IP Library › Granted Patent US 12,227,402
Granted Patent B2
US 12,227,402 · App. 17/807,828 · Granted Feb 18, 2025

Stowable modular utility lift system

Inventor: Donald Raymond Curtis, III (Perry, FL)
B66F9/12B60N2/38B60R9/06
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,227,402
App. No.
17/807,828
Granted
Feb 18, 2025
Kind
B2
Abstract

The subject invention pertains to stowable, modular lift conversion systems configured for aftermarket or OEM application to a truck, all-terrain vehicle (ATV), or utility task vehicle (UTV). Lift systems provided include removable and mounted systems with power provided by a battery, a winch, or linear motion device either on the lift or on the vehicle. Modular implements and lift attachments are provided.

Claims (77)

1. A stowable modular lift conversion system ( 1500 ) configured for application to a vehicle, the system comprising:

a fixed frame ( 110 ) configured to mount to the vehicle, the fixed frame comprising:

an opposing pair of vertical frame members ( 111 ),

a first compression member ( 1510 ) captured between the opposing pair of vertical frame members ( 111 ),

a first tension member ( 1520 ) configured and adapted to generate inward pressure between opposing frame members against the first compression member ( 1510 ),

an upper pivot point ( 112 ) on each of the vertical frame members ( 111 ),

a lower pivot point ( 113 ) on each of the vertical frame members ( 111 ),

a hook ( 114 ) configured to inhibit translational motion of the fixed frame ( 110 ) in more than one direction, and

a multiaxial adjustable brace ( 1570 ) comprising a support surface ( 115 ) configured to support the fixed frame ( 110 ) against rotation; and

a movable frame ( 120 ) configured and adapted to lift a load and to move from a stowed configuration to an extended position, the movable frame comprising:

an opposing pair of upper pivot arms ( 121 ), each having a near end ( 121 A) respectively connected to one of the upper pivot points ( 112 ), and a far end ( 121 B) opposite the near end,

an opposing pair of lower pivot arms ( 122 ), each having a near end ( 122 A) respectively connected to one of the lower pivot points ( 113 ), and a far end ( 122 B) opposite the near end,

a second compression member ( 1510 ) captured and located between either the opposing pair of upper pivot arms ( 121 ), or the opposing pair of lower pivot arms ( 122 ),

a second tension member ( 1520 ) configured and adapted to generate inward pressure between opposing pivot arms ( 121 , or 122 ) against the second compression member ( 1510 ),

an opposing pair of adaptive mounting plates ( 1530 ), each connected to the far end ( 121 B) of one of the upper pivot arms ( 121 ) or to the far end ( 122 B) of one of the lower pivot arms ( 122 ),

a modular implement base ( 140 ) connected to the opposing pair of adaptive mounting plates ( 1530 ), and

a safety bar ( 1540 ) movable from an open position to a closed position with respect to the modular implement base ( 140 );

wherein the modular implement base ( 140 ) and the safety bar ( 1540 ) are each respectively adapted and configured such that a multiplicity of modular implements ( 151 ), ( 152 ), ( 153 ) can be detached from the modular implement base when the safety bar ( 1540 ) is in the open position, but not when the safety bar ( 1540 ) is in the closed position.

2. The system according to claim 1 , comprising a safety bar lock ( 1550 ) movable from a locked configuration to an unlocked configuration, the safety bar lock ( 1550 ) configured and adapted to selectively inhibit movement of the safety bar ( 1540 ) from the closed position to the open position when in the locked configuration.

3. The system according to claim 2 , wherein the opposing pair of vertical frame members ( 111 ), the opposing pair of upper pivot arms ( 121 ), the opposing pair of lower pivot arms ( 122 ), and the opposing pair of adaptive mounting plates ( 1530 ) form an opposing pair of four-bar linkages configured to maintain a desired angle between the vertical frame members ( 111 ) and the adaptive mounting plates ( 1530 ).

4. The system according to claim 3 , wherein the opposing pair of adaptive mounting plates are a first opposing pair of adaptive mounting plates ( 1530 ) and the opposing pair of four-bar linkages further comprise a second opposing pair of adaptive mounting plates ( 1530 ) and, optionally, a stabilizer link ( 1531 ) pivotably connected between the opposing pair of upper pivot arms ( 121 ) and the opposing pair of lower pivot arms ( 122 ).

