Vacuum Tempering Furnace

Vacuum Tempering Furnace
Vacuum Tempering Furnace
Vacuum Tempering Furnace
Vacuum Tempering Furnace
Vacuum Tempering Furnace
Vacuum Tempering Furnace
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Vacuum Heat Treatment Furnace

Horizontal Double Chamber Oil-Cooled Vacuum Tempering Furnace

Our vacuum tempering furnace performs precise tempering processes under vacuum or inert gas protection, ensuring optimal results for non-ferrous metals and molds.

After quenching, non-ferrous metals can develop cracks or surface defects. The vacuum tempering furnace resolves these issues by applying high-temperature treatment, ensuring a refined, carbon-free surface with improved smoothness and durability. This tempering process is essential for enhancing the structural integrity and performance of molds and quenched metal components, while maintaining a clean, polished finish.

Specifications
Model DB-DTG644H DB-DTG755H DB-DTG966H DB-DTG1266H DB-DTG1299H
Effective internal dimensions (mm) 600×400×400 700×500×500 900×600×600 1200×600×600 1200×900×900
Max. load capacity (kg) 200 300 500 800 1200
Heating power (kW) 40 60 80 120 180
Max. temperature (℃) 750 750 750 750 750
Ultimate vacuum level (Pa) 4×10⁻³/4×10⁻⁴ 4×10⁻³/4×10⁻⁴ 4×10⁻³/4×10⁻⁴ 4×10⁻³/4×10⁻⁴ 4×10⁻³/4×10⁻⁴
Temperature uniformity (℃) ±5 ±5 ±5 ±5 ±5
Max. cooling gas pressure (bar) 6/10 6/10 6/10 6/10 6/10
Pressure rise rate (Pa/h) 0.5/0.27 0.5/0.27 0.5/0.27 0.47 0.5/0.27
Transfer time (S) 10 15 18 21 25

The above parameters are for our standard horizontal double-chamber high-pressure gas cooling vacuum furnace. We offer customized, non-standard designs and manufacturing to meet specific customer requirements, such as achieving an ultimate vacuum level of 10⁻⁴ Pa or higher and a pressure rise rate better than 0.1 Pa/h.

Key Advantages
  • Provides safe and eco-friendly heat treatment solutions, using clean energy, reducing harmful emissions, and ensuring operational safety.
  • Designed for operational flexibility, allowing the furnace to be started and stopped as needed to reduce energy waste and optimize production cycles.
  • Ensures high surface quality and minimal deformation during heat treatment, enhancing product reliability.
  • Features advanced automation capabilities, reducing manual intervention and significantly improving production efficiency.
  • Designed for ease of maintenance and cost efficiency, reducing downtime and operational expenses.
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