Multi-rotational concrete screed apparatus for screeding concrete
10233658 ยท 2019-03-19
Assignee
Inventors
Cpc classification
E01C19/187
FIXED CONSTRUCTIONS
E04F21/241
FIXED CONSTRUCTIONS
International classification
Abstract
A multi-rotational concrete screed to produce a level finished surface that includes a frame assembly, a boom assembly secured to the frame assembly at a first end and to a screed head at a second end, and a drive assembly. A powered turntable is positioned between the frame assembly and drive assembly permitting complete rotation of each with respect to the other.
Claims
1. A multi-rotational concrete screed to produce a level finished surface comprising: a frame assembly; a boom assembly secured to said frame assembly at a first end and to a screed head at a second end; a drive assembly secured to a drive frame; a powered turntable having a top mounting plate secured to said frame assembly, and a bottom mounting plate secured to said drive frame, said top mounting plate and said bottom mounting plate rotatable in either direction with respect to one another; a motor for turning said top mounting plate relative to said bottom mounting plate; and an adjustable lifting assembly secured between said frame assembly and the top mounting plate of said turntable, said lifting assembly capable of varying the distance between said frame assembly and said turntable.
2. The apparatus as claimed in claim 1 wherein said turntable is gear driven.
3. The apparatus as claimed in claim 1 wherein said turntable is pulley driven.
4. The apparatus as claimed in claim 1 wherein said turntable is chain driven.
5. The apparatus as claimed in claim 1 wherein said turntable is driven by a direct connection to a motor shaft.
6. The apparatus as claimed in claim 1 wherein said turntable is hydraulically driven.
7. The apparatus as claimed in claim 1 comprising: a plurality of adjustable legs secured at a plurality of points to said frame assembly, said legs extendable to lift or lower said frame assembly relative to said surface.
8. The apparatus as claimed in claim 1 wherein said motor for turning said top plate relative to said bottom plate is a hydraulic motor.
9. The apparatus as claimed in claim 1 comprising: a rotary hydraulic manifold for routing pressurized hydraulic fluid through said turntable.
10. The apparatus as claimed in claim 1 comprising: a plurality of actuators secured between said frame assembly and said drive assembly.
11. The apparatus of claim 10 wherein said plurality of actuators are hydraulic actuators.
12. The apparatus of claim 10 wherein said plurality of actuators are linear actuators.
13. The apparatus as claimed in claim 1 wherein said turntable is driven directly by an electric motor.
14. The apparatus as claimed in claim 13 further comprising: a rotary electrical coupling for supplying power to electric components that rotate with said bottom mounting plate of said turntable.
15. The apparatus as claimed in claim 1 wherein said drive assembly comprises a plurality of wheels.
16. The apparatus as claimed in claim 15 wherein at least one of said plurality of wheels is steerable.
17. The apparatus as claimed in claim 15 wherein at least one of said wheels is hydraulically driven and steerable.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT(S)
(15) Referring now to drawing
(16) The invention further includes a drive assembly 100 that is mounted on an drive frame 120 such that it is rotatable with respect to frame 50, to allow screeder 10 to be maneuvered around a concrete pour by completely rotating frame 50 with respect to drive frame 120, as will be discussed further herein below. Drive frame 120 may include an aperture 126 therein through which various screed 10 hydraulic or electrical lines may be routed. In some embodiments, drive frame 120 may include an axle 124 for mounting drive wheels, and mounting ports 122 for tracks or other driven wheels. Futhermore, in some aspects and embodiments of the invention drive assembly 100 may include a plurality of driven or un-driven wheels 110 to facilitate positioning of the screed 10 or additionally and alternatively drive assembly 100 may incorporate a track-drive apparatus 102 as will be discussed further below.
(17) In various aspects and embodiments, the present invention comprises a telescopic boom assembly 30 having an exterior 32, intermediate 34 and interior 36 booms, wherein the intermediate 34 and interior 36 booms may be extended and retracted by means of a single hydraulic cylinder 38 supplied by pressurized fluid from hydraulic assembly 60. Exterior boom 32 is secured directly to frame assembly 50 so that when frame 50 is leveled, so is boom assembly 30.