5. The system according to claim 4 , wherein the modular implement base ( 140 ) connects the first opposing pair of adaptive mounting plates ( 1530 ) and the second opposing pair of adaptive mounting plates ( 1530 ).

6. The system according to claim 3 , comprising an actuator ( 170 A or 170 B) configured to receive power from a cordless hand tool battery ( 320 ), and configured to generate motion of the movable frame ( 120 ) with respect to the fixed frame ( 110 ).

7. The system according to claim 1 , wherein at least one vertical frame member ( 111 ) of the opposing pair of vertical frame members ( 111 ) connects at least one upper pivot point ( 112 ), at least one lower pivot point ( 113 ), the hook ( 114 ), and the multiaxial adjustable brace ( 1570 ).

8. The system according to claim 7 , comprising at least two cable interface points ( 160 A), ( 160 B) configured to simultaneously generate a downward force on the fixed frame and an upward force on the movable frame when tension is applied to a cable ( 171 ) originating from the vehicle and routed in contact with the two cable interface points.

9. The system according to claim 8 , wherein the two cable interface points ( 160 A), ( 160 B) comprise a roller ( 160 A), and an attachment point ( 160 B) both operating in a vertical plane aligned with a center of mass of the system; the attachment point ( 160 B) configured to detachably receive a winch hook at a first end of the cable.

10. The system according to claim 9 , wherein the fixed frame ( 110 ) is configured and adapted to mount to and dismount from the vehicle by manual operation without hand tools after an initial assembly of the fixed frame ( 110 ).

11. The system according to claim 1 , comprising an actuator ( 170 A or 170 B) configured to receive power from a cordless hand tool battery ( 320 ), and configured to generate motion of the movable frame ( 120 ) with respect to the fixed frame ( 110 ).

12. The system according to claim 1 , wherein the opposing pair of adaptive mounting plates ( 1530 ) comprises a multiplicity of adjustable pivot points aligned in a circle, a curve, or an arc.

13. The system according to claim 12 , wherein the circle, the curve, or the arc is centered between the far end ( 121 B) of one of the upper pivot arms ( 121 ), and the far end ( 122 B) of one of the lower pivot arms ( 122 ) when the system is assembled for use in lifting the load.

14. The system according to claim 12 , wherein the circle, the curve, or the arc is centered at the far end ( 121 B) of one of the upper pivot arms ( 121 ), or at the far end ( 122 B) of one of the lower pivot arms ( 122 ) when the system is assembled for use in lifting the load.

15. The system according to claim 12 , wherein the circle, the curve, or the arc is centered beyond the far end ( 121 B) of one of the upper pivot arms ( 121 ), or at the far end ( 122 B) of one of the lower pivot arms ( 122 ) when the system is assembled for use in lifting the load.

16. The system according to claim 1 , wherein the opposing pair of adaptive mounting plates ( 1530 ) comprise an opposing pair of connection points, configured and adapted to align and connect with the opposing far ends ( 121 B) of the opposing upper pivot arms ( 121 ), or the opposing far ends ( 122 B) of the opposing lower pivot arms ( 122 ), or both, when the system is assembled for use in lifting the load.

17. The system according to claim 1 , wherein the hook ( 114 ) is configured and adapted to removably drop down onto the vehicle from above and the multiaxial adjustable brace ( 1570 ) is configured and adapted to locate the support surface ( 115 ) in contact with the vehicle and support the fixed frame at a desired position and orientation on the vehicle.

18. A stowable modular lift conversion system ( 1500 ) configured for application to a vehicle, the system comprising:

a fixed frame ( 110 ) configured to mount to the vehicle, the fixed frame comprising:

an opposing pair of vertical frame members ( 111 ),

a first compression member ( 1510 ) captured between the opposing pair of vertical frame members ( 111 ),

a first tension member ( 1520 ) configured and adapted to generate inward pressure between opposing frame members against the first compression member ( 1510 ),

an upper pivot point ( 112 ) on each of the vertical frame members ( 111 ),

a lower pivot point ( 113 ) on each of the vertical frame members ( 111 ),

a hook ( 114 ) configured to inhibit translational motion of the fixed frame ( 110 ) in more than one direction, and

a multiaxial adjustable brace ( 1570 ) comprising a support surface ( 115 ) configured to support the fixed frame ( 110 ) against rotation; and

a movable frame ( 120 ) configured and adapted to lift a load and to move from a stowed configuration to an extended position, the movable frame comprising:

