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    • 73. 发明申请
    • APPARATUS FOR PRODUCING MOLTEN GLASS, APPARATUS AND PROCESS FOR PRODUCING GLASS PRODUCTS
    • 用于生产玻璃制品的装置,用于生产玻璃制品的装置和方法
    • US20110126594A1
    • 2011-06-02
    • US12628643
    • 2009-12-01
    • Hiroshi MatsuiTatsuya OkamotoShingo Yamada
    • Hiroshi MatsuiTatsuya OkamotoShingo Yamada
    • C03B5/26
    • C03B5/04C03B3/026C03B5/2353Y02P40/55
    • The present invention provides an apparatus for producing molten glass, an apparatus for producing glass products and a process for producing glass products, which achieve production of various types of glass products of small lot with high energy efficiency in a short time.An apparatus for producing molten glass comprising an upper mechanism having at least one upper furnace body constituting an upper part of a glass-melting furnace, and at least one lower furnace body constituting a lower part or a glass-melting furnace and configured to be coupled with the upper furnace body to constitute at least one glass-melting furnace; one or both of the upper mechanism and the lower mechanism being configured so that their positions are movable so that at least one glass-melting furnace is constituted by combining the upper furnace body and the lower furnace body and the combination of the upper furnace bodies and the lower furnace bodies is changeable; the upper furnace body having an oxygen burner for producing a downward flame in the glass-melting furnace constituted by the upper furnace body and the lower furnace body, a gas-supplying line for supplying a combustion-support gas and a fuel gas to the oxygen burner, and a glass-raw-material-conveying path for supplying a glass raw material to the flame produced by the oxygen burner; and the lower mechanism having a furnace-bottom portion of the lower furnace body for storing a molten glass, a temperature-adjusting bath connected with the furnace-bottom portion and for storing the molten glass flown from the furnace-bottom portion and conducting a temperature adjustment, and a molten-glass-discharge port for discharging the molten glass from the temperature-adjusting bath.
    • 本发明提供一种熔融玻璃的制造装置,玻璃制品的制造装置以及玻璃制品的制造方法,其能够在短时间内实现高能量生产各种小批量的玻璃制品。 一种用于生产熔融玻璃的设备,包括具有构成玻璃熔炉的上部的至少一个上炉体的上机构和构成下部的至少一个下炉体或玻璃熔化炉,并被配置为联接 与上炉体构成至少一个玻璃熔炉; 上部机构和下部机构中的一个或两个被构造成使得它们的位置是可移动的,使得至少一个玻璃熔炉通过组合上炉体和下炉体以及上炉体和 下炉体是可变的; 上炉体具有用于在由上炉体和下炉体构成的玻璃熔化炉中产生向下火焰的氧气燃烧器,用于向氧气供应燃烧载气体和燃料气体的气体供应管线 燃烧器和用于将玻璃原料供应到由氧燃烧器产生的火焰的玻璃原料输送路径; 并且下部机构具有用于储存熔融玻璃的下部炉体的炉底部分,与炉底部分连接的温度调节浴,并且用于储存从炉底部分流出的熔融玻璃,并传导温度 以及用于将熔融玻璃从温度调节槽排出的熔融玻璃排出口。
    • 75. 发明授权
    • Magnetic nanotubes
    • 磁性纳米管
    • US07834139B2
    • 2010-11-16
    • US10593514
    • 2005-03-14
    • Hiroshi MatsuiTadashi Matsunaga
    • Hiroshi MatsuiTadashi Matsunaga
    • A61K38/00H01F1/00C01G49/08
    • B82Y30/00B82Y5/00B82Y15/00B82Y25/00C01G49/08C01P2004/04C01P2004/13C01P2004/64C01P2006/42C07K14/195G01N33/56911G01N33/588H01F1/0081Y10S977/838Y10S977/904Y10T428/32
    • A magnetic nanotube includes bacterial magnetic nanocrystals contacted onto a nanotube which absorbs the nanocrystals. The nanocrystals are contacted on at least one surface of the nanotube. A method of fabricating a magnetic nanotube includes synthesizing the bacterial magnetic nanocrystals, which have an outer layer of proteins. A nanotube provided is capable of absorbing the nanocrystals and contacting the nanotube with the nanocrystals. The nanotube is preferably a peptide bolaamphiphile. A nanotube solution and a nanocrystal solution including a buffer and a concentration of nanocrystals are mixed. The concentration of nanocrystals is optimized, resulting in a nanocrystal to nanotube ratio for which bacterial magnetic nanocrystals are immobilized on at least one surface of the nanotubes. The ratio controls whether the nanocrystals bind only to the interior or to the exterior surfaces of the nanotubes. Uses include cell manipulation and separation, biological assay, enzyme recovery, and biosensors.
