Although metal matrix composites (MMCs) are generally regarded as extremely difficult to machine, it is also acknowledged that their machining behaviour is not fully understood. The work reviewed here confirms this widely held view but also suggests that the machinability of these materials can be improved by appropriate selection of the reinforcing phase, its volume fraction, size, and morphology as well as the composition and hardness of the matrix material. Cemented carbide tools can be used to machine some of the less abrasive materials at slow speeds but if higher production rates are required or the more abrasive materials are to be machined, polycrystalline diamond tooling is required
The hard abrasive ceramic component which increases the mechanical characteristics of metal matrix c...
Metal matrix composite is used in engineering applications due to its superior mechanical properties...
Aluminum based Metal Matrix Composites (Al-MMC) have been found in different industrial applications...
Over the last few decades, Metal Matrix Composites (MMCs) have emerged as a material system offering...
Metal matrix composites (MMC) have been available for decades. Although previous work mainly was foc...
Machining of Metal Matrix Composites provides the fundamentals and recent advances in the study of m...
Metal matrix composites (MMCs) are materials which have been widely used in the aerospace and automo...
Metal Matrix Composites (MMCs)are gaining popularity in industrial applications because of their imp...
Metal matrix composites (MMCs) are the new-generation advanced materials that have excellent mechani...
This paper presents a preliminary study of aluminium matrix composite materials during machining, w...
Higher tool wear and inferior surface quality of the specimens during machining restrict metal matri...
Metal matrix composites (MMCs) have superior mechanical properties compared with their monolithic co...
Abstract- In the present study based on the literature review, the machining of hybrid aluminium met...
The machining of aluminium 2618 particulate reinforced Metal Matrix Composite (MMC) with 18 vol. % ...
Interest in metal matrix composites (MMCs) for various structural applications has increased over th...
The hard abrasive ceramic component which increases the mechanical characteristics of metal matrix c...
Metal matrix composite is used in engineering applications due to its superior mechanical properties...
Aluminum based Metal Matrix Composites (Al-MMC) have been found in different industrial applications...
Over the last few decades, Metal Matrix Composites (MMCs) have emerged as a material system offering...
Metal matrix composites (MMC) have been available for decades. Although previous work mainly was foc...
Machining of Metal Matrix Composites provides the fundamentals and recent advances in the study of m...
Metal matrix composites (MMCs) are materials which have been widely used in the aerospace and automo...
Metal Matrix Composites (MMCs)are gaining popularity in industrial applications because of their imp...
Metal matrix composites (MMCs) are the new-generation advanced materials that have excellent mechani...
This paper presents a preliminary study of aluminium matrix composite materials during machining, w...
Higher tool wear and inferior surface quality of the specimens during machining restrict metal matri...
Metal matrix composites (MMCs) have superior mechanical properties compared with their monolithic co...
Abstract- In the present study based on the literature review, the machining of hybrid aluminium met...
The machining of aluminium 2618 particulate reinforced Metal Matrix Composite (MMC) with 18 vol. % ...
Interest in metal matrix composites (MMCs) for various structural applications has increased over th...
The hard abrasive ceramic component which increases the mechanical characteristics of metal matrix c...
Metal matrix composite is used in engineering applications due to its superior mechanical properties...
Aluminum based Metal Matrix Composites (Al-MMC) have been found in different industrial applications...