2) silica fiber
硅石纤维
3) alumina-silica fibre
铝硅纤维
4) aluminum silicate fibers
硅酸铝纤维
1.
Al2O3-SiO2/AZ91D magnesium matrix composites with compacted structure were prepared with aluminum silicate fibers and AZ91D magnesium alloy by squeeze casting method.
采用硅酸铝纤维和镁合金制备出结构紧密的Al2O3-SiO2/AZ91D镁基复合材料。
2.
Specific to difficult for aluminum silicate fibers into paper and intensity of the paper is not high,Through a series of experiments researched on carboxyl methyl cellulose (CMC),modified polyvi- nyl alcohol (PVA),cationic starch are commonly used on adhesive,which effected on aluminum silicon fibers into paper,performance of strength.
针对硅酸铝纤维难成纸且成纸强度不高的问题,本文通过一系列实验研究了羧甲基纤维素(CMC)、改性聚乙烯醇(PVA)、阳离子淀粉(CS)三种常用胶粘剂对硅酸铝纤维成纸、增强性能的影响。
5) silicon carbide fiber
碳化硅纤维
1.
Development and application of silicon carbide fiber;
碳化硅纤维的开发与应用进展
2.
CERAMIC FIBERS AND COMPOSITES ⅡStructure and deformation behaviour of silicon carbide fiber;
陶瓷纤维及其复合材料 Ⅱ碳化硅纤维的结构和形变行为
3.
The summary of synthesis process and properties of silicon carbide matrix composites reinforced by continuous carbon and silicon carbide fiber is made in this paper.
综述了国内外碳纤维与碳化硅纤维增强碳化硅复合材料的制备工艺与性能的研究进展,并介绍了其氧化性能及防护措施。
6) aluminum silicate fiber
硅酸铝纤维
1.
The application of boric acid modified phenolic resin in aluminum silicate fiber paper
硼酸改性酚醛树脂在硅酸铝纤维纸中的应用
2.
To solve the low strength problem of silica aerogel,the nanoporous super insulation materials,reinforced with aluminum silicate fiber,were prepared from TEOS through sol-gel process and supercritical drying technology.
为解决SiO2气凝胶质脆的难题,以正硅酸乙酯为硅源,采用溶胶-凝胶法和超临界干燥工艺制备了硅酸铝纤维增强纳米孔超级绝热材料,容重为74~189 kg。
3.
Flexible micro-porous calcium silicate insulation material is composed of porous spherical agglomerates consisting of many tiny needlelike xonotlite crystals and aluminum silicate fiber,most part of which has been formed flexible ceramic fiber paper before formation of the insulation material.
微孔硅酸钙柔性隔热材料由以硬硅钙石针状微小晶体构成的微孔硅酸钙球形颗粒和硅酸铝纤维复合而成,其中大部分硅酸铝纤维首先形成柔软的纸型材料,微孔硅酸钙颗粒和其余硅酸铝纤维沉积其上,填充在硅酸铝纤维之间的大孔隙中。
补充资料:α-碳化硅纤维
分子式:
CAS号:
性质:指α-SiC占99%以上的纤维。直径25μm,密度3.1g/cm3,拉伸强度1.2GPa,模量大于400GPa,高温下的耐蠕变性优良。制法是将α-SiC微粒用聚合物黏合剂结合起来,纺丝后在高温下烧结而得。主要用作金属基和陶瓷基复合材料增强剂。
CAS号:
性质:指α-SiC占99%以上的纤维。直径25μm,密度3.1g/cm3,拉伸强度1.2GPa,模量大于400GPa,高温下的耐蠕变性优良。制法是将α-SiC微粒用聚合物黏合剂结合起来,纺丝后在高温下烧结而得。主要用作金属基和陶瓷基复合材料增强剂。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条