首页> 外文期刊>CERAMICS INTERNATIONAL >3D-SiC decorated with SiC whiskers: Chemical vapor infiltration on the porous 3D-SiC lattices derived from polycarbosilane-based suspensions
【24h】

3D-SiC decorated with SiC whiskers: Chemical vapor infiltration on the porous 3D-SiC lattices derived from polycarbosilane-based suspensions

机译:3D-SIC装饰着SIC晶须:多孔3D-SIC格子上的化学蒸气渗透来自聚碳硅烷的悬浮液

获取原文
获取原文并翻译 | 示例
           

摘要

SiCw/3D-SiC composites were fabricated by chemical vapor infiltration (CVI) of the 3D SiC lattices, which were prepared via direct ink writing of polycarbosilane-based suspensions. Microstructure, composition and tensile strength of the composites were investigated. Curing and pyrolysis temperature greatly affected the shrinkage, weight loss, density and composition of the 3D SiC. Although sound structure with spanning feature was achieved, cracks and pores in 3D SiC were formed during the pyrolysis owing to the large shrinkage. CVI process decreased the porosity and led to fully dense surface of the SiCw/3D-SiC composites. After 60h of CVI, short beta-SiC fibres or long SiC whiskers were deposited in the structural spacing of 3D lattices or spherical pores inside the filaments, respectively. The tensile strength of the composites by CVI increased from 3.3 MPa to 15.7 MPa (20 h) and 47.3 MPa (60 h), due to the high strength of dense CVI layers and in-situ formed SiC whiskers in pores. This work showed a way to strengthen the 3D SiC with in-situ formed whiskers via the polymer precursor routes.
机译:通过3D SiC格子的化学蒸气浸润(CVI)制造SiCW / 3D-SiC复合材料,其通过基于聚碳硅烷的悬浮液的直接墨水写入制备。研究了复合材料的微观结构,组合物和拉伸强度。固化和热解温度大大影响了3D SiC的收缩,减肥,密度和组成。虽然已经实现了具有跨越功能的声音结构,但由于较大的收缩,在热解期间形成了3D SiC中的裂缝和孔隙。 CVI工艺降低了孔隙率并导致SiCW / 3D-SiC复合材料的完全致密表面。在CVI的60小时后,分别在长丝内的3D格或球形孔隙的结构间隔中沉积短β-SiC纤维或长SiC晶须。 CVI复合材料的拉伸强度从3.3MPa增加到15.7MPa(20小时)和47.3MPa(60小时),由于致密CVI层的高强度和孔中原位形成的SiC晶须。这项工作表明,通过聚合物前体途径,利用原位形成的晶须加强3D SiC。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号