IP Library Granted Patent US 12,077,228
Granted Patent B2
US 12,077,228 · App. 17/243,812 · Granted Sep 3, 2024

Track slider design for an electric rope shovel

Inventors: Cristian Zaharia (Marana, AZ); Elizabeth J. Barnes (Tucson, AZ); Michael W. Haws (Wind Point, WI); Mircea Dumitru (Washington, IL); Aruna Kinjarapu (Oro Valley, AZ)
Assignee: Caterpillar Global Mining LLC
B62D55/0847B62D55/10B62D55/32
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Quick Facts
Patent No.
US 12,077,228
App. No.
17/243,812
Granted
Sep 3, 2024
Kind
B2
Abstract

A transition track slider has a hollow body including a first side surface, a second side surface, a bottom surface at least partially interposed between the first side surface and the second side surface, and that also defines a cavity. A front surface with a bullet nose configuration connects the first side surface to the second side surface, and to the bottom surface, while a rear surface connects the first side surface to the second side surface, and to the bottom surface. A top surface extends from the rear surface toward the front surface.

Claims (45)

1. A transition track slider comprising:

a hollow body including

a first side surface;

a second side surface;

a bottom surface at least partially interposed between the first side surface and the second side surface, and defining a cavity, wherein the bottom surface defines a length and a midpoint disposed along the length, and at the least the first side surface defines an aperture that is disposed above the midpoint, the aperture extending through the first side surface to the cavity;

a front surface connecting the first side surface to the second side surface and to the bottom surface;

a rear surface connecting the first side surface to the second side surface and to the bottom surface;

a protrusion that extends downwardly from the bottom surface that is disposed below the midpoint, the protrusion at least partially defining a hole that is disposed below the aperture; and

a top surface extending from the rear surface toward the front surface defining a curve.

2. The transition track slider of claim 1 , wherein the hole extends through the protrusion to the cavity.

3. The transition track slider of claim 2 , wherein the aperture defines a first diameter, and the hole defines a second diameter that is less than the first diameter.

4. The transition slider of claim 3 , wherein the hollow body defines a plane of symmetry that is disposed equidistantly between the first side surface and the second side surface.

5. A transition track slider comprising:

a hollow body including

a first side surface;

a second side surface;

a bottom surface at least partially interposed between the first side surface and the second side surface, and defining a cavity;

a front surface connecting the first side surface to the second side surface and to the bottom surface;

a rear surface connecting the first side surface to the second side surface and to the bottom surface; and

a top surface extending from the rear surface toward the front surface;

wherein the front surface defines a bullet nose configuration, and

wherein the hollow body defines a first angled contact pad disposed in the cavity, and a first top contact pad disposed in the cavity, the first top contact pad forming an external angle with the first angled contact pad ranging from 120.0 degrees to 150.0 degrees.

6. The transition track slider of claim 5 , wherein the bullet nose configuration of the front surface includes a top convex arcuate surface that is connected to the top surface, defining a top convex arcuate radius of curvature ranging from 350 mm to 370 mm.

7. The transition track slider of claim 6 , wherein the bullet nose configuration includes a bottom inclined surface extending from the bottom surface toward the top convex arcuate surface.

8. The transition track slider of claim 7 , wherein the bullet nose configuration includes a first side inclined face joining the bottom inclined surface to the top convex arcuate surface.

9. The transition track slider of claim 8 , wherein the bullet nose configuration includes a second side inclined face joining the bottom inclined surface to the top convex arcuate surface.

10. The transition slider of claim 9 , wherein the bullet nose configuration includes a front extremity surface that connects the first side inclined face, the second side inclined face, the top convex arcuate surface, and the bottom inclined surface together.

11. The transition track slider of claim 5 , wherein the rear surface is arcuate.

12. A transition track slider comprising:

a hollow body including

a first side surface;

a second side surface;

a bottom surface at least partially interposed between the first side surface and the second side surface, and defining a cavity;

a front surface connecting the first side surface to the second side surface and to the bottom surface;

a rear surface connecting the first side surface to the second side surface and to the bottom surface; and

a top surface extending from the rear surface toward the front surface;

wherein the hollow body defines a first angled contact pad disposed in the cavity nearest the front surface, and a first top contact pad disposed in the cavity nearest the top surface and the first angled contact pad, forming an external angle with the first angled contact pad ranging from 120.0 degrees to 150.0 degrees.

13. The transition track slider of claim 12 , further comprising a second top contact pad disposed in the cavity that is coplanar with the first top contact pad, being separated from the first top contact pad.

14. The transition track slider of claim 13 , wherein the cavity defines a center void that separates the second top contact pad from the first top contact pad, and a front void that separates the first angled contact pad from the first top contact pad.

15. The transition track slider of claim 14 , further comprising a rear contact pad disposed in the cavity that faces toward the front surface, being separated from the second top contact pad by a rear void.

16. The transition track slider of claim 15 , further comprising a first pair of side contact surfaces disposed in the cavity extending downwardly from the first top contact pad, and a second pair of side contact surfaces disposed in the cavity extending downwardly from the second top contact pad.

17. The transition track slider of claim 16 , wherein the bottom surface defines a length and a midpoint disposed along the length, the first top contact pad is spaced away from the midpoint a first minimum distance, and the second top contact pad is spaced away from the midpoint a second minimum distance, and either the first minimum distance or the second minimum distance ranges from 190 mm to 250 mm.

18. The transition track slider of claim 1 , wherein the curve has a radius of curvature ranging from 2200 mm to 2600 mm.

19. The transition track slider of claim 1 , wherein the protrusion is triangularly shaped, domed shaped, or triangularly-domed shaped.

20. The transition track slider of claim 1 , wherein the aperture is configured to accept a pry tool and wherein the hole is configured to accept a fastener to attach the transition track slider to a mounting plate.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE FROM CATERPILLAR GLOBAL MINING EQUIPMENT LLC TO CATERPILLAR GLOBAL MINING LLC PREVIOUSLY RECORDED AT REEL: 056081 FRAME: 0947. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Apr 22, 2022
From: CATERPILLAR GLOBAL MINING EQUIPMENT LLC
To: CATERPILLAR GLOBAL MINING LLC
Reel/Frame 059777/0965 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2021
From: ZAHARIA, CRISTIAN; BARNES, ELIZABETH J.; HAWS, MICHAEL W.; DUMITRU, MIRCEA; KINJARAPU, ARUNA
To: CATERPILLAR GLOBAL MINING EQUIPMENT LLC
Reel/Frame 056081/0947 →
Continuity (1)
Related Publication 20220348273A1 · Nov 3, 2022