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    • 22. 发明授权
    • Method for bonding components made of material with a high silicic acid content
    • 用于将由硅酸含量高的材料制成的部件接合的方法
    • US07937968B2
    • 2011-05-10
    • US11038789
    • 2005-01-18
    • Armin MaulThorsten HerbertJürgen WeberWaltraud WerdeckerRolf Gerhardt
    • Armin MaulThorsten HerbertJürgen WeberWaltraud WerdeckerRolf Gerhardt
    • C03B19/01C03B19/06C03C17/02C03C27/00
    • C03C1/008C03B19/06C03B37/0126C03C27/06C03C27/10
    • In a known method for bonding components made of material with a high silicic acid content by means of a substance to substance bond, a SiO2-containing bonding mass is formed between connecting surfaces of the components. In order to provide for cost-efficient manufacture of a thermally stable composite, the invention proposes to generate a SiO2-containing bonding mass that is generic with regard to the material with a high silicic acid content, comprising the following procedural steps: provision of a slurry containing amorphous SiO2 particles; formation of a slurry mass between the connecting surfaces which are fixed in position with regard to each other; drying of the slurry mass; and solidification of the slurry mass by heating under formation of the SiO2-containing bonding mass. A component assembly manufactured according to the method of the invention shows high temperature resistance and thermal fatigue resistance and can also be used in contamination-sensitive applications. The component assembly is characterized by an amorphous SiO2-containing bonding mass, whose chemical composition is generic with regard to the material with the high silicic acid content of the basic material of the components, whereby the specific density of the SiO2-containing bonding mass is at least 2.0 g/cm3.
    • 在通过物质与物质接合的用于将由高硅酸含量的材料制成的部件的已知方法中,在部件的连接表面之间形成含SiO 2的粘结物质。 为了提供热稳定复合材料的成本有效的制造,本发明提出产生相对于具有高硅酸含量的材料而言通用的含SiO 2的粘结物质,包括以下程序步骤:提供 含有无定形SiO 2颗粒的浆料; 在连接表面之间形成相对于彼此固定的位置的浆料; 干燥浆料; 并在形成含SiO 2的结合物质的同时通过加热固化浆料。 根据本发明的方法制造的组件组件显示出耐高温性和耐热疲劳性,并且还可以用于污染敏感的应用中。 组分组合物的特征在于含有非晶态SiO 2的结合物质,其化学组成对于组分的碱性材料的高硅酸含量的材料而言是通用的,由此含SiO 2的粘合物质的比密度为 至少2.0g / cm 3。
    • 23. 发明申请
    • METHOD FOR PRODUCING SYNTHETIC QUARTZ GLASS
    • 生产合成石英玻璃的方法
    • US20110059837A1
    • 2011-03-10
    • US12736398
    • 2009-03-25
    • Waltraud Werdecker
    • Waltraud Werdecker
    • C03C3/04
    • C03B19/01C03B19/1415Y02P40/57
    • In a known exterior deposition method for producing synthetic quartz glass, amorphous quartz glass powder particles (13) are fed to a reaction zone (12), the quartz glass powder particles are heated in the reaction zone (12) and deposited on the exterior side of a carrier (10) rotating about an axis of rotation. In order, proceeding from this, to specify a method which is distinguished by a high deposition efficiency, according to the invention it is proposed that amorphous quartz glass powder particles having a particle size of at least 3 μm together with a silicon-containing starting substance (14) are fed to the reaction zone (12), wherein the silicon-containing starting substance (14) is converted to SiO2 particles in the reaction zone, and the SiO2 particles are deposited in Co-15 deposition with the quartz glass powder particles on the carrier to form an SiO2-containing layer (11) in which the quartz glass powder particles (13) make up a proportion by weight of SiO2 in the range of 30% to 95%.
    • 在已知的用于制造合成石英玻璃的外部沉积方法中,将无定形石英玻璃粉末颗粒(13)进料到反应区域(12)中,将石英玻璃粉末颗粒在反应区域(12)中加热并沉积在外部 的绕旋转轴线旋转的载体(10)。 为此,为了指出以高沉积效率区分的方法,根据本发明,提出了具有至少3μm的粒度的无定形石英玻璃粉末颗粒和含硅起始物质 (14)进料到反应区(12),其中在反应区中将含硅起始物质(14)转化为SiO 2颗粒,并将SiO 2颗粒沉积在Co-15沉积物中,石英玻璃粉末颗粒 在载体上形成含SiO 2的层(11),其中石英玻璃粉末颗粒(13)占SiO 2重量比在30%至95%的范围内。
    • 25. 发明授权
    • Ceramic temperature stabilization body, and method of making same
    • 陶瓷温度稳定体及其制造方法
    • US4627815A
    • 1986-12-09
    • US660499
    • 1984-10-12
    • Fritz AldingerWaltraud Werdecker
    • Fritz AldingerWaltraud Werdecker
    • C04B35/581C30B15/10C30B35/00F27D7/00
    • C04B35/581C30B15/10C30B35/002
    • The temperature stabilization body is made of pulverized aluminum nitride with a first additive of pulverized aluminum present between 0.05% to 2%, and a grain size of under 1 micrometer, and a second additive of from 0.1% to 10% of an oxide, preferably yttrium oxide, present at about 1%--all precentages by weight, in which the mixture is ground in a ceramic ball mill to a grain size of not over 0.1 mm, subjected to cold isostatic pressure in the order of 2500 bar to form a green, pressed body, and then sintered at a sintering temperature of between 1750.degree. C. to 2000.degree. C. The heat conductivity of the densely sintered aluminum nitride body will then be at least 140 W/m .degree.K., and a heat conductivity of twice as much can be obtained, the body being non-toxic and not subject to creep under temperatures up to at least 1700.degree. C.