    • 磁性纳米管包括接触纳米管的细菌磁性纳米晶体,其吸收纳米晶体。 纳米晶体在纳米管的至少一个表面上接触。 制造磁性纳米管的方法包括合成具有蛋白质外层的细菌磁性纳米晶体。 所提供的纳米管能够吸收纳米晶体并使纳米管与纳米晶体接触。 纳米管优选为多肽多肽。 混合包含缓冲液和纳米晶体浓度的纳米管溶液和纳米晶体溶液。 纳米晶体的浓度被优化,导致纳米晶体与纳米管的比率,细菌磁性纳米晶体固定在纳米管的至少一个表面上。 该比例控制纳米晶体是否仅结合到纳米管的内部或外部表面。 用途包括细胞操作和分离,生物测定,酶回收和生物传感器。
    • 76. 发明申请
    • RUN-FLAT TIRE
    • 跑平轮胎
    • US20100236683A1
    • 2010-09-23
    • US12741130
    • 2008-11-06
    • Hiroshi MatsuiChieko AokiTakaaki Ishida
    • Hiroshi MatsuiChieko AokiTakaaki Ishida
    • B60C17/04
    • B60C11/0083B29D2030/724B60C11/0306B60C11/0318B60C15/0045B60C17/0009B60C17/0045
    • A run-flat tire capable of reducing weight and enhancing its uniformity. The run-flat tire 1 provides a troidal carcass 6 extending from a tread portion 2 to the bead core of each bead portion 4 through each of sidewall portions 3 and a pair of side reinforcing rubbers 9 arranged inside the carcass 6 and extending along the sidewall portions 3 in the tire radial direction inwardly and outwardly. In the outer surface of the tread portion 2, pattern elements are arranged, thereby forming a pitch pattern. Each of the side reinforcing rubber 9 provides with recesses 11 circumferentially spaced on the inner surface of side reinforcing rubber facing the tire cavity. The total number (n) of recesses 11 on each of the side reinforcing rubber 9 is 0.70 to 1.30 times the total number of pattern elements.
    • 一种能够减轻重量并提高其均匀性的漏气保用轮胎。 漏气保用轮胎1提供从胎面部2延伸到每个胎圈部4的胎圈芯的胎体6,每个侧壁部分3和一对侧部增强橡胶9布置在胎体6的内部并沿着侧壁延伸 轮胎径向内侧和向外的部分3。 在胎面部2的外表面设置图案元件,由此形成节距图案。 侧面增强橡胶9中的每一个在面向轮胎腔的侧面增强橡胶的内表面上周向隔开设置凹部11。 每个侧面增强橡胶9上的凹部11的总数(n)为图形元素总数的0.70〜1.30倍。
    • 78. 发明授权
    • Method for producing quartz glass crucible for use in pulling silicon single crystal and quartz glass crucible produced by said method
    • 用于拉制由所述方法生产的硅单晶和石英玻璃坩埚中使用的石英玻璃坩埚的方法
    • US07587912B2
    • 2009-09-15
    • US10547053
    • 2004-02-20
    • Yasuo OhamaHiroshi Matsui
    • Yasuo OhamaHiroshi Matsui
    • C03B19/09
    • C03B19/095C03B2201/04C30B15/10
    • The present invention refers to a method for producing a quartz glass crucible for use in pulling silicon single crystal, said crucible having at least a double-layer structure comprising a pore-free transparent inner layer and an opaque base body or outer layer having pores, characterized in that at least the base body is formed with a silica powder maintained in a gas having a mixing ratio of 0.0005 to 0.0065 kg/kg (dry gas), and a quartz glass crucible produced by said production method. The obtained crucible has an average OH group concentration of 50 ppm or lower and is capable of suppressing the vibration occurring on the surface of silicon melt during pulling the silicon single crystal. Further the obtained crucible suffers less deformation of the crucible on pulling the silicon single crystal.
    • 本发明涉及一种用于制造用于拉硅单晶的石英玻璃坩埚的方法,所述坩埚至少具有包含无孔透明内层和不透明基体或具有孔的外层的双层结构, 其特征在于,至少所述基体由保持在混合比为0.0005〜0.0065kg / kg(干燥气体)的气体中的二氧化硅粉末和由所述制造方法制造的石英玻璃坩埚形成。 得到的坩埚的OH基浓度的平均值为50ppm以下,能够抑制在拉伸硅单晶时在硅熔体表面发生的振动。 此外,所获得的坩埚在拉制硅单晶时受到较小的坩埚变形。