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The Tribological Characteristics of the Electroless Composite Coating of (Ni-P)-TiO_2 Nanometer Particles

Huang Xin

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Abstract

By comparing the electroless composite coating of (Ni P) (TiO 2 nanometer particles) with the electroless composite coating of (Ni P) (SiC micrometer particles) and electroless plating Ni P alloy coating, the tribological characteristic of the electroless composite coating of (Ni P) (TiO 2 nanometer particles) has been discussed in this paper. The result shows that because of the good structure and mechanic properties, the electroless composite coating of Ni P (TiO 2 nanometer particles) has good wear resistance and low friction coefficient in the sliding friction, especially in high load condition.

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What this paper is about

By comparing the electroless composite coating of (Ni P) (TiO 2 nanometer particles) with the electroless composite coating of (Ni P) (SiC micrometer particles) and electroless plating Ni P alloy coating, the tribological characteristic of the electroless composite coating of (Ni P) (TiO 2 nanometer particles) has been discussed in this paper. The result shows that because of the good structure and mechanic properties, the electroless composite coating of Ni P (TiO 2 nanometer particles) has good wear resistance and low friction coefficient in the sliding friction, especially in high load condition.

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Available abstract

By comparing the electroless composite coating of (Ni P) (TiO 2 nanometer particles) with the electroless composite coating of (Ni P) (SiC micrometer particles) and electroless plating Ni P alloy coating, the tribological characteristic of the electroless composite coating of (Ni P) (TiO 2 nanometer particles) has been discussed in this paper. The result shows that because of the good structure and mechanic properties, the electroless composite coating of Ni P (TiO 2 nanometer particles) has good wear resistance and low friction coefficient in the sliding friction, especially in high load condition.

Key concepts: Nanometre, Materials science, Composite number, Coating, Micrometer, Tribology, Electroless plating, Composite material

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