This invention relates generally to a scraper for moving dirt and earth, and more specifically to a flight assembly for a scraper wherein the flight assembly has replaceable wear elements.
Elevating scrapers are used to remove and transport large volumes of earth from one location to another. A cutting edge in the scraper bowl is pulled through the dirt to loosen the dirt. A powered elevator is positioned in the bowl to lift the dirt away from the cutting edge. A plurality of flights are attached to the elevator to engage and lift the dirt. The flights are typically manufactured by welding a variety of formed steel plates together to create a structurally sound weldment. The welded flights require numerous man-hours to fabricate. Over a period of time some portions of the flights become worn and require repair. Typical repairs require building up the worn portions of the flight with weld and then grinding or machining the welded portion to manufacturers specifications.
It would be desirable to have a simply fabricated flight that can be easily repaired. The present invention is directed to overcome the above stated problems.
Referring to
As shown in
As shown in
The wear plate 62 preferably has a substantially “half arrow” shaped cross section 68, although a flat plate may be used. The wear plate 62 includes a first side 70 and a second side 72. A pattern of bores 73 extend from the first side 70 to the second side 72. A pair of notches 74 are disposed on the wear plate 62. The notches 74 are configured to permit the lateral support member 52 to engage the endless chains 46. A leading edge 76 is defined on the wear plate 62. As the endless chains 46 and flight assemblies 48 rotate about the vertical frame 35, the leading edge 76 engages the dirt entering the bowl 14. Abrasion causes the leading edge 76 to wear from a point 78 toward a thicker portion 80 of the half arrow cross section 68.
The lateral support member 52 may be provided in numerous forms, such as a structural beam or channel (neither shown). In one exemplary embodiment, the lateral support member 52 includes a pair of inner structural tubes 82. The inner structural tubes 82 have a substantially rectangular cross section having an interior surface 84 and an exterior surface 86. A wall 88 having a predetermined thickness 90 is defined between the inner and outer surfaces 84, 86. An outer structural tube 92 is positioned over the inner structural tube 82. The outer structural tube 92 is substantially rectangular in cross section and includes an inner surface and an outer surface 96. An outer tube wall 98 having a predetermined thickness 100 is defined between the inner surface and the outer surface 96. The inner structural tubes 82 are positioned and attached inside each end of the outer structural tube 92. The inner structural tubes 82 are adapted to slide inside of the outer structural tube 92. A plurality of bores 104 are disposed on each of the structural tubes 82, 92 in a manner that the bores 104 of the inner tubes 82 align with the bores 104 of the outer structural tube 92. Each inner structural tube 82 extends beyond the end of the outer structural tube 92. The plurality of bores 104 additionally is configured to match the pattern of bores 73 of the wear plate 62. An angle member 105 is attached to the lateral support member 52 in a manner to support the wear plate 62.
A wear cap 106 is provided at each end of the lateral support member 52 to fit over each end of the inner structural tubes 82. The wear caps 106 are removably attached to the lateral support member 52. The wear caps 106 may be made of a wear resistant material or may include a wear resistant coating.
In operation a scraper 10 employing the flight assembly 48 of the present invention is assembled in substantially the same manner as a scraper having welded flights. When the flight assemblies 48 begin to show wear patterns on the wear caps 106 or wear plate 62, the worn pieces can be unbolted and replaced without welding or removing the flight from the elevator.
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