Hoist drum for power shovel
10538896 ยท 2020-01-21
Assignee
Inventors
Cpc classification
E02F3/425
FIXED CONSTRUCTIONS
E02F3/30
FIXED CONSTRUCTIONS
B66D1/34
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A hoist drum is disclosed for use with a power shovel. The hoist drum may have a body that is hollow and generally cylindrical, and an anchor connected to an outer annular surface of the body. The hoist drum may also have at least one stiffener located inside the body and extending in an axial direction of the body across the anchor.
Claims
1. A multi-piece hoist drum, comprising: a body that is hollow and generally cylindrical; an anchor welded to the body such that a perimeter of the anchor is flush with an outer annular surface of the body, the anchor being configured to retain a cable end portion; and at least one stiffener welded to the anchor and an interior surface of the body and extending in an axial direction of the body across the anchor, wherein: a weld seam forming an interface between the perimeter of the anchor and the outer annular surface of the body is an external weld seam viewable from outside the multi-piece hoist drum, the body includes an opening to receive the anchor, and a periphery of the body at the opening is beveled to provide for the weld seam between the periphery of the body and the perimeter of the anchor.
2. The multi-piece hoist drum of claim 1, wherein: the anchor has a length direction and a width direction; and the length direction of the anchor is generally perpendicular to the axial direction of the body.
3. The multi-piece hoist drum of claim 1, wherein the anchor defines a longitudinal pocket that is recessed radially inward relative to the perimeter of the anchor that is flush with the outer annular surface of the body, the pocket being configured to receive and retain the cable end portion.
4. The multi-piece hoist drum of claim 1, wherein the anchor includes: an outer curved surface that is substantially aligned with the outer annular surface of the body; and a flat bottom surface that is non-tangential with the outer annular surface of the body.
5. The multi-piece hoist drum of claim 4, wherein the anchor further includes at least one retainer that extends axially inward from the outer curved surface over the flat bottom surface, the at least one retainer being radially spaced away from the flat bottom surface to form a space configured to receive a ferrule.
6. The multi-piece hoist drum of claim 5, wherein a cross-section of the space is generally oval.
7. The multi-piece hoist drum of claim 4, wherein a length of the space is about 5-6 times a width of the space.
8. The multi-piece hoist drum of claim 1, wherein the outer annular surface of the body, the curved outer surface of the anchor, and the weld seam are generally continuous.
9. The multi-piece hoist drum of claim 1, further including a plurality of annular grooves formed within the outer annular surface of the body.
10. The multi-piece hoist drum of claim 1, further including: a flange formed at a first end of the body and extending radially outward; and an end casting connected to an opposing second end of the body and having a hub extending outward in the axial direction from a center thereof.
11. The multi-piece hoist drum of claim 10, wherein the end casting is connected to the generally cylindrical body by way of a second weld seam, such that the outer annular surface, an edge the end casting, and the second weld seam are generally continuous.
12. The multi-piece hoist drum of claim 1, wherein the anchor is axially centered within the body.
13. A multi-piece hoist drum, comprising: a body that is hollow and generally cylindrical; an end casting located at an end of the body and having a hub extending outward in an axial direction from a center thereof; an outer annular weld seam connecting the end casting to the body; an anchor welded to the body such that an entire perimeter of the anchor is flush with an outer annular surface of the body, the anchor being configured to retain a cable end portion; and at least one stiffener welded to the anchor and an interior surface of the body and extending in the axial direction of the body across the anchor, wherein: a weld seam forming an interface between the perimeter of the anchor and the outer annular surface of the body is an external weld seam viewable from outside the multi-piece hoist drum, the body includes an opening to receive the anchor, and a periphery of the body at the opening is beveled to provide for the weld seam between the periphery of the body and the perimeter of the anchor.
14. The multi-piece hoist drum of claim 13, wherein the body, an edge of the end casting, and the outer annular weld seam together form the outer annular surface of the body that is generally continuous.
