Systems, methods and machines for driving screw anchors
A machine for driving a pair of screw anchors at substantially the same time. An attachment supports a pair of independent drive assemblies. Each assembly consists of a rotary driver and tool driver that moves along respective driving arms to independently drive a pair of screw anchors into supporting ground at different angles. Each assembly may move with respect to the machine independently to drive anchors into the ground in overlapping time, or both may rotate at once to drive anchors into the ground sequentially.
1. A screw anchor driving attachment comprising:
a first driving assembly; and
a second driving assembly, wherein the first and second driving assemblies are movably attached to at least one common support structure and operable to independently drive respective screw anchors into underlying ground at different angles relative to plumb, wherein each of the first and second driving assemblies comprises a rotary driver and a tool driver movably attached to and movable along respective first and second driving arms and one of the first and second driving arms is substantially longer than the other.
2. The attachment according to claim 1 , wherein the first and second driving assemblies are rotatably attached to the at least one common support structure to simultaneously orient the first and second driving assemblies to different driving angles.
3. The attachment according to claim 1 , where the first and second driving arms are separated by an acute angle in a substantially common plane to enable adjacent screw anchors to be driven into the ground in overlapping time.
4. The attachment according to claim 1 , wherein the first and second drive assemblies are operable to independently drive respective screw anchors into underlying ground at different rates of feed and speed with respect to each other.
5. A screw anchor driving machine comprising:
a motorized body; and
an attachment, movably attached to the body, the attachment comprising:
at least one common support structure movably connected to the motorized body;
a first driving assembly; and
a second driving assembly, wherein the first and second driving assemblies are attached to the least one common support structure and are independently controllable to drive a pair of screw anchors into underlying ground at angles to one another, wherein each of the first and second driving assemblies comprises a rotary driver and a tool driver movably attached to respective first and second driving arms and one of the first and second driving arms is longer than the other.
6. The machine according to claim 5 , wherein the first and second driving arms are rotatably attached to the at least one common support structure to simultaneously orient the first and second driving assemblies to different driving angles.
7. The machine according to claim 5 , where the first and second driving arms are separated by an acute angle in a substantially common plane to enable adjacent screw anchors to be driven into the ground in overlapping time.
8. A system comprising:
a base machine;
a support structure movably attached to the base machine;
first and second drive assemblies attached to and movable about the support structure, the first and second drive assemblies operable to move independent of each other and the support structure to drive respective screw anchors into underlying ground at angles to one another, wherein each of the first and second drive assemblies comprises a rotary driver and a tool driver movably attached to respective first and second driving arms and one of the first and second driving arms is longer than the other.
9. The system according to claim 8 , wherein the first and second driving arms are rotatably attached to the at least one common support structure to orient the first and second drive assemblies to different driving angles.
10. The system according to claim 8 , where the first and second driving arms are separated by an acute angle in a substantially common plane to enable adjacent screw anchors to be driven into the ground in overlapping time.