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- W1566104145 abstract "A number of researchers have evaluated the feasibility of producing fibre reinforced magnesium alloys [1-4]. The results showed that the mechanical properties of magnesium alloys can be significantly enhanced with fibre reinforcement. Ha [3] and Chadwick [4] investigated the effect that various reinforcement elements had on the mechanical properties of magnesium alloy AZ91. They reported that mechanical properties such as hardness, fatigue strength and creep resistance at elevated temperature were greatly improved for the reinforced alloy. Typically the fatigue strength of AZ91, reinforced with 16% vol. Saffil fibre, at 180 C was increased by 100%. Despite the significant advantage of using magnesium MMC for lightweight and high strength applications, very little work has been conducted to investigate the relationship between permeability and the infiltration of fibre preforms. Prior to such an investigation, appropriate fibres and binders must be selected. This is because the choice of fibres and binders is known to have significant influence on the MMC. In particular, the main criterion that influences the selection of fibre type is compatibility with the matrix. Two fibres that are compatible with magnesium are Saffil and carbon [5]. Silica and alumina-based binders are widely used in preform production, mainly due to their high temperature properties [6]. However, there are concerns about chemical reactions between the magnesium alloys and the silica (SiO2 ) coating of the reinforcement [7]. Hence the influence of these fibres and binders, when used with magnesium alloy, was evaluated by examining the mechanical properties and microstructures of the cast samples." @default.
- W1566104145 created "2016-06-24" @default.
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- W1566104145 date "2003-11-27" @default.
- W1566104145 modified "2023-09-27" @default.
- W1566104145 title "Influence of Fibre Preform Permeability on Infiltration of Magnesium-Zinc Base Alloys" @default.
- W1566104145 doi "https://doi.org/10.1002/3527603565.ch54" @default.
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