2015Unpublished venueRequires access

Study on Flexural Strength and Thermal Shock Resistance of Zisha Pottery with Nano Materials

Hai-wang PENG

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Abstract

Using Zisha clay, nan-Zisha, Nano quartz fiber as the raw materials, Zisha were prepared by plastic molding and sintered. The effects of nano-materials contents on flexural strength and thermal shock resistance of Zisha samples were investigated by water cooling-strength method and XRD. It was found that flexural strength and thermal shock resistance of Zisha samples increased with the con tents of nano-materials. The flexural strength was 68.7 MPa and thermal shock strength was 26.0 MPa reaching to the maximum when 1.19% nanomaterial was used.

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What this paper is about

Using Zisha clay, nan-Zisha, Nano quartz fiber as the raw materials, Zisha were prepared by plastic molding and sintered. The effects of nano-materials contents on flexural strength and thermal shock resistance of Zisha samples were investigated by water cooling-strength method and XRD. It was found that flexural strength and thermal shock resistance of Zisha samples increased with the con tents of nano-materials. The flexural strength was 68.7 MPa and thermal shock strength was 26.0 MPa reaching to the maximum when 1.19% nanomaterial was used.

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Available abstract

Using Zisha clay, nan-Zisha, Nano quartz fiber as the raw materials, Zisha were prepared by plastic molding and sintered. The effects of nano-materials contents on flexural strength and thermal shock resistance of Zisha samples were investigated by water cooling-strength method and XRD. It was found that flexural strength and thermal shock resistance of Zisha samples increased with the con tents of nano-materials. The flexural strength was 68.7 MPa and thermal shock strength was 26.0 MPa reaching to the maximum when 1.19% nanomaterial was used.

Key concepts: Flexural strength, Thermal shock, Materials science, Composite material, Quartz, Nano-, Molding (decorative), Raw material

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