AU5603799A - Independent suspension vehicle truck for skates - Google Patents
Independent suspension vehicle truck for skates Download PDFInfo
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- AU5603799A AU5603799A AU56037/99A AU5603799A AU5603799A AU 5603799 A AU5603799 A AU 5603799A AU 56037/99 A AU56037/99 A AU 56037/99A AU 5603799 A AU5603799 A AU 5603799A AU 5603799 A AU5603799 A AU 5603799A
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- wheels
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- mounting structure
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Description
S F Ref: 353416D1
AUSTRALIA
PATENTS ACT 1990 COMPLETE SPECIFICATION FOR A STANDARD PATENT
ORIGINAL
Name and Address of Applicant: Actual Inventor(s): Address for Service: Brian Lee Evans 1150 Pommeroy Road Nipomo California 93444 UNITED STATES OF AMERICA Brian L Evans Spruson Ferguson, Patent Attorneys Level 33 St Martins Tower, 31 Market Street Sydney, New South Wales, 2000, Australia Independent Suspension Vehicle Truck for Skates Invention Title: The following statement is a full description of this invention, including the best method of performing it known to me/us:- 5845 1 INDEPENDENT SUSPENSION VEHICLE TRUCK FOR SKATES BACKGROUND OF THE INVENTION The present invention relates to a vehicle truck foi supporting a ground contacting device, and in particular to ar independent suspension truck which supports a wheel or wheels or a runner or ski, for example a roller skate boot has in-line wheels or tandem wheels.
Roller skates, skateboards, scooters, unicycles, wheel barrows, sleds and other weight carrying vehicles have been around for years. Each type of vehicle uses a different type of truck to steer depending on whether the device uses wheels, the number of wheels, and the configuration of the wheels, e.g. a single wheel, in-line wheels, tandem or staggered whrels.
SPresently no single truck exists which can perform all these functions. Some wheels may be mounted to a device which permits •the wheels to turn while others have no device to actively turn the wheels, skis or blades. Most have no shock absorbing capability. Rough surfaces, rocks, cracks, etc. present hazards to in-line skates without some shock absorbing capability.
Vibrations are transferred directly to the skater causing fatigue. In in-line skates, the vibration is multiplied by the S 25 number of wheels. In recent years the popularity of in-line roller skates has increased dramatically. However, these vehicles have various drawbacks, conventional in-line skates cannot be steered except by moving the entire set of wheels by applying significant force, since the wheels do nriot turn relative to the mounting structure. Turning on in-line skates is accomplished by slip, slide and increase or loss of friction on one or more of the wheels. The wheels turn in a single arc.
Another drawback is that most of the foregoing vehicles are not adaptable. The roller skate boot is configured to have a specific number of wheels, which are of a specified width. The boot cannot be modified to change the number of wheels or to permit an interchange with wheels of differing widths. In addition, the trucks can not be adjusted to change their shock absorbing characteristics, to alter their turning characteristics, or to resist bottoming out of the wheels against the bottom of he vehicle. Further, few if any vehicles allow for adjustment of the ride cnaracteristics. Most vehicles cannot be reconfigured to use wheels, skis, blades or treads.
Furthermore, the trucks, or wheel supporting structures, for each particular type of vehicle are designed for use with only that type of vehicle and are not applicable to 15 other formats. For example the trucks on an in-line roller skate can not be utilized on a scooter without significant redesign.
SUMMARY OF THE INVENTION In view of the foregoing drawbacks it is an object of the present invention to provide a vehicle truck which prevents the ground contacting portions, such as wheels from bottoming out on the vehicle truck by providing flexible deflercting members having one end attached to a truck axle hanger and the opposite end attached to a vehicle mounting plate The end 25 attached to the mounting plate is attached so that the deflecting beam meets the mounting plate at an acute angle, less than 90 degrees. The truck has a unitary construction, and may be made from plastic, graphite-like material, or other flexible material.
The deflecting beam has at least one horizontal component and/or at least one vertical component. The vertical components resist vertical deflection of the truck axle hangers to restrict upward and downward movement of the wheels or other ground contacting portions. The ability of these vertical components to resist upward and downward movement relates to th0 shock absorbing capability. In addition to acting as a shoc) absorber the vertical component also acts a center of movement for turning of the deflecting beam.
