

Push-Type Carburizing Furnace Automated Production Line
The
pusher-type carburizing furnace automatic production line is a highly
automated heat treatment system designed for large-volume, continuous
manufacturing. It is ideally suited for the carburizing carbonitriding
of mechanical components—such as gears, bearings, drill bits—used in a
wide range of mechanical products, including automobiles, agricultural
vehicles, tractors, bearings, oil drilling rigs. The complete line
typically consists of the following core components: a pre-oxidation
furnace, a carburizing furnace ( quenching heating furnace), quenching
equipment, cleaning equipment, a tempering furnace, an automatic
control system. Depending on production volume requirements, the system
can be configured as a single-row, double-row, triple-row furnace
layout.
Equipment Features:
● Pre-treatment
Furnace: Utilizes a centrifugal fan, radiant tube heaters, a hot air
circulation heating method to achieve furnace temperature uniformity of
±5°C. Pre-treating parts in this furnace accelerates the carburizing
rate improves the uniformity of the carburized layer.
● Unique
Bottom-Loading Mechanism: After pre-oxidation, workpieces enter the
carburizing chamber via a unique bottom-loading device. This design
minimizes the escape of furnace atmosphere, reduces the impact of
loading on the furnace's carbon potential, decreases the accumulation
of carbon soot inside the furnace.
● Carburizing Furnace Heating:
Employs electric radiant tube heating controlled by a Thyristor Power
Regulator (SCR) intelligent instrumentation for continuous temperature
adjustment, achieving a furnace temperature uniformity of ±7°C. After
carburizing, the depth deviation of the treated layer can be controlled
within ±0.1 mm. Alternatively, gas burners utilizing fuels such as
natural gas can be employed, achieving a thermal efficiency of up to
80%.
● Flexible Carburizing Atmosphere Options: Supports a variety of
carburizing atmospheres, including endothermic gas atmospheres,
nitrogen-methanol atmospheres, other drip-feed atmospheres.
● Carbon
Potential Control System: Comprises imported carbon potential
controllers, oxygen probes, control valves to precisely regulate the
carbon potential of the furnace atmosphere, achieving a control accuracy
of ±0.05%.
● Post-Carburizing Processing: Parts can undergo direct
quenching, press quenching, slow cooling immediately after carburizing,
offering comprehensive functional versatility.
● Multi-functional
Cleaning Machine: Features a single-chamber structure with both
immersion spray cleaning capabilities. Process times are adjustable,
water temperature liquid levels are automatically controlled. Equipped
with an oil-water separator, the unit delivers excellent cleaning
results while allowing for the recovery of waste oil.
●
Low-Temperature Tempering Furnace: Employs a centralized hot air
circulation heating method to achieve a furnace temperature uniformity
of ±3°C.
●
The furnace hearth tray conveyor rails are constructed silicon
carbide, offering excellent high-temperature corrosion resistance, high
mechanical strength, a low coefficient of friction.
● The control
system for the pusher-type furnace comprises three main components—an
industrial PC, a program execution master control system, an operator
console—forming a complete distributed control architecture. Users can
monitor the operational status of the entire equipment suite at a glance
via the operator console the IPC display. The PC interface provides
access to comprehensive information, including a system overview,
process parameters, tray tracking, offline simulation, password
management, system help, exit functions.
● Compared to pit-type
furnaces, this continuous automatic carburizing line achieves energy
savings of 40–50%, while simultaneously reducing labor requirements
auxiliary material consumption, as well as mitigating environmental
pollution.
Main Technical Parameters:

