side frame members.
[0143] In a preferred embodiment, the bracket may interconnect the lower edge of the steering wheel assembly support frame and the side frame members of the base frame, spaced apart along the lower edges and lower portions of the rear and front edges, and may include at least six apertures for connecting the bracket to the side frame members.
[0144] These apertures may include pairs of apertures opposite each other and a central pair positioned between them.
[0145] A pair of opposite apertures defined along the rear and front edges can each be configured to receive fasteners through those apertures for fastening the mounting bracket to the outer surface of the side frame member of the base frame.
[0146] A pair of central apertures defined along the lower edge can be configured to receive fasteners through them for interconnecting the base frame and the steering wheel assembly support frame.
[0147] In other embodiments, the mounting bracket may further include a pair of central apertures defined along its upper edge. The pair of central apertures may be configured to receive fasteners for fastening to the steering wheel assembly support frame, preferably through those apertures, such that the rear edge of the steering wheel assembly support frame unfolds to the same height as a notch defined at least partially along the upper and rear edges of the mounting bracket.
[0148] In some embodiments, these apertures can be positioned on the mounting bracket so as to substantially align with one or more fastener channels defined on at least the side frame members of the base frame and / or steering wheel assembly support frame. Advantageously, this significantly simplifies the assembly of the simulator by allowing fasteners to be slidably mounted to one or more fastener channels on the side frame members of the base frame, and the mounting bracket and steering wheel assembly support frame to be mounted thereon, and preferably on the other hand, the steering wheel assembly support frame can still be slidably adjusted along the length of the base frame even after assembly.
[0149] In a preferred embodiment, the mounting bracket further defines a pivot mounting portion for pivotally attaching the first end of the pedal set support frame.
[0150] The pivot mount portion may be a corner portion defined at the connection between the upper edge and the front edge.
[0151] The pivot mount portion may include at least one aperture defined thereon for pivoting the first end of a pedal set support frame to the pivot mount portion.
[0152] Any appropriate number of apertures can be defined on the pivot mount portion. For example, the pivot mount portion may include at least two apertures, at least three apertures, at least four apertures, at least five apertures, and even at least six apertures.
[0153] In some embodiments, the pivot mount portion adapts to a pedal set support frame formed from frame members of varying thicknesses and may include a pair of apertures defined thereon, preferably in a vertical stacked structure, so as not to interfere with the pivot of the pedal set support frame around the first end relative to the mounting bracket.
[0154] In a preferred embodiment, the mounting assembly may interface the connection between the base frame and the steering wheel assembly support frame and include a pair of mounting brackets for pivoting the pedal set support frame to each side of the simulator cockpit.
[0155] As shown, the mounting assembly typically further includes at least one stabilization mount, typically on or near the opposite second end, for stabilizing the pedal set support frame against the base frame.
[0156] The stabilization mount may be any suitable size, shape, and structure, and may be formed from any suitable one or more materials, typically from a rigid material, preferably metal, that can stabilize the pedal set support frame against the base frame.
[0157] Generally, stabilizing mounts can have an elongated, substantially flat shape. Mounts can also have a substantially triangular, rectangular, or polygonal shape. Typically, mounts can have an inverted "L" shape.
[0158] The mount may include a pair of opposing surfaces, including an internal surface configured to engage with both the base frame and the pedal set support frame, and an external surface on the opposite side. The opposing surfaces may be positioned substantially parallel to each other.
[0159] Surfaces opposite each other can be interconnected by edges opposite each other. These opposite edges may include a lower edge, an upper edge on the opposite side, and one or more front edge portions extending between them, and a rear edge portion on the opposite side.
[0160] One or more front edge portions may include a lower front edge portion and an upper front edge portion. The lower front edge portion and the upper front edge portion may each flare outward in a morning glory shape at an intermediate connection between the upper and lower edges. One or more front edge portions may define a substantially convex front edge.
[0161] One or more rear edge portions may include three or four rear edge portions that are tapered inward partway between the upper and lower edges. One or more rear edge portions may define a substantially concave rear edge.
[0162] As shown, the mount may include a base frame mounting portion for engaging with and attaching to the base frame, preferably the outer side wall of a side frame member of the base frame. Preferably, the base frame mounting portion can be positioned along the lower edge.
[0163] The base frame mounting section may include multiple apertures defined thereon, through which fasteners for attaching the stabilizer mount to the base frame are received.
[0164] These apertures can be sized and shaped appropriately to receive fasteners, preferably mechanical fasteners, through them.
[0165] These apertures can preferably be arranged in a spaced configuration along the lower edge such that they substantially align with one or more fastener channels defined on at least the outer sidewalls of the side frame members of the base frame. In this case as well, this advantageously facilitates the assembly of the simulator by allowing fasteners to be slidably attached to one or more fastener channels of the base frame and stabilizing mounts to be attached thereon. Furthermore, the stabilizing mounts can be slidably adjusted along the length of the base frame.
[0166] Typically, these multiple apertures may include at least two apertures, preferably three.
[0167] As shown, the stabilization mount extends upward from the base frame mounting portion and further includes a pedal set support frame mounting portion, which typically extends upward from the front edge portion of the base frame mounting portion.
[0168] The pedal set support frame mounting portion may include a plurality of apertures that unfold at least partially along the height of the portion to provide discrete mounting points for mounting the pedal set support frame at positions selected between a raised position and a lower position defined thereon in a stack structure.
[0169] The selected configurations may include GT racing configurations, Formula 1 racing configurations, and one or more configurations in between. For example, the selected configurations may further include hybrid, cup, tank, or track configurations.
[0170] Therefore, these multiple apertures can include at least three apertures, at least four apertures, at least five apertures, at least six apertures, at least seven apertures, at least eight apertures, at least nine apertures, and even at least ten apertures.
[0171] As already explained, these apertures can be made to be of an appropriate size and shape to receive fasteners, preferably mechanical fasteners, through them.
[0172] These apertures can be arranged in a spaced-out structure, preferably in a linear stack structure, at least partially along the height of the pedal set support frame mounting portion.
[0173] In some embodiments, the pedal set support frame mounting portion can be attached to one or more fastener channels that extend along the outer sidewalls of the side frame members forming the pedal set support frame, and then attached to the pedal set support frame by fasteners that extend outward from there.
[0174] In other embodiments, the pedal set support frame mounting portion can be extended through one of a plurality of apertures defined thereon and attached to the pedal set support frame by fasteners received on the side of the pedal set support frame.
[0175] In yet another embodiment, the pedal set support frame mounting portion can be attached to the pedal set support frame by fasteners configured to unfold outward from the side of the pedal set support frame and be received through one of a plurality of discrete mounting points.
[0176] Advantageously, by sliding the stabilization mount along the base frame relative to the adjacent mounting bracket, the pivot angle of the pedal set support frame can be further adjusted beyond the discrete mounting points.
[0177] In a preferred embodiment, similar to the case of a mounting bracket, the mounting assembly may include a pair of stabilization mounts for stabilizing the pedal set support frame against the base frame on each side of the simulator cockpit.
[0178] As shown in the tenth aspect of the present invention, in some embodiments, the end cap can be operationally associated with the exposed end of the frame member.
[0179] The end cap may be of any suitable size, shape, and structure, and may be formed from any suitable one or more materials, typically one or more plastic materials.
[0180] The end cap may be a substantially flat structure defined by a pair of opposite surfaces interconnected by their opposite edges. The opposite surfaces may be substantially parallel to each other and may include an outer surface and an inner surface on the opposite side. Preferably, the opposite edges may include at least four edges configured to correspond to the four edges or side walls of the frame member.
[0181] The end cap may include at least one opening defined on at least one of a plurality of edges configured to fluidize, corresponding to at least one fastener channel that extends at least partially along the frame member to which the end cap is attached. Preferably, the at least one opening can be shaped to substantially match the profile contour of the at least one fastener channel.