The horizontal component controls most twistinc motions of the deflecting beam. As the thickness of the horizontal component is increased relative to its width, its resistance to twisting or deflection from a particular force applied to the axle hanger or mounting surface will increase.
The horizontal component also acts as a dampener of side-to-side axle truck hanger wobble. The wider the horizontal component Sthe less wobble there will be. If the horizontal deflection beam is thick enough and is made of a sufficiently stiff enough material it will also act to resist vertical deflection, thereby eliminating the need for the vertical component.
The truck and mounting surface are adaptable to permit changes to the number of wheels or ground contacting portions, Sthe position of the wheels, and the thickness of the wheels.
The present invention may be connected from in-line to tandem 20 configuration by simply changing the axles and wheels.
The unitary construction may have multiple attachment points to provide greater stability. No unitary independent suspension truck exists which provides shock absorption and revent splaying of the wheels.
The deflection beam may have a variety of cross sections so long as it resists vertical deflection, twist and allows for vibration absorption.
It is another object of the invention to provide a vehicle truck in which the ground contacting portions resist splaying outward under the weight of an occupant or load.
Another object of the invention to provide a vehicle truck which is adaptable for use on a skate, sled, scooter, wheel barrow, unicycle or most any other vehicle.
Yet another object of the invention to provide a vehicle truck which can be reconfigured to change the number of, the size of, or position of ground contacting portions.
The foregoing and other objects of the present invention will be described in detail below with reference tc the drawings.
BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1 is a side view of a first embodiment of a roller skate boot assembly according to the present invention; Fig. 2 is a side view of a second embodiment of a roller skate boot assembly according to the present invention; Fig. 3 is a front view of the roller skate boot assembly shown in Fig. 1; Fig. 4 is a rear view of the roller skate boot assembly similar to the boot shown in Fig. i, but having tandem wheels instead of in-line wheels; Fig. 5 is a cross-sectional view of the truck and boot of Fig. 4; 2Fig. 6 is a bottom view of the roller skate assembly shown in Fig. 1; Fig. 7 a cross-sectional view taken along line F-F of Fig. 1; Fig. 8 is a cross-sectional view taken along line
FF-
FF of Fig. 2; Fig. 9 is a cross-sectional view of the truck of Fig.
4 where the truck supports pairs of wheels side-by-side; Fig. 10 is cross-sectional view of the truck of Fig.
4 having a configuration similar to the second embodiment where the truck supports pairs of wheels side-by-side; Fig. 11 is a frontal view of the embodiment shown in Fig. 1; Fig. 12 is perspective view of the embodiment shown in Fig. 1; Fig. 13 is perspective view of the embodiment shown in Fig. 2; Fig. 14 is perspective view of a skate boot as shown in Fig. 4 with two pairs of tandem wheels; Fig. 15 is a perspective view of the skate boot of Fig. 1 which has been modified to support two wheels aligned in a single line, the wheels being very thin; Fig. 16 is a perspective view of the skate boot of Fig. 2 which has been modified to support two wheels aligned in a single line, the wheels being of medium thickness; and 1 0 Fig. 17 is a perspective view similar to Fig. 16 where the wheels have been replaced with extra wide wheels.
DETAILED DESCRIPTION OF THE PREFERRED
EMBODIMENT
Referring to Fig. 1, a first embodiment of the present 1 5 invention is shown. In all the illustrated embodiments of the present invention the truck is applied to various roller skate configurations. However, the invention is equally applicable to scooters, unicycles, wheel barrows, sleds, toboggans, skis or "ski vehicles, vehicles with runners, and vehicles with pontoon structures, and is not meant to be limited to a roller skate o*oo embodiment.
In the embodiment shown in Figs. 1 and 2, the'skate boot and mounting structure are integrally formed as a unitary .structure 1 with one another. The structure, unitary or 25 otherwise, can be formed by injection molding, centrifugal molding or similar unitary processes. The other vehicles mentioned above can also be formed as a unitary structure, and mention of these other vehicles will be omitted from now on, but when reference is made to a skate the other vehicles are intended to be included.
