ALL-TERRAIN VEHICLE TRANSPORTATION AND RECOVERY DEVICE
20200130558 ยท 2020-04-30
Inventors
Cpc classification
B62D63/062
PERFORMING OPERATIONS; TRANSPORTING
B62D53/045
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Off-road incidents, breakdowns etc. require that an all-terrain vehicle (ATV) is recovered. Typically, the environments these incidents occur prevent driving pick-up trucks etc. to them to use conventional trailers. Similarly, prior art mounts for towing an ATV require its placement and attachment which can be extremely difficult during warmer months when caked in mud, leaves, etc. and worse in winter when caked in snow, ice, etc. Accordingly, it would be beneficial to provide users with a means of transporting an ATV within off-road environments allowing not only a simple and easy assembly/attachment of the ATV with the ATV transportation means but also for the resulting combination of the towing vehicle, in all likelihood another ATV, and the ATV transportation means to be driven out of the off-road environment to an on-road environment for subsequent repair, transportation etc. of the broken or other ATV.
Claims
1. A device comprising: a lower frame portion; an upper frame portion mechanically coupled to the lower frame and rotatable relative to the lower portion; at least a pair of wheels attached to the lower frame; a linking bar at least one of rigidly attached and demountably attached to the lower frame at one end with a first coupling and having a second coupling at the other distal end for demountably attaching the device to a vehicle for towing the device.
2. The device according to claim 1, wherein the upper frame comprises: a first frame which is mechanically coupled to the lower frame and rotatable relative to the lower portion; and a pair of slidable frame members, each slidable frame member mechanically coupled to one end of the first frame and movable relative to the first frame.
3. The device according to claim 2, further comprising a pair of fittings, each fitting for locking a slidable frame member of the pair of slidable frame members in one position of a plurality of positions with respect to the first frame.
4. The device according to claim 1, wherein the second coupling comprises: a first joint mechanically coupled to the linking bar; a second joint mechanically coupled to the first joint; a third joint mechanically coupled to the second joint; and a fitting for coupling to an attachment attached to the vehicle; wherein the first joint pivots in a plane aligned with a longitudinal axis of the linking bar; the second joint rotates around the longitudinal axis of the linking bar; and the third joint pivots in a plane perpendicular to the longitudinal axis of the linking bar.
5. The device according to claim 1, wherein the height of the first coupling of the linking bar relative to the ground is higher than that the height of the second coupling at the other distal end of the linking bar; and the linking bar comprises a strut linking the first coupling to the second coupling; wherein when the device is coupled to the vehicle for towing the device a first portion of the strut from the first coupling to a predetermined point proximal the vehicle is substantially horizontal.
6. A method comprising: providing a transportation device for moving a first vehicle with a second vehicle; positioning the transportation device adjacent to a pair of wheels of the first vehicle; disposing the transportation device in a vertical position with an upper frame of the transportation device adjacent to the pair of wheels of the first vehicle and a linking bar the transportation device pointing substantially perpendicular and upwards relative to the terrain upon which the pair of wheels of the first vehicle are disposed; attaching the pair of wheels of the first vehicle to the upper frame of the transportation device; transitioning the transportation device from this vertical position to a horizontal position by using the linking bar as a mechanical lever thereby lifting the pair of wheels of the first vehicle off the ground such that they are supported on the upper platform of the transportation device.
7. The method according to claim 6, wherein the transportation device comprises: a lower frame portion; an upper frame portion mechanically coupled to the lower frame and rotatable relative to the lower portion; at least a pair of wheels attached to the lower frame; a linking bar at least one of rigidly attached and demountably attached to the lower frame at one end with a first coupling and having a second coupling at the other distal end for demountably attaching the device to a vehicle for towing the device.
8. The method according to claim 7, wherein the upper frame comprises: a first frame which is mechanically coupled to the lower frame and rotatable relative to the lower portion; and a pair of slidable frame members, each slidable frame member mechanically coupled to one end of the first frame and movable relative to the first frame.