[0182] The end caps can be attached to the ends of the frame members in any suitable manner.
[0183] For example, in some embodiments, the end cap can be inserted at least partially into the end, and thus the end cap is friction-fitted to the frame member.
[0184] In other embodiments, a connecting mechanism or component of the connecting mechanism can connect the end cap and the end of the frame member. The connecting mechanism or component may be an integral part of the connecting mechanism or component with the end cap and the end of the frame member, or it may not be an integral part of the connecting mechanism or component.
[0185] For example, in some such embodiments, the connection mechanism may include a first component associated with the end of a frame member, and a second component connected to the first component and associated with the inner surface of an end cap.
[0186] The connection mechanism may include interlocking male and female parts that connect together, such as screw connections, interference fit (snap fit) connections, or bayonet-type connections.
[0187] In some such embodiments, a first component of a connecting mechanism associated with the end of a frame member may include a male component configured to be inserted into or coupled with a female component of a second component of the connecting mechanism associated with the inner surface of an end cap.
[0188] In other such embodiments, the first component of the connection mechanism may include a female component configured to at least partially receive or to couple with the male component of the second component of the connection mechanism.
[0189] In a preferred embodiment, the inner surface of the end cap may include projections extending away from the inner surface, and the end of the frame member may include an opening configured to at least partially receive the projections when the end cap is fitted to the end of the frame member.
[0190] In some such embodiments, the projection may include one or more retaining features, such as ridges, to prevent the end cap from unintentionally separating from the end of the frame member.
[0191] In a preferred embodiment, the end cap may include two or more openings defined on the edge of the end cap, each of which is configured to correspond to and be in fluid communication with a fastener channel extending along the side wall of the frame member to which the end cap is fitted. For example, in some such embodiments, the end cap may include two, three, four, five, six, seven, or eight openings defined on the edge of the end cap.
[0192] In some embodiments, the edge of the end cap can be at least partially recessed to correspond to the angled wall portion of the frame member to which the end cap is attached.
[0193] As shown in the eleventh aspect of the present invention, in some embodiments, a tool holder for use with a support frame assembly is provided.
[0194] The tool holder may be any suitable size, shape, and structure, releasably fixed to a frame member of the support frame assembly and designed to hold at least one tool. The tool holder may be formed from any suitable one or more materials, typically one or more plastic materials.
[0195] The tool holder may include a body having at least an outer wall, a frame member engagement wall on the opposite side, an upper wall, and a lower wall on the opposite side.
[0196] The upper wall may include at least one aperture for at least partially receiving and holding a tool defined therein, such as a hex wrench and / or ratchet. Preferably, at least one opening can be shaped to complement the contour of the tool that the opening is configured to receive.
[0197] In some such embodiments, the edge of at least one opening may include one or more recessed portions shaped to complement at least a portion of the tool protruding from the opening.
[0198] The tool holder can be releasably fixed to the frame member of the support frame assembly in any suitable manner.
[0199] For example, in some embodiments, the body of the tool holder can be fastened to a frame member using one or more mechanical and / or chemical fasteners.
[0200] One or more mechanical fasteners may include one or more threaded fasteners configured to unfold through their respective openings defined within the body and frame members.
[0201] One or more chemical fasteners may include wet adhesive, dry adhesive, and / or double-sided adhesive tape deployed between the engagement wall of the frame member of the body and the adjacent wall of the frame member.
[0202] In other embodiments, the tool holder can be fixed to a frame member of the support frame assembly using the connection mechanism or components thereof that have already been described.
[0203] In a preferred embodiment, the tool holder body can be slidably mounted to at least one clamping channel extending at least partially along a frame member using one or more slide fasteners as previously described. The body may include one or more apertures extending through the outer wall and / or the opposite frame member engagement wall, through which the shanks of the slide fasteners are received and releasably secured to them using nuts that are screwed to the shanks.
[0204] As shown in a twelfth aspect of the present invention, some embodiments provide cable clips for use with a support frame assembly.
[0205] The cable clip may be any suitable size, shape, and structure for clipping the cable in a releaseable manner and securing the cable to the support frame assembly.
[0206] Cable clips can be formed from any suitable one or more materials, typically one or more plastic materials.
[0207] The cable clip may be a single-piece cable clip or may include two or more clip pieces, but a single-piece cable clip is preferred.
[0208] A cable clip may include a body defining a pair of opposing clamping members, the pair of opposing clamping members configured to clamp at least one cable between them in a releaseable manner.
[0209] The clamping members may be of any suitable size and shape, but are preferably of similar size and shape. Each clamping member may be substantially rectangular, oblong, circular, elliptical, or oval in shape, but is preferably substantially rectangular.
[0210] Each clamping member may include a pair of opposite surfaces, including an internal clamping surface and an external surface on the opposite side. The opposite surfaces may be interconnected by opposite edges, including an external free edge, an internal common edge on the opposite side, and opposite side edges extending between them.
[0211] It is preferable that the opposing clamping members can be integrally joined along the opposite internal common edge by a web configured to hold the clamping members together and to allow the clamping members to bend individually.
[0212] In some embodiments, the internal clamping surface of each clamping member may include a liner, coating, or pad to at least partially assist in releasably holding the cable received inside. Typically, the liner, coating, or pad may be formed from one or more elastically deformable materials, such as one or more rubber or soft plastic materials.
[0213] In other embodiments, the internal clamping surface of each clamping member may include one or more corrugations (i.e., repeating crests and valleys) configured to help hold one or more cables inside in a releaseable manner. Preferably, the corrugations can be oriented at least partially in the width direction between the internal common edge and the external free end edge.
[0214] Similar to tool holders, cable clips can be releasably secured to frame members of a support frame assembly in any suitable manner.
[0215] For example, in some embodiments, the body of the cable clip can be fastened to a frame member using one or more mechanical and / or chemical fasteners.
[0216] One or more mechanical fasteners may include one or more threaded fasteners configured to unfold through respective openings defined in either the clamping members of the body or frame members.
[0217] One or more chemical fasteners may include wet adhesive, dry adhesive, and / or double-sided adhesive tape that are deployed between the outer surface of one of the clamping members of the body and the adjacent wall of the frame member.
[0218] In other embodiments, the cable clip can be secured to a frame member of the support frame assembly using the connection mechanism or components thereof that have already been described.
[0219] In a preferred embodiment, the tool holder body can be slidably mounted to at least one clamping channel that extends at least partially along a frame member. The body can be slidably mounted by fastener portions protruding from the outer surface of one of the clamping members of the body.
[0220] The fastener portion may be any appropriate size and shape of fastener portion, slidably attached to the fastener channel via its end and configured to slide into place.
[0221] In some cases, it is preferable that the zipper portion be an integrated part of the body.
[0222] The fastener portion may include an expanding head and a neck, the neck interconnecting the head with one of the outer surfaces of the clamping members of the body. The expanding head may be configured to slide along the length of the channel, while at the same time being unable to detach laterally from the channel.
[0223] In some embodiments, the expansion head may include a retaining member for at least partially holding the expansion head at a desired position along the length of the fastener channel.
[0224] The retaining member may be any suitable retaining member of size, shape, and structure known in the art.
[0225] In some embodiments, the support frame assembly of the present invention may further include one or more feet for supporting the base frame and other components at the top of the support surface.
[0226] One or more feet may be of any suitable size, shape, and structure, and may be operationally associated with the base frame and other components in any suitable manner.
[0227] Generally, one or more feet can be formed from one or more rubber or plastic materials, preferably one or more plastic materials.
[0228] Each foot may have a supporting surface engaging lower wall, an upper wall on the opposite side, and at least one side wall extending between them.
[0229] In some embodiments, each foot may have a cylindrical shape.
[0230] In other embodiments, each foot may have a cube-like shape.
[0231] In a preferred embodiment, each foot may have a truncated cone shape, with tapered side walls extending downward from the upper wall to the lower wall.