an opposing pair of upper pivot arms ( 121 ), each having a near end ( 121 A) respectively connected to one of the upper pivot points ( 112 ), and a far end ( 121 B) opposite the near end,

an opposing pair of lower pivot arms ( 122 ), each having a near end ( 122 A) respectively connected to one of the lower pivot points ( 113 ), and a far end ( 122 B) opposite the near end,

a second compression member ( 1510 ) captured and located between either the opposing pair of upper pivot arms ( 121 ), or the opposing pair of lower pivot arms ( 122 ),

a second tension member ( 1520 ) configured and adapted to generate inward pressure between opposing pivot arms ( 121 , or 122 ) against the second compression member ( 1510 ),

an opposing pair of adaptive mounting plates ( 1530 ), each connected to the far end ( 121 B) of one of the upper pivot arms ( 121 ) or to the far end ( 122 B) of one of the lower pivot arms ( 122 ),

a modular implement base ( 140 ) connected to the opposing pair of adaptive mounting plates ( 1530 ), and

wherein the opposing pair of vertical frame members ( 111 ), the opposing pair of upper pivot arms ( 121 ), the opposing pair of lower pivot arms ( 122 ), and the opposing pair of adaptive mounting plates ( 1530 ) form an opposing pair of four-bar linkages configured to maintain a desired angle between the vertical frame members ( 111 ) and the adaptive mounting plates ( 1530 );

wherein the opposing pair of adaptive mounting plates are a first opposing pair of adaptive mounting plates ( 1530 ) and the opposing pair of four-bar linkages further comprise a second opposing pair of adaptive mounting plates ( 1530 ) and, optionally, a stabilizer link ( 1531 ) pivotably connected between the opposing pair of upper pivot arms ( 121 ) and the opposing pair of lower pivot arms ( 122 );

wherein the fixed frame ( 110 ) is configured and adapted to mount to and dismount from the vehicle by manual operation without hand tools after an initial assembly of the fixed frame ( 110 );

wherein the hook ( 114 ) is configured and adapted to removably drop down onto the vehicle from above and the multiaxial adjustable brace ( 1570 ) is configured and adapted to locate the support surface ( 115 ) in contact with the vehicle and support the fixed frame at a desired position and orientation on the vehicle.

19. A stowable modular lift conversion system ( 1500 ) configured for application to a vehicle, the system comprising:

a fixed frame ( 110 ) configured to mount to the vehicle, the fixed frame comprising:

an opposing pair of vertical frame members ( 111 ),

a first compression member ( 1510 ) captured between the opposing pair of vertical frame members ( 111 ),

a first tension member ( 1520 ) configured and adapted to generate inward pressure between opposing frame members against the first compression member ( 1510 ),

an upper pivot point ( 112 ) on each of the vertical frame members ( 111 ),

a lower pivot point ( 113 ) on each of the vertical frame members ( 111 ),

a hook ( 114 ) configured to inhibit translational motion of the fixed frame ( 110 ) in more than one direction, and

a support surface ( 115 ) configured to support the fixed frame ( 110 ) against rotation; and

a movable frame ( 120 ) configured and adapted to lift a load and to move from a stowed configuration to an extended position, the movable frame comprising:

an opposing pair of upper pivot arms ( 121 ), each having a near end ( 121 A) respectively connected to one of the upper pivot points ( 112 ), and a far end ( 121 B) opposite the near end,

an opposing pair of lower pivot arms ( 122 ), each having a near end ( 122 A) respectively connected to one of the lower pivot points ( 113 ), and a far end ( 122 B) opposite the near end,

a second compression member ( 1510 ) captured and located between either the opposing pair of upper pivot arms ( 121 ), or the opposing pair of lower pivot arms ( 122 ),

a second tension member ( 1520 ) configured and adapted to generate inward pressure between opposing pivot arms ( 121 , or 122 ) against the second compression member ( 1510 ),

an opposing pair of adaptive mounting plates ( 1530 ), each connected to the far end ( 121 B) of one of the upper pivot arms ( 121 ) or to the far end ( 122 B) of one of the lower pivot arms ( 122 ),

a modular implement base ( 140 ) connected to the opposing pair of adaptive mounting plates ( 1530 ), and

a safety bar ( 1540 ) movable from an open position to a closed position with respect to the modular implement base ( 140 );

