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Graphite Heated High Temperature Box Atmosphere Furnace for New Material Sintering

For your custom heating needs, reach us here:

1. Customer Profile

A domestic material technology enterprise purchased PT-A1900-80LZ graphite heated high temperature box atmosphere furnace for advanced ceramic and powder metallurgy material sintering.eH9Muffle Furnace,Tube Furnace,Vacuum Furnace,Atmosphere Furnac
eH9Muffle Furnace,Tube Furnace,Vacuum Furnace,Atmosphere Furnac
The customer is a professional domestic material technology enterprise, focusing on R&D and mass production of high-performance ceramic materials and powder metallurgy components. The enterprise urgently needed ultra-high temperature atmosphere sintering equipment to solve the bottleneck of high-temperature forming of new inorganic materials under inert protective atmosphere.
eH9Muffle Furnace,Tube Furnace,Vacuum Furnace,Atmosphere Furnac
 

2. Project Background

Traditional silicon-molybdenum heating furnaces cannot reach stable 1800℃ long-term working temperature under sealed atmosphere, and cannot meet the high-temperature sintering requirements of the customer’s high-purity ceramic products. The client put forward four core equipment demands:
  1. Support continuous stable operation at 1800℃, with peak temperature up to 1900℃;
  2. Adopt graphite heating elements to adapt to long-term oxygen-free atmosphere environment;
  3. Equipped with 400×400×500 mm effective heating chamber, matched with graphite loading plate for batch sintering;
  4. Adjustable heating rate 0–20℃/min, and the overall size can be customized according to the fixed workshop space.
 
graphite heated box atmosphere furnace
 

3. Solution & Equipment Configuration

After technical communication and scheme optimization, we delivered the PT-A1900-80LZ Graphite Heated High Temperature Box Atmosphere Furnace. Main technical specifications:
  • Model: PT-A1900-80LZ
  • Ultimate temperature: 1900℃; Continuous working temperature: 1800℃
  • Heating chamber size: 400×400×500 mm, single heating zone
  • Heating element: High-purity graphite
  • Heating rate: 0–20 ℃/min stepless adjustable
  • Standard accessory: 400×500 mm graphite bearing plate
  • Overall dimension: About 1.7m × 1.7m × 2.2m
  • Complete configuration: Horizontal box furnace body, atmosphere gas circuit system, circulating water cooling system, integrated intelligent temperature control system
We provided the overall layout drawing for customer confirmation before production to ensure the equipment perfectly matches the reserved workshop installation space. The graphite heating structure realizes uniform ultra-high temperature heating in the sealed furnace cavity, which meets the high-purity sintering demand of new materials.

eH9Muffle Furnace,Tube Furnace,Vacuum Furnace,Atmosphere Furnac
4. Project Outcomes

  1. Ultra-high temperature stable sintering: Graphite heating system supports long-term stable production at 1800℃, and the 1900℃ limit temperature meets material formula verification tests.
  2. Wide process adaptability: Freely adjustable heating rate matches multiple sintering processes of ceramics and powder metallurgy products.
  3. Low operation cost: Graphite heating elements have long service life under inert atmosphere, reducing frequent replacement and maintenance costs.
  4. Smooth batch production: The matched graphite loading plate realizes large-capacity material placement and continuous batch sintering.
  5. Perfect site adaptation: The customized overall size is completely consistent with the workshop reserved space without secondary factory reconstruction.
 

5. Customer Feedback

" This customized PT-A1900-80LZ graphite heated high temperature atmosphere furnace thoroughly solves our ultra-high temperature sintering pain point. The graphite heating structure works stably under protective atmosphere, temperature control and sealing performance are beyond expectation. The whole team provides thoughtful pre-sales drawing confirmation and reliable after-sales technical support, which greatly helps our new material mass production."