Patent · US12351998B2 · B2 · US
Electrically-operated barrier transfer machine
- (11) Publication number
- US12351998B2
- (21) Application number
- 18/326,498
- (22) Filing date
- 2023-05-31
- (30) Priority date
- 2022-06-01
- (43) Publication date
- 2025-07-08
- (45) Date of grant
- 2025-07-08
- (51) IPC
- B65G 41/00; E01F 15/00
- (52) CPC
- (73) Assignee
- Lindsay Transportation Solutions LLC
- (72) Inventors
- Manuel Arciga; Matthew A. Elmore
- (54) Title
- Electrically-operated barrier transfer machine
- (57) Abstract
A barrier transfer machine includes an electrically powered capstan system with regenerative braking/tensioning. The regenerative braking/tensioning recaptures energy when electric motors are forced to turn by passing barriers while no power, or reduced power, is applied to the electric motors.
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Claims (20)
- A barrier transfer machine for picking up and repositioning road barriers, the barrier transfer machine comprising: a moveable chassis having a forward and a rearward end disposed along a generally longitudinal axis; an entry snout supported on the forward end of the chassis for picking up the road barriers from a road surface; an exit snout for placing the road barriers back onto the road surface; a conveyor system positioned between the entry snout and the exit snout for transporting the road barrier from the entry snout to the exit snout; and a capstan system that adjusts the tension or compression in the road barriers while the road barriers are transported by the conveyor system, the capstan system including an electric motor powered by one or more rechargeable batteries and a regenerative braking/tensioning system for recharging the rechargeable batteries.
- The barrier transfer machine as set forth in claim 1, the capstan system further including a pair of capstan wheels on opposite sides of the conveyor system.
- The barrier transfer machine as set forth in claim 2, the capstan system further including a mechanism for urging the capstan wheels against the road barriers as the road barriers pass by the capstan wheels.
- The barrier transfer machine as set forth in claim 3, wherein the electric motor drives the capstan wheels to provide rearward rotational pressure on the barriers.
- The barrier transfer machine as set forth in claim 4, wherein the electric motor is driven by the capstan wheels and operates as a generator to recharge the rechargeable batteries when the capstan wheels provide forward rotational pressure on the barriers.
- The barrier transfer machine as set forth in claim 5, the capstan system further comprising a supercapacitor that is charged by the regenerative braking/tensioning system when the electric motor is driven by the capstan wheels.
- The barrier transfer machine as set forth in claim 6, wherein the supercapacitor provides power to the electric motor when the electric motor drives the capstan wheels.
- The barrier transfer machine as set forth in claim 7, further comprising a control system for detecting when the barrier transfer machine is travelling downhill and, in response, discharging the supercapacitor to the electric motor.
- The barrier transfer machine as set forth in claim 6, wherein the rechargeable batteries and the supercapacitor provide power to electrical components of the barrier transfer machine other than the electric motor.
- A barrier transfer machine for picking up and repositioning road barriers, the barrier transfer machine comprising: a moveable chassis having a forward and a rearward end disposed along a generally longitudinal axis; an entry snout supported on the forward end of the chassis for picking up the road barriers from a road surface; an exit snout for placing the road barriers back onto the road surface; a conveyor system positioned between the entry snout and the exit snout for transporting the road barrier from the entry snout to the exit snout; and a capstan system that adjusts the tension or compression in the road barriers while the road barriers are transported by the conveyor system, the capstan system including: a pair of capstan wheels on opposite sides of the conveyor system, a mechanism for urging the capstan wheels against the road barriers as the road barriers pass by the capstan wheels, a pair of electric motors, each for driving one of the capstan wheels, to provide rearward rotational pressure on the barriers, one or more rechargeable batteries for powering the electric motors, and a regenerative braking/tensioning system for recharging the rechargeable batteries when the electric motors are driven by the capstan wheels.
- The barrier transfer machine as set forth in claim 10, the capstan system further comprising a supercapacitor that is charged by the regenerative braking/tensioning system when the electric motor is driven by the capstan wheels.
- The barrier transfer machine as set forth in claim 11, wherein the supercapacitor provides power to the electric motors when the electric motors are driving the capstan wheels to provide rearward rotational pressure on the barriers.
- The barrier transfer machine as set forth in claim 12, further comprising a control system for detecting when the barrier transfer machine is travelling downhill and, in response, discharging the supercapacitor to the electric motors.
- The barrier transfer machine as set forth in claim 12, wherein the rechargeable batteries and the supercapacitor provide power to electrical components of the barrier transfer machine other than the electric motor.
- A method of operating a barrier transfer machine for picking up and repositioning road barriers, the method comprising: picking up the road barriers from a road surface with an entry snout supported on a forward end of a chassis; transporting the road barrier from the entry snout to an exit snout with a conveyor system positioned between the entry snout and the exit snout; adjusting the tension or compression in the road barriers with a capstan system while the road barriers are transported by the conveyor system, the adjusting step including: urging capstan wheels against the road barriers as the road barriers pass by the capstan wheels, driving the capstan wheels with an electric motor to provide rearward rotational pressure on the barriers when the barriers are under compression, powering the electric motor with one or more rechargeable batteries while the electric motor drives the capstan wheels, driving the electric motor with the capstan wheels to provide forward rotational pressure on the barriers when the barriers are under tension, recharging the rechargeable batteries with the electric motor when the electric motor is driven by the capstan wheels.
