• New Silicon Steel Sheet Automatic Cut to Length Line Machine for Transformer Lamination Core with Motor PLCS Industrial Use
  • New Silicon Steel Sheet Automatic Cut to Length Line Machine for Transformer Lamination Core with Motor PLCS Industrial Use
  • New Silicon Steel Sheet Automatic Cut to Length Line Machine for Transformer Lamination Core with Motor PLCS Industrial Use
New Silicon Steel Sheet Automatic Cut to Length Line Machine for Transformer Lamination Core with Motor PLCS Industrial Use
$300000.00
Model
SCC-600
SCC-450
Basic info
Brand Wone
Model NO. New Silicon Steel Sheet Automatic Cut to Length Line Machine for Transformer Lamination Core with Motor PLCS Industrial Use
Shearing thickness 0.23-0.35mm
Shearing width 60-640mm
Shearing length 600-3500mm
Weight of material >3000kg
Series SKJ
Product Detail

Features

  • lThe high accuracy of sheet feeding and cutting is guaranteed by precise photoelectric encoder, SIEMENS AC servo drive system and SIMOTION Motion controller. 

  • lCentral positioning for whole line guide width adjustment is controlled by computer.

  • lAdoption of graphic operation terminal with human-machine menu and colored processing pattern display enables operators to complete lamination shapes confirmation and parameters input through the touch screen.

  • lCompensation and achieves rapid adjustment of cutting length.

  • lCutting function and can cut step-lap lamination automatically.

  • lPreset number of sheets can be done automatically.Punching and shearing are driven by high dynamic servomotors, efficient with low noise.

  • lAutomatic stacking is adopted to stack silicon steel sheets from largest to smallest sizes or from smallest to largest sizes.

 Composition

(1). Double head decoiler    (2). Sheet guiding device    (3). Sheet feeder

(4). Punching unit    (5). Shearing unit    (6). Discharge table   (7). Diverting mechanism

(8). Stacking trolley   (9). Control cabinet    (10). Operating console

Specifications

Item

SKJ450

SKJ600

Shearing thickness

0.23-0.35mm

0.23-0.35mm

Shearing width

40-450mm

60-640mm

Shearing length

340-2000mm

600-3500mm

Punching aperture

customized

customized

Feeding speed

240m/min

240m/min

Shear rate (length 1000 mm)

50 piece/min

50 piece/min

Shearing accuracy

±0.1

±0.1

Shearing angel accuracy

±0.01°

±0.01°

Shearing burrs

0.02mm

0.02mm

Outer diameter of coiled material

No more thanφ1000mm

No more thanφ1000mm

Coil I.D.

φ500mm

φ500mm

Weight of material

No more than 1500kg

No more than 3000kg

Spindle telescoping range of decoiler

φ470-φ520mm

φ470-φ520mm

Carried material table height

No more than 200 mm

No more than 300 mm

Discharge direction

Transverse

Transverse

41f079f02aa0afba2393a26d2eeec6e0.jpeg

d5764ac4a5f6f4b369fc089f8a869df8.jpeg

Know your supplier
Wone
Main Categories
High voltage/Low voltage/Wire cable/Instrument meters/New energy/Tester/Production equipment/Generator/Electrical fittings/Integrated Electrical Equipment
Business Type
Design/Manufacture/Sales
Highest Annual Export (USD)
$50,000,000
Professional Experience
1 years
Workplace
65666m²m²
占位
占位
Related Products
Related Knowledges
Research on Reliability Enhancement Scheme Implementation for Modular Intelligent Prefabricated Substations
Research on Reliability Enhancement Scheme Implementation for Modular Intelligent Prefabricated Substations
1 Implementation Strategies for the Scheme1.1 Deepen Survey and ResearchBefore constructing prefabricated cabin - type substations, it is necessary to conduct detailed surveys of local working conditions, clarify the construction scale and objectives, evaluate existing power facilities, plan projects, make up for infrastructure shortcomings, and adjust the construction rhythm. Meanwhile, control costs to avoid project suspension.1.2 Strengthen Structural ConstructionDuring promotion, multi - dim
Echo
06/13/2025
Comparative Analysis of 500 kV Prefabricated Substations vs. Conventional Substations
Comparative Analysis of 500 kV Prefabricated Substations vs. Conventional Substations
The secondary equipment area of conventional substations uses reinforced concrete or prefabricated steel structures, facing issues like long construction cycles, unreasonable functional zone design, strict environmental assessments, dust, noise, and disturbances. Primary and secondary equipment can only be installed after civil works and decoration, lowering construction efficiency.Prefabricated cabin substations integrate modularity, intelligence, and cost - effectiveness, boasting green, energ
Dyson
06/13/2025
Operational Analysis of Prefabricated Enclosure Substations in Extreme Cold Climate Applications
Operational Analysis of Prefabricated Enclosure Substations in Extreme Cold Climate Applications
Under global climate diversity, alpine power construction faces technical and environmental challenges. Extreme climates, complex geology, and long - term low winter temperatures, along with ice, snow, and storms, strain electrical equipment stability and power facility construction (schedule, cost, maintenance). Traditional on - site substations, with long construction and poor adaptability, can’t meet alpine regions’ fast, stable power needs.Prefabricated cabin substations, as modu
Echo
06/13/2025
Implementation of Precast Foundations for Ring-Main Unit Compact Substations in Grid Modernization Initiatives
Implementation of Precast Foundations for Ring-Main Unit Compact Substations in Grid Modernization Initiatives
Compact substation boxes, with advantages like safe operation, high reliability, and easy maintenance, are used in urban grid construction/renovation. Structurally divided into American - style (high - cost, noisy, low - efficiency, gradually phased out) and European - style (large - sized but more advantages, still popular).To address their pros/cons, ring - network prefabricated ones were developed.I. Basic Materials for Prefabricated Compact Substation BoxesMaterials need hardness, strength,
Echo
06/13/2025
The design of the three-purpose grounding transformer
The design of the three-purpose grounding transformer
Underground Power Cable Transmission LinesDirect - buried power cable lines have large ground - distributed capacitance, causing high single - phase - to - ground short - circuit capacitive current. For 10 kV lines, if this current exceeds 10 A, arcs hardly self - extinguish, risking arc overvoltage and endangering line equipment. Arc extinction is thus necessary. With a Dyn - connected main transformer, an arc - suppression coil on the secondary neutral point suffices. For Yd - connected ones,
Dyson
06/12/2025
Failure Analysis and Design Optimization of Conventional Grounding Transformers
Failure Analysis and Design Optimization of Conventional Grounding Transformers
I. Core Cause of Damage: Electrodynamic Impact (Complying with GB/T 1094.5 / IEC 60076-5)The direct cause of high-voltage winding end collapse is the instantaneous electrodynamic impact induced by short-circuit current. When a single-phase grounding fault occurs in the system (such as lightning overvoltage, insulation breakdown, etc.), the grounding transformer, as the fault current path, withstands high-amplitude and steep-rise-rate short-circuit currents. According to Ampère's force law
Felix Spark
06/12/2025
×
Inquiry
Download
Experts Electrical is dedicated to serving the personnel in the global power industry.
Join Experts Electrical, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!
商品视频播放