IP Library › Granted Patent US 10,086,867
Granted Patent B2
US 10,086,867 · App. 13/686,461 · Granted Oct 2, 2018

Steerable system for asphalt milling attachment

Inventors: J. Tron Haroldsen (Herriman, UT); Matthew H. Taylor (Lehi, UT)
Assignee: Asphalt Zipper, Inc.
B62D5/20E01C23/088E01C23/127
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Quick Facts
Patent No.
US 10,086,867
App. No.
13/686,461
Granted
Oct 2, 2018
Kind
B2
Abstract

A steering mechanism for a milling attachment device provides steering capability without impeding cutting depth control. The steering mechanism has at least one wheel that is rotated by an actuating mechanism such as an extending cylinder, synchronized actuators, or the like. The steering mechanism may be integrated with depth control by using a parallelogrammic structure with pivot points to assist in the depth control or may operate independent of and without impeding depth control.

Claims (12)

1. A steering mechanism to provide steering capability for both a host vehicle and for a milling attachment separate from, but connectable to the host vehicle operated by an operator, the host vehicle providing propelling force to the milling attachment, the milling attachment having an outer frame, a height-adjustable inner frame, and a rotating cutting head fixed to the inner frame so that the cutting depth of the rotating cutting head depends on the adjusted height of the inner frame relative to the outer frame, the steering mechanism, comprising:

an attachment mechanism configured to connect a milling attachment to a host vehicle;

a first wheel mounted to a first pivot shaft;

a second wheel mounted to a second pivot shaft, the outer frame being supported by the first wheel, the second wheel, and the host vehicle;

a support bar disposed across the front of the milling attachment forward of the rotating cutting head and connected to the outer frame, the support bar for receiving a first arm in pivoting engagement and a second arm in pivoting engagement, the first arm receiving the first pivot shaft in pivoting engagement and the second arm receiving the second pivot shaft in pivoting engagement, wherein the first arm and the second arm are each pivotally movable from a forward mode to a side mode enabling the front of the milling attachment to advance proximate an obstacle while maintaining steering capability;

a first steering actuator connected to and providing powered rotary motion to the first pivot shaft and the first wheel;

a second steering actuator connected to and providing powered rotary motion to the second pivot shaft and the second wheel; and

milling attachment steering controls positionable for access and actuation by the operator within the host vehicle to steer the milling attachment and the host vehicle, the steering controls being connected to the first steering actuator and second steering actuator of the steering mechanism allowing an operator to control steering of both the host vehicle and the milling attachment by activating the first steering actuator and the second steering actuator.

2. A steering mechanism as in claim 1 , wherein the first steering actuator and the second steering actuator are independent synchronized actuators.

3. A steering mechanism as in claim 1 , further comprising a first locking mechanism for locking the direction of the first wheel into a particular direction.

4. A steering mechanism as in claim 1 , wherein height adjustment of the inner frame to raise and lower the rotating cutting head to various milling depths is independent of and does not impede steering capability.

5. A steering mechanism as in claim 4 , wherein height adjustment of the inner frame to raise and lower the rotating cutting head does not alter the disposition of the first wheel, the second wheel and the outer frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2012
From: HAROLDSEN, J. TRON; TAYLOR, MATTHEW H.
To: ASPHALT ZIPPER, INC.
Reel/Frame 029358/0073 →
Continuity (2)
Provisional Application 61565278 · Nov 30, 2011
Related Publication 20130134765A1 · May 30, 2013
Cited By (1)
US 12,359,395