[0232] The sidewall may include grips that extend at least partially around the sidewall.
[0233] One or more feet can be fastened to the base frame and other components in any suitable manner.
[0234] For example, in some embodiments, each foot can be fastened to a frame member using one or more mechanical and / or chemical fasteners as described above.
[0235] Similarly, in other embodiments, each foot can be fastened to a frame member using the connection mechanism or components thereof that have already been described.
[0236] In a preferred embodiment, each foot can be slidably attached to at least one fastening channel of a frame member by means of a slide fastener, etc., as already described.
[0237] In a preferred adjustment, each foot can be adjusted in height by rotating the foot relative to the slide fastener, preferably using a grip provided on the side wall of the foot.
[0238] In other embodiments, the support frame assembly of the present invention may further include one or more rollers or casters protruding from the underside of the base frame and other components.
[0239] The rollers or casters can be fastened to the base frame and other components in a manner similar to that of the one or more feet already described.
[0240] According to a thirteenth aspect of the present invention, a method for assembling a support frame assembly for a racing simulator cockpit is provided, the method is: A step of connecting one or more base frame members together to form a base frame of a support frame assembly, wherein the base frame defines a front end and a rear end on the opposite side; A step of mounting a seat in an adjustable manner, comprising: sliding a pair of opposing seat brackets to opposite sides of a base frame at or near the rear end, wherein the seat brackets are adapted to mount the seat interchangeably in a Formula 1 racing configuration and a Grand Touring racing configuration; The steps include: mounting a steering wheel assembly support frame slidably at the rear end and in front of the seat bracket in order to support the steering wheel assembly against the base frame; A step of pivoting a pedal support frame to a steering wheel assembly support frame at a first end for mounting a pedal set thereon, wherein the pedal support frame has a second end on the opposite side that is pivotable between a Formula 1 racing configuration and a Grand Touring racing configuration, A step of mounting at least one pedal set support bracket slidably to one of the opposite sides of a base frame at or near its front end to support a pedal support frame, wherein the pedal set support bracket is adapted to be pivotable relative to the base frame to selectively fix the pedal support frame between a Formula 1 racing configuration and a Grand Touring racing configuration. Includes.
[0241] The method may include one or more characteristics or features of the support frame assembly, base frame member, seat bracket, pedal set support bracket, seat slide assembly, end cap, tool holder, and / or cable clip described above.
[0242] The connecting step may include connecting a pair of side frame members, which are deployed substantially parallel to each other in the longitudinal direction, to a pair of cross frame members, which are deployed substantially parallel to each other in the transverse direction relative to the side frame members.
[0243] Each end of the intersecting frame member can be connected to the respective end portion of the side frame member at a butt joint using one or more mechanical fasteners.
[0244] The side frame members can define the opposite sides of the base frame, and the intersecting frame members can define the front and rear ends of the base frame.
[0245] The seat bracket can be slidably mounted directly or indirectly to opposite sides of the base frame.
[0246] When directly mounted, each seat bracket can be slidably mounted to at least one fastener channel that extends at least partially along the side of the base frame, preferably along the outer frame sidewall of a side frame member, using a slide fastener that is operationally associated with the channel.
[0247] When mounted indirectly, each seat bracket can be attached to a seat slide assembly that is slidably mounted to at least one fastener channel extending along the side of the base frame, preferably along the outer frame sidewall of a side frame member.
[0248] The steering wheel assembly support frame can be slidably mounted to at least one fastener channel on each side frame member, with the front of the seat bracket being operably associated with the channel using one or more sliding fasteners.
[0249] Similar to the steering wheel assembly support frame, at least one pedal support bracket can be slidably mounted to at least one fastener channel on one of the side frame members opposite each other using one or more slide fasteners operably associated with the channel.
[0250] Typically, once the seat bracket, steering wheel assembly support frame, and / or pedal support bracket slide into the desired portion along their respective side frame members, the respective sliding fasteners can be tightened to secure the parts in place.
[0251] A fourteenth aspect of the present invention provides a method for adapting a support frame assembly for a racing simulator cockpit between at least two configurations corresponding to a Formula 1 racing configuration and a Grand Touring racing configuration, the method being: The steps include: adjusting the seat to a pair of opposing seat brackets such that the seat has a desired inclination relative to the support frame assembly, corresponding to one of a Formula 1 racing configuration and a Grand Touring racing configuration; A step to selectively pivot the pedal support frame to either a Formula 1 racing configuration or a Grand Touring racing configuration, A step of securing a pedal support frame to one of a Formula 1 racing configuration and a Grand Touring racing configuration using at least one pedal set support bracket extending upward from a base frame, wherein the at least one pedal set support bracket is pivotably fitted to the base frame to support the pedal support frame, and Includes.
[0252] In this case as well, the method may include one or more characteristics or features of the support frame assembly, base frame member, seat bracket, pedal set support bracket, seat slide assembly, end cap, tool holder, and / or cable clip described above.
[0253] The step of mounting the seat in an adjustable manner includes orienting the seat to a desired orientation corresponding to one of at least two configurations relative to the seat bracket, and then fastening the seat to one or more of the multiple mounting points provided on the seat bracket in order to secure the seat in place.
[0254] In some embodiments, when a seat is to be swapped between components, the step of adjusting and mounting the seat may further include an initial step of loosening the fastening of the seat to the seat bracket prior to the step of aligning the seat to the seat bracket in a desired orientation and then tightening it again to secure the seat in place.
[0255] The step of pivoting at least one pedal set support bracket may include the steps of loosening and / or removing one or more of the slide fasteners securing at least one pedal set support bracket to the base frame, pivoting the pedal support bracket to a desired angle, and tightening and / or re-tightening the pedal support bracket to the base frame to secure the pedal support bracket at the desired angle.
[0256] In some embodiments in which a pedal set support bracket indirectly supports a pedal set via a pedal support frame, the pivoting step may further include: sliding the bracket relative to the pedal support frame, thereby freeing the frame from one of two or more mounting or locking positions of the shaped aperture; pivoting the pedal set support bracket and / or pedal support frame to a desired angle and / or orientation; and then fixing the pedal support frame in place by slidably mounting the pedal support frame relative to the pedal set support bracket to a desired mounting or locking position of the shaped aperture of the bracket.
[0257] According to a 15th aspect of the present invention, a method is provided for attaching a pedal set support frame to the base frame of a racing simulator cockpit, the method being: The steps include: interface the connection between the base frame of the racing simulator cockpit and the steering wheel assembly support frame using at least one mounting bracket; The steps include pivoting the pedal set support frame at the first end to at least one mounting bracket so that the opposite second end can pivot between a raised and a lowered position relative to the base frame, A step of stabilizing a pedal set support frame relative to a base frame using at least one stabilization mount, wherein the mount includes a base frame mounting portion for engaging with the base frame, and a pedal set support frame mounting portion extending upward from the base frame mounting portion, and the pedal set support frame mounting portion includes a plurality of apertures defined thereon in a stacked structure, extending at least partially along the height of the pedal set support frame mounting portion, each aperture defining a discrete mounting point, the discrete mounting points being configured to selectively receive mechanical fasteners for mounting the pedal set support frame at a position selected between a raised position and a lower position relative to the base frame, and Includes.
[0258] The method may include one or more characteristics or features of the mounting assembly and pedal set support frame assembly described above.
[0259] Any of the features described herein may be combined in any combination with any one or more of the other features described herein, within the scope of the present invention.
[0260] No reference to prior art in this specification is, and should not be interpreted, as an affirmation or suggestion in any way that such prior art forms part of common general knowledge.
