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The isothermal thermal cycle oxidation tests were conducted at 1600 °C in air.
Isothermal, thermal jump, and thermal overload experiments at varying temperatures (up to 650 °C), were performed.
The shear strength of the bonded joint reaches a high value of 31.88 MPa and shows little change after isothermal thermal aging test at 150 °C for 200 h.
This problem is overcome if the nitrogen is frozen via conduction cooling from cold helium gas (at ∼4.2 K); and the design for a near isothermal "thermal battery" based on this principle is presented.
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A comparison of the seal performance under isothermal and thermal flow conditions shows the importance of including the thermal effects.
New isothermal and thermal compressible models are proposed for flows of the level of the isothermal and thermal compressible Navier Stokes equations.
Characteristics, such as adiabatic vs. isothermal compressibility, thermal gradients, and refractive index issues are dealt with in detail.
The isothermal and thermal shock oxidation resistance of the coating was also investigated.
Isothermal and thermal cycling oxidation tests of aluminized specimens have been conducted.
The densification of zinc powders by uniaxial hot pressing is investigated under both isothermal and thermal cycling conditions.
Two-dimensional isothermal and thermal vortices provoked by the Kelvin–Helmholtz instability are simulated by the parametric models.
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