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Time-temperature-sensitization behavior diagrams for austenitic and ferritic stainless steels illustrating different time-temperature regimes for sensitization. Ref. , from Corrosion of Stainless Steels A. John Sedriks, copyright John Wiley Sons.

Time-temperature-sensitization curves for intergranular corrosion of type 347 stainless steel in boiling 65 nitric acid, mpy, mils per year. Source

Time-temperature-sensitization curves for susceptibility to intergranular corrosion. Parameters are carbon concentrations in type 304-based stainless steels. Redrawn from Ref 83

Time-temperature-sensitization curves for Type 304 stainless steel in a mixture of CuSO and containing free copper. Curves show the times required for carbide precipitation in steels

Time-Temperature-Shifting-Principle

Time-temperature-superposition master curves of residual solvent by TGA versus time at a reference temperature

Time-temperature-trans-formation diagram for the system EPON 825 DDS showing times to reach dipole loss peaks at 10 and 10,000 Hz. L-R denotes gelation R-G denotes vitrification.

Time-temperature-transfoimation - nfer-nef-epoxy semi-II IPN. Data gathered via light-scattering, LS, dynamical mechanical spectroscopy, RDS, and torsional braid analysis, TBA see Section 8.3.

Time-temperature-transformation

Time-temperature-transformation A austenite, B bainite, P pearlite, M martensite, F proeutectoid ferrite. Reproduced with permission from Callister, W. D. Materials Science and Engineering

Time-temperature-transformation cure diagram by Gillham adapted from .

Time-temperature-transformation cure diagram highlighted with the stages of self-healing.

Time-temperature-transformation cure diagram. Adapted from Enns and Gillham

Time-temperature-transformation diagram for a thermoset.

Time-Temperature-Transformation diagram of unalloyed steel.

Time-Temperature-Transition diagram for a liquid quenching, b crystallization of the amorphous alloy at T SSR amorphization by solid state reactions at T.

Time-temperature-transition diagram of Bisphenol-A diglycidyl ether polymerized with 2.5 -hexafluoro-phosphate

Time-Tennperature Curve for Fire Tests 7.3.2.4. Testing for Fireproofing Systems

Time-to-amplitude convertor coincidence electronics.

Time-to-breakdown vs breakdown voltage in Marcol 70 for

Time-to-failure as a function of isothermal aging time for Al-Cu-Mg alloy. The region of rapid time-to-failure coincides with the electrochemical framework illustrating the expected region for ICC susceptibility based on critical potentials.

Time-to-failure data from the long-term hydrostatic pressure creep test on HOPE pipes at 40 C

Time-to-failure prediction and comparison to experimental results .

Time-to-failure prediction and comparison to experimental results, noncooled and water-cooled specimens .

Time-to-failure t in the long-term tensile test on cold drawn test specimen as a function of the degree of orientation X. Circles



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