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PIP法制备陶瓷基复合材料构件的弯曲性能研究
引用本文:孙明,史一宁,邱海鹏,焦健,李秀倩,罗京华.PIP法制备陶瓷基复合材料构件的弯曲性能研究[J].稀有金属材料与工程,2011(Z1):631-634.
作者姓名:孙明  史一宁  邱海鹏  焦健  李秀倩  罗京华
作者单位:北京航空制造工程研究所;空军驻北京地区军事代表室
摘    要:采用先驱体转化工艺(PIP)制备三维炭纤维增强碳化硅陶瓷基复合材料(3D-Cf/SiC)构件。通过三点弯曲强度方法分析构件材料的弯曲性能及破坏规律。研究表明:采用三维炭纤维编织的陶瓷基复合材料构件,其复合材料基体的主要成分为β-SiC,材料具有较高的弯曲性能,可达511MPa,构件材料与采用同种PIP工艺制备的3D-Cf/SiC陶瓷基复合材料相比较,强度降低26.4%,这可能是由制备的构件其致密度较低以及后续加工等因素所致。3D-Cf/SiC陶瓷基复合材料在弯曲断裂过程,材料纤维与纤维束被大量拔出,表现出类似金属的较好假塑性断裂特征。

关 键 词:PIP法  三维编制  弯曲性能  陶瓷基复合材料

Studies of Flexural Strength of Ceramic Matrix Composite Component Prepared by PIP Process
Sun Ming,Shi Yining,Qiu Haipeng,Jiao Jian,Li Xiuqian,Luo Jinghua.Studies of Flexural Strength of Ceramic Matrix Composite Component Prepared by PIP Process[J].Rare Metal Materials and Engineering,2011(Z1):631-634.
Authors:Sun Ming  Shi Yining  Qiu Haipeng  Jiao Jian  Li Xiuqian  Luo Jinghua
Affiliation:1 (1. Beijing Aeronautical Manufacturing Technology Research Institute, Beijing 100024, China) (2. Military Deputy of Aircraft of PLA in Beijing, Beijing 100024, China)
Abstract:A 3D-Cf/SiC engine component has been made through precursor infiltration pyrolsis (PIP) process. XRD results prove that the SiC matrix is mainly composed of β-SiC. This Cf/SiC component was then cut into small samples with the required size to measure the flexural properties by the three-point test method. These small Cf/SiC samples show their good flexural qualities with a flexural strength of 511 MPa. A decrease of 26.4% in flexural strength occurs in comparison with Cf/SiC composite material prepared using the same PIP process, where the flexural strength is 641 MPa. The difference between Cf/SiC engine component and Cf/SiC composite materials in flexural strength lies in the density of the material and further machining procedure. A lot of pulling-out fibers was found in SEM photographs of fracture surfaces, which shows a characteristic of a rupture.
Keywords:precursor infiltration pyrolsis  three dimensional woven  flexural property  ceramic matrix composite
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