
FTI's Materials Testing Facility is an advanced mechanical
testing laboratory with over 18 years of experience
in static, fatigue and fracture testing of metals and
composites. Major government and aerospace industry
organizations recognize FTI’s Materials Testing
Facility as a leading specialist in fatigue and crack
growth testing. With our complete in-house CNC machining
production facility, we are able to manufacture both
metal and composite test specimens and other specialized
fixtures. We use the latest computer-aided design/analysis
(CAD/CAE) and program management tools to support out
customers' test programs.

• Fatigue and crack growth under constant-amplitude or
spectrum loading
• Fracture toughness and related tests
• Static testing including tension, compression, flexure
of specimens and sub-components
• Environmental conditioning of metals and composites
All testing performed to ASTM or military standards
and/or customer specifications
• Metallic specimen manufacturing and preparation
• Spectrum and load program development
• Custom test procedure development and specimen design
• Material allowable's generation
• Composite specimens preparation
• On site cold expansion tooling design for special applications
• Cold expansion processing of parts
• Technical reports including data, test procedure and
explanation of results
• MTS Uniaxial Test Frames with TestStarII™ and
TestStarIIs™ controllers
• Load capacity to ± 100,000 lbs. (445kN) and low
load capacity control to ± 30 lbs. (134N)
• -300°F to +2,000°F (-149°C to +1093°C)
temperature available during testing
• Strain gage instrumentation
• Automated crack growth measurement
• Standard and non-standard fixtures
• FTI designed Digital Traveling Microscope
Test
Type: Metallic
Static Property
|
Standard
Test Method |
Tension
Compression
Bearing
Subcomponent
|
ASTM E8, E21
ASTM E9
ASTM E238
NA |
Test
Type: Metallic
Fatigue
|
Standard
Test Method |
Axial
Flexure
Low-cycle
Subcomponent
Quasi-random (spectrum) loading
Spectrum crack growth (a vs. N)t
|
ASTM E466
NA
ASTM E606
NA
NA
NA |
Test
Type: Metallic
Fracture Mechanics
|
Standard
Test Method |
Sharp notch tension
Surface crack tension
KIC - fracture toughness
JIC - J integral
R-curve
KTH - threshold stress intensity factor
|
ASTM E338
ASTM E740
ASTM E399
ASTM E813
ASTM E561
ASTM E647 |
Test
Type: Metalic Environments and Environmental
|
Standard
Test Method |
-320ÅF to +2250ÅF (-195ÅC
to +982ÅC)
small coupons (less than 3" [7.6 cm] width)
-320ÅF to +2000ÅF (-196ÅC to +538ÅC)
average size components and subcomponents
Ambient temperature in salt water or salt spray
environments
|
NA
NA
NA |
Test
Type: Composite
Static Property Tests
|
Standard
Test Method |
| Unidirectional
tension Open hole tension |
ASTM
D3039
SACMA SRM 5-88
|
Unidirectional
compression
IITRI compression
Open hole compression
Bearing |
ASTM
D695
ASTM D3410 (proc.B)
SACMA SRM 3-88
ASTM D953
|
Inplane shear
Interlaminar shear
Interlaminar (short beam) shear
Adhesive shear
Iosipescu shear |
ASTM
D3518
ASTM D3846
ASTM D2344
ASTM D1002
|
Flexure (3-pt.
And 4-pt.) ASTM D790
Sandwich and core testing MIL-STD-401B
Flatwise tension ASTM C297
Flatwise compression ASTM C365
Shear ASTM C273
Flexure ASTM C393 |
ASTM
D790
MIL-STD-401B
ASTM C297
ASTM C365
ASTM C273
ASTM C393 |
Test
Type: Composite Fatigue
|
Standard
Test Method |
Axial fatigue
Shear fatigue
Subcomponent or joint fatigue
|
ASTM
D3479
ASTM C394
NA |
Test
Type: Composite Environments and Environmental
|
Standard
Test Method |
Preconditioning
(hot-wet)
-320ÅF to +2250ÅF (-196ÅC to +982ÅC) in laboratory
air
Ambient to +200ÅF (+180ÅC) with controlled humidity
Ambient temperature in salt water or salt spray
environments
|
ASTM
D618 |
Custom Testing Services
Testing can be performed to meet other standard test
methods, or customer test procedures, upon request.
Specialized testing requiring the design of test specimens,
test fixtures, and the development of custom test procedures
can be accommodated.
For more information, contact testlab@fatiguetech.com
|