    • 温度稳定体由粉碎的氮化铝制成,粉碎铝的第一添加剂存在于0.05%至2%之间,粒径小于1微米,第二添加剂为0.1%至10%的氧化物 氧化钇以约1%的重量百分比存在,其中将混合物在陶瓷球磨机中研磨至不超过0.1mm的粒度,经受2500巴的冷等静压力以形成绿色 ,压制体,然后在1750℃至2000℃的烧结温度下烧结。密实烧结的氮化铝体的导热率将至少为140W / m·K,并且热导率 可以获得两倍的体积,身体是无毒的,在高达至少1700℃的温度下不会发生蠕变。
    • 26. 发明授权
    • SiO2 slurry for the production of quartz glass as well as the application of the slurry
    • 用于生产石英玻璃的SiO2浆料以及浆料的应用
    • US08209998B2
    • 2012-07-03
    • US13340632
    • 2011-12-29
    • Waltraud WerdeckerNorbert TraegerJuergen Weber
    • Waltraud WerdeckerNorbert TraegerJuergen Weber
    • C03B20/00
    • C03C17/02C03B19/06C03B19/066C03B20/00C03C2218/11
    • SiO2 slurry for the production of quartz glass contains a dispersion liquid and amorphous SiO2 particles with particle sizes to a maximum of 500 μm. The largest volume fraction is SiO2 particles with particle sizes of 1 μm-60 μm, as well as SiO2 nanoparticles with particle sizes less than 100 nm constituting 0.2-15% volume by weight of the entire solids content. To prepare the slurry for use and optimize its flow behavior for later processing by dressing or pouring the slurry mass, and for later drying and sintering without cracks, the slurry has SiO2 particles with a multimodal distribution of particle sizes, with a first maximum in the range 1 μm-3 μm and a second maximum in the range 5 μm-50 μm, and an 83%-90% solids content by weight of the SiO2 particles and the SiO2 nanoparticles together.
    • 用于生产石英玻璃的SiO2浆料含有粒径达500μm的分散液和无定形SiO 2颗粒。 最大的体积分数是粒径为1μm-60μm的SiO 2颗粒,以及粒径小于100nm的SiO 2纳米颗粒,占整个固体含量的0.2-15重量%。 为了制备使用的浆料并优化其流动行为以便随后通过修整或倾倒浆料进行加工,并且为了稍后的干燥和烧结而没有裂缝,该浆料具有多晶粒度分布的SiO 2颗粒,其中第一最大值在 范围为1μm-3μm,第二最大值为5μm-50μm,并且SiO 2颗粒和SiO 2纳米颗粒的固体含量为83%-90%。
    • 28. 发明申请
    • METHOD FOR PRODUCING RAISED MARKING ON A GLASS OBJECT
    • 在玻璃对象上生成标记的方法
    • US20100316796A1
    • 2010-12-16
    • US12792699
    • 2010-06-02
    • Juergen WeberNorbert TraegerThilo BraemerWaltraud WerdeckerMaximilian Kara
    • Juergen WeberNorbert TraegerThilo BraemerWaltraud WerdeckerMaximilian Kara
    • B05D3/02
    • C03C17/001B41M1/12B41M1/34B41M3/003C03C17/04C03C2218/11
    • In a known method for producing a raised marking on a glass object, a suspension containing SiO2 particles is applied to a surface of the glass object as a pattern, and the pattern is compacted to form the marking. Starting from this, in order to enable a cost-effective production of an optically appealing and uniform marking on an object made of quartz glass, which marking is also suited for applications at high temperature or in a contamination-sensitive environment, such as in solar cell and semiconductor production, it is suggested according to the invention that a binder-free suspension be used to create a marking on a quartz glass object, the suspension containing a dispersion liquid and amorphous SiO2 particles having particle sizes of up to a maximum of 500 μm, of which are between 0.2% by wt. and 15% by wt. SiO2 nanoparticles having particle sizes of less than 100 nm, and the solids content thereof, i.e. the weight proportion of the SiO2 particles and of the SiO2 nanoparticles together, is in the range between 60% and 90%.
    • 在玻璃制品上制造凸起标记的已知方法中,将含有SiO 2颗粒的悬浮液作为图案施加到玻璃物体的表面,并且将图案压实以形成标记。 从此开始,为了能够在由石英玻璃制成的物体上成本有效地生产光学吸引和均匀的标记,该标记也适用于高温或污染敏感环境中的应用,例如太阳能 电池和半导体生产中,根据本发明提出,使用无粘合剂的悬浮液在石英玻璃物体上产生标记,该悬浮液含有分散液和粒径可达最大值为500的分散液和无定形SiO 2颗粒 μm,其为0.2重量%。 和15重量%。 粒径小于100nm的SiO 2纳米颗粒,其固体含量,即SiO 2颗粒和SiO 2纳米颗粒的重量比在一起在60%至90%的范围内。