9. The method according to claim 7, wherein a pair of fittings, each fitting for locking a slidable frame member of the pair of slidable frame members in one position of a plurality of positions with respect to the first frame.
10. The method according to claim 6, wherein the second coupling comprises: a first joint mechanically coupled to the linking bar; a second joint mechanically coupled to the first joint; a third joint mechanically coupled to the second joint; and a fitting for coupling to an attachment attached to the vehicle; the first joint pivots in a plane aligned with a longitudinal axis of the linking bar; the second joint rotates around the longitudinal axis of the linking bar; and the third joint pivots in a plane perpendicular to the longitudinal axis of the linking bar.
11. The method according to claim 6, wherein the height of the first coupling of the linking bar relative to the ground is higher than that the height of the second coupling at the other distal end of the linking bar; and the linking bar comprises a strut linking the first coupling to the second coupling; wherein when the device is coupled to the vehicle for towing the device a first portion of the strut from the first coupling to a predetermined point proximal the vehicle is substantially horizontal.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Embodiments of the present invention will now be described, by way of example only, with reference to the attached Figures, wherein:
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION
[0030] The present invention is directed to device for loading and towing all-terrain vehicles and more particularly to recovering all-terrain vehicles off road.
[0031] The ensuing description provides representative embodiment(s) only, and is not intended to limit the scope, applicability or configuration of the disclosure. Rather, the ensuing description of the embodiment(s) will provide those skilled in the art with an enabling description for implementing an embodiment or embodiments of the invention. It being understood that various changes can be made in the function and arrangement of elements without departing from the spirit and scope as set forth in the appended claims. Accordingly, an embodiment is an example or implementation of the inventions and not the sole implementation. Various appearances of one embodiment, an embodiment or some embodiments do not necessarily all refer to the same embodiments. Although various features of the invention may be described in the context of a single embodiment, the features may also be provided separately or in any suitable combination. Conversely, although the invention may be described herein in the context of separate embodiments for clarity, the invention can also be implemented in a single embodiment or any combination of embodiments.
[0032] Reference in the specification to one embodiment, an embodiment, some embodiments or other embodiments means that a particular feature, structure, or characteristic described in connection with the embodiments is included in at least one embodiment, but not necessarily all embodiments, of the inventions. The phraseology and terminology employed herein is not to be construed as limiting but is for descriptive purpose only. It is to be understood that where the claims or specification refer to a or an element, such reference is not to be construed as there being only one of that element. It is to be understood that where the specification states that a component feature, structure, or characteristic may, might, can or could be included, that particular component, feature, structure, or characteristic is not required to be included.
[0033] Reference to terms such as left, right, top, bottom, front and back are intended for use in respect to the orientation of the particular feature, structure, or element within the figures depicting embodiments of the invention. It would be evident that such directional terminology with respect to the actual use of a device has no specific meaning as the device can be employed in a multiplicity of orientations by the user or users.
[0034] Reference to terms including, comprising, consisting and grammatical variants thereof do not preclude the addition of one or more components, features, steps, integers or groups thereof and that the terms are not to be construed as specifying components, features, steps or integers. Likewise, the phrase consisting essentially of, and grammatical variants thereof, when used herein is not to be construed as excluding additional components, steps, features integers or groups thereof but rather that the additional features, integers, steps, components or groups thereof do not materially alter the basic and novel characteristics of the claimed composition, device or method. If the specification or claims refer to an additional element, that does not preclude there being more than one of the additional element.
[0035] A fitting as used herein and throughout this disclosure, refers to any machine component, piping or tubing part that can attach or connect two or more parts. Such fittings may include, but not be limited to, a coupling, couplings, compression fitting, pipe fitting, piping fittings, plumbing fittings, and plumbing fitting.
