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- Colloidal assembly (1)
- Conductive ink (1)
- Critical Cooling Rate (1)
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- Energy Release Rate (1)
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- Morphing (1)
- Nano science (1)
- Photonic sintering (1)
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- Thermal Barrier Coatings (TBCs) (1)
- Thermal sintering (1)
- Under sleeper pads; Track components; Railway infrastructure; Rail joints; Impact vibration; Suppression (1)
Articles 1 - 4 of 4
Full-Text Articles in Engineering Science and Materials
Under Sleeper Pads: Field Investigation Of Their Role In Detrimental Impact Mitigation, Sakdirat Kaewunruen, Alex M. Remennikov
Under Sleeper Pads: Field Investigation Of Their Role In Detrimental Impact Mitigation, Sakdirat Kaewunruen, Alex M. Remennikov
Sakdirat Kaewunruen
Under sleeper pads (USPs) are the component installed under the concrete sleepers generally to improve railway track resilience. Initial development in Europe, particularly in Austria, has encouraged the adoption of the component around the world. In practice, the component has commonly been used in certain applications, mainly to moderate track stiffness in special locations such as turnouts, crossings, and level crossing. In heavy haul operation, the heavier wagons result in sturdier bogie structures, higher unsprung mass, and then higher level of wheel-rail interaction forces. Accordingly, the application of USPs to mitigate detrimental impact load consequence on track structure is presented …
Thermal Vs. Photonic Sintering Of Nano Silver Based Conductive Inks, Bilge N. Altay, Paul D. Fleming
Thermal Vs. Photonic Sintering Of Nano Silver Based Conductive Inks, Bilge N. Altay, Paul D. Fleming
Bilge Nazli Altay
Effects Of Temperature Change On Interfacial Delamination In Thermal Barrier Coatings, Hossein Ebrahimi, Soheil Nakhodchi
Effects Of Temperature Change On Interfacial Delamination In Thermal Barrier Coatings, Hossein Ebrahimi, Soheil Nakhodchi
Hossein Ebrahimi
No abstract provided.
Color And Texture Morphing With Colloids On Multilayered Surfaces.Pdf, Shumin Li
Color And Texture Morphing With Colloids On Multilayered Surfaces.Pdf, Shumin Li
Shumin Li