• Slide-Rapid Cooling Tube Furnace
  • Slide-Rapid Cooling Tube Furnace
  • Slide-Rapid Cooling Tube Furnace
  • Slide-Rapid Cooling Tube Furnace
  • Slide-Rapid Cooling Tube Furnace
  • Slide-Rapid Cooling Tube Furnace
  • Slide-Rapid Cooling Tube Furnace
  • Slide-Rapid Cooling Tube Furnace

Slide-Rapid Cooling Tube Furnace

Operating within a temperature range of 0-1200°C, it features a high-purity quartz tube and an intelligent 50-segment programmable control system. The temperature can drop from 1200°C to 100°C within 5 minutes. Vacuum pump integration is optional.

  • Vertical/Rotary/Multi-Temp Zone
  • Heating Rate ≤20℃/min
  • Provide Customized Services
  • Temp Control Accuracy 1℃

Introduction

Brother Furnace sliding tube furnace uses high-purity quartz tubes as furnace tubes, with an operating temperature range of 0°C to 1200 °C. This equipment series has the characteristics of safety, reliability, simple operation, high-temperature control accuracy, good insulation effect, and high furnace temperature uniformity, and can be used for vacuuming through the atmosphere. It is widely used in Universities, scientific research institutes, and industrial and mining enterprises engaged in graphene growth, high-temperature atmosphere sintering, atmosphere reduction, CVD experiments, and vacuum annealing.

Slide-Rapid-Cooling-Tube-Furnace-1-3
Slide-Rapid-Cooling-Tube-Furnace-5
Slide-Rapid-Cooling-Tube-Furnace-6

Features

  • Maximum temperature: 1200 ℃ ( HRE resistance wire heating).
  • Intelligent 50-segment programmable automatic control.
  • Over-temperature protection function automatically cuts off power when the temperature exceeds the allowed set value.
  • Safety protection: Automatically cut off power when the furnace body leaks electricity.
  • Furnace shell structure, double-layer air-cooling structure; surface temperature is lower than 50 ℃.
  • The furnace adopts high-quality alumina polycrystalline fiber inorganic material formed by vacuum adsorption using Japanese technology, which has excellent thermal insulation performance.
  • 304 stainless steel KF quick-release sealing flange.
  • Equipped with electric slide rails (standard configuration 1200mm long), the furnace body can automatically move left and right without manual supervision. It can achieve rapid cooling and meet the experimental requirements for sudden cooling and sudden heating of materials.
  • Heating rate ≦20℃/min.
  • Temperature control accuracy ±1℃.
  • Maximum vacuum degree -0.1MPa.
  • The molecular pump unit can be configured, and the vacuum degree can reach 7x10-3Pa.

The Structure of the Sliding Rapid Cooling Tube Furnace

Optional configuration

The furnace can be equipped with a communication interface and software, which can directly control various parameters of the furnace through the computer, and can observe the PV and SV temperature values of the furnace and the operation of the instruments from the computer. The actual heating curve of the furnace will be displayed on the computer. It can be drawn in real time, and the temperature data at each moment can be saved and can be recalled at any time.

Optional Accessories

  • 4 pipe plugs; 1 furnace pipe; 1 vacuum pump
  • 1 set of vacuum sealing flange; 1 vacuum pressure gauge

Technical Parameters

According to the on-site experimental conditions of different customers, Bonage's professional technical staff can tailor different parameters and furnace types for you!

model

Furnace tube diameter x heating zone length ( mm )

Power ( kW ) _

Maximum temperature ( ℃ )

Working temperature ( ℃ )

Thermocouple

Furnace tube material

Heating element

BR-12SNT-40/300

40x300

3

1200

1100

K type

Quartz tube

Iron chromium aluminum resistance wire

BR-12SNT-60/300

60x300

3

BR-12SNT-80/300

80x300

5

BR-12SNT-100/300

100x300

5

BR-12SNT-120/300

120x300

6

Get In Touch

If you have any questions,just fill in the contact form ,and we will answer you shortly.

Need help? Send message now!

This website uses cookies to ensure you get the best experience on our website. Please click the accept button before continuing.

Accept Reject