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首页> 外文期刊>Materials transactions >High-Performance Ceramic-Lined Composite Pipes with ZrO2 Additive Prepared by Centrifugal-SHS Process
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High-Performance Ceramic-Lined Composite Pipes with ZrO2 Additive Prepared by Centrifugal-SHS Process

机译:离心-SHS法制备高性能ZrO2陶瓷衬里复合管

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摘要

High-performance ceramic-lined composite steel pipes (CLCSPs) were fabricated by self-propagating high-temperature synthesis and centrifugal casting technique. ZrO2 powders doped by 3 mol% Y2O3 were added into Al-Fe2O3 thermit to improve the mechanical properties of CLCSPs. The phase constituents and microstructural evolution of ceramic layers after addition of ZrO2 were analyzed by means of X-ray diffractometer, optical microscope, scanning electron microscope and energy dispersive X-ray spectrometer. The effects of ZrO2 on fracture toughness of ceramic layers, and crushing strength as well as mechanical shock of CLCSPs were investigated using Vickers indentation microfracture method, squeezing test and repetitive impacting method. The results show that addition of ZrO2 changes the morphology and preferential orientation of Al2O3 dendrites, and reduces the width of Al2O3 dendrites, leading to the microstructure of Al2O3 dendrites with fine t-ZrO2 phase particles distributed at boundaries. The hardness of ceramic layer decreases, while the crushing strength of CLCSP changes slightly after addition of ZrO2. The fracture toughness of ceramic layer is significantly enhanced; meanwhile the mechanical shock resistance of CLCSPs was also greatly improved by adding more than 2% ZrO2. The optimum adding amount of ZrO2 is 4%-6%.
机译:通过自蔓延高温合成和离心铸造技术制造高性能陶瓷衬里复合钢管(CLCSP)。将掺有3 mol%Y2O3的ZrO2粉末添加到Al-Fe2O3中,以改善CLCSP的机械性能。通过X射线衍射仪,光学显微镜,扫描电子显微镜和能量色散X射线光谱仪分析了添加ZrO2后陶瓷层的相组成和显微组织演变。采用维氏压痕微断裂法,挤压试验和反复冲击法研究了ZrO2对陶瓷层断裂韧性,CLCSPs抗压强度和机械冲击的影响。结果表明,ZrO2的添加改变了Al2O3树枝状晶体的形态和优先取向,并减小了Al2O3树枝状晶体的宽度,从而导致了Al2O3树枝状晶体的微观结构,其中t-ZrO2细相颗粒分布在边界。加入ZrO2后,陶瓷层的硬度降低,而CLCSP的抗碎强度略有变化。陶瓷层的断裂韧性明显提高;同时,通过添加2%以上的ZrO2,也大大提高了CLCSPs的抗机械冲击性能。 ZrO2的最佳添加量为4%-6%。

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