[0261] Preferred features, examples, and variations of the present invention can be recognized from the following embodiments for carrying out the invention, which provide sufficient information to those skilled in the art for carrying out the invention. These embodiments should not be considered to limit the scope of the above outline of the invention in any way. Many of the following drawings are referenced in these embodiments for carrying out the invention. [Brief explanation of the drawing]
[0262] [Figure 1] This is a top perspective view of a support frame assembly for a racing simulator cockpit according to one embodiment of the present invention. [Figure 2] Figure 1 is a side view of the support frame assembly. [Figure 3] Figure 2 is a side view of the support frame assembly from the opposite side. [Figure 4A] Figures 1 to 3 show the support frame assembly in a Formula 1 racing configuration. [Figure 4B] Figures 1 to 3 show the support frame assembly in a grand touring ("GT") racing configuration. [Figure 4C] Figures 1 to 3 show the hybrid racing configuration of the support frame assembly. [Figure 5] Figures 1 to 3 are plan views of the base frame of the support frame assembly. [Figure 6] Figures 1 to 3 are perspective views of the frame members used to assemble the support frame assembly shown. [Figure 7] Figures 1 to 3 are perspective views of the frame members used to assemble the support frame assembly shown. [Figure 8] Figures 1 to 3 are perspective views of the frame members used to assemble the support frame assembly shown. [Figure 9] This is a top perspective view of a seat slide assembly according to one embodiment of the present invention, mounted on a pair of seat brackets. [Figure 10] Figure 9 shows an upper perspective view of the seat slide assembly and seat bracket, which are slidably mounted to the base frame of the support frame assembly shown in Figures 1 to 3. [Figure 11A] This is a vertical view of one side of an end cap for the end of a frame member according to an embodiment of the present invention. [Figure 11B] This is a vertical view of the opposite side of an end cap for the end of a frame member according to one embodiment of the present invention. [Figure 12A] This is a vertical view of one side of an end cap for the end of a frame member according to another embodiment of the present invention. [Figure 12B] This is a vertical view of the opposite side of an end cap for the end of a frame member according to another embodiment of the present invention. [Figure 13A] This is a vertical view of one side of an end cap for the end of a frame member according to yet another embodiment of the present invention. [Figure 13B] This is a vertical view of the opposite side of an end cap for the end of a frame member according to yet another embodiment of the present invention. [Figure 14] Figures 1 to 3 show a top perspective view of a tool holder according to one embodiment of the present invention, for mounting to a support frame assembly. [Figure 15] Figure 14 is a top perspective view of the tool holder with the tool attached. [Figure 16] Figures 1 to 3 show a front perspective view of a cable clip according to one embodiment of the present invention, for attachment to a support frame assembly. [Figure 17] Figure 16 is a rear perspective view of the cable clip shown. [Figure 18] Figures 1-3 show enlarged top perspective views of the foot attached to the support frame assembly. [Figure 19] This is a top perspective view of a support frame assembly for a racing simulator cockpit, showing that a mounting assembly according to one embodiment of the present invention stabilizes the pedal set support frame relative to the base frame of the support frame assembly. [Figure 20] Figure 19 is an enlarged view of the mounting assembly shown. [Figure 21] Figures 19 and 20 show perspective views of the mounting bracket of the mounting assembly. [Modes for carrying out the invention]
[0263] Figures 1 to 21 show examples of a support frame assembly (100) and its components for a racing simulator cockpit.
[0264] Referring to Figure 1, the support frame assembly (100) comprises a base frame (110) defining a front end (112), an opposite rear end (114), and two opposite sides (116) extending between them, and a pair of opposing seat brackets (130) for adjustable mounting of a seat (900, not shown), extending from the opposite sides (116) of the base frame (110) via a seat slide assembly (140), and the base frame at or near the front end (112) of the base frame (110). The frame includes a pedal support frame (160) and a pair of pedal set support brackets (150) for supporting a pedal set mounted thereon, which extend upward from opposite sides (116) of the base frame (110), and a steering wheel assembly support frame (170) for supporting a steering wheel assembly mounted thereon, which extends upward from opposite sides (116) of the base frame (110) at a position between the seat bracket (130) and the pedal set support brackets (150).
[0265] The seat bracket (130) is adapted to allow adjustable mounting of the seat (900, not shown) in at least two configurations, including Formula 1 racing configuration and Grand Touring ("GT") racing configuration.
[0266] Similarly, the pedal set support bracket (150) is fitted to the base frame (110) so as to be pivotable between at least two configurations, including a Formula 1 racing configuration and a GT racing configuration.
[0267] Figures 4A to 4C show respective racing configurations including a third configuration that results in a hybrid racing configuration.
[0268] Referring briefly to Figure 4A, the "Formula 1 racing configuration" is characterized by the cockpit configuration, where the seat (900) is angled rearward at an angle of about 120° or more with respect to the base frame (110) by the seat bracket (130), and the pedal support bracket (150) extends substantially vertically upward from the base frame (110) such that the pedal support frame (160) extends at an angle of about 45° or more with respect to the base frame (110).
[0269] Referring briefly to Figure 4B, the "GT racing configuration" is characterized by the cockpit configuration, where the seat (900) is more upright compared to Formula 1 racing and typically has an angle of less than 120° with respect to the base frame (110). Further, the pedal support bracket (150) extends substantially forward from the base frame (110) such that the pedal support frame (160) extends in a substantially horizontal orientation.
[0270] Referring briefly to Figure 4C, this figure shows a "hybrid racing configuration" characterized in that the seat (900) is attached in the same or a similar orientation as the GT racing configuration, while the pedal set support bracket (150) extends substantially vertically as in the case of the Formula 1 racing configuration, and the pedal support frame (160) extends forward at an angle of about 45° or more with respect to the base frame (110).
[0271] Referring again to Figure 1, the base frame (110), pedal support frame (160), wheel assembly support frame (170), and other components of the support frame assembly (100) are formed by various frame members (610) that are joined together as a single unit.
[0272] Figures 6 to 8 show various frame members (610). Figure 6 shows a frame member (610) used to assemble a base frame (110, not shown), Figure 7 shows a frame member (610) used to assemble a pedal support frame (160, not shown), and Figure 8 shows a frame member (610) used to assemble a wheel assembly support frame (170, not shown).
[0273] Referring schematically to Figures 6 to 8, each frame member (610) is a tubular frame member having a substantially rectangular cross-section.
[0274] Each frame member (610) includes an elongated body having a pair of opposite ends (612) and at least four side walls extending between them. The four side walls include an upper side wall (614), a lower side wall (616) on the opposite side, an internal frame side wall (617), and an external frame side wall (618) on the opposite side.
[0275] Each frame member (610) further includes at least one fastener channel (620) for receiving one or more fasteners for fastening assembly components to each frame member (610), which extends from end to end along each side wall between opposite ends (612).
[0276] Each channel (620) has a T-shaped contour that allows the fastener to slide along the channel (620) while preventing lateral movement of the fastener away from the channel (620), i.e., separation.
[0277] Typically, a fastener is a slide fastener configured to be slidably mounted onto a channel (620) in order to releasably fasten components thereon.
[0278] The fastener includes an expanding head, a shank extending away from the head, and a nut configured to fasten components thereon and to be tightened against the shank to secure the fastener in place relative to the channel (620).
[0279] The magnifying head is slidably mounted to the channel (620) via its end (612) and configured to slide into place. The head is sized and shaped to slide along the length of the channel (620), but is not laterally detachable or disengaged from the channel (620).
[0280] The shank includes a threaded shank portion, and the nut is configured to be screwed onto the threaded portion of the shank. This nut may be a wing nut, or it may include one or more handles that extend away from the nut to facilitate tightening and loosening of the nut on the shank.
[0281] As shown, some of the multiple frame members (610) include two or more fastener channels (620) extending along the side walls. Referring, for example, to Figures 6 and 8, each of these multiple frame members (610) includes two fastener channels (620) extending along the inner and outer frame side walls (617, 618), which are substantially parallel to each other.
[0282] Furthermore, referring particularly to Figure 6, a frame member (610) for a base frame (110, not shown) also includes a receiving opening (630) defined by an angled wall portion (640) that extends inward from the edge adjacent to the lower side wall (616) and the outer frame side wall (618), defining a groove (650) for receiving lighting, typically an LED lighting strip, into it.
