期刊论文详细信息
Materials
Effect of the Iron Reduction Index on the Mechanical and Chemical Properties of Continuous Basalt Fiber
Jin Liu1  Qichang Zhang1  Jiwen Xiao1  Weizhong Jiang1  Qingwei Wang1  Linfeng Ding1  Lida Luo1 
[1] State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai 201620, China;
关键词: Basalt fiber;    iron redox index;    spectral photometric method;    tensile strength;    chemical durability.;   
DOI  :  10.3390/ma12152472
来源: DOAJ
【 摘 要 】

Basalt glass belongs to the iron-rich aluminosilicate glass system; thus, the iron content and the iron redox index (IRI=Fe2+/Fetotal) influence the viscosity, density, mechanical and chemical properties of basalt fiber (BF). In this work, continuous BFs with IRIs ranging from 0.21−0.87 were prepared by adding a different amount of redox agents. An economical and easily accessible testing method—the spectral photometric method with 1,10-phenanthroline—is applied to measure the IRI with convinced accuracy, which has been approved by Mössbauer spectra and X-ray fluorescence analysis. The tensile strength of the BF samples increases approximately linearly with increasing IRI as a function of σ = 227.9 IRI + 780.0 . The FT-IR results indicate that, with increasing IRI, the ferric ions are replaced by the much stronger network formers (Al3+ and Si4+), hence the increased the tensile strength. The X-ray diffraction results show an amorphous nature of BF samples. Moreover, the tensile strength is significantly decreased after the alkali corrosion, which is partly attributed to the severe surface damaging according to the SEM results. This work proved the feasibility of mechanical property improvement in BF production by controlling the iron redox index.

【 授权许可】

Unknown   

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