Current research projects

Image Certification of efficient air conditioning and ventilation systems through the new "indoor air quality seal" for non-residential buildings
Image Ice Slurry Generation
Image Cool Up
Image Low Temperature Tribology
Image All-in-one device for freeze-drying and production of biomaterial
Image Breakthrough Sensor for Adsorption Filters (BelA)
Image Software modules
Image ZeroHeatPump
Image Heat2Power
Image Overall System Optimization of Refrigeration Plant Systems for Energy Transition and Climate Protection
Image Testzentrum PLWP at ILK Dresden
Image Investigation of material-dependent parameters
Image Certifiable connection types in cryogenics
Image Low Temperature Measuring Service
Image Hydrogen and methane testing field at the ILK
Image Electrical components in refrigeration circuits

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Investigation of material-dependent parameters

Industry and R&D

Gunar Schroeder

+49-351-4081-5129

Investigation of the permeation behavior

Permeation is the penetration of solid matter by another substance. The driving force for this is a gradient of the chemical potential of the permeate. In practice, this gradient is replaced by a measurable quantity such as the pressure gradient. The permeability of a material depends on the surface temperature and is usually specified with the unit \( \frac{\mu g}{cm^2\:min} \)

Without external influences, the permeate always moves in the direction of the lower concentration or the lower partial pressure. For theoretical consideration, permeation can be divided into three sections across the solid:

  • Sorption, for example, a gas is absorbed at the surface of the solid
  • Diffusion, this gas diffuses through the solid through molecular gaps towards the surface with a lower gas concentration
  • Desorption, the gas is released again from this surface

The experimental setup to investigate this process, see the following figures, essentially consists of a sample chamber. The sample is mounted with a seal or against a sealing surface. A test gas with a defined overpressure is applied to the volume on the "left" of the sample. The volume to the "right" of the sample is connected to a detector. The pressure on both sides of the sample, the temperatures and the gas flow rate are measured over a longer period of time (24 - 48 h).

Parameter Sample limits
materials plastics, metals
dimensions, diameter, and wall thickness 58 ... 60 mm, 1 ... 3 mm
other dimensions on request
pressure difference up to 10 bar (145 psi)
temperature range room temperature, other conditions on request
test gas helium or hydrogen
detector measuring range up to \(10^{-9} \frac{mbar\:l}{s} \), optional with calibration

 


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Further Projects - Measurements and Tests

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Refrigerants, lubricants and mixtures

Determination of working fluid properties

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Measurements on ceiling mounted cooling systems

Comparative performance measurement

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Solar Cooling

Solar Cooling with Photovoltaic

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Hydrogen and methane testing field at the ILK

Simultaneously pressures up to 1,000 bar, temperatures down to –253°C

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Calibration of Low Temperature Sensors

According to the comparative measurement method