Home
Goals & Services
Material analysis
Physical analysis
Shrinkage behaviour
Shrinkage analysis moulding compounds
Foaming behaviour – closed process
Foaming behaviour – open process
Rheometric analysis
Rotational rheometry
Viscosity of moulding compounds
Thermal analysis
Curing analysis, reaction kinetics
Coefficients of thermal expansion (CTE)
Mechanical testing
Tensile, bending and compression tests
Compression set
Dynamic Testing
Creep and relaxation behaviour
Hardness
Process analysis
Demoulding behaviour
Foaming pressure
Mixing behaviour
Analysis equipment
Dosing
High pressure metering and dosing
Low pressure metering and dosing
Laboratory press
Dilatometer
Knowledge Base
Materials
Polyurethane
Compact PU
PU foams
Epoxy resin
Phenolic resin
Polyester resin
Silicones
Rubber
SMC and BMC
GMT
Thermoplastics
Background
cellEQ Dilatometer
Application
Processing and production
For the material development
Simulation
Goods and production controls
Company
Team
EXIST-project
DE
EN
Home
Goals & Services
Material analysis
Physical analysis
Shrinkage behaviour
Shrinkage analysis moulding compounds
Foaming behaviour – closed process
Foaming behaviour – open process
Rheometric analysis
Rotational rheometry
Viscosity of moulding compounds
Thermal analysis
Curing analysis, reaction kinetics
Coefficients of thermal expansion (CTE)
Mechanical testing
Tensile, bending and compression tests
Compression set
Dynamic Testing
Creep and relaxation behaviour
Hardness
Process analysis
Demoulding behaviour
Foaming pressure
Mixing behaviour
Analysis equipment
Dosing
High pressure metering and dosing
Low pressure metering and dosing
Laboratory press
Dilatometer
Knowledge Base
Materials
Polyurethane
Compact PU
PU foams
Epoxy resin
Phenolic resin
Polyester resin
Silicones
Rubber
SMC and BMC
GMT
Thermoplastics
Background
cellEQ Dilatometer
Application
Processing and production
For the material development
Simulation
Goods and production controls
Company
Team
EXIST-project
DE
EN
Tensile, bending and compression tests
Tensile behaviour of plastics and rigid foams, e. g. in accordance to DIN EN ISO 527, ISO 1926
Bending behaviour of plastics and rigid foams, e. g. in accordance to DIN EN ISO 178, (DIN 53423)
Indirect temperature control with a climate chamber up to 100 °C
For
: Non-reinforced plastics like
polyurethane
,
epoxy
,
thermoplasics
and
rigid foams
Compression behaviour of foamed plastics, e. g. in accordance to DIN EN ISO 844, DIN EN ISO 3386
Determination of compression modulus and deformation-dependent compression strengths (5%, 10%, 40% [compression hardness])
Directly heated pressure plates up to 200 °C
For
: Polymer foams such as
polyurethane
(soft and rigid)
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