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Straight Four Point Transfer Press

In the fields of automotive components, new energy equipment, and high-end home appliance manufacturing, closed straightside four point transfer presses (a premium class of four point press systems) have become core equipment for multi-process forming of complex workpieces due to their excellent stability and high-precision transfer capabilities. The TE4 series, as a leading straight side press machine and straightside four point transfer press, combines finite element optimization design, high-strength frame structure, and intelligent transmission technology to provide one-stop solutions for multi-station processes such as deep drawing, precision punching, and bending, helping customers achieve efficient production and quality upgrading.

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TE4 Series Closed Straightside Four Point Transfer Press – Efficient Solution for Multi-Station Precision Stamping

In the fields of automotive components, new energy equipment, and high-end home appliance manufacturing, closed straightside four-point transfer presses (a premium class of four-point press systems) have become core equipment for multi-process forming of complex workpieces due to their excellent stability and high-precision transfer capabilities. The TE4 series, as a leading straight side press machine and straightside four-point transfer press, combines finite element optimization design, high-strength frame structure, and intelligent transmission technology to provide one-stop solutions for multi-station processes such as deep drawing, precision punching, and bending, helping customers achieve efficient production and quality upgrading.


I. High-Strength Frame Design: The Foundation of Precision Stamping for Transfer Press

1. FEA Optimization + Welded Preloading – Industry-Leading Rigidity in Straightside Four Point Transfer Press

As a premium straightside four point transfer press, the TE4 series features key frame components (beams, columns, base) undergoing full-process finite element analysis (FEA), optimizing material stress distribution by 40%. Combined with welded structure tension bolt preloading technology, the overall rigidity of this four point press reaches 1/8000 or higher, with strength increased by 30% compared to traditional cast frames. This design ensures stable multi-station transfer operations, effectively suppressing stamping vibration (amplitude ≤0.05mm) and avoiding workpiece dimensional deviations during transfer.

2.Octagonal Right-Angle Guide Rails – Micron-Level Precision for Straight Side Press Machine

The slider of this straightside four point transfer press adopts an octagonal right-angle guide rail structure, with a contact area 50% larger than traditional four-sided guides. Combined with hydraulic preloading, guide rail clearance is precisely controlled within 0.01mm, ensuring smooth workpiece transfer between stations. Test data shows the TE4 series achieves a bottom dead center repeat positioning accuracy of ±0.01mm, making it an ideal straightside four point transfer press for high-precision multi-station forming of automotive body panels and new energy battery cases.


II. Innovative Transmission System – Breaking Through Multi-Station Process Bottlenecks

1. Opposite Direction Transmission + High-Strength Gears – Optimal Performance in Transfer Press

Using opposite direction transmission technology unique to straightside four point transfer presses, lateral forces during gear meshing are mutually offset, reducing slider lateral force by 60% compared to same-direction transmission. Paired with high-speed herringbone gears (ISO 6 precision) and low-speed ground hard-tooth-surface spur gears, this transfer press achieves a transmission efficiency of 98%, ensuring uniform pressure output even at 80 strokes per minute. The design optimizes material utilization to over 97%, critical for continuous multi-station transfer forming.

2. Split Pneumatic Friction Clutch & Brake – Synchronized Control for Transfer Press Operations

Standard with a split pneumatic friction clutch/brake (optional imported wet type, response time ≤50ms), the TE4 straightside four point transfer press ensures clutch-brake synchronization error <0.5°, guaranteeing precise coordination between stamping and transfer actions. For new energy battery case production, this transfer press enables 0.1-second-level start/stop control, minimizing risks of workpiece defects during inter-station transfer.


III. Intelligent Control and Safety Protection

1. Dual-Loop Cam Control – Seamless Multi-Station Coordination in Transfer Press

Equipped with an electronic cam + mechanical cam dual-loop control system, this straightside four point transfer press supports real-time programming of transfer speed and stamping pressure for each station, adapting to complex workpiece geometries. The mechanical cam acts as hardware redundancy, ensuring stable transfer operations even under peak loads, reducing system failures by 40% compared to single-loop systems.

2. Full-Process Safety and Intelligent Lubrication for Transfer Press

        ·     High-Sensitivity Overload Protection Device: Monitors both stamping and transfer station loads in  this transfer press, triggering emergency shutdown within 0.1 seconds to protect dies and transfer mechanisms;

        ·     Automatic Heavy-Duty Oil Lubrication System: Lubricates 15 critical components (including transfer rails and gearboxes) in this straightside four point transfer press, with optional temperature control to extend maintenance cycles to 6 months;

        ·     Imported Safety Dual Solenoid Valves: Ensure safe operation during workpiece transfer, compliant with ISO 13849-1 standards and providing dual protection for both stamping and transfer motions.