[0036] A mounting as used herein and throughout this disclosure, refers to part of a device, system., ancillary, etc. which is configured to support and/or attach another device, system, ancillary, components etc. to said part of the device, system, ancillary, component etc. A mounting typically supports demountable attachment of the parts but may be employed in permanent attachment to define the location of the point of attachment or support demountable attachment prior to permanent attachment.
[0037] A fixing or attachment means as used herein and throughout this disclosure, refers to component, device, or means employed to permanently or demountably attach a device, system, ancillary, components etc. to part of another device, system, ancillary, component etc. This may include, but not be limited to, depending upon whether permanent or demountable and the material(s) being joined fasteners, glues, resins, epoxies, cementing, welding, soldering, brazing, pressure differentials, magnets, clamps, clips, ties, supports, physical retention elements such as clips and crimps, and physical retention methods such as friction and interference fit. Fasteners may include, but not be limited to, bolts, nuts, washers, screws, threaded fasteners, rivets, nails, pins, hook-and-eye, and hook and loop.
[0038] A demountable connection as used herein and throughout this disclosure, refers to component, device, or means employed to permanently or demountably attach a mechanical connection, an electrical connection or fluidic connection on a device, system, ancillary, components etc. to another mechanical connection, electrical connection or fluidic connection on another device, system, ancillary, component etc. A demountable connection may be a solely mechanical connection. A demountable electrical or fluidic connection may include a mechanical connection to ensure the requisite electrical or fluidic connection is maintained.
[0039] A user as used herein may refer to, but is not limited to, an individual or group of individuals. This includes, but is not limited to, private individuals, employees of organizations and/or enterprises, members of community organizations, members of charity organizations, men and women. In its broadest sense the user may further include, but not be limited to, robotic systems, android systems, etc. that may be characterised by an ability to exploit one or more embodiments of the invention.
[0040] An all-terrain vehicle (ATV), also known as a quad, quad bike, three-wheeler, four-wheeler or quadricycle as defined by the American National Standards Institute (ANSI) is a vehicle that travels on, typically, low-pressure tires, and is designed to handle a wider variety of terrain than most other vehicles. An ATV may in some jurisdictions being street-legal. Whilst, using the current ANSI definition, ATVs are intended for use by a single operator, some ATVs are intended for use by an operator and one passenger. However, within this specification an ATV may also include, three or four-wheel recreational utility vehicles (RUVs) wherein rather than the operating sitting on and operating the ATV like a motorcycle, they sit in a seat and employ a steering wheel like a car rather than handlebars. Whilst most ATVs are equipped with three or four wheels, six-wheel models exist for specialized applications.
[0041] Referring to
[0045] The ATV-TD as depicted comprises a transport and mounting portion (TAMP) 200 and a connection portion (CONP) 2000. The CONP 2000 of the ATV-TD links the TAMP 200 assembly with the alternate vehicle (not depicted for clarity) which will pull the ATV-TD with or without the broken/damaged ATV attached. As depicted the CONP 2000 consists of a strut 210 having a predetermined geometry and is coupled to the TAMP 200 at one end and has a coupling assembly 220 at the other distal end from the TAMP 200 for coupling to a towing means on the alternate vehicle. The coupling assembly 220 being described and depicted in more detail below with respect to
[0046] This towing means may be a tube hitch, such as a 1.25 (32 mm) tube hitch or 2 tube (50 mm) tube hitch for example, which comprises a hollow tube (receiver tube) on one element into which another tube (on the other element) slides and is retained with a coupling means such as a lock pin or cotter pin for example. The tubes may be of any cross-section geometry, but the common formats are circular and square. Typically, the portion on the rear of an ATV comprises a receiver tube and hence typically the distal end of the CONP 2000 for such coupling means would comprise the other tube which fits into the receiver tube. The ATV-TD may support the use of an adapter to convert, for example, a 2 hitch to a 1.25 hitch or vice-versa.