The embodiment of Figs. 1, 3, 6, 7, 11, and 12 has four wheels 3 arranged in an in-line configuration. Each wheel 3 is supported by an axle 5 held in an axle hanger 6. The truck in this embodiment has two flexible deflecting members for each wheel 3, one on either side of each wheel 3. Each flexible deflecting member 2 has a truck axle hanger 6 at one end and the other end connected to the mounting structure 1. The end attached to the mounting structure 1, meets the mounting structure 1 at an acute angle, less than 90 degrees.
As shown most clearly in Figs. 3 and 6, each wheel 3 has an axle hanger 6 on either side with a flexible deflecting member 2 joining each hanger 6. Referring back to Fig. i, four trucks 10 are attached to the mounting surface i, each at an acute angle. The apex of the front-most truck 10a points forwards away from the toe of the boot and meets the mounting surface 1 at the front end la of the mounting surface 1. The rearmost truck lOd is attached so that the apex of the acute angle points rearward away from the heel of the boot, and meets the mounting surface 1 at the rear end id. In the embodiment of Fig. 1, the front two trucks 10a and 10b are oriented in the .same direction with their apexes pointing forwards, while the Srear two trucks 10c and 10d are oriented with their apexes Spointing rearward.
The acute angle of the trucks 10 relative to the mounting structure 1 can be either fixed and non-adjustable or can be changeable. The preferred embodiment of the truck 1o has an optimum angle of approximately 45 or less degrees. Such a configuration provides the best shock absorption, wobble 25 reduction and turning-in response-to-force action.
During turning two separate arcs are created, because the front wheel 10a and rear wheel 10d flex so as to follow one arc while the inner wheels 10b and 10c follow a separate arc, due to the various stresses and the free ends of impact pegs 4, thereby creating two tracks of travel which increases stability when turning.
Turning now to Figs. 3 and 7, the configuration of the flexible deflecting members 2 will be described. Each flexible deflecting member 2 can include a vertical component 8 and or a horizontal component 7. The flexible deflecting member 2 may have only a single vertical component 8, a single horizontal component 7, or one or more of each. In the embodiment shown in Figs. 1, 3, 6, 7, 11, and 12 there is one vertical component 8 and one horizontal component 7. On the other hand the embodiment of Figs. 2, 8, 13, 16 and 17, has one vertical component 8 and two horizontal components 7. The flexible deflecting member 2 may have two or more vertical components 8 as well, although such an embodiment is not illustrated.
The vertical component 8, shown most clearly in Fig.
7 is designed to resist vertical deflection of the truck axle hangers 6 to thereby restrict the upward and downward movement of the wheels so that the truck 10 has greater shock absorbing properties. The vertical component 8 also acts as the center of 15 movement for turning of the flexible deflecting member 2.
The horizontal component 7 affects the twisting motion of the flexible deflecting member 2. The thicker the horizontal component 7 is relative to its width, the less the flexible deflecting member 2 will twist away from a particular force 20 applied to the axle hanger 6 or the mounting structure i. The horizontal component also acts as a dampener for side-to-side axle hanger wobble, especially wobble in the rear-most truck, which can be caused by vibratory or unstable movement of the wheel 3 when moving at speed. The wider the horizontal component 7 the less side-to-side movement will result since the flexible deflecting member 2 is thereby more resistant to compression and elongation caused by vibration and other destabilizing movement of the wheel. The horizontal component 7 can also effect the shock absorption of the truck 10. If the horizontal component 7 is very thick and made of a stiff material it can resist vertical deflection within itself, reducing or eliminating the need for a vertical component 8.
The preferred embodiment of the flexible deflecting member 2 is shown in Fig. 7, and has one vertical component 8 and one horizontal component 7 which are merged together at the upper edge of the vertical component 8 and the inner edge of the horizontal component 7. Even a small vertical component 8 in a merged structure such as shown in Fig. 7 provides significant enhancement of the shock absorption properties of the flexible deflection member 2.
Each truck 10 in the illustrated embodiments also has a safety peg 4 which acts as a truck movement restrictor which keep the truck hangers 6 and wheels 3 from bottoming out on the mounting :tructure 1. The pegs 4 may also include a twist or turning resistant component. The safety pegs 4 also help to prevent dead weight sag resulting from the flexibility of the flexible deflecting member 2, especially in the independent or .9semi-independent tandem wheel design, illustrated in Figs. 4, S 15 9, 10, and 14. Each peg may be rigidly attached to or integrally formed with either the axle hanger 6 or the mounting surface 1 while the opposite end is not attached to the device.