IV. Modular Configuration

1. Flexible Optional Functions – Enhancing Transfer Press Versatility

        ·     Air Cushion Device: Optimizes blank holder force for deep drawing in this straightside four point transfer press, preventing wrinkles and ensuring consistent transfer of complex curved parts like automotive fuel tanks;

         ·     Ton-meter and Vibration-Damping Pads: Monitor transfer station pressures and reduce vibration in this transfer press, critical for maintaining precision during high-speed multi-station operations;   

          ·     Industrial IoT Interface: Enables real-time tracking of transfer accuracy and stamping data in this straightside four point transfer press, seamlessly integrating with automated production lines via Profinet/EtherCAT.

2. Industry Coverage

Application Fields

Typical Workpieces

Equipment Advantages as Transfer Press

Automotive Manufacturing

Door inner panels, dashboard brackets

As a straightside four-point transfer press, ensures smooth inter-station transfer for large-scale continuous forming

New Energy

Power battery cases, motor cores

High-precision transfer control guarantees dimensional consistency of thin-walled battery components

Home Appliances & Electronics

Washing machine drums, connector terminals

Low-vibration transfer design minimizes surface defects in precision parts during multi-station processing


V. Technical Specifications

Specification

TE4-800

TE4-1000

TE4-1250

 

I

II

I

II

I

II

III

Driving Mode

Eccentric Gear Drive

Nominal Force

kN

8000

8000

10000

10000

12500

12500

12500

Nominal Force

Feed in

kN

4000/4800

4000/4800

5000/6000

5000/6000

6250/7500

6250/7500

6250/7500

Feed Discharge

kN

4000/3200

4000/3200

5000/4000

5000/4000

6250/5000

6250/5000

6250/5000

Nominal Stroke

mm

13

13

13

13

13

13

13

Slide Stroke

mm

500/600/700

550/650/750

550/650/750

600/700/800

600/700/800

600/700/800

600/700/800

SPM

min

10-25

10-25

10-25

10-25

10-25

10-25

10-25

MAX Die Height

mm

1000/1100/1200

1050/1150/1250

1050/1150/1250

1100/1200/1300

1100/1200/1300

1100/1200/1300

1100/1200/1300

Die Height Adjustment

mm

200/300/400

200/300/400

300/400/500

300/400/500

300/400/500

300/400/500

300/400/500

Slide Area

(F ·B X L ·R)

mm

2000x5000

2200x5200

2200x5200

2200X5700

2200x5200

2300x5800

2400x6250

Bolster Area

(F ·B X L ·R)

mm

2000x5000

2200x5200

2200x5200

2200X5700

2200x5200

2300x5800

2400x6250

Station Quantity

 

4,5,6

4,5,6

4,5,6

4,5,6

4,5,6

4,5,6

4,5,6

Column side opening width

mm

2700

2900

2900

3000

2900

3000

3100

Moving bolster height

mm

650/700/750

650/700/750

650/700/750

650/700/750

650/700/750

650/700/750

650/700/750

Main Motor Power

kW

132

132

160

160

200

200

200

Direction of moving bolster

 

F ·B , FT/BT

Specification

TE4-1600

TE4-2000

 

I

II

III

I

II

III

Driving Mode

Eccentric Gear Drive

Nominal Force

kN

16000

16000

16000

20000

20000

20000

Nominal Force

Feed in

kN

8000/9600

8000/9600

8000/9600

10000/12000

10000/12000

10000/12000

Feed Discharge

kN

8000/6400

8000/6400

8000/6400

10000/8000

10000/8000

10000/8000

Nominal Stroke

mm

13

13

13

13

13

13

Slide Stroke

mm

600/700/800

600/700/800

600/700/800

700/800/900

700/800/900

700/800/900

SPM

min

10-25

10-25

10-25

10-25

10-25

10-25

MAX Die Height

mm

1200/1250/1300

1200/1250/1300

1200/1250/1300

1200/1300/1400

1200/1300/1400

1200/1300/1400

Die Height Adjustment

mm

300/400/500

300/400/500

300/400/500

300/400/500

300/400/500

300/400/500

Slide Area

(F ·B X L ·R)

mm

2300x5200

2400x5800

2500x6250

2300x5800

2400x6250

2500x6375

Bolster Area

(F ·B X L ·R)

mm

2300x5200

2400x5800

2500x6250

2300x5800

2400x6250

2500x6375

Station Quantity

 

