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Interfacial Shear Stress with Pull-out Test at Zeolite Ceramic Matrix and SS316 Single Fiber

机译:沸石陶瓷基体和SS316单纤维的界面剪切拉拔试验

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摘要

Natural zeolite ceramic is a material that can be used as bioceramics but it is fragile to crack. The weakness of ceramics can be overcome by making ceramic metals. The use of SS316 (stainless steel 316) fiber to strengthen the zeolite ceramic had been done in order to determine the interfacial relationship by using a fiber pull-out test. The content of SS316 fiber in the zeolite ceramic matrix, before and after the sintering, had been examined by using atomic absorption spectrum tests. The content of the elements in SS316 fiber, zeolite ceramic matrix and the interface layer was became clear by using EDX and XRD test. The results showed that the higher the sintering temperature, the higher the interfacial shear stress on pull-out test as well. However, at a temperature of 900?°C, the interfacial shear stress on pull-out test became low because of the Fe, FeNi, and CrFe was arisen in a thin layer of the interface. The optimum of the temperature sintering for making ceramic zeolite matrix and SS16 fibers was 850?°C because of the highest interfacial shear stress.
机译:天然沸石陶瓷是可以用作生物陶瓷的材料,但易碎。陶瓷的缺点可以通过制造陶瓷金属来克服。为了通过纤维拉出试验确定界面关系,已经使用SS316(不锈钢316)纤维来增强沸石陶瓷。用原子吸收光谱法测定了烧结前后沸石陶瓷基体中SS316纤维的含量。通过EDX和XRD测试,可以清楚地看出SS316纤维,沸石陶瓷基体和界面层中元素的含量。结果表明,烧结温度越高,拉拔试验的界面剪切应力也越高。但是,在900℃的温度下,由于在界面的薄层​​中产生了Fe,FeNi和CrFe,拉拔试验的界面剪切应力变低。由于最高的界面剪切应力,用于制造陶瓷沸石基体和SS16纤维的温度烧结的最佳温度为850℃。

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