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The specimen that showed highest yield strength was CP1600-1 specimen, followed by BP1600 specimen.
The highest compression strength of the alloys is 1189.30 MPa, while the highest yield strength of alloys is 850.25 MPa.
It is observed that the Cu Nb reinforced wire sintered at 750 °C for 2 h has the highest yield strength of 101.8 MPa.
Ten-revolution HPT processing at room temperature produced the highest yield strength of 475 MPa, which is similar to a high-strength Al alloy.
When solution treated at 775 °C plus aged at 440 °C, the smallest size (0.028 μm in width) of secondary α and greatest volume fraction (61%) of α resulted in the highest yield strength (1624 MPa).
The AZ91-FA nanocomposite with 20 wt.% of the FA nano-particles showed the highest yield strength, and with the increase of the FA content in the AZ91-FA nanocomposites, the ductility decreased.
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It is shown that a coating with low Young's modulus and high yield strength is most desirable for protecting the substrate against yielding.
We assumed that this is because Ni B has a higher yield strength than Ni Co.
The NiTiNb alloys with high yield strength and high damping capacity were designed and prepared.
Design with steel having higher yield strength values is permitted although the yield strength used in strength calculations is limited.
Fusion zone has reported higher yield strength, strength coefficient and Poisson׳s ratio.
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