15. The multi-piece hoist drum of claim 14, wherein the edge of the end casting and the body are beveled to provide for the outer annular weld seam.
16. The multi-piece hoist drum of claim 13, further including a plurality of annular grooves formed within the outer annular surface of the body.
17. The multi-piece hoist drum of claim 13, further including a flange connected to the body at an end opposite the end casting and extending radially outward.
18. The multi-piece hoist drum of claim 17, further including at least one lifting lug formed within a face of the end casting.
19. A power shovel, comprising: a machine frame; a boom pivotally connected at a base end to the machine frame; a dipper handle pivotally connected at a midpoint of the boom; a dipper pivotally connected to a distal end of the dipper handle; a rope extending over a distal end of the boom to connect to the distal end of the dipper handle; and an internal hoist drum connected to the machine frame and configured to reel in the rope, the internal hoist drum including: a drum body that is hollow and generally cylindrical; an anchor recessed within an outer annular surface of the drum body and configured to retain a cable end on an outer surface of the body, the anchor having a flat bottom surface that is non-tangential with the outer annular surface; at least one stiffener welded to the anchor and an interior surface of the drum body and extending in an axial direction of the drum body across the anchor; a plurality of annular grooves formed within the outer annular surface of the drum body; an end casting connected to an end of the drum body by way of an outer annular weld seam and having a hub extending outward in an axial direction from a center thereof; and a flange formed at an end of the drum body opposite the end casting and extending radially outward.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(7) Crawler 12 may be a structural unit that supports movements of machine 10. In the disclosed exemplary application, crawler 12 is itself movable, having one or more traction devices such as feet, tracks, and/or wheels that are driven to propel machine 10 over a work surface 24. In other applications, however, crawler 12 may be a stationary platform configured for direct engagement with work surface 24.
(8) Frame 14 may pivot relative to crawler 12 about a vertical axis 26. As frame 14 is pivoted about axis 26, attached gantry 16, boom 18, dipper handle 20, and tool 22 may likewise pivot to change a radial engagement angle of tool 22 with work surface 24. In the exemplary embodiment of
(9) Gantry 16 may be a structural frame, for example a general A-shaped frame, which is configured to anchor one or more static cables 30 to frame 14. Gantry 16 may extend from frame 14 in a vertical direction away from crawler 12. Gantry 16 may be located rearward of boom 18 relative to tool 22 and, in the disclosed exemplary embodiment, fixed in a single orientation and position. Cables 30 may extend from an apex of gantry 16 to a distal end of boom 18, thereby transferring a weight of boom 18, tool 22, and a load contained within tool 22 into frame 14.
(10) Boom 18 may be pivotally connected at a base end to frame 14, and constrained at a desired vertical angle relative to work surface 24 by cables 30. Additional cables or wire ropes (ropes) 32 may extend from hoist drum 29 over a pulley mechanism 34 located at the distal end of boom 18 and around a pulley mechanism 36 of tool 22. Ropes 32 may be dynamic, and selectively reeled-in and spooled-out by hoist drum 29 to affect the height and angle of tool 22 relative to work surface 24. For example, when ropes 32 are reeled in, the decreasing effective length of ropes 32 may cause tool 22 to rise and tilt backward away from work surface 24. In contrast, when ropes 32 are spooled out, the increasing effective length of ropes 32 may cause tool 22 to lower and tilt forward toward work surface 24.
(11) Dipper handle 20 may be pivotally connected at one end to a general midpoint of boom 18, and at an opposing end to a corner of tool 22 adjacent pulley mechanism 36 (e.g., rearward of pulley mechanism 36). In this position, dipper handle 20 may function to maintain a desired distance of tool 22 away from boom 18 and ensure that tool 22 moves through a desired arc as ropes 32 are reeled in and spooled out. In the disclosed embodiment, dipper handle 20 may be connected to boom 18 at a location closer to the base end of boom 18, although other configurations are also possible. In some configurations, dipper handle 20 may be provided with a crowd cylinder (not shown) that functions to extend or retract dipper handle 20. In this manner, the distance between tool 22 and boom 18 (as well as the arcuate trajectory of tool 22) may be adjusted.