[0283] The receiving opening (630) and groove (650) extend along the entire length of the frame member (610).
[0284] The angled wall section (640) extends inward from the edge at an angle of approximately 70° relative to the lower side wall (616).
[0285] Advantageously, by incorporating strip lighting within the groove (650), the aesthetic appeal of the racing simulator cockpit and racing / gaming experience is enhanced.
[0286] Furthermore, markings can be applied to the outer surface of the angled portion (640).
[0287] Advantageously, by angling it, any sign applied above it can be easily seen, especially when illuminated by lighting positioned directly above it.
[0288] Referring to Figure 5, and as already shown, the base frame (110) supports the support assembly (100, not shown) with respect to the support surface and defines the front end (112), the opposite rear end (114), and the opposite sides (116) of the support assembly (100, not shown).
[0289] The frame (110) has a substantially rectangular shape and includes, in the longitudinal direction, a pair of mutually opposite side frame members (610A) that extend substantially parallel to each other and are integrally joined by a pair of intersecting frame members (610B). The frame (110) is formed from four integrally joined frame members (610). The pair of intersecting frame members (610B) extend substantially parallel to each other in a direction transverse to the side frame members (610A). The frame members (610) correspond to the frame members shown in FIG. 6.
[0290] The intersecting frame members (610B) and the side frame members (610A) are integrally joined at the butt joints using one or more mechanical fasteners.
[0291] Specifically, referring again to FIG. 1, the end portions of each side frame member (610A) include a pair of openings at or near the ends (612). The ends (612) of each intersecting frame member (610B) include corresponding openings configured to receive mechanical fasteners for integrally joining the frame members (610) through their apertures and in alignment with the openings in the side frame members (610A).
[0292] Referring to FIG. 10, the seat brackets (130) extend from opposite sides (116) of the base frame (110) for adjustably attaching a seat (900, not shown).
[0293] The seat brackets (130) are slidably attached to the base frame (110) via a seat slide assembly (140) configured to selectively move the seat (900, not shown) forward and / or rearward relative to the front end (112) of the support assembly (100, not shown).
[0294] Each seat bracket (130) has a substantially L-shaped cross-section with a frame engagement portion (132) that fastens to a seat slide assembly (140) and a seat engagement portion (134) adapted to fasten to a seat (900, not shown). The frame engagement portion (132) and the seat engagement portion (134) are angled perpendicular to each other along a common edge.
[0295] Each bracket (130) extends vertically between the rearward-facing edge and the opposite, frontward-facing edge.
[0296] Both parts (132, 134) each include a plurality of apertures (136) defined thereon, through which one or more mechanical fasteners are received for fastening the bracket (130) to the seat (900, not shown) and the seat slide assembly (140), respectively.
[0297] The frame engagement portion (132) includes a plurality of elongated apertures (136) that extend vertically in a direction perpendicular to the vertical axis of the bracket (130).
[0298] The seat engagement portion (134) includes a plurality of elongated apertures (136A) defined on or near the rear-facing edge and unfolding in a stacked structure along the height of the portion (134), and a plurality of substantially circular apertures (136B) defined on or near the front-facing edge and unfolding in a stacked structure along the height of the portion (134). In use, the combination of apertures (136A, 136B) provides a plurality of mounting points for adjusting and precisely mounting the seat (900, not shown) to the base frame (110) at a desired angle corresponding to at least one of a plurality of race configurations.
[0299] Referring to Figure 9, as shown, the seat bracket (130) is slidably mounted to the base frame (110, not shown) via the seat slide assembly (140).
[0300] The seat slide assembly (140) includes two pairs of slide brackets (142), each pair interconnected by a frame member (610, shown in Figure 7) extending between them, and the top of the frame member (610) has a seat bracket (130) attached to the opposite ends (612) of the frame member (610), or in the vicinity thereof.
[0301] Referring again to Figure 10, the slide bracket (142) of the seat slide assembly (140) is slidably mounted to a fastener channel (620) that extends along the outer frame side wall (618) of the slide frame member (610A) forming the base frame (110), and is releasedly fixed in place by tightening the nuts of the fastener (910).
[0302] Referring again to Figures 2 and 3, the pedal set support bracket (150) extends upward from opposite sides (116) of the base frame (110) at or near its front end (112) to support the pedal support frame (160) and the pedal set mounted thereon.
[0303] Each bracket (150) is fastened to at least one of a plurality of fastener channels (620) that extend along the outer frame sidewall (618) of the side frame member (610A) forming the base frame (110), and the race configurations are pivotable relative to the base frame (110) between themselves.
[0304] Typically, each bracket (150) has an elongated, flat shape including an inner surface and an outer surface on the opposite side. The surfaces opposite each other are substantially parallel to each other and are interconnected by their opposite edges.
[0305] Each bracket (150) includes a base frame mounting end (152) and opposite ends including a pedal set engagement end (154). The brackets (150) extend longitudinally between their opposite ends in an arc that curves backward toward the rear end (114) of the base frame (110).
[0306] The base frame mounting end (152) includes a plurality of apertures (153) defined thereon, through which one or more mechanical fasteners are received for fastening the bracket (150) to at least one of a plurality of fastener channels (620). These apertures (153) include arched apertures (153) which favorably facilitate pivoting the bracket (150) between components or adjusting the position of the pedal set.
[0307] The pedal set engagement end (154) includes a shaped aperture (155) that defines two or more mounting or locking positions for attaching or locking the pedal support frame (160) to the base frame (110) in a desired orientation.
[0308] The shaped aperture (155) includes an elongated aperture portion (156) that partially unfolds toward the base frame mounting end (152), and the shaped aperture (155) also includes two or more mounting or locking aperture portions (157) corresponding to mounting or locking positions. The two or more mounting or locking aperture portions (157) project outward from the pedal support frame (160) and branch the elongated aperture portion (156) at a certain angle and spaced apart from each other to slidably receive one or more slide fasteners that mount or lock the pedal support frame (160) to at least one bracket (150) in a desired orientation.
[0309] Referring again to Figure 1, the pedal support frame (160) is sized and shaped to allow the pedal set to be mounted on it and to be slidably attached to the pedal set support bracket (150).
[0310] The pedal support frame (160) is pivotally coupled at one end (612) to the steering wheel assembly support frame (170) and includes a pair of opposite side frame members (610, shown in Figure 7) which are integrally coupled by two support brackets (162), the two support brackets (162) having apertures (164) defined thereon, through which one or more mechanical fasteners are used to fasten a pedal set mounted thereon to the brackets (162).
[0311] The pedal support frame (160), together with the pedal set support bracket (150), is pivotable between race configurations corresponding to the Formula 1 racing configuration and the GT racing configuration shown in Figures 4A and 4B, respectively.
[0312] The steering wheel assembly support frame (170) extends upward from the base frame (110) at a position between the seat bracket (130) and the pedal support bracket (150) to support the steering wheel assembly.
[0313] The support frame (170) includes a pair of opposite frame members (610, shown in Figure 8) extending upward from opposite sides (116) of the base frame (110), and a support bracket (172) extending between the upper ends (612) of the frame members (610) for mounting the steering wheel assembly on which it is mounted.
[0314] The support bracket (172) includes a plurality of apertures (174) through which one or more mechanical fasteners are used to fasten the steering wheel assembly mounted thereon to the bracket (172).
[0315] As best shown in Figures 2 and 3, the frame members (610) of the support frame (170) extend upward from the base frame (110) at an angle of approximately 110° relative to the front end (112) of the base frame (110) in order to support the steering wheel assembly at the optimal height and position relative to the seat (900, not shown) attached to the seat bracket (130).
[0316] Referring to Figure 2, the steering wheel assembly support frame (170) further includes a subframe (180) for supporting the gear stick shifter assembly and / or the handbrake support assembly.