In the illustrated embodiments the pegs 4 are integrally formed with the axle hangers 6.
20 Each peg 4 can be formed of rigid material and thus provide no spring action or can include large or small springs or dampeners or have buffer pads to provide a shock abscrbing function in addition to their primary function of preventing the wheels from bottoming out. The pegs 4 can also act in the stead *9 25 of a missing or reduced vertical component 8 of the flexible deflecting member 2. The pegs 4 can be formed integrally with the mounting structure 1, or formed separately so they are removable and replaceable.
The embodiment shown in Figs. 2, 8, 13, 16, and 17, employs two horizontal components 7 and a single vertical component 8 in the flexible deflecting member 2 to enhance the resistance to twisting forces. While it is not illustrated, multiple vertical components 8 may be employed where greater shock absorption is desired.
Another aspect of the present invention is the adaptability of the design by changing the distance between axle hangers 6 to allow for the use of different size wheels, blades, pontoons, skids, skis, etc. Fig. 15 shows a skate similar to the first embodiment with two wheels. If the all or some of the trucks 10 are not integrally formed with the mounting structure 1, then the user can vary the number of wheels on the skate by detaching one or more trucks 10. The user can further adapt the skate to their personal needs by altering the distance between the axle hanrers 6 to employ different width wheels which result in differ-.nt operating characteristics. Fig. 15 shows two wheels which are extremely thin. Fig. 16 shows a skate with S flexible deflecting members 2 according to the second S Sembodiment, the skate having two in-line wheels 3, the wheels 3 t5: being of intermediate width. The skate shown in Fig. 17 is the same as the skate in Fig. 16, but the axle hangers 6 have been adjusted so that they are farther apart to permit the mounting .of double thick wheels. In this manner beginner skaters, lacking stability and muscle tone can employ the wider wheels 20 and then change to the thinner wheels as their skills increase.
Further, the performance characteristics can be altered to suit the rider or user by changing the wheel size, positibn or 5. supports.
The mounting structure can be a plate, a shoe with an integral truck/plate, or truck/shoe, a one-piece molded shoe, scooter, etc. wherein all components are molded at the same time. For some parts such as the safety pegs it may be desirable to make them from separate pieces.
The molded construction of the truck and mounting s0 structure of the present invention can be altered for use in the variety of applications mentioned previously, namely, for skates, scooters, sleds, unicycles, etc. The mount structure can be designed to attached to the bottom of a user's shoe.
This list is not meant to be limited to the specific vehicles mentioned but is equally applicable to any vehicle having a ground contact in member and a support therefor.
The molded truck and mounting platforms can be formed with variations, recesses and/or attachment points for various components, such as but not limited to, toe-stops, lights, reflectors, batteries, power packs, and radios.
While the preferred embodiment was described in detail, modifications and variations of the present invention that are obvious to one skilled in the art, such as changing the dimensions, are intended to be covered by the following claims.
S
Claims (16)
- 2. A vehicle truck as recited in claim i, wherein said mounting structure, and said flexible deflecting member are integrally formed.
- 3. A vehicle truck as recited in claim i, wherein said flexible deflecting member comprises at least one vertical component and one horizontal component.
- 4. A vehicle truck as recited in claim 3, wherein said vertical component and said horizontal component merge with an upper edge of said vertical component meeting an inner edge of said horizontal component. A vehicle truck as recited in claim 3, wherein said flexible deflecting member comprises two horizontal components. 12
- 6. A vehicle truck as recited in claim i, further comprising a safety peg disposed between said mounting structure and a point of contact of said flexible deflecting member and said ground contacting means.
- 7. A vehicle truck as recited in claim 6, wherein said safety peg is mounted to said flexible deflecting member.
- 8. A vehicle truck as recited in claim 6, wherein said safety peg is mounted to said mounting structure.
- 9. A vehicle truck as recited in claim 1, wherein said mounting structure and said flexible deflecting structure meet at an acute angle. A vehicle truck as recited in claim 9, wherein "said acute angle is less than 90 degrees. i. A vehicle truck as recited in claim i, wherein 20 said ground contacting means is at least one wheel.
