Full Electric Injection Molding Machine

This full electric injection molding machine is designed for precision, high-speed, energy-saving, and environmental protection. It is widely used in electronics, communication, optics, medical treatment, food, and consumable goods industries.

GSK AE80 Full Electric Injection Molding Machine - Image 1

Technical Specifications

Product Overview

High-Performance Electric Injection Molding

This full electric injection molding machine is engineered for high-precision manufacturing, combining advanced mechanical design with sophisticated servo control. It delivers exceptional speed, energy efficiency, and environmental performance, making it an ideal solution for industries such as electronics, communication, optics, medical, and consumer goods. With core components like high-load ball screws and high-performance servo systems, it provides a stable and reliable foundation for complex molding requirements.

Key Features

Core Advantages

Full Electric DriveHigh PrecisionEnergy EfficientHigh-Speed Operation

Suitable Industries
ElectronicsCommunicationOpticsMedicalConsumer Goods

Technical Specifications

Core Components

  • High-performance servo motor
  • Advanced servo drive system
  • Heavy-loading high-precision ball screw
  • Integrated control system

Clamping Mechanism
Five-point toggle mold-clamping unit with high strength and high-speed closing characteristics

Side profile of the full electric injection molding machine showing robust frame and linear guides.
The machine features a robust frame and linear guides for smooth, accurate movement.
Close up of high-performance servo motor and ball screw components.
High-precision ball screws and servo drive systems ensure reliable and accurate mold movement.

Performance Metrics

Efficiency Features

FeatureBenefit
Synchronized MovementOptimized cycle timing for mold closing, injection, and ejection
Servo ControlReduced energy consumption and faster cycle times
Structural DesignHigh rigidity for minimal displacement and consistent part quality

Finite element analysis visualization showing stress distribution on the machine frame.
Structural optimization analysis ensures high rigidity and minimal displacement under load.
Performance comparison graph showing higher injection speed and shorter cycle times.
Performance data demonstrates superior injection speeds and shorter cycle times compared to standard models.
Diagram comparing operational sequences with and without synchronized movement.
Synchronized movement capabilities optimize the operational sequence for enhanced efficiency.

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