• Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker

Double-head Die Sinker

  • Maximum XYZ travel - 3000*900*600
  • Germany brandRexroth precision linear
  • guideway, or China Taiwan brand PMI
  • X/Y/Z China Taiwan brand PMI/HIWIN C3
  • precision ball screw
  • Mitsubishi AC Servo and its Motor
  • Automatic programming function
  • ARC protection
  • Carbon deposition prevention loopcircuit
  • Automatic arc clearing circuit
  • Standard level controller & standard configuration fire extinguisher
  • 7 kinds of special discharge circuit and its expert process database
  • 4kinds of protection circuit
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker
  • Double-head Die Sinker

Description

  • Machining Method



  • CNC Intelligent System, Lifetime free upgrade system
  • Possessing Independent Core Technologies
  • Focus on the R&D and Manufacturing
  • Standard parameter modifying function
  • Convenient for manual programing, directly reading the parameters.
  • Manual centered function
  • Convenient for separating bead by electrode with simple operation and accurate memory
  • Automatic centered function
  • Save times and reduce labor cost.

  • THREE Professional Machining

No.1 - Mirror Machining

As the high-end for mold workshops, it adopts special mirror machining circuit with powderless mirror machining, and features ultra-precise surface, high mirror, ultra-precise edge, super clear angel and effective machining. The cutting lifting speed of the main axis reaches 10m/min, and the high speed cutter lifting is capable of effectively removing impurity, achieving effective and stable discharge as well as high quality surface.

No.2 Graphite Machining

As the effective model for mold workshops, it adopts special graphite machining circuit with the high-speed coarse machining 3 times faster than copper, and high-speed finish machining 5times faster than copper. The product features machinability, and is capable of achieving complicated geometric shape with light weight, its density is less than 1/4 of copper, which is easy for clamping with electrode, and can reduce the number of single electrodes since they can be bundled ias the combined electrode.

No. 3 Hard Alloy Machining

As the high-end model for mold workshops, it adopts special hard alloy machining circuit with crackles and ultra-high machining, and features ultra-precise machining and low electrode consumption, the bottom of single structure is made of high grade casting iron without deformation, and is suitable for machining molds of high precision.

Discharge centered function

Convenient for electrode to separate the workpiece without causing burr.

Pitch function

Improving the speed and accuracy of programming, it is clear when observing by the operator, which is convenient for machining the multi-position mold as displacement data.

Filed saving function

Convenient for machining multiple molds and trimming mold.

Automatic programming function

Quick and accurate programming, avoiding mistake.

 

  • STRUCTURE



  • OPTION

Voltage Stabilizer

High performance oil temperature control device

Caxis

Tooling storge-4T/ 8T/ 12T



  • APPLICATION

Graphite Electrode Machining
Machining Position Round rib Deep rib
Electrode Graphite Graphite
Machining Depth 11.84mm 43.84mm
Size 75*66*35mm 68*43*70mm
Machining Time

3h8min (Rough)

2h15min (Fine)

7h15min (Rough)

4h (Fine)

Surface Roughness

Ra4.5 (Rough)

Ra1.0(Fine)

Ra4.5 (Rough)

Ra1.0(Fine)


Graphite Deep Cavity Rib Machining
Machining Position Long rib Short rib
Electrode Graphite Graphite
Machining Depth 40mm 20mm
Size 29*2*45mm 20*1*25mm
Machining Time 5h10min 1h10min
Surface Roughness VDI#21 texture

Technology Round Deep Cavity Mirror Machining Square Deep Cavity Mirror Machining Deep Cavity Mirror Machining
Electrode Cooper Cooper Cooper
Workpiece S136H S136H S136H
Size φ40 S=1256mm- 40*40*8mm 80*10*6mm
Machining Time 4h5min 6h 4h
Surface Roughness VDI=Ra 0.1 VDI=Ra 0.1 VDI=Ra 0.1

Spectacle Frame & Rear Film Mirror Machining
Electrode Cooper
Workpiece S136H
Size 130*40mm-
Machining Time 10h / 12h
Surface Roughness Ra 0.1


Graphite Electrode
Diameter 290*195mm
Machining Time 24h
Surface Roughness VDI #125 TEXTURE

Graphite Electrode
Diameter 398mm
Machining Time 39h
Surface Roughness VDI #25 TEXTURE




  • SPECIFICATION

Item

Unit

RK-F1250

RK-F 1470

RK-F 1880

RK-F 2110

RK-F 3010

Work Table Dimension

mm

1000*600

1500*900

2000*1000

2500*1200

3200*1200

X/Y/Z Travel (double-head)

mm

600*500*300

850*700*500

1050*700*600

1450*900*600

2400*900*600

Work Tank Internal Dimensions

mm

2200*1100*600

2500*1300*700

3000*1600*700

3500*1800*850

4500*1800*800

Distance from Electrode Plate to Table Top

mm

500-800

600-1100

500-1100

650-1250

700-1300

Maximum Electrode Weight

kg

150

400

400

450

450

Maximum Workpiece Weight

kg

3000

5000

6500

8000

15000

Machine Dimensions

mm

3800*3000*2850

4300*3650*3430

4700*3800*3600

5500*4900*3600

6500*5900*3760

Total Machine Weight (double-head)

kg

7000

8700

15000

17000

25000

Total Machine Weight (single-head)

kg

6000

8000

13000

15000

23000

Water Tank Capacity

L

1350

1200

1780

2000

2000

Machining Method

 

Flushing/ submerged

Flushing

Max Working Current

A

66

Input Power

 

380V, 3-phase, 50HZ

Positioning Accuracy

mm

≤0.005

Repeat Positioning Accuracy

mm

±0.005

Working Efficiency

mm²/min

≥500mm3/min, Graphite play steel      ≥400mm3/min, Copper play steel

Best Roughness

μm

Ra≤0.1μm

Minimum Electrode Loss

%

≤0.1

Resolution of Each Axis

μm

1

Minimum Drive Unit

μm

1

Axis CNC Control Number

 

3 axes linkage, Optional 4-axis linkage

Interpolation Methods

 

3-dimensional linear interpolation, 2-dimensional circular interpolation

Compensation of Each Axis

 

step error respectively, clearance compensation

 

 

 


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