The invention relates to a pothole protection mechanism for a vehicle including an aerial work platform (AWP) and, more particularly, to maximizing a breakover angle in a scissor lift with fixed pothole protection.
Self-propelled AWPs such as scissor lifts are typically equipped with an apparatus that prevents them from tipping when driven into a pothole or off a curb while the platform is elevated. Such an apparatus works normally by reducing the ground clearance to less than one inch when the platform of the AWP is elevated beyond a certain height.
One way of achieving this is by means of a bar or a plate that is attached to the chassis of the AWP and can be lowered down and locked in position when the platform is elevated. Subsequently, the bar or plate can be raised up when the platform is lowered.
The mechanism that performs the lowering, locking and raising tasks is referred to as a pothole protection mechanism.
With the pothole protection mechanism extended, a breakover angle—i.e., a ground angle over which the protection bar will engage the ground—is reduced. For such systems to retract or extend, existing pothole protection mechanisms include sensors, cams, springs, pins, bearings, etc. to allow the pothole system to properly function to avoid having an unacceptable breakover angle or to avoid capsizing a machine.
It would be desirable to provide a fixed pothole protection device that provides the same protection and breakover angle as existing active pothole systems but without the need for complex moving parts. The fixed pothole protection assembly of preferred embodiments achieves what the active system can in both stability and breakover angle without moving parts or sensors. In one configuration, this is achieved by utilizing strategically placed structural members near the machine wheels to catch the edges of the pothole and keep the machine stable with the platform elevated. Keeping the components near the wheels, instead of all the way across the machine belly, provides for an acceptable ground clearance.
In an exemplary embodiment, a pothole protection assembly is cooperable with a support base of a scissor lift. The support base includes front wheels, rear wheels and a chassis. The pothole protection assembly includes a pair of front pothole bars fixed to the chassis and each positioned adjacent the front wheels, respectively, and a pair of rear pothole bars fixed to the chassis and each positioned adjacent the rear wheels, respectively. A space between the front wheels and the rear wheels defines a ground clearance zone, and the front pothole bars and the rear pothole bars are disposed at opposing ends of the ground clearance zone.
The front pothole bars may be positioned relative to the front wheels in a manner such that a vertical line tangent to the front wheels intersects a portion of the front pothole bars. Similarly, the rear pothole bars may be positioned relative to the rear wheels in a manner such that a vertical line tangent to the rear wheels intersects a portion of the rear pothole bars. In this context, ends of the front and rear pothole bars may be tapered. Moreover, the front and rear pothole bars may be substantially parallelogram shaped. Still further, a bottom surface of the front pothole bars may be skewed forward of a top surface of the front pothole bars, and a bottom surface of the rear pothole bars may be skewed rearward of a top surface of the rear pothole bars.
In one arrangement, the front pothole bars and the rear pothole bars are positioned to maximize a ground clearance of the support base.
The pothole protection assembly may additionally include a front inner frame plate adjacent an inside surface of each of the front wheels and a rear inner frame plate adjacent an inside surface of each of the rear wheels. The front inner frame plates and the rear inner frame plates may be positioned within a profile of the front wheels and the rear wheels, respectively
In another exemplary embodiment, a scissor lift includes a support base with front wheels, rear wheels and a chassis, and the pothole protection assembly of the described embodiments. A tilt sensor cooperable with the support base may detect a tilt amount of the scissor lift. The scissor lift may additional include a drive system that effects wheel drive and platform lift. In this context, the tilt sensor may communicate with the drive system such that if the tilt sensor detects that the tilt amount of the scissor lift exceeds a predefined amount, the drive system deactivates the wheel drive and the platform lift.
In yet another exemplary embodiment, a pothole protection assembly is cooperable with a support base of a scissor lift. The pothole protection assembly includes a front assembly with a pair of front pothole bars fixed to the chassis and a rear assembly with a pair of rear pothole bars fixed to the chassis. The pothole bars are each positioned adjacent the front/rear wheels of the support base, respectively. The bars are sized such that if one of the wheels falls into a pothole, the respective pothole bar adjacent the one of the wheels will prevent the support base from tilting beyond a predefined amount.
These and other aspects and advantages will be described in detail with reference to the accompanying drawings, in which:
With continued reference to
In a preferred construction, ends of the front and rear pothole bars 20, 22 are tapered, where the front and rear pothole bars 20, 22 are preferably substantially parallelogram shaped. With the parallelogram shape, a bottom surface of the front pothole bars 20 is skewed forward of a top surface of the front pothole bars 20, and a bottom surface of the rear pothole bars 22 is skewed rearward of a top surface of the rear pothole bars 22. Regardless of the preferred construction, it is desirable to position the front pothole bars 20 and the rear pothole bars 22 in a manner that serves to maximize a ground clearance of the support base 10. See
The scissor lift vehicle may additionally include a tilt sensor 26 cooperable with the support base 10 that detects a tilt amount of the vehicle. A drive system 28 that effects wheel drive and platform lift receives signals from the tilt sensor 26. If the tilt sensor 26 detects that the tilt amount of the vehicle exceeds a predefined amount, the drive system 28 deactivates the wheel drive and the platform lift.
The front and rear pothole bars 20, 22 are generally formed of steel and are welded to the chassis 18. The frame plates 21, 23 are preferably integrated with the chassis 18. A size of the pothole bars 20, 22 is selected such that if an adjacent wheel falls into a pothole, the respective pothole bar adjacent that wheel will prevent the support base 10 from tilting beyond a predefined amount. Additionally, the frame plates 21, 23 inside the wheels are sized to catch edges of potholes while maximizing ground clearance because a profile of the frame plates 21, 23 enables them to follow the wheels up and over obstacles. That is, from a side view, the frame plates 21, 23 do not extend beyond a periphery of the wheels.
The fixed pothole protection assembly of the preferred embodiments achieves what existing active systems can in both stability and breakover angle without moving parts or sensors. The strategically placed pothole bars catch the edges of the pothole and keep the machine stable with the platform elevated. By keeping the components near the wheels, instead of all the way across the machine belly, acceptable ground clearance can be achieved.
While the invention has been described in connection with what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention is not to be limited to the disclosed embodiments, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US12/60506 | 10/17/2012 | WO | 00 | 12/11/2013 |
Number | Date | Country | |
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61547936 | Oct 2011 | US |