This disclosure relates generally to a lift boom assembly for a work machine, and more particularly to a lift boom assembly configured to provide a desired work implement vertical lift and lowering path.
Various work machines include work implements that are raised and lowered to perform desired tasks. For example, skid steer loader work machines may include a bucket that is raised and lowered to assist in transferring material between desired locations. In many cases, such work implements are coupled to a frame of a work machine by a lift boom assembly that serves to control the movement of the work implement between the lowered and raised positions. Conventional lift boom assemblies include a boom directly coupled to a frame of the work machine by a single pivot connection. This single pivot connection causes the work implement to travel along an arcuate path between the raised and lowered positions. In particular, when the boom starts to raise, there is forward movement of the work implement and, after the boom goes over center, there is a substantial amount of upward and rearward movement of the work implement. This lift path has the drawback of shortening the forward reach of the work implement when the boom is in the raised position.
Attempts have been made to overcome this drawback associated with the arcuate lift path of boom assemblies having a single pivot connection to the work machine frame. For example, U.S. Pat. No. 6,616,398 issued to Brian Dershem, et al. discloses a boom assembly including a boom coupled to each side of a frame of a work machine by a pair of linkages and an actuator. While the boom assembly lift path provided by the disclosed linkage arrangement of the '398 patent may be improved over the lift path of the single pivot boom assembly, as illustrated in FIG. 1 of the '398 patent, the lift path still maintains an arcuate movement between the raised and lowered positions. In addition, the linkage arrangement of the '398 patent may require a greater force than desired to initiate movement of the boom assembly.
The present invention is directed to overcoming one or more of the problems set forth above.
In accordance with one aspect of the disclosure, a boom assembly for a work machine includes a boom extending from a forward portion of the work machine toward a rear portion of the work machine, a rear link member connected between a frame of the work machine and the boom by a first frame pivot connection and a first boom pivot connection, and a forward link member connected between the frame of the work machine and the boom by a second frame pivot connection and a second boom pivot connection. The boom assembly also includes an actuator connected between the frame of the work machine and the boom by a third frame pivot connection and a third boom pivot connection. The second frame pivot connection is located vertically below the first frame pivot connection and above the second boom pivot connection when the boom assembly is in a lowered position.
According to another aspect of the present disclosure, a work machine includes a frame having a front portion and a rear portion, a front traction assembly located at the front portion of the frame, and a rear traction assembly located at a rear portion of the frame, the rear traction assembly having an axle, and a boom assembly coupled to the frame to allow for movement between a raised and lowered position. The boom assembly includes a boom extending from the front portion of the frame toward the rear portion of the frame, a rear link member connected between the rear portion of the frame and the boom by a first frame pivot connection and a first boom pivot connection, a forward link member connected between the rear portion of the frame and the boom by a second frame pivot connection and a second boom pivot connection, and an actuator connected between the frame of the work machine and the boom by a third frame pivot connection and a third boom pivot connection. The second frame pivot connection being located below the first frame pivot connection and being located forward of the axle of the rear traction assembly. The work machine further includes a work implement coupled to a front portion of the boom.
According to another aspect of the present disclosure, a boom assembly for a work machine includes a boom extending from a forward portion of the work machine toward a rear portion of the work machine, a rear link member connected between a frame of the work machine and the boom by a first frame pivot connection and a first boom pivot connection, and a forward link member connected between the frame of the work machine and the boom by a second frame pivot connection and a second boom pivot connection, the forward link member being located completely above the rear link member when the boom assembly is in a lowered position. The boom assembly also includes an actuator connected between the frame of the work machine and the boom by a third frame pivot connection and a third boom pivot connection.
With reference to
Boom assembly 14 may include a pair of booms 26 located on opposite sides of the frame assembly 12 (only one boom is shown in the figures). Each boom 26 is formed in a substantially similar manner and may be connected together by one or more cross members 28, 30 extending across the work machine 10. Each boom 26 includes a front boom portion 32, a middle boom portion 34, and a rear boom portion 36. When in a lowered position as shown in
Front boom portion 32 of boom 26 may include a work implement 38 coupled thereto. Work implement 38 may include a bucket as shown in
Rear boom portion 36 may be connected to a rear link member 44, a forward link member 46, and a hydraulic or pneumatic actuator 48 to provide a coupling between the boom 26 and the rear frame portion 22. Rear link member 44 may include a first end portion 50, a second end portion 52, and an intermediate or middle portion 54. First end portion 50 of rear link member 44 may be pivotally coupled to a tower assembly 56 of rear frame portion 22 to form a frame pivot connection 58 of rear link member 44. Second end portion 52 of rear link member 44 may include cross member 30 extending across the work machine 10 and connecting to a second end portion of a second rear link member (not shown). Intermediate portion 54 of rear link member 44 may include a boom pivot connection 60 coupling the rear link member 44 and rear boom portion 36 of boom 26. As illustrated in
Forward link member 46 may include a first end portion 62 and a second end portion 64. First end portion 62 of forward link member 46 may be pivotally connected to rear frame portion 22 to form a frame pivot connection 66 of forward link member 46. Second end portion 64 of forward link member 46 may include a boom pivot connection 68 coupling the second end portion 64 of forward link member 46 and the rear boom portion 36. As shown in
Actuator 48 may include a first end portion 70 and a second end portion 72. First end portion 70 of actuator 48 may be pivotally connected to rear frame portion 22 to form a frame pivot connection 74 of actuator 48. Second end portion 72 of actuator 48 may be connected to the intermediate boom portion 34 by boom pivot connection 76. As illustrated in
Referring again to
Again with respect to the boom assembly 14 in the lowered position as shown in
In the alternative boom assembly 14′ illustrated in
When the boom assembly 14′ is in the lowered position as shown in
With respect to the further alternative boom assembly embodiment illustrated in
The disclosed boom assembly may be used with any work machine having a work implement that is raised and lowered to perform a desired task. In one exemplary embodiment, the boom assembly may be used on a skid steer loader type work machine.
Referring to
The boom assemblies 14′ and 14″ are moved between the raised and lowered positions in the same manner as the boom assembly 14 of
The disclosed boom assembly utilizes components with pivot connections located at precise locations on the frame 12 of the work machine 10 that cooperate together to achieve an efficient boom assembly design that requires less force to initiate movement of the boom assembly from the lowered position. In addition, the orientation and connection of the components and the associated pivot connections ensure that the lift path 84 for the lift boom assembly 14 only arcs slightly forwardly from the lowered position to a maximum reach in the lower half of the lift range and is followed by a linear path to the raised position. This lift path allows the forward reach of the work implement to extend closer to a desired object located forward of the work machine when the boom assembly is in a raised position.
Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. For example, It is intended that the specification and examples be considered as exemplary only, with a true scope of the invention being indicated by the following claims.
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Number | Date | Country | |
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20060269386 A1 | Nov 2006 | US |