(12) Drum 29 may be rotatably mounted within a pedestal 38 that is fixedly connected to frame 14, and operatively connected to power source 28 via a gear train (not shown). As shown in
(13) Hub 48 may be an integral part of an end casting 56 that is welded to body 40. In particular, end casting 56 may have an outer diameter that is about the same (e.g., within manufacturing tolerances) as an outer diameter of annular surface 52 of body 40, and end casting 56 may butt up against end 46 of body 40. Adjacent edges of annular surface 52 and end casting 56 may be beveled away from each other to create a v-shaped channel 58 (see
(14) At least one anchor 72 may be recessed within outer annular surface 52 of drum body 40 to receive one or more ends of ropes 32. In the disclosed example, two anchors 72 are included and each is configured to receive two cable ends (e.g., in opposition to each other). It is contemplated that fewer or more anchors 72 may be included, if desired, and each dedicated to holding any number of cable ends. Anchor(s) 72 may be generally centered in an axial direction of body 40 and, if more than one anchor 72 is included, anchors 72 may be located symmetrically around the periphery of body 40 to improve the balance of drum 29. For example, when two anchors 72 are included, anchors 72 may be located opposite each other relative to body 40.
(15) One or more stiffeners 74 (see
(16) Anchor 72 may be a cast component that is subsequently welded into a corresponding hole or recess in body 40. As shown in
(17) Anchor 72 may have a longitudinal pocket 80 recessed within arcuate outer surface 76. Pocket 80 may have a flat bottom surface 82 and extend in the length direction about 5-6 times an extension distance in the width direction. Bottom surface 82 may be oriented generally perpendicular to axis 50 and non-tangential to outer annular surface 52 of drum body 40. The non-tangential configuration may cause the associated ropes 32 to arch out over an end of bottom surface 82 before lying on outer annular surface 52, the arching functioning to inhibit rotation of ropes 32 relative to body 40. One or more retainers or fingers 84 may extend axially inward from arcuate outer surface 76 a distance over bottom surface 82 to retain the associated cable ends (e.g., to retain ferrules that have been brazed to the rope endsnot shown) inside pocket 80, and retainers 84 may function as end-stops or collars for the ferrules. That is, retainers 84 may be spaced radially away from bottom surface 82 to form a ceiling of pocket 80. In the disclosed embodiment, two retainers 84 are included in each anchor 72 and centered relative to the length direction of bottom surface 82. Side walls 86 of pocket 80 may be curved outward (e.g., concave) such that a cross-sectional shape of anchor 72 through pocket 80 may be oval (See
INDUSTRIAL APPLICABILITY
(18) The disclosed hoist drum may be used in any power shovel application where component longevity and reliability are desired. The disclosed hoist drum may have improved longevity due to increased stiffness provided via stiffeners 74 and the unique connection configuration of end casting 56. In addition, because end casting 56 and anchors 72 may be connected to body 40 via external weld seams 60 and 78, inspection of these seams may be easy to perform. For example, ultrasonic testing may be performed by directing ultrasonic vibrations axially through end casting 56 at its periphery, through weld seam 60, and into body 40. In addition, because weld seams 60 and 78 are external, low-cost visual inspections that do not require any tooling or disassembly of hoist drum 29 may be more readily performed. Finally, the non-tangential configuration of anchors 72 may inhibit rotation and the associated premature wear of ropes 32.
(19) It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed power shovel and hoist drum. Other embodiments will be apparent to those skilled in the art from consideration of the specification and practice of the disclosed power shovel and hoist drum. It is intended that the specification and example be considered as exemplary only, with a true scope being indicated by the following claims and their equivalents.