4.2 Article

Compressive Strength and Thermal Properties of Spark Plasma Sintered Al-Al2O3 Nanocomposite

Journal

SCIENCE OF SINTERING
Volume 50, Issue 1, Pages 1-14

Publisher

INT INST SCIENCE SINTERING (I I S S)
DOI: 10.2298/SOS1801001S

Keywords

Aluminum; Ball Milling; Spark Plasma Sintering; Metal Matrix Nanocomposites; Mechanical Properties; Thermal properties

Funding

  1. King Abdulaziz City for Science and Technology (KACST) through Science and Technology Unit at King Fahd University of Petroleum & Minerals (KFUPM) as part of the National Science, Technology and Innovation Plan [12-NAN2374-04]

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In this work, compressive and thermal properties of aluminum, milled aluminum, and Al-10Al(2)O(3) composite processed via ball milling (BM) and spark plasma sintering (SPS) were investigated. The microstructural features of powders and sintered samples were characterized using optical and scanning electron microscopy. A universal testing machine was used to determine the compressive properties of the consolidated samples. The thermal conductivity and coefficient of thermal expansion of the developed materials were characterized using a hot disc thermal constant analyzer and a dilatometer, respectively. The Al-10Al(2)O(3) composite possessed hardness of 1309.7 MPa, yield strength of 311.4 MPa, and compressive strength of 432.87 MPa compared to hardness of 326.3 MPa, yield strength of 74.33 MPa, and compressive strength of 204.43 MPa for aluminum. The Al-10Al(2)O(3) composite had thermal conductivity value 81.42 W/mK compared to value of 198.09 W/mK for aluminum. In the temperature range from 373 K to 723 K, the composite had lower CTEs ranging from 10 x 10(-6) to 22 x 10(-6)/K compared to 20 x 10(-6) to 30 x 10(-6)/K for aluminum.

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