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1)  silimanite fibre refractory
硅酸铝耐火纤维
1.
In practice, it was showed that the silimanite fibre refractory could well absorb vibration in t.
针对原炉衬的散热损失大 ,快速升温性能差等状况 ,从降低设备能耗和提高设备热处理工艺适应性能力的目的出发 ,在炉衬内壁使用了以硅酸铝耐火纤维材料为主体的保温层措施。
2)  unshaped aluminum silicate refractory
不定型硅酸铝耐火纤维
3)  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。
4)  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。
5)  aluminosilicate fiber
硅酸铝纤维
1.
Aluminosilicate fiber replace parts of plant fiber in the application of paper making;
新型造纸替代原料——硅酸铝纤维
2.
With vacuum filter through the wet forming process, aluminosilicate fiber-based materials as high temperature resistant adhesive binder, the high-performance, high-temperature aluminosilicate fiber insulation materials were prepared.
通过湿法真空吸滤成形工艺,以硅酸铝纤维为基体材料,以耐高温胶黏剂为结合剂来制备高效高温硅酸铝纤维隔热材料,研究了在配制好一定浓度胶液及浆液的条件下,不添加胶液,补加纤维的情况下,循环时间对胶液浓度、纸板容重、胶黏剂留着率的影响,及其纸板容重对热导率的影响。
6)  aluminium silicate fibre
硅酸铝纤维
1.
Al2O3-SiO2/AZ91D magnesium composite materials with compacted structure were prepared from aluminium silicate fibre and AZ91D magnesium alloy.
采用硅酸铝纤维和镁合金制备出结构紧密的A l2O3-S iO2/AZ91D镁基复合材料。
2.
The problems such as being difficult to disperse and low in strength in the process of aluminium silicate fibre paper were investigated and the influence of concentration of aluminum silicate fiber,beating degree and dispersant agent on the dispersion properties and measures to improve paper strength were explored.
主要针对硅酸铝纤维纸在抄造过程中出现难分散、成纸强度低的问题进行探讨,研究了硅酸铝纤维浓度、打浆度、分散剂对硅酸铝纤维分散性能的影响及提高纸张强度的措施。
补充资料:硅酸铝耐火纤维毯


硅酸铝耐火纤维毯
blanket of alumina-silicate refractory fibre

guisuanlUnojhuo xianweitan 硅酸铝耐火纤维毯(blanket of alumina一_ silieate refraetory fibre)以硅酸铝耐火纤维为 原料,采用干法针刺工艺制成的耐火纤维制品(见彩图_ 插页第8页)。用干法连续甩丝成纤,针刺制毯,是当 代先进的生产工艺,甩丝法生产效率高,纤维长。纤维 经过针刺抗拉强度高,干法生产可节约大量水资源,但 制造工艺比较复杂。(见图) 淞料一 、、二,二__厂一:斋: 二坦~里二乙兰竺少一乙兰二J~一屯~兰竺j 一上-一~___一, 巨三三一诬亚困一气三困一气互三气二三 切创料产一一一一-}——_)二泣二__上_ 冲‘·厂叫-一一-r-,-,{一一一一,厂一一一一一—一 ~一一该击健:经卜‘一母r丁l,曰卜~一1朴歹t叭曹卜州一曰}〕”沼:一二里上一j匕-一一习—一‘一一一‘ 而耳‘__一_丁下一、__亚让___;一二____:寺: 一一一‘—{竺三二)匕泣止i‘一 了一一一一-~—-一,- .介启邺汁怜郊!一‘一一-r一一一一甲 } .盛三l、 干法成毯(甩丝法)工艺流程图 硅酸铝耐火纤维针刺毯的主要性能见表1。表1硅截招耐火纤络针刺毯主耍理化指标舟 ①体积密度为128kg/m“的热导率。 硅酸铝耐火纤维毯主要用来代替传统的重质、轻质耐火材料作高温工业炉内衬使用或包覆高温管道绝热等,一般可将炉壁厚度减少到原来的1/2,炉壁质量可减小到原来的1/5~1/10。不需要烘炉,可采用预制方法筑炉,缩短了拆炉时间,节能效果好。(见衬火纤维制品) (铁维玉)
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