Throatless power rotary shears
A throatless rotary shear device includes an s-shaped frame, a feed wheel, and a cut wheel. The cut wheel can be adjacent to and offset from the feed wheel such that an overlap is defined therebetween. A v-shaped relief can be provided on the s-shaped frame. The v-shaped relief can be aligned with the overlap. Portions of material cut by the rotary shear device are urged in different directions by the v-shaped relief.
1 . A rotary shear device comprising:
an s-shaped frame;
a feed wheel;
a cut wheel being adjacent to and offset from the feed wheel such that an overlap is defined therebetween; and
a v-shaped relief formed in the s-shaped frame, the v-shaped relief being aligned with the overlap in a plane substantially perpendicular to a first plane defined by a cut wheel inner face and/or a second plane defined by a feed wheel inner face,
whereby the v-shaped relief is configured to urge portions of material cut by the wheels of the rotary shear device in different directions.
2 . The rotary shear device of claim 1 , wherein the s-shaped frame includes a first stanchion, a second stanchion, and a connecting portion between the first stanchion and the second stanchion, and wherein the v-shaped relief is formed in the connecting portion.
3 . The rotary shear device of claim 1 , wherein the v-shaped relief includes a first ramp and a second ramp, and wherein the first ramp and the second ramp are angled relative to each other.
4 . The rotary shear device of claim 3 , wherein the first ramp and the second ramp are angled at the same angle relative to a reference plane passing therebetween.
5 . The rotary shear device of claim 1 , the v-shaped relief being located behind the feed wheel and the cut wheel relative to a direction of cutting.
6 . The rotary shear device of claim 1 , wherein the feed wheel is operatively connected to the s-shaped frame.
7 . The rotary shear device of claim 1 , wherein the cut wheel is operatively connected to the s-shaped frame.
8 . The rotary shear device of claim 1 , further including a motor operatively connected to drive the feed wheel.
9 . The rotary shear device of claim 8 , wherein the motor is located behind and spaced from the cut wheel relative to a direction of cutting.
10 . The rotary shear device of claim 9 , wherein a rotational axis of the motor is oriented at an angle relative to the direction of cutting.
11 . The rotary shear device of claim 9 , further including a handle, and wherein the handle is located behind and spaced from the cut wheel relative to a direction of cutting.
12 . The rotary shear device of claim 11 , wherein the handle is mounted on the motor.
13 . A rotary shear device having a cutting direction, comprising:
an s-shaped frame;
a feed wheel;
a cut wheel being adjacent to and offset from the feed wheel such that an overlap is defined therebetween; and
a v-shaped relief formed in the s-shaped frame, the v-shaped relief being aligned with the overlap in a plane substantially parallel to the cutting direction,
whereby the v-shaped relief is configured to urge portions of material cut by the wheels of the rotary shear device in different directions.
14 . The rotary shear device of claim 13 , further including a motor operatively connected to drive the feed wheel, wherein the motor is located behind and spaced from the cut wheel relative to a cutting direction, and wherein a rotational axis of the motor is oriented at an angle relative to the cutting direction.
15 . A rotary shear device comprising:
an s-shaped frame;
a feed wheel having a first axis of rotation;
a cut wheel being adjacent to and offset from the feed wheel such that an overlap is defined therebetween, the cut wheel having a second axis of rotation; and
a v-shaped relief formed in the s-shaped frame, the v-shaped relief being aligned with the overlap in a plane substantially parallel to the first and/or second axis of rotation,
whereby the v-shaped relief is configured to urge portions of material cut by the wheels of the rotary shear device in different directions.
16 . The rotary shear device of claim 15 , further including a motor operatively connected to drive the feed wheel, and wherein the motor is located behind and spaced from the cut wheel relative to a cutting direction, and wherein a rotational axis of the motor is oriented at an angle relative to the cutting direction.