[0317] The subframe (180) includes a first frame member (610C) that extends from one side (116) of the base frame (110) and also extends rearward from the outer frame side wall (618) of the steering wheel assembly support frame (170), and a second frame member (610D) that extends downward from the rearmost end (612) of the first frame member (610C).
[0318] The first frame member and the second frame member (610C, 610D) are integrally joined together and are also connected to the side frame member (610A) of the steering wheel assembly support frame (170) and the base frame (110), respectively, via the fastener channel (620) and slide fastener structure described above.
[0319] The subframe (180) further includes a mounting bracket (182) configured to be fastened to the top of the first frame member (610C) for mounting a gear stick shifter assembly and / or handbrake support assembly thereon. The bracket (182) includes apertures (184, shown in Figure 1) defined thereon, through which one or more mechanical fasteners are used to fasten the gear stick shifter assembly and / or handbrake support assembly mounted thereon to the bracket (182).
[0320] Figures 11A, 11B, 12A, 12B, 13A, and 13B show examples of end caps (1100) for the ends (612, not shown) of frame members (610, not shown), respectively.
[0321] Referring to Figures 11A and 11B, the end cap (1100) is a substantially flat structure defined by a pair of opposite surfaces interconnected by opposite edges (1106).
[0322] The surfaces opposite each other unfold substantially parallel to each other and include an outer surface (1102, shown in Figure 11A) and an inner surface on the opposite side (1104, shown in Figure 11B).
[0323] The edge (1106) includes four edges configured to correspond to the edges or side walls of the frame member (610, not shown).
[0324] The end cap (1100) includes a plurality of openings (1108) defined along an edge (1106) which is configured to be fluid-communicating with a fastener channel (620, not shown) that extends along a frame member (610, not shown) to which the end cap (1100) is attached.
[0325] Advantageously, the opening (1108) substantially coincides with the profile contour of the fastener channel (620) with which the end cap (1100) is aligned when it is fitted to the end (612, not shown) of the frame member (610, not shown), so that the slide fastener can be inserted into or removed from the fastener channel (620, not shown) without removing the end cap (1100).
[0326] Referring to Figure 11B, the inner surface (1104) of the end cap (1100) includes at least one projection (1110) that protrudes away from the inner surface (1104) and is configured to align with and at least partially receive at least one corresponding opening defined at the end (612, not shown) of a frame member (610, not shown) to which the end cap (1100) is fitted.
[0327] The engagement of the projection (1110) with the corresponding opening facilitates the prevention of unintended separation of the end cap (1100) from the end (612, not shown) of the frame member (610).
[0328] Figures 11A and 11B show an embodiment of an end cap (1100) configured to be attached to the end (612) of the frame member (610) shown in Figure 6.
[0329] The end cap (1100) in this embodiment further includes a partially recessed edge portion (1106A) configured to correspond to the angled wall portion (640) of the frame member (610) shown in Figure 6, to which the end cap (1100) is fitted.
[0330] Figures 12A and 12B show an embodiment of an end cap (1100) configured to be attached to the end (612) of the frame member (610) shown in Figure 8.
[0331] Figures 13A and 13B show an embodiment of an end cap (1100) configured to be attached to the end (612) of the frame member (610) shown in Figure 7.
[0332] Figures 14 and 15 show a tool holder (1400) for use with the support frame assembly (100) shown in Figure 1.
[0333] Referring to Figure 14, the tool holder (1400) includes a body (1410) having an outer wall (1412), an inner wall (1414) on the opposite side, an upper wall (1416), and a lower wall (1418) on the opposite side.
[0334] As shown, the upper wall (1416) includes one or more shaped openings (1420) for at least partially receiving and holding one or more tools, such as a hex wrench and / or ratchet.
[0335] Referring to Figure 15, each shaped opening (1420) is shaped to complement the contour of the tool that the shaped aperture is configured to receive and hold.
[0336] Referring again to Figure 14, the body (1410) of the tool holder (1400) includes a pair of apertures (1430) that extend through the inner and outer walls (1412, 1414), each of which receives the shank of a slide fastener through the aperture (1430) and is releasably secured to them using nuts that screw-engage with the shank. The slide fastener is slidably mounted to a fastener channel (620, not shown) of an adjacent frame member (610, not shown).
[0337] Figures 16 and 17 show a cable clip (1600) according to one embodiment of the present invention for releasably holding and arranging one or more cables with respect to a support frame assembly (100, not shown).
[0338] Referring to Figure 16, the cable clip (1600) includes a body (1610) defining a pair of opposing clamping members (1620), which are configured to clamp one or more cables between them in a releaseable manner.
[0339] Each clamping member (1620) has a substantially rectangular shape.
[0340] Each clamping member (1620) includes a pair of opposite surfaces, including an internal clamping surface (1622) and an external surface (1624) on the opposite side.
[0341] The surfaces opposite each other are interconnected by the edges opposite each other, which include an outer free edge (1626), an inner common edge on its opposite side (1628), and opposite side edges (1629) extending between them.
[0342] The opposing clamping members (1620) are joined together along the opposite internal common edge (1628) by a web configured to hold the clamping members (1620) together, while receiving the cable, and / or allowing the clamping members (1620) to be individually bent to remove the cable from the clip (1600).
[0343] As shown, the internal clamping surface (1622) of each clamping member (1620) includes one or more corrugations (1630, i.e., crest and valley iterations) configured to help hold one or more cables openly inside. The corrugations (1630) extend at least partially in the width direction between the internal common edge (1628) and the external free end edge (1626).
[0344] Referring to Figure 17, the cable clip (1600) is configured to be releasably fixed to a frame member (610, not shown) of a support frame assembly (100, not shown). In this regard, the body (1610) of the tool holder (1600) includes a fastener portion (1710) configured to be slidably attached to a fastener channel (620, not shown) of an adjacent frame member (610, not shown).
[0345] The fastener portion (1710) protrudes from one of the outer surfaces (1624) of the clamping member (1620), typically from the rearmost position.
[0346] The fastener portion (1710) includes an expanding head (1712) and a neck (1714), the neck (1714) interconnecting the head (1712) and the outer surface (1624) of the clamping member (1620). The expanding head (1712) is configured to slide along a fastener channel (620, not shown) of a frame member (610, not shown), while being unable to detach laterally from the channel (620, not shown).
[0347] Referring to Figure 18, in some embodiments, a support frame assembly (100, not shown) includes one or more feet (1800) for supporting a base frame (110) at the top of a support surface.
[0348] The foot (1800) is formed from one or more rubber or plastic materials.
[0349] As shown, each foot (1800) has a supporting surface engaging lower wall (1802), an upper wall (1804) on the opposite side, and a frustoconical tapered side wall (1806) extending between them.
[0350] Each foot (1800) is slidably attached to a fastener channel (620) that extends along the lower side wall (616) of any lowest frame member (610) using the slide fasteners already described.
[0351] Figures 19–21 show another embodiment of a mounting assembly (1900) and a support frame assembly (100) including its components for a racing simulator cockpit. For convenience, features similar to or corresponding to those already described are referenced using the same reference number notation.
[0352] Referring to Figure 19, the mounting assembly (1900) includes, at or near the first end (1602), a pair of mounting brackets (1910) for pivoting the connection between the base frame (110) of the assembly (1900) and the steering wheel assembly support frame (170), and also includes, at or near the opposite second end (1604), a pair of stabilization mounts (1940) for stabilizing the pedal set support frame (160), the stabilization mounts (1940) being pivotable between a raised position and a lower position relative to the base frame (110).
[0353] As shown, the mounting assembly (1900) is for stabilizing the pedal set support frame (160) to the base frame (110) of the racing simulator cockpit, while still allowing adjustment of the pedal set support frame (160) between various racing configurations, including, for example, Formula 1 racing configuration, the Grand Touring racing configuration shown, hybrid racing configuration, cup racing configuration, tank racing configuration, or track racing configuration.