- The method as set forth in claim 15, further comprising charging a supercapacitor with the electric motor when the electric motor is driven by the capstan wheels.
- The method as set forth in claim 16, further comprising powering the electric motor with the super capacitor while the electric motor drives the capstan wheel.
- The method as set forth in claim 17, further comprising detecting when the barrier transfer machine is travelling downhill.
- The method as set forth in claim 18, further comprising discharging the supercapacitor to the electric motor when the barrier transfer machine is travelling downhill.
- The method as set forth in claim 17, further comprising powering electrical components of the barrier transfer machine other than the electric motor with the rechargeable batteries and the supercapacitor.
Description
Moveable road barrier systems are often placed on roadways to create traffic barriers between opposing lanes of traffic. Unlike permanent barriers, movable road barrier systems may be picked up and repositioned by barrier transfer machines to make more efficient use of space, increase vehicle capacity, and reduce traffic congestion. For example, a barrier transfer machine may move a road barrier system back and forth between lanes of a roadway to provide more lanes in directions of peak traffic and/or to create work zone space for construction crews.
Typical barrier transfer machines are powered by one or more internal combustion engines. Such engines are inefficient, loud, difficult to precisely control, and produce harmful pollution.
The present invention solves the above-described problems and related problems and provides a distinct advance in the art of road barrier transfer machines. More particularly, the invention provides a road barrier transfer machine powered by one or more electrically operated motors. The barrier transfer machine also comprises a capstan system with regenerative braking/tensioning.
A barrier transfer machine constructed in accordance with an embodiment of the invention broadly comprises a moveable chassis with electric motors, an entry snout, an exit snout, a conveyor system, and an electrically powered capstan system with regenerative braking/tensioning.
The chassis has two ends and rides on wheels, belts, or other ground-engaging traction elements that are driven by one or more electrically operated motors powered by one or more batteries. The machine can be driven in either direction.
Citations (9)
- US5253951A
- US5885046A
- US6220780B1
- US20060239804A1
- US8834062B1
- US11332168B2
- CN107139897A
- US20240026620A1
- US11472644B2
Record as JSON
{
"publication_number": "US12351998B2",
"country": "US",
"kind": "B2",
"title": "Electrically-operated barrier transfer machine",
"abstract": "A barrier transfer machine includes an electrically powered capstan system with regenerative braking/tensioning. The regenerative braking/tensioning recaptures energy when electric motors are forced to turn by passing barriers while no power, or reduced power, is applied to the electric motors.",
"claims": [
"1. A barrier transfer machine for picking up and repositioning road barriers, the barrier transfer machine comprising: a moveable chassis having a forward and a rearward end disposed along a generally longitudinal axis; an entry snout supported on the forward end of the chassis for picking up the road barriers from a road surface; an exit snout for placing the road barriers back onto the road surface; a conveyor system positioned between the entry snout and the exit snout for transporting the road barrier from the entry snout to the exit snout; and a capstan system that adjusts the tension or compression in the road barriers while the road barriers are transported by the conveyor system, the capstan system including an electric motor powered by one or more rechargeable batteries and a regenerative braking/tensioning system for recharging the rechargeable batteries.",
"2. The barrier transfer machine as set forth in claim 1, the capstan system further including a pair of capstan wheels on opposite sides of the conveyor system.",
"3. The barrier transfer machine as set forth in claim 2, the capstan system further including a mechanism for urging the capstan wheels against the road barriers as the road barriers pass by the capstan wheels.",
"4. The barrier transfer machine as set forth in claim 3, wherein the electric motor drives the capstan wheels to provide rearward rotational pressure on the barriers.",
"5. The barrier transfer machine as set forth in claim 4, wherein the electric motor is driven by the capstan wheels and operates as a generator to recharge the rechargeable batteries when the capstan wheels provide forward rotational pressure on the barriers.",
"6. The barrier transfer machine as set forth in claim 5, the capstan system further comprising a supercapacitor that is charged by the regenerative braking/tensioning system when the electric motor is driven by the capstan wheels.",
"7. The barrier transfer machine as set forth in claim 6, wherein the supercapacitor provides power to the electric motor when the electric motor drives the capstan wheels.",
"8. The barrier transfer machine as set forth in claim 7, further comprising a control system for detecting when the barrier transfer machine is travelling downhill and, in response, discharging the supercapacitor to the electric motor.",
"9. The barrier transfer machine as set forth in claim 6, wherein the rechargeable batteries and the supercapacitor provide power to electrical components of the barrier transfer machine other than the electric motor.",
