• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


Comprehensive High-Efficiency Furnace Transformer Solution

Rockwill
17yrs 700++ staff 108000m²+m² US$150,000,000+ China

Ⅰ. Core Pain Points & Solution Approach
Furnace equipment consumes 20%-40% of total industrial energy, with traditional transformers exhibiting excessively high core/copper losses and significant efficiency degradation under load fluctuations. This solution integrates material innovation, structural optimization, and intelligent control for all-scenario energy savings.

II. Key Technology Implementation

  1. Ultra-Low Loss Core Design
    • Employs 0.23mm thick 30ZH120 high-permeability cold-rolled silicon steel (>1.9T flux density), reducing eddy current losses by 45%.
    • Stepped stacking + vacuum epoxy impregnation minimizes magnetic circuit air gaps. No-load loss ≤0.25% rated capacity.
  2. Dynamic Copper Loss Suppression
    •Transposed conductors + foil-wound coil structure enables:
    ✓ Intelligent sectional conductor cross-sections
    ✓ Added shielding windings in high-frequency zones
    ✓ 30% reduction in resistive losses
    • Forced-directed oil circulation maintains coil hotspot temperature <65°C.
  3. Intelligent Thermoregulation System

Control Module

Functionality

PID adaptive algorithm

Real-time output voltage adjustment (±1% accuracy) based on electrode current and furnace temperature profiles (0.1°C resolution)

Off-peak power prediction

Automatically boosts melting efficiency during low-tariff periods using grid load curves

Fault fuse protection

Tiered alarms for coil ΔT>15°C or oil>75°C; power cutoff within 0.5 seconds

III. Quantified Energy Savings
vs. conventional furnace transformers:
• ​40% lower core losses: Annual reactive power savings ≈220,000 kWh
• ​35% lower copper losses: Full-load efficiency consistently >99.2%
• ​8%-12% reduction in power consumption per tonne of steel: Saves ≥¥1.5 million annually for a 50t EAF

IV. Typical Applications

  1. Steelmaking: Matches 20-150t EAFs handling frequent impact loads
  2. Non-ferrous metal casting: Suitable for Cu/Al smelting with low-voltage/high-current demands
  3. Special alloy production: Supports 0.5-35kV wide-range voltage regulation for precision temperature control

V. Full Lifecycle Services
• ​Warranty: 10-year operational lifecycle, 72-hour failure response
• ​Efficiency monitoring: IoT-enabled energy management platform with real-time loss data uploads
• ​Retrofit support: Energy-saving upgrades for existing furnace transformers (≤15-day installation cycle)

08/09/2025
Recommended
Application of New DC Circuit Breakers in Short-Circuit Fault Protection
I. Introduction​With the rapid advancement of modern information technology, intelligence has become a major trend in the development of industrial equipment. In the field of high-voltage switching, intelligent circuit breakers—as critical control components in power systems—form the foundation for automation and intelligence in power systems. This study focuses on an intelligent DC circuit breaker based on single-chip microcomputer (SCM) technology, emphasizing its practical applica
Application Solutions of DC Circuit Breakers in the New Energy Sector
I. Overview​With the rapid development of new energy power generation and electric vehicle (EV) charging facilities, DC systems have imposed higher requirements for safety protection equipment. Traditional AC circuit breakers cannot effectively interrupt DC fault currents, creating an urgent need for specialized DC circuit breaker solutions. This solution provides professional protection configurations for two major application scenarios: photovoltaic (PV) power generation systems and EV chargin
Low-Cost, Low-Loss DC Arc-Free Circuit Breaker Solution for Rail Transit
I. Solution Overview​This solution addresses the protection needs of DC systems (particularly rail transit traction power supply) against short-circuit faults by proposing a DC circuit breaker solution based on optimized mechanical breaker structure. It achieves arc-free interruption through capacitor voltage control, combining low on-state loss and high reliability, making it suitable for frequent operation scenarios.​II. Core Principle​Utilizes a fast mechanical switch topology combined with p
PEBS Circuit Breaker DC Safety Solution
Solution Overview​In modern renewable energy power systems, such as photovoltaic (PV) power generation and energy storage systems, fault protection on the DC side is a core element for ensuring safe, stable, and efficient operation. The Projoy PEBS series DC miniature circuit breakers are specifically designed for such applications, providing a comprehensive and efficient solution integrating arc control, overload protection, and short-circuit protection. This solution aims to deliver the highes
Seed Inquiry
Download
Get the IEE Business Application
Use the IEE-Business app to find equipment, obtain solutions, connect with experts, and participate in industry collaboration anytime, anywhere—fully supporting the development of your power projects and business.