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Information Journal Paper

Title

INVESTIGATION ON EFFECT OF TEMPERATURE AND TIME OF ADDITION OF BORON CARBIDE ON PROPERTIES AND MICROSTRUCTURE OF AL-B4C NANO COMPOSITES BY VORTEX

Pages

  193-201

Abstract

 In this article the effect of temperature and time of addition of BORON CARBIDE on properties and microstructure of Al- B4C nano composite is investigated. 3 vol.% B4C particles with 300 nm average grain size added to melted Al-356 alloy. The compound casted at 750°C, 850 °C and 950°C temperatures and 10, 15 and 20 minutes in a metal mold. The results represent an increase in TENSILE STRENGTH at composite samples compared to matrix. Maximum amount of TENSILE STRENGTH was 178 MPa is achieved after 15 minutes mixing at 850°C that is increased 72 percent compared to metal matrix (Al). Also the effect of temperature and time of mixing on type of fracture showed that brittle fracture was occurred in all nano composite samples and the most ductile fracture surface is belong to the samples were produced in 15 minutes mixing and 850°C. These samples have maximum value of TENSILE STRENGTH.

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    Cite

    APA: Copy

    KHADEMIAN, MEGHDAD, SAEEDI HEYDARI, MINA, ALIZADEH, ALI, & BAHARVANDI, HAMID REZA. (2015). INVESTIGATION ON EFFECT OF TEMPERATURE AND TIME OF ADDITION OF BORON CARBIDE ON PROPERTIES AND MICROSTRUCTURE OF AL-B4C NANO COMPOSITES BY VORTEX. ADVANCED PROCESSES IN MATERIALS, 9(1 (32)), 193-201. SID. https://sid.ir/paper/172562/en

    Vancouver: Copy

    KHADEMIAN MEGHDAD, SAEEDI HEYDARI MINA, ALIZADEH ALI, BAHARVANDI HAMID REZA. INVESTIGATION ON EFFECT OF TEMPERATURE AND TIME OF ADDITION OF BORON CARBIDE ON PROPERTIES AND MICROSTRUCTURE OF AL-B4C NANO COMPOSITES BY VORTEX. ADVANCED PROCESSES IN MATERIALS[Internet]. 2015;9(1 (32)):193-201. Available from: https://sid.ir/paper/172562/en

    IEEE: Copy

    MEGHDAD KHADEMIAN, MINA SAEEDI HEYDARI, ALI ALIZADEH, and HAMID REZA BAHARVANDI, “INVESTIGATION ON EFFECT OF TEMPERATURE AND TIME OF ADDITION OF BORON CARBIDE ON PROPERTIES AND MICROSTRUCTURE OF AL-B4C NANO COMPOSITES BY VORTEX,” ADVANCED PROCESSES IN MATERIALS, vol. 9, no. 1 (32), pp. 193–201, 2015, [Online]. Available: https://sid.ir/paper/172562/en

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