Institutional Repository (UniKL IR) (Univ. Kuala Lumpur)
Not a member yet
    17810 research outputs found

    Taxation 1

    No full text

    Fiqh Muamalat

    No full text

    REUSE AND COMPONENT BASED-DVELOPMENT

    No full text

    PROGRAMMING 2

    No full text

    MECHANICAL PROPERTIES AND CORROSION RESISTANCE PERFORMANCE OF EPOXY NANOCOMPOSITES AS ORGANIC COATING MATERIALS FOR METAL COATING APPLICATION

    No full text
    Corrosion has been recognised as a cause of deterioration, failure, catastrophic accidents, and hazards in industrial and residential systems for more than 150 years, resulting in economic expenditures and societal impacts. The NACE estimates global corrosion expenses at 2,505billion,or3.4costincreasedby50.42,505 billion, or 3.4% of GDP. Malaysia's annual corrosion cost increased by 50.4% from 6.7 billion in 2009 to $312.4 billion in 2013. Anticorrosive properties of organic coatings, particularly epoxy coatings, have lately been studied. However, epoxy resin is brittle, has low corrosion protection, and has poor resistance to crack propagation. Hence, modifying the matrix with nanofillers is a critical approach for high-efficiency mechanical properties and corrosion protection of epoxy nanocomposites, considering well-dispersed nanofillers in the matrix. Comparison research has been conducted to examine the mechanical properties and corrosion resistance between four different nanofillers MXenes, GNPs, CNTs, and HNTs at low loading concentrations (0.1 wt.%). A solution-casting dispersion method was developed. The impact of nanofillers on mechanical properties was studied through tensile, microhardness and thermomechanical tests, while the corrosion resistance was examined by OCP and Tafel analysis. Then, the dispersion mechanism of nanofillers was evaluated by SEM and UV-Vis Spectrophotometer analysis. The improved tensile properties and microhardness were observed in all types of nanofiller/epoxy; HNTs and MXenes led to the highest improvement in tensile properties and microhardness, respectively, compared to neat epoxy. CNTs and GNPs exhibited remarkable improvement in storage modulus and Tg value, respectively. The OCP and Tafel analysis results revealed that the coatings reinforced by MXenes provided the most excellent protective performance with an inhibitory efficiency value of up to 99.999%. Besides, this work opens that HNTs exhibited better mechanical performance but poorer corrosion resistance ability due to their hydrophilic nature. The SEM analysis indicated that the morphological surfaces aligned with the tensile test result. The UV Vis spectrophotometer analysis revealed that solvent addition affects the dispersion interaction, further influencing the composite properties. The findings concluded that the inclusion of nanofillers with large aspect ratios improved mechanical and barrier properties. In contrast, agglomeration had the opposite effect, suggesting that if nanofiller homogeneity could be improved, further improvement properties may be expected. Overall, this study came to the conclusion that the improvement of nanocomposite properties is influenced by the geometry and dispersion rate of nanofillers

    AN INTEGRATED OPTIMIZATION METHODOLOGY OF THE ELECTRICAL DISCHARGE MACHINING USING BOX BEHNKEN METHOD AND GENETIC AlGORITHMS

    No full text
    Products used in critical industries like aerospace, automotive and power plant require specific and critical limits of the material properties. In aircraft a slight deviation from required specifications may result in the loss of both lives and equipment’s. Due to advancement in the industry, special material is used, therefore continuous study is required to optimize the properties of these materials. Nickel Chrome Alloy Steel and Powdered Metallurgical High-Speed Steel Alloy are important materials in industries, these alloys are used in different industries like automotive, aerospace, and electrical station industries, they are used in applications such as resistors, gears, shafts, tools. These component materials fail in the industry due to the high utilization rate and due to the lack of required specifications that are affected during the manufacturing process. Through the EDM manufacturing process, the temperature is very high, product properties and microstructure affected, the huge temperature in EDM lead to the material phase transformation, affect material properties, and surface defects are generated, and may cause the product to fail in the industry. Another issue, the post-treatment process should be performed after the manufacturing process, to restore the microstructure and to improve material properties, which costs a lot of money. In this research, two types of electrodes are used, silver-tungsten and copper-tungsten to optimize the EDM performance. The optimum combinations of the input parameters are important, which affects the EDM responses and material surface properties. In this study, an investigation of the effect of a new input parameter called pulse cycle time (Tc), in addition to dielectric liquid pressure (P), Voltage (V), and electrode material on the EDM responses was done. Box Behnken design methodology and Genetic Algorithm (GA) optimization methodology are used as an integrated approach to model and optimize the electrical discharge process. Two softwares, Minitab and Matlab are utilized for this purpose. Outputs are Machining Time (MT), Material Removal Rate (MRR), Tool Wear Rate (TWR), Over Cut (OC), Surface Roughness (SR), Hardness, Micro crack width (MCW), and Recast Layer thickness (RLT). 3D Laser Microscope is used to measure and inspect the surface defects. An interface expert system was built and used as a response predictive tool and used as a historical database. Based on result analysis and ANOVA tables, it is concluded that (Tc) as investigated new input parameter is significant, because its effect probability (p-value) is less than 0.05 for the most responses. From the results of Genetic Algorithm optimization, for the material Nickle Chrome Alloy Steel, it is concluded that the copper-tungsten electrode is the best for minimum MT, TWR, SR, MCS, RLT, and maximum MRR. While the silver-tungsten is the best for the minimum OC, and maximum Hardness, so the tool material is a significant parameter. The integrated methodology used in this study has proven as an effective tool, where the values of some outputs are improved up to 68.42% better than experimental values

    Company Law

    No full text

    Economic Development

    No full text

    Financial Accounting

    No full text

    TVET Council to boost human capital devt upgrades skill training

    No full text

    66

    full texts

    17,810

    metadata records
    Updated in last 30 days.
    Institutional Repository (UniKL IR) (Univ. Kuala Lumpur)
    Access Repository Dashboard
    Do you manage Open Research Online? Become a CORE Member to access insider analytics, issue reports and manage access to outputs from your repository in the CORE Repository Dashboard! 👇