The WILLEX POWER DZW-51BJ-C is a professional-grade Hose Skiving Machine engineered for precision and versatility in hydraulic hose preparation. Specifically designed to handle demanding industrial requirements, this machine excels in removing the outer cover of hoses to ensure a secure and leak-proof fitting installation, supporting diameters up to 2 inches (51 mm) to accommodate a wide array of heavy-duty hose specifications.
Combining high-efficiency performance with an adaptable design, the DZW-51BJ-C features bidirectional rotation and optional internal skiving capabilities, making it an indispensable tool for specialized hose structures. Whether deployed in a permanent workshop or utilized for on-site field operations via its flexible low-voltage power options, this machine delivers the reliability and precision required by modern hydraulic and mechanical engineering standards.
| External Hose Capacity | 1/4" - 2" (Approx. 51mm) | Internal Hose Capacity | 3/4" - 2" |
|---|---|---|---|
| Tool Rotation Speed | 170 r/min | Max Skiving Length | 100 mm |
| Motor Power | 0.4KW (220V/380V 1PH/3PH) | DC Power Options | 12V / 24V DC |
| Outer Die Sets | 10 Sets | Machine Dimensions | 530 x 570 x 460 mm |
| Net Machine Weight | 30 kg (66.1 lbs) | Packaged Weight | 42 kg (92.6 lbs) |
Processes hoses up to 2 inches, meeting the needs of large-diameter industrial hose specifications with ease.
Two-way rotation provides maximum flexibility for special materials and improves overall skiving quality.
Optional internal tools allow for precise inner wall preparation, expanding the machine's application range.
Available in AC 220V/380V or DC 12V/24V, ensuring compatibility with both mains and battery power.
The low-voltage design makes it ideal for field operations and mobile repair services without mains access.
Space-saving design allows for easy transport and integration into constrained work environments.
Integrated 10-set outer die system ensures perfect fitment for various hose diameters.
Seamless switching between rotation directions for complex material processing.
Low-voltage DC options reduce electrical risks during heavy-duty field operations.
Fast tool setup and compact design minimize downtime between processing tasks.
Compatible with a vast range of industrial hoses from 1/4" to 2" in diameter.
Simple mechanical structure allows for rapid maintenance and long-term durability.
| Feature Analysis | Manual Skiving | DZW-51BJ-C Machine |
|---|---|---|
| Processing Speed | Slow / Labor Intensive | High Speed (170 r/min) |
| Consistency | Variable / Human Error | Precision Mechanical Control |
| Diameter Range | Limited / Difficult | Wide (1/4" to 2") |
| Site Flexibility | Portable but slow | Portable & High Efficiency |
| Operational Cost | High Labor Cost | Low Energy / Fast ROI |
A hose skiving machine is used to remove the outer rubber cover of a hydraulic hose. This process exposes the reinforcement layer, allowing the fitting to grip the hose more securely, which is critical for high-pressure applications to prevent blow-offs.
Yes, the DZW-51BJ-C offers flexible power options, including 12V and 24V DC versions, which allow it to be powered by batteries, making it perfect for field service and mobile repair units.
Bidirectional rotation allows the operator to adjust the cutting direction based on the hose's material structure or the specific type of reinforcement, ensuring a cleaner cut and improving the overall quality of the skived end.
The machine is highly versatile, handling external diameters from 1/4 inch up to 2 inches. It comes equipped with 10 sets of outer dies to accommodate various standard sizes within this range.
Yes, the DZW-51BJ-C features an optional internal skiving tool. This is used to prepare the inner wall of the hose for specific fitting installations, significantly expanding the machine's application capabilities.
By removing the outer cover, the crimping process applies pressure directly to the wire reinforcement of the hose. This creates a much stronger mechanical bond with the fitting, reducing the risk of failure under extreme pressure.
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