[0047] Alternatively, the towing means may be a ball hitch wherein a ball mount is attached, typically, to the vehicle which will tow, and the portion being towed has a hitch coupler comprising a housing which fits over the ball of the ball mount. In some ball hitches additional locking or retention means may be employed. Optionally, chains may be also employed in conjunction with a hitch between the ATV-TD and ATV to prevent a failure or uncoupling of the hitch resulting in the ATV-TD being left behind. It would be evident that the ATV-TD may support the use of an adapter to convert a tube hitch end of the CONP 2000 to mount to a ball hitch or vice-versa. As will also be evident from the description in respect of
[0048] The TAMP 200 comprises a chassis having a lower frame 230 to which a pair of wheels 240 are attached. An upper frame 250 of the TAMP 200 is attached to the lower frame 230 of the TAMP 200 which can rotate relative to the lower frame as evident from the different positions of the upper frame 250 to the lower frame 230 in second and third images 200B and 200C in
[0049] Referring to
[0053] Accordingly, it is evident from first to third images 300A to 300C respectively that the front (or rear) of an ATV mounts to the upper frame of the ATV-TD and that the lower portion of the ATV-TD can rotate relative to the upper frame allowing for a tight turning circle for the ATV-TD which is beneficial either when being towed, in positioning the ATV-TD to mount the ATV prior to its being towed or in positioning the ATV-TD to park or dismount the ATV after its being towed. As depicted in
[0054] Referring to
[0058] Accordingly, as evident in first to third images 400A to 400C in
[0059] Referring to
[0063] Accordingly, the process for achieving position of the wheel of the vehicle being recovered for an ATV-TD according to an embodiment of the invention comprises the following sequence: [0064] Step 1: Tow the ATV-TD to the vehicle being recovered; [0065] Step 2: Unhitch the ATV-TD; [0066] Step 3: Position the ATV-TD in front of the wheels of the vehicle being recovered; [0067] Step 4: Rotate the ATV-TD from its initial essentially horizontal position to a vertical position; [0068] Step 5: Attach the wheels to the upper platform of the ATV-TD with restraints and tighten; [0069] Step 6: Start to pull the linking bar of the ATV-TD down and push the ATV-TD TAMP forward towards the vehicle being recovered; and [0070] Step 7: Complete pulling the linking bar of the ATV-TD down and pushing ATV-TD TAMP forwards until the wheels of the vehicle being recovered are on top of the upper frame of the ATV-TD TAMP.
[0071] Accordingly, the placement of the vehicle being recovered can be performed with a single individual although commonly the driver of the vehicle being recovered will also be present as well as the driver of the vehicle recovering them. Alternatively, where the vehicle being recovered is light the wheel(s) to be raised of the floor can be lifted and the ATV-TV TAMP positioned appropriately and then the restraints done up. An unloading sequence may comprise essentially the reverse sequence wherein the ATV-TD with ATV attached is transitioned from its horizontal position to the vertical position and the restraints removed allowing the ATV-TD to be separated from the ATV.
[0072] Optionally, the vehicle to which the ATV-TD will be attached when towing an ATV may comprise a winch or pulley thereby allowing the ATV to be transported and/or recovered to be winched up onto the ATV-TD or to pull the linking bar down within steps 6 and 7 of the sequence described above in respect of loading the ATV to be towed and/or recovered onto the ATV-TD. This may be particularly beneficial for the instance of a single individual towing and/or recovering an ATV and loading the ATV on their own but can be employed even where two or more individuals are present for the loading/unloading. Alternatively, the pulley or winch may form part of the vehicle being towed and/or recovered. A pulley wheel as depicted in first to third images 700A to 700C on the distal end of the linking bar from the TAMP portion of the ATV-TD may be employed to aid in the winching/pulley operations.
[0073] However, within other embodiments of the invention a pulley or winch may form part of the ATV-TD or provide a mounting point for a pulley or winch to be attached. This pulley or winch when attached to the ATV-TD may be powered by either the ATV to provide the towing and/or recovered or the ATV being towed and/or recovered or alternatively it may be a manually operated pulley or winch. A pulley wheel as depicted in first to third images 700A to 700C on the distal end of the linking bar from the TAMP portion of the ATV-TD may be employed to aid in the winching/pulley operations. The pulley/winch may be disposed upon the linking bar, particularly in instances where the linking bar is an A-frame design or equivalent, or it may be formed as part of the upper frame or lower frame of the TAMP portion of the ATV-TD.
