Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Evaluation of Tribological Behaviour of Stir Casted Aluminium Alloy Hybrid Composites

View through CrossRef
<div class="section abstract"><div class="htmlview paragraph">Employing the stir casting process, a unique hybrid composites were fabricated, using A356 as the matrix and reinforced with ZrSiO<sub>4</sub> and TiB<sub>2</sub> particulates. The produced specimens were initially in their as-cast state. Following that, the reinforcement particle concentrations were changed 2 and 4 weight percentages (wt%) of ZrSiO<sub>4</sub> and keeping a constant 6 wt% of TiB<sub>2</sub>. Three samples were exposed to dry sliding conditions at room temperature using a tribometer. Two applied loads of magnitude 10N and 50N and a sliding velocity of 1m/s and 2m/s were selected as testing parameters. After measuring the wear rate (WR) and the coefficient of friction (COF), the worn-out pin surfaces were examined using scanning electron microscopy (SEM). The results of the study indicated that, under different sliding parametric conditions, the hybrid composite sample with a weight percentage of A356, specifically with 4% ZrSiO<sub>4</sub> and 6% TiB<sub>2</sub>, displayed a minimal WR and a higher COF compared with the remaining samples. This superior performance can be attributed to the harder particles within the composite, which enhance its sliding performance when incorporated into the A356 softer alloy. SEM analysis revealed that soft-natured test samples showed deep and shallow grooves with no discernible cracks under a 50N applied load and a 2 m/s sliding velocity. However, the test sample with the maximum weight % addition exhibited minimal surface damage, a lack of particle pullout, and no significant cracks. These findings imply that the innovative hybrid composite formulation exhibits enhanced tribological characteristics, making it a good candidate for replacing components in the aerospace and automotive sectors.</div></div>
Title: Evaluation of Tribological Behaviour of Stir Casted Aluminium Alloy Hybrid Composites
Description:
<div class="section abstract"><div class="htmlview paragraph">Employing the stir casting process, a unique hybrid composites were fabricated, using A356 as the matrix and reinforced with ZrSiO<sub>4</sub> and TiB<sub>2</sub> particulates.
The produced specimens were initially in their as-cast state.
Following that, the reinforcement particle concentrations were changed 2 and 4 weight percentages (wt%) of ZrSiO<sub>4</sub> and keeping a constant 6 wt% of TiB<sub>2</sub>.
Three samples were exposed to dry sliding conditions at room temperature using a tribometer.
Two applied loads of magnitude 10N and 50N and a sliding velocity of 1m/s and 2m/s were selected as testing parameters.
After measuring the wear rate (WR) and the coefficient of friction (COF), the worn-out pin surfaces were examined using scanning electron microscopy (SEM).
The results of the study indicated that, under different sliding parametric conditions, the hybrid composite sample with a weight percentage of A356, specifically with 4% ZrSiO<sub>4</sub> and 6% TiB<sub>2</sub>, displayed a minimal WR and a higher COF compared with the remaining samples.
This superior performance can be attributed to the harder particles within the composite, which enhance its sliding performance when incorporated into the A356 softer alloy.
SEM analysis revealed that soft-natured test samples showed deep and shallow grooves with no discernible cracks under a 50N applied load and a 2 m/s sliding velocity.
However, the test sample with the maximum weight % addition exhibited minimal surface damage, a lack of particle pullout, and no significant cracks.
These findings imply that the innovative hybrid composite formulation exhibits enhanced tribological characteristics, making it a good candidate for replacing components in the aerospace and automotive sectors.
</div></div>.

Related Results

Experimental investigation of concrete-filled and bare 6082-T6 aluminium alloy tubes under in-plane bending
Experimental investigation of concrete-filled and bare 6082-T6 aluminium alloy tubes under in-plane bending
The application of aluminium alloys in construction sector is increasing owing to their excellent corrosion resistance, light weight and attractive appearance. However, one of the ...
Sediment aluminium content of Lakes Rotorua and Rotoehu: 2020 monitoring survey
Sediment aluminium content of Lakes Rotorua and Rotoehu: 2020 monitoring survey
The application of aluminium sulphate (alum) to freshwater systems is commonly undertaken in order to restrict the availability of dissolved reactive phosphate (DRP), thereby reduc...
Toxicological effects of aluminium in relation to diel pH changes on fish and kōura
Toxicological effects of aluminium in relation to diel pH changes on fish and kōura
Since 2006, alum (aluminium sulphate; Al₂(SO₄)₃) has been applied to the Utuhina and Puarenga Streams at a targeted dose rate of 1 mg Al L⁻¹ to control phosphorus loading to Lake R...
Enhancing tribological system performance through intelligent data analysis and predictive modeling: A review
Enhancing tribological system performance through intelligent data analysis and predictive modeling: A review
The article presents a systematic analysis of the application of information technologies in tribology, including traditional methods, machine learning and artificial intelligence....
Surface Reinforcement on Aluminium Matrix by Hybrid Nanocomposites via FSP: A Review
Surface Reinforcement on Aluminium Matrix by Hybrid Nanocomposites via FSP: A Review
Aluminium hybrid composites are identified as new generation of metal matrix composites for its good strength to weight ratio and good corrosion resistance properties. However thei...
Sintesis dan Karakteristik Aluminium Sulfat dari Limbah Foil Blister Obat
Sintesis dan Karakteristik Aluminium Sulfat dari Limbah Foil Blister Obat
Limbah foil blister obat merupakan salah satu bahan yang umumnya hanya menjadi sampah bagi masyarakat, padahal limbah aluminium jika berada bebas di lingkungan membutuhkan waktu le...

Back to Top