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Damage is identified by damage location, magnitude, and percentage damaged area in matrix under dry and wet conditions.
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In the present investigation an attempt is made to evaluate the effect of certain cutting variables on cutting forces in straight turning of aluminum metal matrix composites under dry cutting condition.
This paper reports the mechanical and tribological properties of MLG reinforced Ni3Al matrix composites (NMCs) under dry sliding at varying sliding speed.
Moreover, adhesive wear and oxidation wear were the primary wear mechanisms of the matrix and coated specimen under dry friction.
The tribological properties of cold sprayed Ni-WC metal matrix composite (MMC) coatings were investigated under dry sliding conditions from room temperature (RT) up to 400 °C, and during thermal cycling to explore their temperature adaptive friction and wear behavior.
The resulting peptides were extracted from the gel matrix, and dried under vacuum.
The wear properties of α-sialon matrix composites were evaluated by carried out wear tests using a pin-on-disk tribometer under dry conditions.
Meanwhile, in-situ Cf/Al2O3 shows best wear-resistance among the three specimens with slightest spalling under dry and water lubrication because in-situ Cf has good interfacial bonding with matrix.
Rice planting under dry bed transplanting.
Organic solvents were purified, dried, and distilled under dry nitrogen.
All samples were tested under dry condition.
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