HESSAPP DV 80 NC CNC Vertical Lathe Maximum Turning Diameter 900 mm – Retrofitted 1997

HESSAPP DV 80 NC CNC Vertical Lathe – Retrofitted 1997

Machine Overview

HESSAPP DV 80 NC CNC Vertical Lathe, originally manufactured in 1978 in Germany and professionally retrofitted in 1997 with a Siemens Sinumerik 840C CNC Control. This heavy-duty 2-axis vertical turning lathe is equipped with a 630 mm chuck, 12-station automatic tool magazine, chip conveyor, and additional tool holders, making it suitable for precision machining of medium to large workpieces.

Technical Specifications

Specification Metric Imperial Description
Manufacturer HESSAPP HESSAPP German manufacturer of vertical turning machines.
Model DV 80 NC DV 80 NC CNC Vertical Turning Lathe.
Country of Origin Germany Germany Original manufacturing country.
Original Year of Manufacture 1978 1978 Machine manufacturing year.
Retrofitted 1997 1997 CNC control modernization.
CNC Control Siemens Sinumerik 840C Siemens Sinumerik 840C 2-axis CNC control system.
Number of Controlled Axes 2 2 X and Z CNC axes.
Chuck Diameter 630 mm 24.80 in Hydraulic workholding chuck.
Maximum Turning Diameter 900 mm 35.43 in Maximum machining diameter.
Maximum Turning Height 750 mm 29.53 in Maximum workpiece height.
Spindle Speed Range 5 – 600 RPM 5 – 600 RPM Variable spindle speed.
Standard Equipment
  • Siemens Sinumerik 840C CNC Control
  • 2-Axis CNC Configuration
  • 630 mm Hydraulic Chuck
  • 12-Station Automatic Tool Magazine
  • Chip Conveyor
  • 6 Additional Tool Holders (Spare Tool Blocks)
Machine Features
  • Originally manufactured by HESSAPP in Germany and professionally retrofitted in 1997.
  • Modern Siemens Sinumerik 840C CNC control significantly improves usability and reliability.
  • Heavy-duty vertical lathe designed for machining large diameter components.
  • Rigid construction provides excellent stability during heavy turning operations.
  • 12-position tool magazine reduces setup time and increases productivity.
  • Chip conveyor ensures efficient chip evacuation during continuous machining.
  • Suitable for machining bearing housings, flanges, rings, brake discs, valve bodies, and heavy industrial components.
  • Ideal for automotive, energy, mining, heavy equipment, steel, and general engineering applications.

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