排序方式: 共有25条查询结果,搜索用时 9 毫秒
21.
采用无压反应熔渗法在1 550℃下将熔融Si或Si0.9Zr0.1浸渗入多孔C/C预制体中制备了高致密的C/C-SiC复合材料.系统研究了多孔C/C预制体中酚醛树脂热解碳(PIP-C)和化学气相渗透碳(CVI-C)对反应熔渗Si或Si0.Zr0.1的浸渗行为、反应程度、物相成分和微观组织的影响.结果表明:熔融Si或Si0.Zr0.1完全渗入到相邻碳纤维束间的大孔和碳纤维形成的小孔中,多孔PIP-C/C预制体较易浸渗,且反应较充分,熔渗Si0.9 Zr0.1后复合材料中除了生成大量SiC外,还有少量ZrC和ZrSi2生成,未发现游离Si.多孔PIP-C/C预制体中部分碳纤维与熔体反应,损伤纤维,而多孔CVI-C/C预制体中的沉积碳仅与熔体反应生成了一薄层,很好地保护了碳纤维,保持了碳纤维的高性能.提出反应熔渗制备C/C-SiC复合材料的形成机制:由初期的溶解-沉淀控制和后期的C向SiC层扩散控制为主. 相似文献
22.
通过实验阐述了喷射共沉积工艺参数(雾化压力,合金过热度,沉积距离,颗粒射入压力及射入距离,流化床压力)对2024/SiCp复合材料沉积坯形状及凝固组织的影响,并得到了形状较为满意的近圆柱状,含气量较低,颗粒分布均匀的沉积坯。 相似文献
23.
碳纤维复合材料C形结构热隔膜成型工艺 总被引:3,自引:0,他引:3
采用自行设计的热隔膜成型工艺实验装置,制备了C形结构碳纤维复合材料预成型体,测试了成型过程中预成型体和模具温度的变化规律,并考察了成型温度、预成型体尺寸对C形预成型体表面质量和内部缺陷的影响.结果表明:热隔膜成型过程中,采用模具预热的方法与红外灯辐射相配合,可保证预浸料温度的分布均匀性;成型温度过低时,预浸料粘性大、层间滑移能力差,导致预成型体拐角处出现纤维褶皱,并且内部孔隙偏多;预成型体的外形尺寸与模具尺寸接近,则预成型体易受隔膜架桥、变形量过大影响而出现翘曲等缺陷,因此预成型体与模具之间的尺寸比例应控制在一定范围内. 相似文献
24.
Optimization of Preform Shapes by RSM and FEM to Improve Deformation Homogeneity in Aerospace Forgings 总被引:3,自引:0,他引:3
This article, in order to improve the deformation homogeneity in aerospace forgings, proposes an approach that combines the finite element method (FEM) and the response surface method (RSM) to optimize the preform shapes. New expressions that take into account the influences of equivalent effective strain distribution are developed to evaluate the homogeneity of deformation distribution in aerospace forgings. In order to reduce the number of design variables, the domain-division method is put forward to determine the optimal design variables. On the basis of FEM results, the RSM is used to establish an approximate model to depict the relationship between the responses (deformation homogeneity and die underfilling) and the design variables represented by geometric parameters of the preform shape. With a typical aeroengine disk as an example, the proposed method is verified by achieving an optimal combination of design variables. By comparing the preform shape obtained with the proposed method to that with the existing one, it is evidenced that the former could achieve more homogeneous deformation in forging. 相似文献
25.
Three-dimensional(3D) braided composites are a kind of advanced ones and are used in the aeronautical and astronautical fields more widely. The advantages, usages, shortages and disadvantages of 3D braided composites are analyzed, and the possible approach of improving the properties of the materials is presented, that is, a new type of 3D full 5-directional braided composites is developed. The methods of making this type of preform are proposed. It is pointed out that the four-step braiding which is the most possible to realize industrialized production almost has no effect on the composites'properties. By analyzing the simulation model, the advantages of the material compared with the 3D 4-di- rectional and 5-directional materials are presented. Finally, a microstructural model is analyzed to lay the foundation for the future theoretical analysis of these composites. 相似文献