- 12. A vehicle truck as recited in claim 1, wherein said vehicle has at least two ground contacting means. 0Q
- 13. A vehicle truck as recited in claim 12, wherein said flexible deflecting member of a front one of said at least two ground contacting means meets said mounting structure at an acute angle, an apex of said angle being disposed forward of a front of said vehicle mounting structure.
- 14. A vehicle truck as recited in claim 13, wherein said flexible deflecting member of a rear one of said at least two ground contacting means meets said mounting structure at an acute angle, an apex of said angle being disposed rearward of a r 13 rear of said mounting structure. A vehicle truck as recited in claim 12, whereii each of said at least two ground contacting means has a flexibl deflecting member disposed on either side of said grount contacting means.
- 16. A vehicle truck as recited in claim 15, whereir the distance between said flexible deflecting members can be altered to accommodate differing width ground contacting means.
- 17. A vehicle truck as recited in claim 1, wherein the number of ground contacting means can be changed. 15
- 18. A vehicle truck as recited in claim 1, wherein said vehicle is a skate, and said ground contacting means is at least two wheels, said wheels being arranged in one of an in- S. line configuration and a tandem configuration. S 20
- 19. A vehicle truck as recited in claim 1, wherein said vehicle is one of a skate, a scooter, a sled, a toboggan, a unicycle, wheelbarrow, a rki, and a skateboard. S
- 20. A vehicle truck for supporting at least two S* 25 wheels comprising: mounting structure for mounting said truck to said vehicle; at least oe: flexible deflecting member for attachment to each one of said at least two wheels, said flexible deflecting member comprising: at least one vertical component and at least one horizontal ccmponent, said vertical component resisting vertical deflection of said truck and said horizontal component resisting twisting 14 of said truck and wobble of said at least two wheels, said vertical component and said horizontal component merging so that an upper edge of said vertical component meeting an inner edge of said horizontal component, a safety peg disposed between said mounting structure and a point of contact of each of said at least one flexible deflecting member and each of said at least two wheels, wherein said mounting structure and said flexible deflecting structure meet at an acute angle less than 90 degrees, said flexible deflecting member of a front one of said at least two wheels meets said mounting structure at an acute angle, t0 said flexible deflecting member of a rear one of said at least two wheels meets said mounting structure at an acute angle, wherein each of said at least two wheels has a flexible deflecting members disposed on either side of said ground contracting means, and a distance between said flexible deflecting members can be altered to accommodate wheels of differing widths.
- 21. Apparatus substantially as described herein with reference to the accompanying Q: drawings. Dated 22 October, 1999 s Brian L. Evans Patent Attorneys for the Applicant/Nominated Person 20 SPRUSON FERGUSON 0* 6 09 I \l.IIlA (I284X d-c l I.1
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
AU56037/99A AU759337B2 (en) | 1993-12-23 | 1999-10-22 | Independent suspension vehicle truck for skates |
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US172109 | 1980-07-25 | ||
AU14077/95A AU1407795A (en) | 1993-12-23 | 1994-12-22 | Independant suspension vehicle truck for skates |
AU56037/99A AU759337B2 (en) | 1993-12-23 | 1999-10-22 | Independent suspension vehicle truck for skates |
Related Parent Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
AU14077/95A Division AU1407795A (en) | 1993-12-23 | 1994-12-22 | Independant suspension vehicle truck for skates |
Publications (2)
Publication Number | Publication Date |
---|---|
AU5603799A true AU5603799A (en) | 2000-01-13 |
AU759337B2 AU759337B2 (en) | 2003-04-10 |
Family
ID=3704283
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
AU56037/99A Ceased AU759337B2 (en) | 1993-12-23 | 1999-10-22 | Independent suspension vehicle truck for skates |
Country Status (1)
Country | Link |
---|---|
AU (1) | AU759337B2 (en) |
Family Cites Families (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3649038A (en) * | 1970-04-08 | 1972-03-14 | Otto Huckenbeck | Steerable roller skate |
FR2584936B1 (en) * | 1985-07-18 | 1989-12-01 | Vullierme Sa | PLASTIC ROLLER SKATE |
-
1999
- 1999-10-22 AU AU56037/99A patent/AU759337B2/en not_active Ceased
Also Published As
Publication number | Publication date |
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AU759337B2 (en) | 2003-04-10 |
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Legal Events
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FGA | Letters patent sealed or granted (standard patent) |