[0074] Optionally, the upper frame of the ATV-TD may be adjustable to support narrow or wide ATVs.
[0075] Optionally, lower frame may also be adjustable to increase or decrease the wheel spacing.
[0076] Referring to
[0080] Now referring to
[0087] Within first image 700A the distal end of the linking bar 710 of the ATV-TD according to an embodiment of the invention is depicted from above with the first joint 720 rotated such that the second and third joints 730 and 740 together with tube hitch 750 are titled up away from the ground. Second image 700B depicting this same configuration but from a front upper perspective. Third image 700C depicts the distal end of the linking bar 710 of the ATV-TD according to an embodiment of the invention with the third joint 740 rotated. The pulley wheel 760 may be employed as described above in conjunction with a winch or pulley to move and/or tilt-rotate the ATV-TD when loading/unloading the ATV being recovered and/or towed.
[0088] Within
[0089] However, it would be evident that other linkage designs between the linking arm of the CONP portion of the ATV-TD according to an embodiment of the invention and the TAMP portion of the ATV-TD according to an embodiment of the invention. It would be evident that other couplings at one or both ends of the linking bar may be rigid or flexible within embodiments of the invention. Flexible couplings may be flexible in a single axis, dual axes, three-axes, four-axes, etc. Typically, a four-axis joint is referred to as a universal joint. The previously discussed tube hitch would represent a rigid coupling whereas the ball hitch would allow movement in six axis.
[0090] Within the preceding description of an ATV-TD according to an embodiment of the invention in
[0091] However, within another embodiment of the invention the linking bar may be demountably attached to the TAMP portion of the ATV-TD, for example, using another tube hitch. Accordingly, the ATV-TD with a demountable linking bar becomes quite compact allowing it to be transported upon an ATV or another vehicle which will be used to tow/recover an ATV or upon an ATV in case it needs to be towed/recovered. The CONP and TAMP portions of the ATV-TD may therefore be mounted together or separately to an ATV. Optionally, the linking bar of the CONP may have a pair of telescopic sections with a locking mechanism to allow the CONP portion to be collapsed for transport/storage and extended for use. Additionally, the upper frame of the ATV-TD may be removable detached from the lower frame of the ATV-TD in order to improve the collapsing of the ATV-TD for transport, storage, shipping etc.
[0092] Within the preceding description of an ATV-TD according to an embodiment of the invention in
[0093] Specific details are given in the above description to provide a thorough understanding of the embodiments. However, it is understood that the embodiments may be practiced without these specific details. For example, circuits may be shown in block diagrams in order not to obscure the embodiments in unnecessary detail. In other instances, well-known circuits, processes, algorithms, structures, and techniques may be shown without unnecessary detail in order to avoid obscuring the embodiments.
[0094] The foregoing disclosure of the exemplary embodiments of the present invention has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Many variations and modifications of the embodiments described herein will be apparent to one of ordinary skill in the art in light of the above disclosure. The scope of the invention is to be defined only by the claims appended hereto, and by their equivalents.
[0095] Further, in describing representative embodiments of the present invention, the specification may have presented the method and/or process of the present invention as a particular sequence of steps. However, to the extent that the method or process does not rely on the particular order of steps set forth herein, the method or process should not be limited to the particular sequence of steps described. As one of ordinary skill in the art would appreciate, other sequences of steps may be possible. Therefore, the particular order of the steps set forth in the specification should not be construed as limitations on the claims. In addition, the claims directed to the method and/or process of the present invention should not be limited to the performance of their steps in the order written, and one skilled in the art can readily appreciate that the sequences may be varied and still remain within the spirit and scope of the present invention.