4,5,6

4,5,6

4,5,6

4,5,6

4,5,6

4,5,6

Column side opening width

mm

3100

3200

3300

3200

3300

3400

Moving bolster height

mm

650/700/750

650/700/750

650/700/750

650/700/750

650/700/750

650/700/750

Main Motor Power

kW

280

280

280

315

315

315

Direction of moving bolster

 

F ·B , FT/BT


Specification

TE4-2500

TE4-3000

TE4-3150

 

I

II

III

I

II

Driving Mode

Eccentric Gear Drive

Nominal Force

kN

25000

25000

25000

30000

30000

31500

Nominal Force

Feed in

kN

12500/15000

12500/15000

12500/15000

15000/18000

15000/18000

15750/19000

Feed Discharge

kN

12500/10000

12500/10000

12500/10000

15000/12000

15000/12000

15750/12500

Nominal Stroke

mm

13

13

13

13

13

13

Slide Stroke

mm

700/800/900

700/800/900

700/800/900

700/800/900

700/800/900

800/900

SPM

min

10-25

10-25

10-25

10-25

10-25

10-25

MAX Die Height

mm

1200/1300/1400

1200/1300/1400

1200/1300/1400

1200/1300/1400

1200/1300/1400

1200/1300/1400

Die Height Adjustment

mm

300/400/500

300/400/500

300/400/500

300/400/500

300/400/500

300/400/500

Slide Area

(F ·B X L ·R)

mm

2500x6100

2500x6200

2500x6375

2500x6375

2500x6200

2600x6375

Bolster Area

(F ·B X L ·R)

mm

2500x6100

2500x6200

2500x6375

2500x6375

2400x6250

2500x6375

Station Quantity

 

4,5,6

4,5,6

4,5,6

4,5,6

4,5,6

4,5,6

Column side opening width

mm

3400

3400

3400

3400

3400

3400

Moving bolster height

mm

650/700/750

650/700/750

650/700/750

650/700/750

650/700/750

650/700/750

Main Motor Power

kW

355

355

355

400

400

450

Direction of moving bolster

 

F ·B , FT/BT

Specification

TE4-3500

TE4-3600

Driving Mode

Eccentric Gear Drive

Nominal Force

kN

35000

36000

Nominal Force

Feed in

kN

17500/21000

18000/21600

Feed Discharge

kN

17500/14000

18000/14400

Nominal Stroke

mm

13

13

Slide Stroke

mm

800/900

800/900

SPM

min

10-25

10-25

MAX Die Height

mm

1200/1300/1400

1200/1300/1400

Die Height Adjustment

mm

300/400/500

300/400/500

Slide Area

(F ·B X L ·R)

mm

2600x6375

2600x6375

Bolster Area

(F ·B X L ·R)

mm

2500x6375

2500x6375

Station Quantity

 

4,5,6

4,5,6

Column side opening width

mm

3400

3400

Moving bolster height

mm

650/700/750

650/700/750

Main Motor Power

kW

500

500

Direction of moving bolster

 

F ·B , FT/BT

VI. FAQ

Q1: What defines the TE4 series as a straightside four point transfer press?
A1: The combination of a straightside frame design for high rigidity, four-point suspension for balanced load distribution, and integrated transfer mechanisms for multi-station coordination makes it a specialized transfer press for complex part forming.

Q2: How does the straightside four point transfer press design benefit multi-station production?
A2: The straightside structure reduces lateral deflection, while four-point support ensures uniform force distribution during transfer, critical for maintaining precision in high-tolerance workpieces like new energy battery cases.

Q3: Can this transfer press handle different workpiece sizes during multi-station processing?
A3: Yes, the TE4 series straightside four point transfer press offers modular tooling and adjustable transfer parameters, adapting to workpiece sizes from small connectors to large automotive panels.

 

Q4: What safety features are unique to this straightside four point transfer press?
A4: Dual-loop control for both stamping and transfer motions, overload protection for transfer mechanisms, and safety valves that monitor both press and transfer operations, ensuring compliance with global safety standards.

Q5: How does the transfer speed affect production efficiency in this transfer press?
A5: With transfer speeds up to 3.0 m/min (TE4-1000 model), the straightside four point transfer press minimizes idle time between stations, achieving high throughput while maintaining transfer accuracy within ±0.02mm.

 

TE4 Series Closed Straightside Four Point Transfer Press – Redefining the Benchmark for

Multi-Station Stamping Precision and Efficiency!
Contact us today for customized solutions for your straightside four-point transfer press requirements: WhatsApp/WeChat: +86 183 1731 3453

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