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Annealing furnace for vacuum applications (GLO)

Annealing furnace for vacuum applications (GLO)

Product Details:

  • Temperature Range Up to 1250C
  • Capacity 10 to 1000 Kg (customizable)
  • Feature Uniform temperature distribution, Controlled atmosphere
  • Measurement Range Ambient to 1250C
  • Core Components Vacuum Chamber, Heating Elements, Control System
  • Frequency 50/60 Hz
  • Model No GLO Series
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Annealing furnace for vacuum applications (GLO) Price And Quantity

  • 1 Piece
  • 5000 INR

Annealing furnace for vacuum applications (GLO) Product Specifications

  • Digital PID Controller
  • Vacuum Annealing Furnace
  • Up to 1250C
  • Uniform temperature distribution, Controlled atmosphere
  • 10 to 1000 Kg (customizable)
  • Ambient to 1250C
  • Custom, based on capacity
  • Industrial Heat Treatment, Annealing under vacuum
  • 1C
  • Stainless Steel, High-Quality Insulation
  • 220/380 V (as per requirement)
  • Vacuum Chamber, Heating Elements, Control System
  • 50/60 Hz
  • GLO Series
  • Semi-automatic/Automatic available
  • Electric
  • Varies with model

Annealing furnace for vacuum applications (GLO) Trade Information

  • 5-10 Piece piece Per Month
  • 6-8 Week

Product Description

The annealing furnace type GLO is a group of gastight, retort type furnaces heated from the outside. They are especially designed for processes in which a specific atmosphere needs to be reliably maintained within the furnace chamber. The standard sizes are available for temperatures of 600/900/1100C and can also be used for heat treatment under vacuum up to 600C.

The furnaces may be operated with reaction gases (e.g. hydrogen) if equipped with the appropriate safety technology. The debinding package allows debinding or pyrolysis processes to be carried out without the need for condensate traps.
The furnaces have a compact, space-saving design. To protect the special sealing material, the furnace doors have an incorporated water-cooling system.

Applications

annealing, brazing, carbonisation, crystal growth, debinding, degassing, glowing, hardening, rapid prototyping, siliconization, sintering, soldering, sublimation, synthesis, tempering

Technical data for: Annealing furnace for vacuum applications (GLO)

Product Advantages

  • External heating elements
  • Dual-zone tube heating element, including special door heater (option)
  • Incorporated door water-cooling system for protection of sealing
  • Retort made of 1.4841 stainless steel
  • Temperature deviation in internal chamber space of max. T 6 K (max. T 10 K for GLO../11)

Subject to technical modifications and errors



Advanced Vacuum Annealing Technology

The GLO Series furnace delivers uniform temperature distribution and a precisely controlled atmosphere for high-grade industrial heat treatment. Designed with stainless steel chambers, high-quality insulation, and corrosion-resistant lining, it ensures durability under continuous operation. Choice of FeCrAl or MoSi2 heating elements allows compatibility with temperatures up to 1250C, suitable for diverse annealing requirements.


Flexible Operation and Automation

With semi-automatic or fully automatic options, the furnace uses a digital PID controller with microprocessor-based PLC/HMI integration. The adjustable measurement range from ambient to 1250C, along with inert gas/nitrogen/argon purge facilities, offers versatile process customization. Custom dimensions and a range of capacities make it adaptable to different industrial scales.


Comprehensive Support and Compliance

Meeting strict CE and ISO standards, the GLO Series is supported by installation and on-site services across India and international markets. The user interface operates in English, with additional languages available upon request. Each unit is supplied with robust safety systems, including vacuum interlocks and over-temperature protection, for reliable operation.

FAQs of Annealing furnace for vacuum applications (GLO):


Q: How does the vacuum annealing process work in the GLO Series furnace?

A: The process removes contaminants and prevents oxidation by operating at high vacuum (down to 10 mbar) or in a controlled inert atmosphere. Materials are heated at rates up to 20C/min, annealed at desired temperatures (up to 1250C), and then cooled using natural, forced air, or optional water cooling.

Q: What industrial applications benefit most from this vacuum annealing furnace?

A: This furnace is ideal for industrial heat treatment, especially for metals and alloys requiring oxidation-free annealing, such as electronics, aerospace components, and precision engineering. Its uniform temperature distribution and high atmosphere control make it suitable for processes sensitive to contamination.

Q: When should I opt for forced air or water cooling over natural cooling?

A: Forced air or water cooling is recommended when rapid cooling is essential or when processing large or heat-sensitive parts. It helps achieve precise thermal cycling and enhances productivity, while natural cooling suits smaller loads or processes not requiring fast cooldowns.

Q: Where is installation and service support available for the GLO Series furnace?

A: Installation and on-site support are available throughout India and for export customers. The manufacturer offers full service from commissioning to maintenance, with staff able to provide support in English and other requested languages.

Q: What makes the GLO Series furnace safe and reliable for continuous operation?

A: The GLO Series features built-in over-temperature protection, a vacuum integrity interlock, and a corrosion-resistant chamber lining. The PLC/HMI control system ensures precise monitoring, while safety mechanisms and adherence to CE & ISO regulations guarantee reliable operation.

Q: How is atmosphere control managed within the furnace chamber?

A: The furnace chamber is gas-tight and allows controlled purging with inert gases, including nitrogen and argon, to maintain a clean, tailored environment for annealing. This facilitates high-quality results and prevents unwanted chemical reactions with the processed materials.

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