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    • 2. 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
    • US08158542B2
    • 2012-04-17
    • US12311446
    • 2007-09-12
    • Waltraud WerdeckerNorbert TraegerJuergen Weber
    • Waltraud WerdeckerNorbert TraegerJuergen Weber
    • C03C3/076
    • C03C17/02C03B19/06C03B19/066C03B20/00C03C2218/11
    • A known 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, wherein the largest volume fraction is composed of SiO2 particles with particle sizes in the range 1 μm-60 μm, as well as SiO2 nanoparticles with particle sizes less than 100 nm in the range 0.2-15% volume by weight (of the entire solids content). In order to prepare such a slurry for use, and to optimize the flow behavior of such a slurry with regard to later processing by dressing or pouring the slurry mass, and with regard to later drying and sintering without cracks, the invention suggests a slurry with SiO2 particles with a multimodal distribution of particle sizes, with a first maximum of the sizes distribution in the range 1 μm-3 μm and a second maximum in the range 5 μm-50 μm, and a solids content (percentage by weight of the SiO2 particles and the SiO2 nanoparticles together) in the range 83%-90%.
    • 用于生产石英玻璃的已知SiO 2浆料包含分散液和粒径为最大500μm的无定形SiO 2颗粒,其中最大体积分数由粒径在1μm-60μm的SiO 2颗粒组成, 以及颗粒尺寸小于100nm的SiO 2纳米颗粒在0.2-15重量%(整个固体含量)的范围内。 为了制备这样的浆料,并且通过修整或倒出浆料来优化这种浆料在后续加工过程中的流动行为,并且关于稍后的干燥和烧结而没有裂纹,本发明提出了具有 SiO 2颗粒具有多峰分布的粒径,第一最大尺寸分布在1μm-3μm范围内,第二最大值在5μm-50μm范围内,固体含量(SiO 2重量百分比 颗粒和SiO 2纳米颗粒)在83%-90%的范围内。
    • 3. 发明申请
    • SiO slurry for the production of quartz glass as well as the application of the slurry
    • 用于生产石英玻璃的SiO浆料以及浆料的应用
    • US20090266110A1
    • 2009-10-29
    • US12311446
    • 2007-09-12
    • Waltraud WerdeckerNorbert TraegerJuergen Weber
    • Waltraud WerdeckerNorbert TraegerJuergen Weber
    • C03B20/00C03C17/02C03C3/076C03C3/11C03C3/06
    • C03C17/02C03B19/06C03B19/066C03B20/00C03C2218/11
    • A known 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, wherein the largest volume fraction is composed of SiO2 particles with particle sizes in the range 1 μm-60 μm, as well as SiO2 nanoparticles with particle sizes less than 100 nm in the range 0.2-15% volume by weight (of the entire solids content). In order to prepare such a slurry for use, and to optimize the flow behavior of such a slurry with regard to later processing by dressing or pouring the slurry mass, and with regard to later drying and sintering without cracks, the invention suggests a slurry with SiO2 particles with a multimodal distribution of particle sizes, with a first maximum of the sizes distribution in the range 1 μm-3 μm and a second maximum in the range 5 μm-50 μm, and a solids content (percentage by weight of the SiO2 particles and the SiO2 nanoparticles together) in the range 83%-90%.
    • 用于生产石英玻璃的已知SiO 2浆料含有粒径达到最大500μm的分散液和无定形SiO 2颗粒,其中最大体积分数由粒径在1m-60μm的SiO2颗粒组成, 以及颗粒尺寸小于100nm的SiO 2纳米颗粒在0.2-15重量%(整个固体含量)的范围内。 为了制备这样的浆料,并且通过修整或倒出浆料来优化这种浆料在后续加工过程中的流动行为,并且关于稍后的干燥和烧结而没有裂纹,本发明提出了具有 SiO 2颗粒具有粒径的多峰分布,其尺寸分布的第一最大值在1mum-3μm的范围内,第二最大值在5mum-50μm的范围内,固体含量(SiO 2的重量百分比 颗粒和SiO 2纳米颗粒)在83%-90%的范围内。
    • 4. 发明申请
    • Method for bonding components made of high silica material
    • 用于粘结由高二氧化硅材料制成的部件的方法
    • US20090151848A1
    • 2009-06-18
    • US12316496
    • 2008-12-12
    • Waltraud WerdeckerJuergen WeberNorbert TraegerMaximilian KaraRoland Horn
    • Waltraud WerdeckerJuergen WeberNorbert TraegerMaximilian KaraRoland Horn
    • B32B37/02
    • C03C27/06
    • The present invention relates to a method for bonding components made of high silica material by way of integral joining by forming a high-silica bonding mass between connecting surfaces of the components. A method is provided which permits an inexpensive production of a mechanically and thermally stable composite of components made of a high silica material, particularly for large-area bonded connections for which a contact pressure of more than 5 N/cm2 is applied while the connecting surfaces are being fixed, and/or the path length for possible degassing products from the bonded connection is more than 150 mm. This object is achieved according to the invention in that the SiO2 bonding mass is used in dry form either right from the beginning or at least the SiO2 bonding mass is dried on the connecting surfaces before the joining process and the surfaces to be bonded are subsequently brought into contact and a firm composite is created by way of heating with formation of a SiO2 containing bonding mass.
    • 本发明涉及通过在组件的连接表面之间形成高二氧化硅粘合质量而通过整体接合来接合由高二氧化硅材料制成的部件的方法。 提供了一种方法,其允许廉价地生产由高二氧化硅材料制成的组分的机械和热稳定复合材料,特别是对于其中施加大于5N / cm 2的接触压力的大面积接合连接,而连接表面 和/或来自粘合连接的可能脱气产物的路径长度大于150mm。 根据本发明的目的是根据本发明实现的,因为SiO 2粘结物质从一开始就以干式形式使用,或者至少在接合过程之前在连接表面上干燥SiO 2接合物质,随后将待粘合的表面 接触,并通过加热形成含有SiO 2的粘合物质形成牢固的复合材料。
    • 6. 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%。
    • 7. 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。