Relationships between mechanical and tribological properties of Zn-15Al-based ternary and quaternary alloys
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Temel Savaşkan
und Ali Paşa Hekimoğlu
Abstract
Five ternary Zn-15Al-(1 – 5)Cu and six quaternary Zn-15Al-3Cu-(0.5 – 3)Si alloys were prepared by permanent mold casting for this work. Their unlubricated sliding friction and wear properties were investigated at a pressure of 3 MPa and a sliding speed of 1.5 m s−1 for a sliding distance of 2 500 m using a block-on-disc type tester. The friction coefficient and wear volume of the ternary alloys decreased with increasing copper content, but above 3 % Cu the trend reversed. As the hardness and both tensile and compressive strengths of the ternary alloys increased, their friction coefficient, working temperature and wear volume decreased. However, the trend reversed for the hardness and compressive strength of the quaternary alloys. The correlation between mechanical and tribological test results showed that the wear volume of Zn-15Al-based alloys can be determined in terms of their tensile strength.
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© 2016, Carl Hanser Verlag, München
Artikel in diesem Heft
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Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Interdiffusion in bcc_B2 Ni–Al–Cu alloys at 1 173 K
- Hydrogen storage kinetics of nanocrystalline and amorphous NdMg12-type alloy–Ni composites synthesized by mechanical milling
- Phase equilibria in the Au–Bi–Sn ternary system at temperatures of 80, 125, and 150 °C
- Microhardness of decorative gold coatings obtained from gold complex based on mercaptotriazole: Comparison with cyanide
- Friction and wear of diamond-like carbon film deposited on CoCrMo alloy under different lubrication
- Wrought aluminium–magnesium alloys subjected to SPD processing
- Relationships between mechanical and tribological properties of Zn-15Al-based ternary and quaternary alloys
- Gel-casting of porous alumina ceramics with high mechanical strength
- Comparing predictions from constitutive equations and artificial neural network model of compressive behavior in carbon nanotube–aluminum reinforced ZA27 composites
- Identification of the effective thermal conductivity of a powdered composite using a genetic algorithm
- Short Communications
- Boride coating on the surface of WC–Co-based cemented carbide
- People
- Prof. Dr. Dr. h. c. mult. Günter Petzow on the occasion of his 90th birthday
- DGM News
- DGM News