Effect of Aging on Abrasive Wear Resistance of Silicon Carbide Particulate Reinforced Aluminum Matrix Composite

Effect of Aging on Abrasive Wear Resistance of Silicon Carbide Particulate Reinforced Aluminum Matrix Composite PDF Author: Varun Sethi
Publisher:
ISBN:
Category :
Languages : en
Pages : 114

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Book Description
The effect of aging on the wear resistance of SiC particle reinforced aluminum composites was investigated. The as cast Al/SiCp composite used in this study was purchased from Duralcan with A-356 matrix and 23Vol% of SiC reinforcement. This composite was solutionized at 565 C and then aged at 180 C for different time intervals and changes in hardness and wear resistance were measured using a Rockwell B hardness tester and Pin-on-disc wear tester respectively. For reference purpose an alloy of Al-10wt% silicon was used. Wear resistance of the aged composites was found superior to the as cast composite with the peak aged composite showing the maximum wear resistance and overaging resulted in a decrease in wear resistance. Results also showed that the wear resistance of the composites was greater than the monolithic alloy at all loads and wear rate was found to increase with pressure. The wear resistance of Al-Si(10wt%) alloy was found to increase with aging, but no variation in wear rate was found among the aged alloys. Scanning electron micrographs of worn surfaces of composites revealed that the principal mechanism of matrix removal was microcutting and microcracking. Very few SiC reinforcements were found on the worn surfaces suggesting that that the penetration depth of the abrasive was greater than the reinforcement particle size in most cases. Finally the differences in wear resistance of the composites were rationalized on the basis of changes at the interface of SiC particle and aluminum matrix due to the presence of precipitates.

Effect of Aging on Abrasive Wear Resistance of Silicon Carbide Particulate Reinforced Aluminum Matrix Composite

Effect of Aging on Abrasive Wear Resistance of Silicon Carbide Particulate Reinforced Aluminum Matrix Composite PDF Author: Varun Sethi
Publisher:
ISBN:
Category :
Languages : en
Pages : 114

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Book Description
The effect of aging on the wear resistance of SiC particle reinforced aluminum composites was investigated. The as cast Al/SiCp composite used in this study was purchased from Duralcan with A-356 matrix and 23Vol% of SiC reinforcement. This composite was solutionized at 565 C and then aged at 180 C for different time intervals and changes in hardness and wear resistance were measured using a Rockwell B hardness tester and Pin-on-disc wear tester respectively. For reference purpose an alloy of Al-10wt% silicon was used. Wear resistance of the aged composites was found superior to the as cast composite with the peak aged composite showing the maximum wear resistance and overaging resulted in a decrease in wear resistance. Results also showed that the wear resistance of the composites was greater than the monolithic alloy at all loads and wear rate was found to increase with pressure. The wear resistance of Al-Si(10wt%) alloy was found to increase with aging, but no variation in wear rate was found among the aged alloys. Scanning electron micrographs of worn surfaces of composites revealed that the principal mechanism of matrix removal was microcutting and microcracking. Very few SiC reinforcements were found on the worn surfaces suggesting that that the penetration depth of the abrasive was greater than the reinforcement particle size in most cases. Finally the differences in wear resistance of the composites were rationalized on the basis of changes at the interface of SiC particle and aluminum matrix due to the presence of precipitates.

Investigation of the Relationship Between Ageing Time and Abrasive Wear Resistance for an A12014 Matrix 53 Micrometre Maximum Size Silicon Carbide Reinforced Metal Matrix

Investigation of the Relationship Between Ageing Time and Abrasive Wear Resistance for an A12014 Matrix 53 Micrometre Maximum Size Silicon Carbide Reinforced Metal Matrix PDF Author: Christopher James Roach
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Effect of Weight Percentage of Silicon Carbide (SiC) Reinforcement Particles on Mechanical Behavior of Aluminum Metal Matrix Composite (Al MMC)

