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M.N. Ahmad Fauzi

Bio: M.N. Ahmad Fauzi is an academic researcher from Universiti Sains Malaysia. The author has contributed to research in topics: Friction welding & Microstructure. The author has an hindex of 13, co-authored 42 publications receiving 1159 citations. Previous affiliations of M.N. Ahmad Fauzi include University of Yangon & Universiti Sains Malaysia Engineering Campus.

Papers
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TL;DR: In this paper, a novel ethylene propylene diene monomer/halloysite nanotubes (EPDM/HNT) nanocomposite was prepared by mixing 0.100 parts per hundred rubber (phr) of HNTs with EPDM on a two-roll mill.

308 citations

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TL;DR: In this paper, Halloysite nanotubes (HNTs) were modified by γ-methacryloxypropyl trimethoxysilane (MPS) to improve their dispersion in EPDM.

209 citations

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TL;DR: In this article, the fundamental understanding of the process of friction welding is discussed, including the mechanism of the friction welding, types of relative motions, influence of parameters, heat generation in the process, understanding the deformation, microstructure and properties of similar and dissimilar welded materials.
Abstract: Friction welding is now well established as one of the most economical and highly productive methods in joining similar and dissimilar metals. It is widely used in automotive and aerospace industrial applications. Friction welding is often the only viable alternative in this field to overcome the difficulties encountered in joining the materials with widely varying physical characteristics. This process employs a machine that is designed to convert mechanical energy into heat at the joint to weld using relative movement between workpieces, without the use of electrical energy or heat from other sources. This review deals with the fundamental understanding of the process. The focus is on the mechanism of friction welding, types of relative motions of the process, influence of parameters, heat generation in the process, understanding the deformation, microstructure and the properties of similar and dissimilar welded materials.

192 citations

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TL;DR: In this article, the effect of a maleic ahydride (MAH-g-EPDM) compatibilizer on the tensile and morphological properties of EPDM nanocomposites was investigated.

131 citations

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TL;DR: In this paper, optical and electron microscopy as well as four-point bending strength and microhardness measurements were used to evaluate the quality of bonding of alumina and 6061 aluminum alloy joints produced by friction welding.

81 citations


Cited by
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Journal ArticleDOI
TL;DR: Halloysite nanotubes are a promising mesoporous media for catalytic nanoparticles that may be seeded on the tube surface or synthesized exclusively in the lumens, providing enhanced catalytic properties, especially at high temperatures.
Abstract: Halloysite is an alumosilicate tubular clay with a diameter of 50 nm, an inner lumen of 15 nm and a length of 600-900 nm. It is a natural biocompatible nanomaterial available in thousands of tons at low price, which makes it a good candidate for nanoarchitectural composites. The inner lumen of halloysite may be adjusted by etching to 20-30% of the tube volume and loading with functional agents (antioxidants, anticorrosion agents, flame-retardant agents, drugs, or proteins) allowing for formulations with sustained release tuned by the tube end-stoppers for hours and days. Clogging the tube ends in polymeric composites allows further extension of the release time. Thus, antioxidant-loaded halloysite doped into rubber enhances anti-aging properties for at least 12 months. The addition of 3-5 wt% of halloysite increases the strength of polymeric materials, and the possibility of the tube's orientation promises a gradient of properties. Halloysite nanotubes are a promising mesoporous media for catalytic nanoparticles that may be seeded on the tube surface or synthesized exclusively in the lumens, providing enhanced catalytic properties, especially at high temperatures. In vitro and in vivo studies on biological cells and worms indicate the safety of halloysite, and tests for efficient adsorption of mycotoxins in animals' stomachs are also carried out.

736 citations

Journal ArticleDOI
TL;DR: Halloysite nanotubes (HNTs) have been used extensively in polymer nanocomposites as mentioned in this paper, where they have shown high tensile and flexural strength, elastic moduli, and improved toughness.

722 citations

Journal ArticleDOI
TL;DR: In this article, the key structural characteristics and properties of halloysite and their related applications are comprehensively reviewed, and future prospects and key problems to be solved in Halloysite studies are discussed.

712 citations

Journal ArticleDOI
TL;DR: Halloysite is a biocompatible material and its simple processing combined with low cost make it a perspective additive for polymeric biocomposites as mentioned in this paper, however, these tubes have smaller diameter and much lower loading capacity for macromolecules.

469 citations

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TL;DR: Current and emerging joining technologies are reviewed according to the mechanisms of joint formation, i.e.; mechanical, chemical, thermal, or hybrid processes.
Abstract: Emerging trends in manufacturing such as light weighting, increased performance and functionality increases the use of multi-material, hybrid structures and thus the need for joining of dissimilar materials. The properties of the different materials are jointly utilised to achieve product performance. The joining processes can, on the other hand be challenging due to the same different properties. This paper reviews and summarizes state of the art research in joining dissimilar materials. Current and emerging joining technologies are reviewed according to the mechanisms of joint formation, i.e.; mechanical, chemical, thermal, or hybrid processes. Methods for process selection are described and future challenges for research on joining dissimilar materials are summarized.

407 citations