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Information Journal Paper

Title

Investigation of Glass-Steel Slag Foam Composite Sintering in Presence of SiC

Pages

  51-64

Keywords

SiCQ2

Abstract

 Amorphous steel Slag was blended with different concentrations of waste Glass (20, 40, 50, 60, 70 wt. %) and SiC to obtain a composite. According to Hot Stage Microscopy images, Slag-Glass composite contractions started at 1050 º C. scanning electron microscope micrographs of Slag-SiC (Foaming agent) composite revealed tunnel-like porosities of 500 to 1000 microns. Gaseous products of carbide decomposition led to the formation of these tunnel-like porosities. By adding up to 50 wt. % of waste Glass to this composite and Sintering at 1200 ° C, the size of cavities decreased by 10 times and achieved 50 microns to form spherical cavities. By increasing Glass content, the total porosity of Slag-Glass-SiC increased to 80 wt. % followed by a decrease in the strength to 3. 2 MPa. Having an overall density of 0. 8 g/cm 3, the Slag-Glass composite could be classified as a porous Foam material. Pseudo Waltonite phase was also detected in this composite after Sintering.

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  • Cite

    APA: Copy

    FAEGHINIA, A., & MARDI, H.. (2020). Investigation of Glass-Steel Slag Foam Composite Sintering in Presence of SiC. ADVANCED MATERIALS IN ENGINEERING (ESTEGHLAL), 38(4 ), 51-64. SID. https://sid.ir/paper/163171/en

    Vancouver: Copy

    FAEGHINIA A., MARDI H.. Investigation of Glass-Steel Slag Foam Composite Sintering in Presence of SiC. ADVANCED MATERIALS IN ENGINEERING (ESTEGHLAL)[Internet]. 2020;38(4 ):51-64. Available from: https://sid.ir/paper/163171/en

    IEEE: Copy

    A. FAEGHINIA, and H. MARDI, “Investigation of Glass-Steel Slag Foam Composite Sintering in Presence of SiC,” ADVANCED MATERIALS IN ENGINEERING (ESTEGHLAL), vol. 38, no. 4 , pp. 51–64, 2020, [Online]. Available: https://sid.ir/paper/163171/en

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