Effect of Weight Percentage of Silicon Carbide (SiC) Reinforcement Particles on Mechanical Behavior of Aluminum Metal Matrix Composite (Al MMC) PDF Author: Engku Amalina Syazana Ku Mohd Nazri
Publisher:
ISBN:
Category : Hardness
Languages : en
Pages : 54

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Book Description
Silicon carbide particle reinforced aluminum matrix composites have been developed over past few decades, owing to their excellent properties like light weight, high elastic modulus and wear resistance. Thus, the silicon carbide particle reinforced aluminum matrix composites are expected to have many applications in aerospace, aircraft, automobile and electronic industries. In this study, aluminum metal matrix composites containing several weight percentages of reinforcement particles were prepared by using powder metallurgy method. The main steps in powder metallurgy are blending, compacting and sintering. The experiments were performed on different composition of silicon carbide powder in the composite. The study presents the results of experimental investigation on mechanical behavior of silicon carbide particle reinforced aluminum matrix. The influence of reinforced ratio of 0, 5, 10 and 15 weight percentage of silicon carbide particles on mechanical behavior was examined. The effect of different weight percentage of silicon carbide in composite on hardness and microstructure was studied. Digital image analyzer was used to characterize the composites. The effect of weight percentage of silicon carbide on hardness of composites was investigated by using Vickers hardness Test. It was observed that the distribution of silicon carbide particles was uniform. The hardness of the composites increased with increasing reinforcement element addition in it. In addition, and for the purpose of verification of the present theory, other published work was also compared and found to be in very good correlation with the predicted result.

Effect of Thermomechanical Treatments on the Aging Response of Centrifugally Cast Silicon Carbide/Aluminum Composites

Effect of Thermomechanical Treatments on the Aging Response of Centrifugally Cast Silicon Carbide/Aluminum Composites PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 43

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Book Description
Differential scanning calorimetry was conducted using centrifugally cast monolithic A356 aluminum material and 26 volume percent silicon carbide (SiC) particle reinforced A356 aluminum matrix composite material in as-cast, cast and rolled, and cast and extruded conditions. Electrical resistivity and matrix micro-hardness measurements during isothermal aging treatments were also conducted. the effects of thermomechanical processing and SiC particle additions on the mechanical properties and aging kinetics of the metastable phases in each material were studied.

Effect of Post-fabrication Processing on the Tensile Properties of Centrifugally Cast Silicon Carbide Particulate Reinforced Aluminum Composites

Effect of Post-fabrication Processing on the Tensile Properties of Centrifugally Cast Silicon Carbide Particulate Reinforced Aluminum Composites PDF Author: Kurt Alwin Muller
Publisher:
ISBN:
Category :
Languages : en
Pages : 35

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Book Description
A centrifugally cast A356 aluminum-matrix composite reinforced with silicon carbide (SiC) particles was thermo-mechanically processed by rolling and the resulting properties were studied. Tensile testing, hardness testing and optical microscopy were conducted. This study included evaluations of the mechanical properties of the composite following rolling at varying strains, temperature, strain per pass and aging treatments. The effects of both single and multi-step rolling processes were evaluated, and the composites were tested following solution treatment. Testing revealed that the ductility was associated with progressive homogenization of the particulate distribution at increasing strain levels. It was found that rolling just under the solvus temperature produced poorer mechanical properties for the composite than for those rolled at a temperature significantly above or below the solvus temperature. Strain per pass was found to have insignificant effect on the final properties, with total strain being the controlling factor. For equal strength conditions, the underaged composite was more ductile than the overaged composite.

