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Davenport Hybrid multi-spindle screw machine

Multi-Spindle Screw Machines (CNC)
Manufacturer:
DAVENPORT
Model:
Hybrid
Stock #:
1672
Country:
United States
Hybrid CNC Davenport Capacity • Max bar capacity: 7/8" (22.2 mm) round • Hex capacity: 3/4" (19.1 mm) • Square capacity: 5/8" (15.9 mm) • Minimum bar capacity: 1/8" (4.8 mm) • Maximum turn length: 4" • Coolant capacity: 200 gallons Main Spindles • Max spindle speed: 3,800 RPM • Main spindle motor: 30 Nm (12.6 HP) • Cam axis motor: 11.6 Nm • Speed changes during cycle: Up to 5 programmable speeds • Workholding: Davenport collets End Working (Backworking) Spindles • Positions: 4 • Speed range: -5000 to +5000 RPM • Drive motor: 5.0 Nm nominal torque • Threading capability: Up to 4 positions • Tooling: ER16, ER20, ER25 quick-change holders CNC & Machine Configuration • Hybrid HP revolving head with aligning gears (3800 RPM max) • Single-axis CNC slides – 1st & 2nd positions • CNC swing arm – 3rd & 5th positions • 2-axis CNC slide (X/Z) – 4th position • Full CNC pickoff / sub-spindle (5000 RPM) • Full CNC 3-station backworking attachment • Independently driven end-working spindles Coolant & Filtration • Grundfos flood coolant pump • 1000 PSI high-pressure coolant system • 8-port programmable coolant manifold • Coolant heat exchanger • Mist collector Automation & Features • Parts catcher with conveyor system • Jorgensen chip conveyor • Stock carrier & cover for 12 ft bars • Integrated fire suppression system • Full enclosure with safety interlocks • LED work lighting Control & Electrical • Proprietary Davenport Machine control system • 15" touchscreen display with QWERTY keyboard • 480V primary voltage • Bijur air/oil lubrication system Dimensions & Weight • Dimensions: 198" x 56.1" x 101.3" • Weight: 7,000 lbs • Transformer: 325 lbs Overview Hybrid CNC Davenport offering a strong balance of multi-spindle production speed and CNC flexibility. Equipped with multiple CNC slide positions and full backworking capability, making it well-suited for shops looking to modernize without sacrificing throughput.
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