Claims
- 1. A telescoping lift arm assembly having a longitudinal axis and comprising an outer lift arm tube, and an inner lift arm tube, the outer lift arm tube having side wall portions that are spaced apart, and are joined by a top wall, and the outer lift arm tube having a lower side, the side wall portions having outwardly flared panels extending at oblique angles relative to a central longitudinal plane bisecting the space between the side wall portions, an inner lift arm tube fitted between the side wall portions of the outer lift arm tube and having outwardly flared flanges parallel to the panels on the outer lift arm tube, and the inner lift arm tube having support surfaces at a lower side thereof, and a support plate mounted to the lower side of the outer lift arm tube and engaging the support surfaces of the inner lift arm tube to slidably hold the inner lift arm tube with the outwardly flared flanges adjacent the outwardly flared panels of the outer lift arm tube.
- 2. The telescoping lift arm assembly of claim 1, wherein the support surface of the inner lift arm tube comprises a generally planar surface of a cross wall joined to lower portions of the outwardly flared flanges of the inner lift arm tube.
- 3. The telescoping lift arm assembly of claim 2, wherein the cross wall has edge flanges angled from a plane formed by the generally planar surface of the wall, the edge flanges being welded to the outwardly flared flanges of the inner lift arm tube.
- 4. The telescoping lift arm assembly of claim 2 and bearings positioned between the outwardly flared flanges of the inner lift arm tube and the inner surfaces of the outwardly flared panels of the outer lift arm tube.
- 5. The telescoping lift arm assembly of claim 1, wherein the outer lift arm tube define an open space between the side walls thereof having an open side, and the support plate closing the open side of the outer lift arm tube.
- 6. The telescoping lift arm assembly of claim 5, wherein the support plate is mounted with fasteners that clamp the support plate to the outer lift arm tube in position to support the inner lift arm tube within the open space of the outer lift arm tube.
- 7. The telescoping lift arm assembly of claim 5, wherein movement of the support plate causes the outwardly flared flanges of the inner lift arm tube to move relatively toward and away from the outwardly flared panels on the outer lift arm tube.
- 8. The telescoping lift assembly of claim 5, wherein said support plate has flanges on its edges that are generally parallel to the outwardly flared panels of the outer lift arm tube, and fasteners passing through the outwardly flared panel and the flanges of the support plate, the fasteners having axes generally perpendicular to the planes of the panels of the outwardly flared outer lift arm tube and the flanges of the inner lift arm tube to provide direct clamping force between the support plate and the inwardly turned flanges of the inner lift arm tube, and between the outwardly flared flanges of the inner lift arm tube relative to adjacent walls of the outer lift arm tube.
- 9. The telescoping lift arm assembly of claim 1 and a hydraulic actuator connected between the inner lift arm tube and the outer lift arm tube.
- 10. A telescoping lift arm assembly comprising an outer tube having side walls that flare outwardly at lower portions of the side walls, a bell shaped cross section inner tube nested in the outer tube with outwardly extending portions forming the bell shape nesting with the outwardly flared side walls, and a support plate secured to the outer tube to slidably support the inner tube with the outwardly extending portions forming the bell shape slidably guided by the outwardly flared side walls of the outer tube.
- 11. The telescoping lift arm of claim 10 wherein there are linear wear pads between the surfaces supporting the inner tube relative to the outer tube.
- 12. The telescoping lift arm of claim 10, and fasteners for adjusting the support plate to urge the outwardly flared portions forming the bell shape of the inner tube toward inner surfaces of the flared portions of the side walls of the outer tube.
- 13. The telescoping lift arm of claim 12, wherein the support plate and outer tube have facing surfaces, and removable shims between the facing surfaces, the facing surfaces moving together to clamp the shims when the fasteners are tightened.
- 14. The telescoping lift arm of claim 13, wherein the support plate extends laterally beyond the side walls of the outer tube, a bracket having a lip fixed to and extending laterally from the outwardly flared portions of the outer tube, the fasteners passing through the lip and edge portions of the support plate.
