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trodeks-HBM Strain Gages | High Temperature and Resistance to Alternating Loads
HBM-M-Series
PLACE ORDER - High Resistance to Alternating Loads
- High Temperature Range 300°C (572°F)
- Wide Spectrum of Different Types
Description
Description
M Series strain gages have been specially developedfor high resistance to alternating loads at increasedstrain levels and high temperatures up to 300°C(572°F). They are foil strain gages with measuring gridsmade of a special nickel-chromium alloy. trodeks/HBMoffer this special strain gage with various geometries,measuring grid lengths and temperature responsematching.
New materials offering high strength such as fibercomposites pose a major challenge for strain gagesused for measurements specifically when pushingcomponents to their mechanical limit of performance.Situations may arise where a strain gage subjected toalternating loads at increased load levels is weakenedand fails earlier than the component under test.The M Series has been specially developed for highresistance to alternating loads and allows for testingof materials featuring high strength.
All M Series strain gage types are available withdifferent measuring grid lengths:
• 1.5 mm: where space is a constraint or when highly selective measurement results are required
• 3 mm: for inhomogeneous materials and where space is a requirement or not
• 6 mm: for inhomogeneous materials and where space is not a requirement
The right measuring grid length: The measuring gridlength depends on the aim of measurement, sincethe result of a measurement with strain gages willbe determined as the average of strains. In general,measuring grid lengths of 3 to 6 mm (0.06 to 0.24")generates a better result.
Long measuring grids are recommended where thereis an inhomogeneous material such as concrete orwood. A long strain gage will bridge the inhomogeneityof the work piece and return the strain underneath themeasuring grid as the measurement result.
Short measuring grids are suitable for detecting a localstrain state. Therefore, they are suitable for determiningstrain gradients, the maximum point of notch stressesand similar stresses.
Specifications
Strain Gage Construction–Foil Strain Gage
Carrier:
Material: Glass fiber reinforced phenolic
Thickness: 35 ±10 µm
Grid Foil:
Material: CrNi
Thickness: 5 µm
Encapsulation:
Material: Polyimide film
Thickness: 25 ±5 µm
Connections: Solder pads with strain relief
Resistance: 350 and 1000 Ω
Resistance Tolerance: ±0.3%(1)
Gage Factor: Approximate 2.2 (specified on each package)
Gage Factor Tolerance: ±1.5% (for grid length <3 mm) ±0.7% (for grid length ≥3 mm)
Temperature Coefficient of the Gage Factor: Specified on each package
Transverse Sensitivity: Specified on each package
Operating Temperature Range: -200 to 300°C (-328 to 662°F)
Temperature Response (Ferrite Steel): 10.8 ppm/K (6.0 ppm/°F)
Maximum Elongation:
Positive Direction: 10,000 µm (1%)
Negative Direction: 15,000 µm (-1.5%)
Minimum Bending Radius: 5 mm (0.20") for linear gages 10 mm (0.39") for stacked rosettes
Bonding Material that Can Be Used: Z70 or EP310S
Fatigue Life (Test to Failure):
107 cycles at 2000 µm/m
106 cycles at 2200 µm/m
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