"10. A barrier transfer machine for picking up and repositioning road barriers, the barrier transfer machine comprising: a moveable chassis having a forward and a rearward end disposed along a generally longitudinal axis; an entry snout supported on the forward end of the chassis for picking up the road barriers from a road surface; an exit snout for placing the road barriers back onto the road surface; a conveyor system positioned between the entry snout and the exit snout for transporting the road barrier from the entry snout to the exit snout; and a capstan system that adjusts the tension or compression in the road barriers while the road barriers are transported by the conveyor system, the capstan system including: a pair of capstan wheels on opposite sides of the conveyor system, a mechanism for urging the capstan wheels against the road barriers as the road barriers pass by the capstan wheels, a pair of electric motors, each for driving one of the capstan wheels, to provide rearward rotational pressure on the barriers, one or more rechargeable batteries for powering the electric motors, and a regenerative braking/tensioning system for recharging the rechargeable batteries when the electric motors are driven by the capstan wheels.",
"11. The barrier transfer machine as set forth in claim 10, the capstan system further comprising a supercapacitor that is charged by the regenerative braking/tensioning system when the electric motor is driven by the capstan wheels.",
"12. The barrier transfer machine as set forth in claim 11, wherein the supercapacitor provides power to the electric motors when the electric motors are driving the capstan wheels to provide rearward rotational pressure on the barriers.",
"13. The barrier transfer machine as set forth in claim 12, further comprising a control system for detecting when the barrier transfer machine is travelling downhill and, in response, discharging the supercapacitor to the electric motors.",
"14. The barrier transfer machine as set forth in claim 12, wherein the rechargeable batteries and the supercapacitor provide power to electrical components of the barrier transfer machine other than the electric motor.",
"15. A method of operating a barrier transfer machine for picking up and repositioning road barriers, the method comprising: picking up the road barriers from a road surface with an entry snout supported on a forward end of a chassis; transporting the road barrier from the entry snout to an exit snout with a conveyor system positioned between the entry snout and the exit snout; adjusting the tension or compression in the road barriers with a capstan system while the road barriers are transported by the conveyor system, the adjusting step including: urging capstan wheels against the road barriers as the road barriers pass by the capstan wheels, driving the capstan wheels with an electric motor to provide rearward rotational pressure on the barriers when the barriers are under compression, powering the electric motor with one or more rechargeable batteries while the electric motor drives the capstan wheels, driving the electric motor with the capstan wheels to provide forward rotational pressure on the barriers when the barriers are under tension, recharging the rechargeable batteries with the electric motor when the electric motor is driven by the capstan wheels.",
"16. The method as set forth in claim 15, further comprising charging a supercapacitor with the electric motor when the electric motor is driven by the capstan wheels.",
"17. The method as set forth in claim 16, further comprising powering the electric motor with the super capacitor while the electric motor drives the capstan wheel.",
"18. The method as set forth in claim 17, further comprising detecting when the barrier transfer machine is travelling downhill.",
"19. The method as set forth in claim 18, further comprising discharging the supercapacitor to the electric motor when the barrier transfer machine is travelling downhill.",
"20. The method as set forth in claim 17, further comprising powering electrical components of the barrier transfer machine other than the electric motor with the rechargeable batteries and the supercapacitor."
],
"description_excerpt": "Moveable road barrier systems are often placed on roadways to create traffic barriers between opposing lanes of traffic. Unlike permanent barriers, movable road barrier systems may be picked up and repositioned by barrier transfer machines to make more efficient use of space, increase vehicle capacity, and reduce traffic congestion. For example, a barrier transfer machine may move a road barrier system back and forth between lanes of a roadway to provide more lanes in directions of peak traffic and/or to create work zone space for construction crews.\n\nTypical barrier transfer machines are powered by one or more internal combustion engines. Such engines are inefficient, loud, difficult to precisely control, and produce harmful pollution.\n\nThe present invention solves the above-described problems and related problems and provides a distinct advance in the art of road barrier transfer machines. More particularly, the invention provides a road barrier transfer machine powered by one or more electrically operated motors. The barrier transfer machine also comprises a capstan system with regenerative braking/tensioning.\n\nA barrier transfer machine constructed in accordance with an embodiment of the invention broadly comprises a moveable chassis with electric motors, an entry snout, an exit snout, a conveyor system, and an electrically powered capstan system with regenerative braking/tensioning.\n\nThe chassis has two ends and rides on wheels, belts, or other ground-engaging traction elements that are driven by one or more electrically operated motors powered by one or more batteries. The machine can be driven in either direction.",
"cpc": [
"E01F 15/006",
"B65G 41/008"
],
"ipc": [
"B65G 41/00",
"E01F 15/00"
],
"assignees": [
"Lindsay Transportation Solutions LLC"
],
"inventors": [
"Manuel Arciga",
"Matthew A. Elmore"
],
"filing_date": "2023-05-31",
"publication_date": "2025-07-08",
"grant_date": "2025-07-08",
"priority_date": "2022-06-01",
"application_number": "US-202318326498-A",
"family_id": "88977366",
"cited_by_count": 0,
"citations": [
"US5253951A",
"US5885046A",
"US6220780B1",
"US20060239804A1",
"US8834062B1",
"US11332168B2",
"CN107139897A",
"US20240026620A1",
"US11472644B2"
]
}
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