- 15. A telescoping arm assembly having a longitudinal axis, comprising an outer arm and an inner arm, the outer arm having a longitudinally extending outer arm side wall portions that are spaced apart and joined by a top wall, the outer arm having a lower side, the outer arm side wall portions having outwardly flared panels adjacent the lower side extending at oblique angles laterally outwardly relative to a central longitudinal plane bisecting the space between the outer arm side wall portions, the inner arm fitted between the outer arm side wall portions and having inner arm side wall portions complementary in shape to the outer arm side wall portions, including inner arm side wall outwardly flared panels adjacent to the outwardly flared panels of the outer wall. The inner arm having a laterally extending support wall at a lower side thereof, and a removable support plate mounted to the lower side of the outer arm to slidably support the inner arm support wall and support the inner panel inner flared panels nesting adjacent the outer panels.
- 16. The telescoping arm assembly of claim 15, wherein the support plate is adjustably mounted to adjust the spacing between the inner flared panels and the outer flared panels.
- 17. The telescoping arm assembly of claim 16 and linear bearings positioned between the support wall and the support plate and between mating surfaces of the inner and outer flared flanges.
- 18. The telescoping arm assembly of claim 17, wherein the support plate is mounted to the outer arm with fasteners that clamp the support plate to the side walls of the outer arm.
- 19. The telescoping arm assembly of claim 15, wherein the support wall of the inner arm has a planar center portion supported by the support plate and side flanges extending upwardly and outwardly, and welded to the inner arm side wall portions.
- 20. The telescoping arm assembly of claim 17, the arm having a first end pivotally mounted to frame of a prime mover a power actuator for pivoting the arm assembly to raise and lower a load at a second end of the arm assembly, the arm assembly thereby being subjected to bending loads and having a neutral bending axis above the linear bearings.
- 21. A telescoping arm assembly comprising an outer arm having an inverted U-shape with spaced longitudinal outer side walls that have planar flanges that flare outwardly at lower portions of the side walls, a bell shaped cross section inner arm nested in the outer tube including planar wall flared sections forming the bell shape nesting with and slidably guided by the planar outwardly flared flanges of the outer arm side walls.
- 22. The telescoping arm assembly of claim 21 and a plurality of wear pads between selected adjacent surfaces of the inner arm and outer arm.
- 23. The telescoping arm assembly of claim 21, wherein the inner arm has a lower support wall extending between the planar flared wall sections, the outer arm having a support plate extending between and supported on the outer side walls. The inner arm has a lower support wall extending bet and fasteners for securing the support plate to the outer arm inner tube toward the flared portions of the side walls.
- 24. The telescoping arm assembly of claim 23, and fasteners for securing the support plate to the outer arm to adjustably hold the inner tube with the planar flared wall sections toward the planar flanges of the outer arm side walls.
- 25. The telescoping arm assembly of claim 24, wherein the support plate is adjustable relative to the outer arm side walls to change the spacing between mating surfaces of the inner arm planar flared wall sections forming the bell shape and the planar flanges of the outer arm.
- 26. The telescoping arm assembly of claim 22, wherein the telescoping arm assembly is mounted on a loader and is operable to lift loads which place bending loads on the arm assembly the arm assembly having a neutral bending axis, and the linear bearings being positioned on a lower side of the neutral bending axis.
- 27. The telescoping arm assembly of claim 21, wherein the inner arm and outer arms have the planar flanges and planar wall sections extending for a longitudinal length and a plurality of wear pads between the planar flanges and planar wall sections, the wear pads being located adjacent front and rear ends of the planar flanges and being longitudinally spaced apart to provide support for the inner arm.
BACKGROUND OF THE INVENTION
[0001] The present application is based on and claims the benefit of U.S. provisional patent application Serial No. 60/355,209, filed Feb. 8, 2002, the content of which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60355209 |
Feb 2002 |
US |