PUSHER TYPE CONTINIOUS FURNACE FOR AMORPHOUS

PUSHER TYPE CONTINIOUS FURNACE FOR AMORPHOUS

PUSHER TYPE CONTINIOUS FURNACE FOR AMORPHOUS

As a premier manufacturer of industrial heat treatment equipment, we specialize in Pusher Type Furnaces across India. These high-volume, continuous furnaces are indispensable for mass production applications, offering automated material handling and consistent thermal processing.1 Our systems are designed for high throughput, exceptional energy efficiency, and precise control, making them the ideal solution for large-scale heat treatment operations where uniformity and speed are paramount.2

 

Key Features & Highlights

Our Pusher Type Furnaces are engineered for continuous, high-efficiency operation:3

  • Continuous Operation & High Throughput: Designed for seamless, automated material flow, significantly increasing production capacity and minimizing labor costs compared to batch systems.4
     
  • Uniform Heat Treatment: Features multiple control zones and powerful circulation systems to ensure exceptional temperature uniformity and consistency for every component as it moves through the furnace.5
     
  • Modular Construction: Built with a modular design, allowing for easy expansion, customization of zone lengths, and simple maintenance access.6
     
  • Automated Pushing Mechanism: Equipped with robust hydraulic or electromechanical pushing systems that provide precise, timed indexing of furnace trays (jigs) or components.7
     
  • Controlled Atmosphere Compatibility: Can be configured to operate under various protective or reactive atmospheres (e.g., endothermic gas, nitrogen, ammonia) for processes like carburizing, carbonitriding, or annealing.8
     
  • Energy Efficiency: Utilizes high-grade refractory lining and insulation, along with recuperative systems where applicable, to minimize heat loss and reduce operating costs.9
     

Technical Specifications (Standard Model Example)

Parameter

Specification

Furnace Type

Continuous Pusher Type (Single or Multi-Track)

Max. Operating Temperature

to  (Process dependent)

Temperature Control

Multi-Zone (5+ zones typically) PID with SCR power control

Temperature Uniformity

or better (Working Zone)

Atmosphere

Endothermic, /Methanol, Nitrogen, or Air

Heating Media

Electrical (High-density Radiant Tubes) or Gas Fired (High-Velocity Burners)

Tray Size

Customizable based on throughput and component dimensions

Automation

PLC Control with HMI for process sequence, speed, and data logging

 

Typical Applications

Pusher Type Furnaces are the backbone of high-volume manufacturing heat treatment, serving industries such as:

  • Automotive: Carburizing and quenching of transmission components, gears, shafts, and fasteners.10
  • Bearing Industry: Hardening, tempering, and annealing of bearing races and rolling elements.
  • Forging: Normalizing and tempering of hot-forged parts.
  • Powder Metallurgy (PM): Sintering of PM components.11
  • Heavy Machinery: Heat treatment of various small- to medium-sized mass-produced components.