



































































































































































































































































Datagest
Software
Gibitre Software
Platform
Smart Test
Identification
RheoCheck
Software
Mooney
Check - Software
Density
Check - Software
Hardness
Check - Software
Tensor
Check - Software
TR_Test -
Software
Brittleness
Check -
Software
PressCheck
Software
Compression
Set -
Software
Company Connection
Software
Gibitre
Software Installer
Maintenance and Calibration Service
ISO 17025 Accredited Calibration
Remote Assistance Service
Support request form



















































































































































































































































































































































Italiano
English
Español
Français
Deutsch
Português
Polskie
Čeština
Magyar
Русский
Türk
中文
日本人
한국어
Arab










































This calculation returns the Maximum Stress recorded during the Test.
REFERENCE STANDARD: ISO 37, ISO 527, ASTM D412
UNIT: N/mm2, MPa, Kg/cm2

This calculation returns the Strain of the sample corresponding to Maximum Tensile Strength.
REFERENCE STANDARD: ISO 37, ISO 527, ASTM D412
UNIT: %

This calculation returns the Break Stress of the sample.
REFERENCE STANDARD: ISO 37, ISO 527, ASTM D412
UNIT: N/mm2, MPa, Kg/cm2

This calculation returns the Strain at break of the sample.
REFERENCE STANDARD: ISO 37, ISO 527, ASTM D412
UNIT: %


This calculation returns the % variation of Tensile Strain at break after an aging treatment of the samples. The instrument permits to select the samples tested before the aging and compares automatically the mean Tensile Strain before aging with the one after aging.
REFERENCE STANDARD: ISO 37, ISO 527, ASTM D412
UNIT: %
This calculation returns the Stress reading at set elongation.
REFERENCE STANDARD: ISO 37, ASTM D412
UNIT: N/mm2, MPa, Kg/cm2
CALCULATION PARAMETERS:
- Elongation (Strain %)
- Calculation Cycle (for test methods which include repeated sample deformations)

This calculation returns the Elongation reading (Strain %) at set Stress.
REFERENCE STANDARD: ISO 37, ASTM D412
UNIT: %
CALCULATION PARAMETERS:
- Stress (N/mm2)


This calculation returns the Break Force of the sample.
UNIT: N, Kg

This calculation returns the test lenght (mm) of the sample at Break.
UNIT: mm

This calculation returns the Elongation (mm) of the sample at the set Force.
UNIT: mm
CALCULATION PARAMETERS:
- Force (N)
- Run measure (0 = Crosshead , 1 = Extensometer)
- Direction and Cycle (example: -3: calculation is made during the 3° deformation cycle when the set force is reached with negative speed = crosshead moving downwards)


This calculation returns the Tear Strengh of the sample according to ISO 34-1 or similar standards. The Tear Strenght is measured a the Maximum Force (N) needed to tear the sample divided for the Thickness of the sample (mm).
The calculation is different for Trouser-type sample (see Multi-Peak calculation)
UNIT: N/mm

Multi-Peak curve analysis is performed according to the requirements of ISO 6133 Standard. This calculation is needed for the measure of:
- Tear Strenght accoring to ISO 34-1 Trouser type
- Peeling test according to several standards
Several calculation methods of the curve are selectable in conformity with ISO 6133, PSA D41 1315, DIN 53 530 and more
UNIT: N/mm
CALCULATION PARAMETERS:
- Start Calculation from (mm)
- Stop Calculation at (mm)
- Calculation Method to be used

This calculation returns the Hysteresis Energy N*mm ie the energy lost during the execution of the load and unload of the sample. The result corresponds to the area of the loop corresponding to the load-unload cycle.
UNIT: N*mm or % (in this case the energy loss is expressed as % of the energy applied in the loading cycle)
CALCULATION PARAMETERS:
- Cicle for the calculation
- Run measure (0 = Crosshead , 1 = Extensometer)


This calculation returns the Delta Hysteresis ie the difference of energy lost during cycle x and cycle y. The result corresponds to the difference of the areas of the loops corresponding to the load-unload cycles selected. This calculation permits to evaluate how the characteristics of the sample modify by applying a repetitive cyclic force.
UNIT: N*mm or % (in this case the energy loss is expressed as % of the energy applied in the loading cycle)
CALCULATION PARAMETERS:
- Number of the First cycle to consider for the calculation
- Number of the Second cycle to consider for the calculation
- Run measure (0 = Crosshead , 1 = Extensometer)

This calculation returns the minimum value of Stress measured at cycle n during a repetitive loading cycle
UNIT: Mpa (or other Stress unit)
CALCULATION PARAMETERS:
- Number of the cycle to consider for the calculation

This calculation returns the Maximum value of Stress measured at cycle n during a repetitive loading cycle
UNIT: Mpa (or other Stress unit)
CALCULATION PARAMETERS:
- Number of the cycle to consider for the calculation


This calculations returns the variation of minimum (or Maximum) values between two selected cycles during a repetitive loading cycle
UNIT: Mpa (or other Stress unit)
CALCULATION PARAMETERS:
- First Cycle considered for the calculation
- Second Cycle considered for the calculation

This calculation returns the Coefficient of Static Friction calculated according to ISO 8295 and ATE 553.59.25.
The results is calculated measuring the maximum horizontal force (N) requested to start the displacement of a sample fixed to a spide placed on a reference surface. The measured force is divided for the vertical force applied to the sample.
UNIT: Number (N/N)
CALCULATION PARAMETERS:
- Vertical force applied to the sample
- Maximum run to be considered for the calculation

This calculation returns the Coefficient of Static Friction calculated according to ISO 8295 and ATE 553.59.25.
The results is calculated measuring the Mean Horizontal Force (N) requested to keep moving a sample fixed to a spide placed on a reference surface for a defined run. The measured force is divided for the vertical force applied to the sample.
UNIT: Number (N/N)
CALCULATION PARAMETERS:
- Vertical force applied to the sample
- Minimum run to be considered for the calculation


This calculation returns Elastic Modulus according to ISO 527.
PARAMETERS:
From % (ISO 527: 0.05)
To % (ISO 527: 0.25)
Run: Crosshead or Extensometer
UNIT: MPa, N/mm2
NOTE: Calculation: (Stress2-Stress1)/(Strain2-Strain1) (strain is expressed as number, not as %)
The testing of silicon pads requires a specific set of calculation results to be detected during the application of the deformation cycle.
The force, the displacement and the sensibility of the measure must be set according to the shape of the sample. The image describes the typical calculation points requested.
CALCULATION PARAMETERS:
- Sensibility of the measure
