wherein the modular implement base ( 140 ) and the safety bar ( 1540 ) are each respectively adapted and configured such that a multiplicity of modular implements ( 151 ), ( 152 ), ( 153 ) can be detached from the modular implement base when the safety bar ( 1540 ) is in the open position, but not when the safety bar ( 1540 ) is in the closed position;

wherein the opposing pair of vertical frame members ( 111 ), the opposing pair of upper pivot arms ( 121 ), the opposing pair of lower pivot arms ( 122 ), and the opposing pair of adaptive mounting plates ( 1530 ) form an opposing pair of four-bar linkages configured to maintain a desired angle between the vertical frame members ( 111 ) and the adaptive mounting plates ( 1530 );

wherein the opposing pair of adaptive mounting plates are a first opposing pair of adaptive mounting plates ( 1530 ) and the opposing pair of four-bar linkages further comprise a second opposing pair of adaptive mounting plates ( 1530 ) and, optionally, a stabilizer link ( 1531 ) pivotably connected between the opposing pair of upper pivot arms ( 121 ) and the opposing pair of lower pivot arms ( 122 );

wherein the fixed frame ( 110 ) is configured and adapted to mount to and dismount from the vehicle by manual operation without hand tools after an initial assembly of the fixed frame ( 110 );

wherein the hook ( 114 ) is configured and adapted to removably drop down onto the vehicle from above and the support surface ( 115 ) is configured and adapted to contact the vehicle and support the fixed frame at a desired position and orientation on the vehicle.

20. The system according to claim 19 , comprising a safety bar lock ( 1550 ) movable from a locked configuration to an unlocked configuration, the safety bar lock ( 1550 ) configured and adapted to selectively inhibit movement of the safety bar ( 1540 ) from the closed position to the open position when in the locked configuration.

Continuity (2)
Continuation In Part 17349838 · Jun 16, 2021
Related Publication 20220402738A1 · Dec 22, 2022
References Cited (35)
US 2298166A · Richards · 1942 [cited by applicant]
US 2683540A · Wood · 1954 [cited by applicant]
US 3700123A · Corley, Jr. · 1972 [cited by applicant]
US 3779406A · Hermann · 1973 [cited by applicant]
US 4519739A · Risch · 1985 [cited by applicant]
US 4787809A · Zrostlik · 1988 [cited by applicant]
US 4813842A · Morton · 1989 [cited by applicant]
US 5456564A · Bianchini · 1995 [cited by applicant]
US 5951236A · Thompson · 1999 [cited by applicant]
US 6869265B2 · Smith et al. · 2005 [cited by applicant]
US 6932555B2 · Dale et al. · 2005 [cited by applicant]
US 8342540B1 · Marleau · 2013 [cited by applicant]
US 8689898B2 · Benesch · 2014 [cited by applicant]
US 8974169B2 · Mizner · 2015 [cited by applicant]
US 9731642B2 · Narinen · 2017 [cited by applicant]
US 10160395B2 · Robinson et al. · 2018 [cited by applicant]
US 10384617B1 · Keyser · 2019 [cited by applicant]
US 10480154B2 · Breuer et al. · 2019 [cited by applicant]
US 10682964B1 · Turner et al. · 2020 [cited by applicant]
US 10717636B2 · Addicott · 2020 [cited by applicant]
US 20050254925A1 · Braquet · 2005 [cited by applicant]
US 20060120841A1 · Meeks · 2006 [cited by applicant]
US 20070166138A1 · Brooks · 2007 [cited by applicant]
US 20080292435A1 · Turner et al. · 2008 [cited by applicant]
US 20100290876A1 · Conatser · 2010 [cited by applicant]
US 20110085880A1 · Davis et al. · 2011 [cited by applicant]
US 20110168417A1 · Benesch · 2011 [cited by applicant]
US 20160167933A1 · Birch et al. · 2016 [cited by applicant]
US 20210331538A1 · Kato · 2021 [cited by applicant]
JP H08301587A · 1996 [cited by applicant]
KR 101126148B1 · 2012 [cited by applicant]
KR 101515881B1 · 2015 [cited by applicant]
WO 2021009284A1 · 2021 [cited by applicant]
International Search Report dated Mar. 9, 2022 in International Application No. PCT/US2021/041655. [cited by applicant]
International Search Report dated Oct. 3, 2023 in International Application No. PCT/US2023/068742. [cited by applicant]