[0354] Referring to Figure 20, each mounting bracket (1910) interfaces the connection between the base frame (110) and the steering wheel assembly support frame (170), and is configured to pivot to the pedal set support frame (160).
[0355] Referring briefly to Figure 21, the mounting bracket (1910) has a substantially flat shape with a substantially rectangular contour.
[0356] The mounting bracket (1910) includes a pair of opposite surfaces, including an inner surface (1912) configured to engage with a base frame (110, not shown) and an outer surface (1914) on the opposite side, configured to engage with a steering wheel assembly support frame (170, not shown). The opposite surfaces are substantially parallel to each other.
[0357] The surfaces opposite each other are interconnected by their opposite edges, which include the lower edge (1915), the upper edge on the opposite side (1916), the front edge (1917), and the rear edge on the opposite side (1918).
[0358] The lower and upper edges (1915, 1916) extend substantially parallel to each other and are substantially horizontal.
[0359] Similarly, the front and rear edges (1917, 1918) extend substantially parallel to each other and are angled rearward to coincide with the angle that the steering wheel assembly support frame (170, not shown) makes rearward with respect to the base frame (110, not shown).
[0360] The mounting bracket (1910) further includes a notch (1919) partially defined along the rear edge (1918) and the upper edge (1916). The notch (1919) is configured to complement the angle at which the steering wheel assembly support frame (170, not shown) extends upward from the base frame (110, not shown) in order to provide a desirable aesthetic finish.
[0361] As shown, the mounting bracket (1910) includes a plurality of apertures (1920) defined thereon, through which it receives fasteners for at least interconnecting the base frame (110, not shown) and the steering wheel assembly support frame (170, not shown).
[0362] These apertures (1920) are arranged in a spaced configuration around the mounting bracket (1910) to provide a stable interconnection between the base frame (110, not shown) and the steering wheel assembly support frame (170, not shown).
[0363] Referring briefly to Figure 20, the aperture (1920) is typically positioned on a mounting bracket (1910) so as to be substantially aligned with fastener channels (620) defined on the side frame members (610) of the base frame (110) and the steering wheel assembly support frame (170).
[0364] Referring again to Figure 21, the mounting bracket (1910) includes three pairs of apertures (1920): a pair spaced along the lower edge (1915), a pair spaced along the lower portions of the rear and front edges (1917, 1918) for interconnecting the lower end of the steering wheel assembly support frame (170, not shown) with the side frame members (610, not shown) of the base frame (110, not shown), and a pair for connecting the bracket (1910) to the side frame members (610, not shown).
[0365] A pair of opposite apertures (1920A) defined along the rear and front edges (1917, 1918) are each configured to receive fasteners through their apertures for fastening mounting brackets (1910) to the outer surface of the side frame members (610) of the base frame (110, not shown).
[0366] A pair of central apertures (1920B) defined along the lower edge (1950) are configured to receive fasteners through them for interconnecting the base frame (110, not shown) and the steering wheel assembly support frame (170, not shown).
[0367] The mounting bracket (1910) further includes a pair of central apertures (1920C) defined along the upper edge (1916), which are configured to receive fasteners through their apertures for fastening to the steering wheel assembly support frame (170, illustrated).
[0368] Referring to Figure 20, the mounting bracket (1910) further defines a pivot mount portion (1930) for pivotally attaching the first end (1602) of the pedal set support frame (160) thereto.
[0369] Referring again to Figure 21, the pivot mount portion (1930) is the corner portion defined at the connection between the upper edge (1916) and the front edge (1917).
[0370] The pivot mount section (1930) includes a pair of apertures (1920D) defined thereon in a vertical stack structure, through which mechanical fasteners for pivoting the pedal set support frame (160) are received.
[0371] Referring again to Figure 20, a pair of mounting brackets (1910) interface the connection between the base frame (110) and the steering wheel assembly support frame (170), and pivotally attach the pedal set support frame (160) to each side of the simulator cockpit.
[0372] As shown, the mounting assembly (1900) further includes a pair of stabilizing mounts (1940) typically located at or near the second end (1604) for stabilizing the pedal set support frame (160) against the base frame (110).
[0373] Each stabilizing mount (1940) has an elongated, substantially flat shape, typically resembling an inverted letter "L".
[0374] Each mount (1940) includes a pair of opposite surfaces, including an internal surface (1942) configured to engage with both the base frame (110) and the pedal set support frame (160), and an external surface (1944) on the opposite side. The opposite surfaces are substantially parallel to each other.
[0375] The surfaces opposite each other are interconnected by their opposite edges. These opposite edges include a lower edge (1945), an upper edge on the opposite side (1946), and one or more front edge portions and rear edge portions on the opposite side (1947, 1948) extending between them.
[0376] One or more front edge portions (1947) include a lower front edge portion and an upper front edge portion, which together define a substantially convex front edge (1947).
[0377] One or more rear edge portions (1948) include three or four rear edge portions (1948) that together define a substantially concave rear edge (1948).
[0378] As shown, the mount (1940) engages with the base frame (110) via the outer side wall of the side frame member (610) of the base frame (110) and includes a base frame mounting portion (1950) for mounting thereto. The base frame mounting portion (1950) is positioned along the lower edge (1945).
[0379] The base frame mounting section (1950) includes several apertures (1952) defined therein, through which fasteners are received for attaching the stabilizer mount (1940) to the base frame (110).
[0380] These apertures (1952) are of the appropriate size and shape to receive mechanical fasteners through them.
[0381] These apertures (1952) are arranged in a spaced configuration along the lower edge (1945) such that they substantially align with fastener channels (620) defined on the outer side walls of the side frame members (610) of the base frame (110).
[0382] The stabilizing mount (1940) further includes a pedal set support frame mounting portion (1960) that extends upward from the base frame mounting portion (1950), and is typically extended upward from the front edge portion of the base frame mounting portion (1950).
[0383] The pedal set support frame mounting portion (1960) also includes a plurality of apertures (1962) that unfold at least partially along the height of the portion (1960) to provide discrete mounting points for mounting the pedal set support frame (160) at positions selected between raised and lowered positions defined thereon in a linear stack structure.
[0384] During use, the pedal set support frame mounting portion (1960) is attached to a fastener channel (620) that extends along the outer side wall of the side frame member (610) forming the pedal set support frame (160), and is attached to the pedal set support frame (160) by fasteners that extend outward from there.
[0385] Similar to the mounting bracket (1910), the mounting assembly (1900) includes a pair of stabilization mounts (1940) for stabilizing the pedal set support frame (160) against the base frame (110) on each side of the simulator cockpit.
[0386] In this specification and in the claims (if any), the term “having” and its derivatives including “having” include each of the complete entities referred to, but do not exclude the inclusion of one or more other complete entities.
[0387] Throughout this specification, any reference to “one embodiment” or “one example” means that a particular feature, structure, or property described in relation to that embodiment is included in at least one embodiment of the present invention. Therefore, the appearance of the phrase “in one embodiment” or “in one example” in various places throughout this specification does not necessarily refer to the same embodiment. Furthermore, certain features, structures, or properties can be combined in any suitable way in one or more combinations.
[0388] In accordance with statutory law, the present invention is described in a language that is somewhat specialized in structural or systematic features. Since the means described herein constitute a preferred mode for carrying out the invention, it should be understood that the invention is not limited to the specific features shown or described. Accordingly, the invention is claimed in any form or modification thereof, within the appropriate scope of any appended claims (if any) as appropriately interpreted by those skilled in the art.