The Effects of Aluminium Alloy Composition and Ageing on the Mechanical Properties of Silicon Carbide Particulate Reinforced Metal-matrix Comosites

The Effects of Aluminium Alloy Composition and Ageing on the Mechanical Properties of Silicon Carbide Particulate Reinforced Metal-matrix Comosites PDF Author: A.J. Shakessheff
Publisher:
ISBN:
Category : Aluminium alloys
Languages : en
Pages :

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A Study of Abrasive Wear in SiC and Al2O3 Particulate Reinforced 6061 Aluminium Metal Matrix Composites

A Study of Abrasive Wear in SiC and Al2O3 Particulate Reinforced 6061 Aluminium Metal Matrix Composites PDF Author: George Nadim Melhem
Publisher:
ISBN:
Category : Aluminum alloys
Languages : en
Pages : 170

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Diffusion Bonding 2

Diffusion Bonding 2 PDF Author: D.J. Stephenson
Publisher: Springer Science & Business Media
ISBN: 9401136742
Category : Technology & Engineering
Languages : en
Pages : 326

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Book Description
There is currently great interest in the process of diffusion bonding. The main thrust has been in the joining of advanced materials such as superplastic alloys, metal matrix composites and ceramics and, most importantly, to introduce the process into mass-production operations. Diffusion bonding has also led to reduced manufacturing costs and weight savings in conventional materials and developments in hot isostatic pressing have allowed greater design flexibility. Since the first conference on Diffusion Bonding, held at Cranfield in 1987, considerable advances have been made and it was therefore considered appropriate to organise the Second International Conference on Diffusion Bonding which was held at Cranfield Institute of Technology on 28 and 29 March 1990. The meeting provided a forum for the presentation and discussion of recent developments in Diffusion Bonding and was divided into four main subject areas: steel bonding and quality control, diffusion bonding of aluminium alloys, bonding of high temperature materials and general applications. This structure is retained in the proceedings. DAVID STEPHENSON vii CONTENTS v Preface ......................... .

Fillers and Reinforcements for Advanced Nanocomposites

Fillers and Reinforcements for Advanced Nanocomposites PDF Author: Yu Dong
Publisher: Woodhead Publishing
ISBN: 0081000820
Category : Technology & Engineering
Languages : en
Pages : 587

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Book Description
Fillers and Reinforcements for Advanced Nanocomposites reviews cutting-edge, state-of-the-art research on the effective use of nanoscaled fillers and reinforcements to enhance the performance of advanced nanocomposites, both in industrial and manufacturing applications. It covers a broad range of topics such as nanocelluloses, nanotubes, nanoplatelets, and nanoparticles, as well as their extensive applications. The chapters provide detailed information on how fillers and reinforcements are used in the fabrication, synthesis and characterization of advanced nanocomposites to achieve extraordinary performance of new materials and significant enhancements in their mechanical, thermal, structural and multi-functional properties. It also highlights new technologies for the fabrication of advanced nanocomposites using innovative electrospinning techniques. - Covers topics such as nanocelluloses, nanotubes, nanoplatelets, and nanoparticles, as well as their extensive applications - Discusses the latest research on the effective use of nanoscaled fillers and reinforcements to enhance the performance of advanced nanocomposites - Explains how fillers and reinforcements are used in the fabrication, synthesis and characterization of advanced nanocomposites

Effects of Post-Fabrication Processing on the Tensile Properties of Centrifugally Cast SiC Particulate Reinforced Aluminum Composites

Effects of Post-Fabrication Processing on the Tensile Properties of Centrifugally Cast SiC Particulate Reinforced Aluminum Composites PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 40

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Book Description
A centrifugally cast A356 aluminum-matrix composite reinforced with silicon carbide (SiC) particles was thermo-mechanically processed by rolling and the resulting properties were studied. Tensile testing, hardness testing and optical microscopy were conducted. This study included evaluations of the mechanical properties of the composite following rolling at varying strains, temperature, strain per pass and aging treatments. The effects of both single and multi-step rolling processes were evaluated, and the composites were tested following solution treatment. Testing revealed that the ductility was associated with progressive homogenization of the particulate distribution at increasing strain levels. It was found that rolling just under the solvus temperature produced poorer mechanical properties for the composite than for those rolled at a temperature significantly above or below the solvus temperature. Strain per pass was found to have insignificant effect on the final properties, with total strain being the controlling factor. For equal strength conditions, the underaged composite was more ductile than the overaged composite.