DSC 204 HP Phoenix

High-Pressure DSC Up To 150 Bar

High-Pressure DSC Up To 150 Bar

High-Pressure DSC Up To 150 Bar

Model No. :

Brand : Netzch

The DSC 204 HP Phoenix is a specialized thermal analysis instrument designed to measure heat flow under high-pressure conditions. It allows researchers to investigate phase transitions, chemical reactions, and oxidative stability within a precisely controlled pressure and gas flow environment.

  • Operating pressure range from vacuum to 150 bar

  • Temperature capabilities from -150°C to 600°C

  • Precise gas flow control for reactive atmospheres

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− Features

  • High-Pressure Analysis: Engineered to perform measurements at pressures up to 15 MPa (150 bar), making it ideal for studying the influence of pressure on thermal effects such as vapor pressure, adsorption, and polymer curing.
  • Broad Temperature Range: Features a flexible cooling and heating system that operates from cryogenic temperatures of -150°C up to 600°C, providing comprehensive data for a wide variety of materials.
  • Integrated Gas Dosing: Equipped with a built-in mass flow control system for up to three different gases, ensuring highly accurate and reproducible atmospheres for oxidation induction time (OIT) and kinetic studies.
  • Advanced Pressure Safety: Built with a robust pressure cell and integrated safety valves, the unit ensures secure operation even when working with flammable or reactive gas environments at maximum pressure.
  • Enhanced Sensitivity: Utilizes a high-resolution sensor capable of detecting subtle enthalpy changes, allowing for the precise determination of specific heat capacity and phase transition temperatures under load.

+ Technical Specifications

+ Standards

+ Software

Features
  • High-Pressure Analysis: Engineered to perform measurements at pressures up to 15 MPa (150 bar), making it ideal for studying the influence of pressure on thermal effects such as vapor pressure, adsorption, and polymer curing.
  • Broad Temperature Range: Features a flexible cooling and heating system that operates from cryogenic temperatures of -150°C up to 600°C, providing comprehensive data for a wide variety of materials.
  • Integrated Gas Dosing: Equipped with a built-in mass flow control system for up to three different gases, ensuring highly accurate and reproducible atmospheres for oxidation induction time (OIT) and kinetic studies.
  • Advanced Pressure Safety: Built with a robust pressure cell and integrated safety valves, the unit ensures secure operation even when working with flammable or reactive gas environments at maximum pressure.
  • Enhanced Sensitivity: Utilizes a high-resolution sensor capable of detecting subtle enthalpy changes, allowing for the precise determination of specific heat capacity and phase transition temperatures under load.
Temperature range -150°C to 600°C, depending on gas pressure and type
Heating rate 0.01 K/min to 100 K/min, depending on gas pressure and type
Cooling device Liquid nitrogen; temperature range depends on gas pressure and type
Pressure range Vacuum to 150 bar (15 MPa, ≈ 2175 psi)
Pressure measurement ▪ Precision: ± 0.15 bar
▪ Accuracy: ± 0.75 bar
Atmosphere Static and/or dynamic, inert (N₂, noble gases), reducing (H₂)*, oxidizing (O₂, air, CO₂ up to 57 bar); other gases on demand
Gas flow Up to 500 ml/min, accuracy ±1 ml/min
Operation modes Various static and dynamic gas atmospheres and pressure conditions

Proteus: Excellent Thermal Analysis Software

The DSC 204 HP Phoenix runs under Proteus Software on Windows. The Proteus Software includes everything you need to carry out a measurement and evaluate the resulting data. Through the combination of easy-to-understand menus and automated routines, a tool has been created that is extremely user-friendly and, at the same time, allows sophisticated analysis. The Proteus Software is licensed with the instrument and can of course be installed on other computer systems.

DSC features:

  • Determination of onset, peak, inflection and end temperatures
  • Automatic peak search
  • Transformation enthalpies: analysis of peak areas (enthalpies) with selectable baseline and partial peak area analysis
  • Evaluation of Crystallization
  • Comprehensive glass transition analysis
  • Automatic baseline correction
  • Specific heat determination
  • Recording and evaluation of the pressure signal

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