Rotating infeed chute for a brush chipper
A material reduction machine includes an infeed chute and a processing portion. The infeed chute has a plurality of guide walls. The processing portion is coupled to the infeed chute. The processing portion has a rotatable cutting mechanism configured to receive material from the infeed chute along a feed axis. The infeed chute is rotatable relative to the processing portion about an axis parallel to the feed axis between an operational configuration and a transport configuration.
1 . A material reduction machine comprising:
an infeed chute, the infeed chute having a plurality of guide walls;
a processing portion coupled to the infeed chute, the processing portion having a rotatable cutting mechanism configured to receive material from the infeed chute along a feed axis,
wherein the infeed chute is rotatable relative to the processing portion about an axis parallel to the feed axis between an operational configuration and a transport configuration;
further comprising a controller configured to control the rotatable cutting mechanism and a sensor configured to determine if the infeed chute is in the operational configuration, wherein the controller is configured to prevent operation of the rotatable cutting mechanism when the infeed chute is not in the operational configuration.
2 . The material reduction machine of claim 1 , further comprising a rotational bearing encircling a joint between the infeed chute and a main portion of the material reduction machine containing the processing portion.
3 . The material reduction machine of claim 1 , wherein the infeed chute is lockable in the operational configuration and lockable in the transport configuration.
4 . The material reduction machine of claim 1 , wherein one of the plurality of guide walls of the infeed chute is a feed table and the feed table is below the feed axis when the infeed chute is in the operational configuration, and wherein the feed table is laterally alongside the feed axis when the infeed chute is in the transport configuration.
5 . The material reduction machine of claim 1 , wherein the infeed chute includes a first outer dimension and a second outer dimension, wherein the first outer dimension is greater than the second outer dimension, wherein a vertical plane extends between a front end and a rear end of the material reduction machine, the second outer dimension extends in a parallel direction to the vertical plane and the first outer dimension extends in a perpendicular direction to the vertical plane when the infeed chute is in the operational configuration.
6 . The material reduction machine of claim 5 , wherein the second outer dimension extends in the perpendicular direction and the first outer dimension extends in the parallel direction when the infeed chute is in the transport configuration.
7 . A material reduction machine comprising:
a front end;
a rear end opposite the front end;
a processing portion disposed between the front end and the rear end, the processing portion having a cutting mechanism; and
an infeed chute opening toward the rear end to receive material to be reduced, the infeed chute having a plurality of guide walls configured to guide the material toward the processing portion along a feed axis,
wherein the infeed chute is configured to rotate relative to the processing portion between an operational configuration and a transport configuration,
wherein, when viewed along the feed axis, the material reduction machine defines an operational width when the infeed chute is in the operational configuration and a transport width when the infeed chute is in the transport configuration, and wherein the transport width is less than the operational width;
further comprising a controller configured to control the cutting mechanism and a sensor configured to determine if the infeed chute is in the operational configuration, wherein the controller is configured to prevent operation of the cutting mechanism when the infeed chute is not in the operational configuration.
8 . The material reduction machine of claim 7 , wherein the infeed chute has a first outer dimension and a second outer dimension, wherein the second outer dimension extends in a vertical direction and the first outer dimension extends in a horizontal direction when the infeed chute is in the operational configuration, wherein the first outer dimension defines the operational width of the material reduction machine.
9 . The material reduction machine of claim 8 , wherein the second outer dimension extends in the horizontal direction and the first outer dimension extends in the vertical direction when the infeed chute is in the transport configuration, wherein the second outer dimension is no wider than the transport width of the material reduction machine.
10 . The material reduction machine of claim 7 , wherein the transport width is 55% to 75% of the operational width.
11 . The material reduction machine of claim 7 , wherein the transport width is 0.75 to 1.0 meter.
12 . The material reduction machine of claim 7 , wherein the transport width is smaller than the operational width by 0.4 to 0.6 meter.
13 . The material reduction machine of claim 7 , wherein one of the plurality of guide walls of the infeed chute is a feed table and the feed table is below the feed axis when the infeed chute is in the operational configuration, and wherein the feed table is laterally alongside the feed axis when the infeed chute is in the transport configuration.
14 . A material reduction machine configured to reduce a material, the material reduction machine comprising:
a front end;
a rear end spaced longitudinally from the front end;
an infeed chute disposed adjacent the rear end, the infeed chute having a feed table and a plurality of guide walls, the feed table and the plurality of guide walls forming a funnel that narrows from a distal end to a proximal end of the infeed chute, wherein the infeed chute as viewed longitudinally has a first outer dimension and a second outer dimension, the first outer dimension is larger than the second outer dimension;
a main portion including a processing portion with a rotatable cutting mechanism driven by a prime mover, the main portion having an inlet side coupled to the proximal end of the infeed chute to define a joint through which the material can pass from the infeed chute toward the rotatable cutting mechanism along a feed axis; and
a rotation bearing situated longitudinally at the joint and encircling the joint to support rotation of an entirety of the infeed chute about a longitudinal axis of at least 90 degrees between an operational configuration in which the feed table is below the feed axis and a transport configuration in which the feed table is laterally alongside the feed axis,
wherein the first outer dimension of the infeed chute extends in a horizontal direction in the operational configuration of the infeed chute, and the first outer dimension of the infeed chute extends in a vertical direction in the transport configuration of the infeed chute,
wherein, when viewed longitudinally, an overall width of the material reduction machine is reduced by the rotation of the infeed chute from the operational configuration to the transport configuration;
further comprising a controller configured to control the rotatable cutting mechanism and a sensor configured to determine if the infeed chute is in the operational configuration, wherein the controller is configured to prevent operation of the rotatable cutting mechanism when the infeed chute is not in the operational configuration.
15 . The material reduction machine of claim 14 , wherein, with the infeed chute in the transport configuration, the second outer dimension of the infeed chute is the same as or less than the overall width of the material reduction machine.
16 . The material reduction machine of claim 14 , wherein the infeed chute is lockable in the operational configuration and lockable in the transport configuration.
17 . The material reduction machine of claim 14 , wherein the overall width when the infeed chute is in the transport configuration is 55% to 75% of the overall width when the infeed chute is in the operational configuration.
18 . The material reduction machine of claim 14 , wherein the infeed chute includes a folded portion adjacent the distal end of the infeed chute, the folded portion is configured to pivot perpendicular to the feed axis between an unfolded position and a folded position.
19 . The material reduction machine of claim 18 , wherein the material reduction machine defines a first length when the folded portion is unfolded, wherein the material reduction machine defines a second length when the folded portion is folded, wherein the first length is longer than the second length.