Patent classifications
B02C4/08
Wear-resistant element for a comminuting device
A wear-resistant element for partial insertion into a recess on the surface of a wear area of a comminuting device. The wear-resistant element includes particles made of a highly wear-resistant material which are embedded in a matrix material.
Wear-resistant element for a comminuting device
A wear-resistant element for partial insertion into a recess on the surface of a wear area of a comminuting device. The wear-resistant element includes particles made of a highly wear-resistant material which are embedded in a matrix material.
Vacuum cracking apparatus for power battery and cracking method thereof
The invention discloses a vacuum cracking apparatus for a power battery and a cracking method thereof. The cracking device includes a cylinder and further includes a rolling device, a first sealing device, a cracking device, a second sealing device, a pyrolysis device and a third sealing device which are arranged from top to bottom. The cracking device for the power battery of the present invention is equipped with the first sealing device, the second sealing device and the third sealing device to isolate the cracking device from the pyrolysis device and be capable of realizing material transmission and gas isolation without interference with each other, so that gas stirring between an anaerobic zone and an aerobic zone is avoided; and by combing battery cracking and battery pyrolysis, with cracked gas discharged after cracking as a fuel for cracking and pyrolysis or preheating a pyrolysis device, resources are fully used.
Vacuum cracking apparatus for power battery and cracking method thereof
The invention discloses a vacuum cracking apparatus for a power battery and a cracking method thereof. The cracking device includes a cylinder and further includes a rolling device, a first sealing device, a cracking device, a second sealing device, a pyrolysis device and a third sealing device which are arranged from top to bottom. The cracking device for the power battery of the present invention is equipped with the first sealing device, the second sealing device and the third sealing device to isolate the cracking device from the pyrolysis device and be capable of realizing material transmission and gas isolation without interference with each other, so that gas stirring between an anaerobic zone and an aerobic zone is avoided; and by combing battery cracking and battery pyrolysis, with cracked gas discharged after cracking as a fuel for cracking and pyrolysis or preheating a pyrolysis device, resources are fully used.
BLOW-IN INSULATION MATERIAL MADE OF STRAW
Process for manufacturing a blow-in insulation material made of straw, including a processing step in which the straw is crushed between rolls in a crushing apparatus, a crushing nip in the crushing apparatus being selected in such a way that the straw nodes are crushed during the crushing operation.
BLOW-IN INSULATION MATERIAL MADE OF STRAW
Process for manufacturing a blow-in insulation material made of straw, including a processing step in which the straw is crushed between rolls in a crushing apparatus, a crushing nip in the crushing apparatus being selected in such a way that the straw nodes are crushed during the crushing operation.
Apparatus and Method for Variable Sizing of Particulates
A particulate sizer includes an infeed for receiving a plurality of particulates, a first roller, and a second roller. The first and second rollers break down the plurality of particulates as the plurality of particulates passes through a gap between the first and second rollers. The width of the gap varies along a length of the first and second rollers. Accordingly, the first and second rollers compress some particulates to a first size and compress other particulates to a second smaller size. In addition, each of the first and second rollers has a textured outer surface for carrying the plurality of particulates through the gap.
A control method of a treatment plant of elements to be recycled or disposed and a treatment plant of elements to be recycled or disposed
A control method of a treatment plant for elements to be recycled or disposed of, having a crushing roll to reduce the size of the elements to be recycled or disposed of, and a screen operatively arranged upstream of the crushing roll to enable passage therethrough only of elements having a size larger than a predetermined size, includes the steps of measuring the current absorbed by the crushing roll; comparing the measured current value to a first predetermined value; and reducing the vibrations of the screen, if the measured current exceeds the first predetermined value.
Roll Mill for Super Absorbent Polymer and Method for Preparing Super Absorbent Polymer Using the Same
A roll mill for super absorbent polymer that grinds introduced super absorbent polymer particles and discharges them. The roll mill for super absorbent polymer includes at least one pair of rollers that have plural corrugations formed on each outer perimeter surface of the roller, and are arranged parallel to each other while being spaced by a roll gap, and the number of corrugations per unit circumference of the roller may be 0.89/mm?1.15/mm. Also disclosed is a method for preparing super absorbent polymer using the roll mill.
RECYCLING SYSTEM
A system for recycling pocketed metal coil mattresses includes a primary shredding station that implements a primary shredder element having a housing with opposing shafts mounted to extend along sidewalls of the housing. Each shaft includes a plurality of opposing shredding knives configured to bypass each other for shredding materials in the housing into metal and fabric pieces. The knives each have a thickness in the range of 17-50 mm with the knives of each respective opposing shaft being spaced apart from each other along the respective shaft in the range of 17-50 mm. The primary shredder element is free of stationary elements in the spaces between the shredding knives at the sidewalls. A motion separation station utilizing motion of the fabric pieces and the metal pieces for separating the pieces follows the primary shredder station. An air separation station provides an airflow to separate fabric pieces from the metal pieces. A secondary shredding station for further shredding the material is used to further shred and separate materials. A magnetic separation station further separates the metal and fabric pieces.