XLP tel parçalama makinesi

Oluşturuldu 2025.08.26
XLP wire, or cross-linked polyethylene (XLPE), is widely used in the construction, automotive, and power sectors for its excellent heat resistance, insulation, and mechanical strength. It typically consists of a copper or aluminum conductor core surrounded by a thick layer of XLPE insulation. This durability makes the recycling of discarded XLP wire, particularly the separation of metal from plastic, a specialized challenge.
XLP wire shredder machine
This shredder, specifically designed to process XLP and other types of wire, offers significant advantages over conventional equipment. First, it utilizes a high-torque, low-speed, dual-axis shearing design. Two sets of interlocking blades apply tremendous shearing and pulling force to the wire, rather than simply shredding it, effectively breaking through the tough insulation. Second, the blades are made of a special alloy steel, precision-machined, and heat-treated for extreme wear and impact resistance, ensuring long-term, stable processing of hard materials. The machine also features an automatic overload protection and reverse system. When encountering unbreakable objects or overload, the shredder automatically reverses and discharges, preventing damage to core components. This highly intelligent system also ensures a high degree of reliability.
The recycling process begins by feeding bundles of XLP wire into the shredder's feed port. Within the sturdy enclosure, two counter-rotating blades act like "robotic arms" to grab, tear, and shear the wires into fragments of varying lengths. This physical process breaks down the insulation and metal core without grinding them into a powder. The shredded mixture is discharged through a screen at the bottom, whose aperture can be adjusted to control the degree of fragmentation according to the desired output size.
The shredder's product is a mixed metal and plastic shred. This is the first step in resource recovery, perfectly paving the way for further intensive sorting. These shreds are then typically subjected to processes such as airflow separation or electrostatic separation, leveraging the differences in density and conductivity between metal and plastic to achieve a high-purity separation of copper/aluminum from plastic, exceeding 99%. The separated pure metal ingots are valuable industrial raw materials, while the plastic granules can be recycled into new plastic products, truly achieving a circular resource cycle.
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