Patent classifications
C13B10/06
Technologies for material separation
A technology for material separation is provided. The technology enables an output of a first material from a rotary lifter. The technology enables a direction of a fluid stream onto the first material in flight based on the output of the first material such that the first material is separated into at least a second material and a third material. The technology enables a conveyance of the second material away from the rotary lifter. The technology enables a removal of the third material via a vacuum port.
TECHNOLOGIES FOR MATERIAL SEPARATION
A technology for material separation is provided. The technology enables an output of a first material from a rotary lifter. The technology enables a direction of a fluid stream onto the first material in flight based on the output of the first material such that the first material is separated into at least a second material and a third material. The technology enables a conveyance of the second material away from the rotary lifter. The technology enables a removal of the third material via a vacuum port.
TECHNOLOGIES FOR MATERIAL SEPARATION
A technology for material separation is provided. The technology enables an output of a first material from a rotary lifter. The technology enables a direction of a fluid stream onto the first material in flight based on the output of the first material such that the first material is separated into at least a second material and a third material. The technology enables a conveyance of the second material away from the rotary lifter. The technology enables a removal of the third material via a vacuum port.
Technologies for cyclonic material separation
A technology for material separation is provided. The technology enables an output of a first material from a rotary lifter. The technology enables a direction of a fluid stream onto the first material in flight based on the output of the first material such that the first material is separated into at least a second material and a third material. The technology enables a conveyance of the second material away from the rotary lifter. The technology enables a removal of the third material via a vacuum port.
Technologies for airlock-based material separation
A technology for material separation is provided. The technology enables an output of a first material from a rotary lifter. The technology enables a direction of a fluid stream onto the first material in flight based on the output of the first material such that the first material is separated into at least a second material and a third material. The technology enables a conveyance of the second material away from the rotary lifter. The technology enables a removal of the third material via a vacuum port.
Two roller sugarcane crushing mill
An improved two roll sugarcane crushing mill with a semi closed frame having a plurality of improved two roll mill modules in tandem. Each improved two roll mill modules has a bottom roll and top roll, the bottom roll being rotatingly mounted in a pair of main frames at the two ends and the top roll is rotatingly mounted in a pair of top beams. One end of each of the top beams being pivotedly attached near the upper end of the main frame towards feed side for swinging the top beams along with the top roll. A hydraulic loader is provided which is pivotally attached between the end of the top beam and the base of the main frame. The semi closed frame fitted at the bottom end to the base of the Head Stock is designed to bear the forces of heavy and fluctuating loads.
Two roller sugarcane crushing mill
An improved two roll sugarcane crushing mill with a semi closed frame having a plurality of improved two roll mill modules in tandem. Each improved two roll mill modules has a bottom roll and top roll, the bottom roll being rotatingly mounted in a pair of main frames at the two ends and the top roll is rotatingly mounted in a pair of top beams. One end of each of the top beams being pivotedly attached near the upper end of the main frame towards feed side for swinging the top beams along with the top roll. A hydraulic loader is provided which is pivotally attached between the end of the top beam and the base of the main frame. The semi closed frame fitted at the bottom end to the base of the Head Stock is designed to bear the forces of heavy and fluctuating loads.