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SHENCHONG Single-servo Hydraulic Press Brake With Bending Follower
Time:2026-04-22     
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A CNC single-servo hydraulic press brake machine + a sheet bending follower support device = a semi-automatic bending solution consisting of a "high-precision bending main unit + intelligent following support system". This upgrades from "single-machine manual bending" to a "human-machine collaborative semi-automatic bending unit".

 

1. Single-servo Hydraulic Press Brake With Bending Follower Unite Core Components


CNC Single Servo Hydraulic Press Brake With Sheet Follower


1) CNC Single Servo Hydraulic Press Brake (Main Unit)

- Single servo motor drives the hydraulic system (energy saving + stability)

CNC system control (angle, stroke, compensation)

Y-axis synchronous control of slider movement (closed-loop control)

Features:

Cost-effective compared to all-electric servo presses, precision superior to traditional hydraulic presses

 

2) Bending Follower Material Support Device (Core Value-Added Module)

Follow-up device = Intelligent Front Material Support System

 


Functional Essence:

- Supports sheet metal

Follows bending trajectory

Dynamically adjusts height and angle

 

Working Principle:

- Acquires slider movement via servo system + sensor

- Synchronously lifts/tilts material support platform

- Maintains consistent trajectory and speed with the sheet metal

 

3) Control and Linkage System

- Independent PLC or CNC control

Signal linkage with bending machine

Can operate independently (no modification required for main unit)


Bending Follower Material Support Device


2. Sheet Follower Bending Workflow (Typical Action Logic)


- Sheet metal placement → Material support platform supports

- Bending begins → Slider descends

- Main support device automatically lifts and follows angle changes

- Sheet metal remains in “controlled support state”

- Bending complete → Automatic return


Core Key:

Main support trajectory = Sheet Material Movement Trajectory (Fully Synchronized)

 

3. Core Advantages Analysis (Key Selling Points)



1) From "Manual Material Handling" → "Intelligent Following"

Traditional Problems:

Large sheets require 3-6 people; manual operation is unstable and prone to deviation.

Solution:

Can be completed by one or two people; reduces manual intervention by over 80%.

Essential Value:

Directly reduces labor costs and labor dependence.

 

2) Significantly Improved Bending Accuracy

Problem Sources:

Sheet material sagging due to its own weight → angle error; asynchronous support → bending deformation.

Follow-up Advantages:

Real-time support → anti-sagging; synchronized trajectory → anti-deviation.

Results:

Improved angle consistency; more stable repeatability.

 

3) Significantly Enhanced Processing Capability for Large Sheet Materials

Suitable for:

Large-sized thin sheets (most noticeable); stainless steel/aluminum/carbon steel; long, wide, and heavy sheets.

Actual Changes:

Originally "unable to process on a single machine" → Now, with "stable processing,"

 

4) Significantly Improved Safety

Traditional Risks:

- Sheet material sagging

Injury from manual material handling

Hands near the mold

 

Automatic Material Handling:

Automatic load-bearing

Reduced human-machine contact

Lower accident rate

 

5) High Compatibility

Compatible with various bending machines (hydraulic/electro-hydraulic/hybrid)

Independent system, no modification to the main unit

Movable and upgradeable


SHENCHONG Single-servo Hydraulic Press Brake With Bending Follower Transforms bending from "human-assisted" to "intelligent collaborative era."

When traditional bending still relies on multiple people handling materials and experience-based operation, efficiency, precision, and safety are always at odds. What we bring is not just equipment upgrades, but a completely new bending production logic.

The single-servo CNC hydraulic press brake combined with an intelligent automatic material handling system, transforms "uncontrollable human factors" into "programmable precision actions," achieving truly stable, standardized, and efficient bending production.


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