(18) Referring again to drawing
(19) Hydraulic assembly 60 may further comprise a control system (not shown) which may include a microprocessor, data memory, inputs and outputs, a wireless transceiver 64, and requisite wiring to electrically connect the control system to the plurality of valves. Throughout the specification the operation of hydraulic cylinders will be understood to be effected through the use of a conventional hydraulic system 60, comprising electrically actuated hydraulic valves and a control system for operating said valves.
(20) In some aspects and embodiments of the invention a plurality of adjustable stabilization legs 70 may be slidably secured in a generally vertical orientation to frame assembly 50 at a plurality of points around the perimeter thereof. As shown in the drawing Figures, in an exemplary but non-limiting embodiment of the invention two opposed legs 70 are secured to frame assembly 50 at a forward end 51 thereof while a single leg 70 is secured to a rear end 53 of frame assembly 50. One of ordinary skill in the art will appreciate that the number and positioning of legs 70 around frame assembly 50 may be varied without departing from the scope of the present invention. Each leg 70 may further be secured to a hydraulic cylinder 66 which is also secured to frame 50 at a point, and that is utilized to level boom assembly 30 with respect to a reference plane by raising or lowering legs 70, thereby leveling the entire screeding apparatus 10.
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(22) Referring now to
(23) In a yet further aspects and embodiments of the invention as depicted in
(24) As best seen in
(25) Additionally and in some alternative embodiments of the invention drive frame 100 may be raised upwardly (elevated or moved toward frame 50) by operation of actuators 210 while legs 70 are resting on a surface, thereby suspending drive frame 100 and wheels 110 off the ground and underneath frame 50. In this embodiment drive frame 100 may then be rotated completely around with respect to frame 50 by operation of powered turntable 106, thereby providing for a multi-rotational screed 10. In this exemplary but non-limiting embodiment of the invention drive frame 100 and wheels 110 can be oriented parallel to the concrete pour, such that screed 10 may be quickly moved into position for the next screeding pass without the need for reorientation of the screed boom assembly 30.
(26) In various non-limiting aspects of the invention a rotary hydraulic manifold 160 may be provided to route or pass hydraulic fluid through the powered, rotating turntable 106, thereby supplying the requisite hydraulic fluid in embodiments of the invention utilizing hydraulically powered and/or steered wheels 110. Additionally and alternatively, in some embodiments a rotary electrical coupling may be employed to route electrical wiring through rotating turntable 106, where wheels 110 or other screed 10 components are electrically powered. By utilizing rotary hydraulic and/or electrical elements in combination with turntable 106, the present invention permits complete independent rotation of the top portion or frame 50 of screed 10 with respect to the bottom portion or drive assembly 100, thereby resulting in a multi-rotational screed apparatus.
(27) In various other embodiment of the invention, turntable 106 may be powered or driven directly via a shaft attachment from an electric motor 150, via a gear or transmission mechanism, through operation of a driven pulley, belt, or chain, or through any direct motor drive, hydraulic, internal combustion, or electric. Furthermore, in some embodiments turntable may be pneumatically powered by operation of compressed air produced by a compressor (not shown) that is in turn powered by engine 52.
(28) In operation, and as best seen in
(29) Additionally, in accordance with some aspects and embodiments one of ordinary skill in the art will understand that although some exemplary embodiments of screed 10 utilize a boom-type screed device, the multi-rotational turntable 106 may be employed with a variety of different screed types without departing from the scope of the present invention.
(30) In operation, screed apparatus 10 may be driven forward to approach a concrete pour, and legs 70 may be extended to stabilize and level screeder 10 while the boom assembly 30 is extended and screed head 40 engages the concrete surface. While legs 70 are extended, drive assembly 100 may be elevated off the ground by operation of actuators 210 such that wheels 110 (and/or tracks 102 where used) are suspended in the air. At this point, drive frame 120 may be easily rotated to orient wheels 110 parallel to the concrete pour surface, or in any required direction. Once the screed 10 pass is completed, legs 70 may then be lowered and drive assembly 100 can be utilized to move screeder 10 parallel to the pour surface to make another screed pass. Once in position, legs 70 are once again extended and screeder 10 operation continues as disclosed herein above.
(31) While the present invention has been shown and described herein in what are considered to be the preferred embodiments thereof, illustrating the results and advantages over the prior art obtained through the present invention, the invention is not limited to those specific embodiments. Thus, the forms of the invention shown and described herein are to be taken as illustrative only and other embodiments may be selected without departing from the scope of the present invention, as set forth in the claims appended hereto.