VEVOR Wire Stripping Machine 0.06-1.5 inch, 11 Channels 10 Blades | Automatic Wire Stripping Tool, Manual Hand Cranked, Industrial, For Recycling Copper Hover to Zoom
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VEVOR Wire Stripping Machine 0.06-1.5 inch, 11 Channels 10 Blades | Automatic Wire Stripping Tool, Manual Hand Cranked, Industrial, For Copper Recycling

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$265.12
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Product Description

VEVOR Wire Stripping Machine

The VEVOR wire stripping machine is designed to remove insulation from copper conductors that range in diameter from 0.06 to 1.5 inches. This size range allows the tool to handle a wide variety of copper wires used in industrial settings.

Hand‑Cranked, Automatic Design

Although the machine is marketed as an automatic wire stripping tool, it operates through a manual hand crank. The user turns the crank to engage the internal mechanism that advances the wire through the stripping chamber. The crank action provides a controlled feed of the wire, allowing operators to manage the pace of stripping without relying on external power.

Multiple Channels and Blades

The device features 11 separate channels that can accommodate individual wires or small bundles. Each channel is equipped with a set of 10 precision blades. These blades work in concert to cut the insulation around the conductor as the wire passes through.

Industrial Application for Copper Recycling

Engineered for industrial environments, the stripping machine is suited for copper recycling operations where efficient removal of insulation is necessary before further processing. The robust construction and manual operation make it reliable in settings where electric power may be limited or where operators prefer direct control.

Tool Construction

The machine’s frame is built from durable metal to withstand repeated use. The channel housings are designed to guide the wire steadily, reducing the risk of damage to the copper core. The 10 blades in each channel are positioned to deliver consistent cutting action along the entire length of the wire.

Operational Steps

  1. Insert a wire or a set of wires into the appropriate channel.
  2. Secure the wire to prevent movement during processing.
  3. Turn the hand crank to advance the wire through the stripping chamber.
  4. Monitor the progression to ensure the insulation is fully removed.
  5. Remove the stripped wire and proceed to the next unit.

Precision and Consistency

The alignment of the blades within each channel is calibrated to provide uniform removal of insulation across the entire length of the wire. This uniformity is particularly useful in recycling contexts where consistency is required for downstream processing.

Maintenance and Longevity

Regular cleaning of the blade surfaces prevents build‑up of insulating residue, which could interfere with cutting action. Because the machine operates manually, there are no electrical components that require routine checks, simplifying upkeep.

Adaptability to Wire Sizes

The adjustable channel widths accommodate wires ranging from fine 0.06‑inch conductors to thicker 1.5‑inch copper cables. Users can switch between channels based on the size of the wire they are handling, without the need for additional tooling.

Safety Considerations

Operators should maintain a firm grip on the hand crank and keep hands clear of the blade path while the machine is in motion. Proper safety practices reduce the likelihood of accidental contact with moving parts.

Typical Workflow in Recycling Facilities

In a copper recycling setting, the stripping machine can be positioned in line with sorting stations. Once insulation is removed, the clean copper conductors can be sorted by gauge, weighed, or melted for re‑use. The manual crank provides flexibility, allowing operators to adjust throughput based on available labor or production needs.

Conclusion

The VEVOR wire stripping machine delivers a practical solution for removing insulation from a broad range of copper wire diameters. Its hand‑cranked operation, multiple channels, and 10‑blade configuration provide a straightforward method for preparing wires for further industrial processing.