Claims
1. A support frame assembly for a racing simulator cockpit that can be configured between a Formula 1 racing configuration and a Grand Touring racing configuration, A base frame defining the front end and the opposite rear end, A pair of opposing seat brackets extending from both sides of the base frame at or near the rear end for adjustable mounting of a seat, the seat brackets being adapted to mount the seat interchangeably in the Formula 1 racing configuration and the Grand Touring racing configuration, A steering wheel assembly support frame extending upward from the base frame at a position between the seat bracket and the front end of the base frame, A pedal support frame for mounting a pedal set thereon, wherein the pedal support frame has a second opposite end that is pivotally coupled to the steering wheel assembly support frame at a first end and pivotally movable between the Formula 1 racing configuration and the Grand Touring racing configuration, At least one pedal set support bracket extending upward from one of the two sides of the base frame at or near the front end for supporting the pedal support frame, the pedal set support bracket being adapted to be pivotable relative to the base frame for selectively securing the pedal support frame between the Formula 1 racing configuration and the Grand Touring racing configuration. Includes, In the Formula 1 racing configuration, the seat is angled backward at an angle of 120° or more relative to the base frame by the seat bracket, and the at least one pedal set support bracket extends substantially vertically upward from the base frame such that the pedal support frame extends at an angle of 45° or more relative to the base frame, In the grand touring racing configuration, the seat is angled to the base frame at an angle of less than 120° by the seat bracket, and the support frame assembly comprises at least one pedal set support bracket extending forward from the base frame such that the pedal support frame extends in a horizontal orientation.
2. The assembly according to claim 1, wherein the pair of opposing seat brackets, the steering wheel assembly support frame, and the at least one pedal set support bracket are each slidably mounted to the base frame, so that each of the pair of opposing seat brackets, the steering wheel assembly support frame, and the at least one pedal set support bracket is slidably adjustable relative to the front and rear ends of the base frame.
3. The assembly according to claim 1 or 2, wherein the base frame is formed from four integrally joined frame members, each frame member comprising an elongated body defined by a pair of side ends and four side walls extending between them.
4. The assembly according to claim 1, wherein the base frame is formed by a pair of side frame members extending longitudinally and substantially parallel to each other, and a pair of intersecting frame members integrally connecting the side frame members and extending laterally with respect to the side frame members.
5. The assembly according to claim 4, wherein each of the side frame members has at least one fastener channel that extends at least partially along the length of the outer side wall of the side frame member.
6. The assembly according to claim 5, wherein each of the pair of opposing seat brackets defines a plurality of mounting points for interchangeably mounting the seat in the Formula 1 racing configuration and the Grand Touring racing configuration.
7. At least one pair of slide brackets, each configured to slidably attach the seat to the base frame via the pair of opposing seat brackets, To secure each slide bracket to the side surface of the base frame, at least one fastener channel of the side frame member is operably associated with at least one pair of slide fasteners. The assembly according to claim 6, further comprising a seat slide assembly including the following.
8. The assembly according to claim 5, wherein the steering wheel assembly support frame includes a pair of side frame members extending upward from the side surfaces of the base frame, and at least one support bracket extending between the upper ends of the frame members for supporting the steering wheel assembly relative to the base frame.
9. The assembly according to claim 8, wherein each of the frame members on both sides has at least one fastener channel that extends at least partially along the length of the side wall of the frame member.
10. The assembly according to claim 9, wherein the at least one support bracket is slidably mounted on the side frame members so as to be able to adjust the height of the steering wheel assembly mounted thereon.
11. The assembly according to claim 10, wherein the at least one support bracket is slidably attached to the frame members on both sides by a pair of slide fasteners, each operably associated with the at least one fastener channel of each of the frame members, in order to releasably secure the at least one support bracket to the frame members on both sides.
12. The assembly according to claim 8, wherein the frame members on both sides are slidably mounted to the at least one fastener channel so that the position of the steering wheel assembly support frame relative to the front and rear ends of the base frame is slidably adjustable.
13. The assembly according to claim 8, further comprising a subframe for supporting the gear stick shifter assembly and the handbrake support assembly.
14. The assembly according to claim 13, wherein the subframe includes a first frame member extending rearward from one of the side frame members of the steering wheel assembly support frame, and a second frame member extending downward from the rearmost end of the first frame member and slidably mounted to a side frame member of the base frame, and the gear stick shifter assembly and the handbrake support assembly are mounted on the top of the first frame member.
15. The assembly according to claim 1, further comprising a tool holder that is releasably fixed to a frame member of the support frame assembly and configured to hold at least one tool.
16. The assembly according to claim 15, wherein the tool holder includes a body, the body having at least an outer wall, an opposite frame member engaging wall configured to be slidably attached to the frame member of the support frame assembly, a lower wall, and an opposite upper wall having defined at least one opening for receiving and holding the at least one tool.
17. A method for assembling a support frame assembly for a racing simulator cockpit, A step of integrally connecting one or more base frame members to form a base frame of the support frame assembly, wherein the base frame defines a front end and an opposite rear end; A step of slidably mounting a pair of opposing seat brackets to the sides of the base frame at or near the rear end for adjustable mounting of a seat, wherein the seat brackets are adapted to allow interchangeable mounting of the seat in a Formula 1 racing configuration and a Grand Touring racing configuration. The steps include: slidably mounting a steering wheel assembly support frame at the rear end and in front of the seat bracket in order to support the steering wheel assembly with respect to the base frame; A step of pivotally connecting a pedal support frame for mounting a pedal set thereon to the steering wheel assembly support frame at a first end, wherein the pedal support frame has a second opposite end that is pivotable between the Formula 1 racing configuration and the Grand Touring racing configuration, A step of mounting at least one pedal set support bracket slidably to one of the two sides of the base frame at or near the front end of the pedal support frame, wherein the pedal set support bracket is adapted to be pivotable relative to the base frame in order to selectively fix the pedal support frame between the Formula 1 racing configuration and the Grand Touring racing configuration. Includes, In the Formula 1 racing configuration, the seat is angled backward at an angle of 120° or more relative to the base frame by the seat bracket, and the at least one pedal set support bracket extends substantially vertically upward from the base frame such that the pedal support frame extends at an angle of 45° or more relative to the base frame, A method in which, in the grand touring racing configuration, the seat is angled to the base frame at an angle of less than 120° by the seat bracket, and the at least one pedal set support bracket extends forward from the base frame such that the pedal support frame extends in a horizontal orientation.
18. The method according to claim 17, wherein each of the seat brackets is slidably attached to at least one fastener channel that extends at least partially along the side of the base frame.
19. The method according to claim 17, wherein each of the seat brackets is attached to a seat slide assembly which is attached to at least one fastener channel that extends at least partially along the side of the base frame, so that a seat mounted on the seat bracket is slidably adjustable with respect to at least the mounted steering wheel assembly and pedal set.
20. A method for adapting a support frame assembly for a racing simulator cockpit between a Formula 1 racing configuration and a Grand Touring racing configuration, A step of adjustingly mounting a seat to a pair of opposing seat brackets, wherein the seat has a desired inclination relative to the support frame assembly corresponding to one of the Formula 1 racing configuration and the Grand Touring racing configuration, A step of selectively pivoting a pedal support frame to one of the Formula 1 racing configuration and the Grand Touring racing configuration, wherein the pedal support frame has a first end that is pivotally coupled to a steering wheel assembly support frame and has a second end on the opposite side that is pivotable between the Formula 1 racing configuration and the Grand Touring racing configuration. A step of securing the pedal support frame to one of the Formula 1 racing configuration and the Grand Touring racing configuration by at least one pedal set support bracket extending upward from the base frame, wherein the at least one pedal set support bracket is pivotably fitted to the base frame to support the pedal support frame. Includes, In the Formula 1 racing configuration, the seat is angled backward at an angle of 120° or more relative to the base frame by the seat bracket, and the at least one pedal set support bracket extends substantially vertically upward from the base frame such that the pedal support frame extends at an angle of 45° or more relative to the base frame, A method in which, in the grand touring racing configuration, the seat is angled to the base frame at an angle of less than 120° by the seat bracket, and the at least one pedal set support bracket extends forward from the base frame such that the pedal support frame extends in a horizontal orientation.
Citation Information
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