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    • 2. 发明申请
    • Magnetic disk glass substrate manufacturing method and magnetic disk manufacturing method
    • 磁盘玻璃基板的制造方法和磁盘的制造方法
    • US20050284179A1
    • 2005-12-29
    • US11078324
    • 2005-03-14
    • Hideki IsonoShinji EdaKazuhiko MaedaNaohiro KamiyaNobuyuki Eto
    • Hideki IsonoShinji EdaKazuhiko MaedaNaohiro KamiyaNobuyuki Eto
    • C03C3/083C03C19/00C03C21/00
    • C03C3/083C03C19/00C03C21/002
    • A magnetic disk glass substrate manufacturing method includes a step of polishing a surface of a glass substrate to a mirror surface, a gas heating process step of causing a heated atmosphere and the glass substrate to contact each other so as to heat the glass substrate at a temperature T0, a step of causing a chemically strengthening salt melted exceeding a freezing temperature TF and the glass substrate to contact each other so as to chemically strengthen the glass substrate at a temperature T1, a gas cooling process step of causing a gas coolant and the glass substrate to contact each other so as to cool the glass substrate to a temperature T2, and a liquid cooling process step of causing a liquid coolant and the glass substrate to contact each other so as to cool the glass substrate to a temperature T3, the above-mentioned steps being included in this order, wherein the temperature T2 is set to a temperature less than the freezing temperature TF of the chemical strengthening salt in a gas cooling process.
    • 磁盘玻璃基板的制造方法包括将玻璃基板的表面研磨成镜面的工序,使加热气氛与玻璃基板接触的气体加热工序,以将玻璃基板加热到 温度T <0℃,使化学强化盐熔化超过冷冻温度T F F和玻璃基板彼此接触的步骤,以化学强化玻璃基板 温度T 1℃,使气体冷却剂和玻璃基板彼此接触以将玻璃基板冷却至温度T 2的气体冷却工序, 以及使液体冷却剂和玻璃基板彼此接触以使玻璃基板冷却至T 3 3℃的液体冷却工序,上述步骤依次包含, 其中温度T 2 2被设定为小于th的温度 在气体冷却过程中的化学强化盐的冷冻温度T≠F。
    • 3. 发明授权
    • Magnetic disk glass substrate manufacturing method
    • 磁盘玻璃基板的制造方法
    • US07703303B2
    • 2010-04-27
    • US11078324
    • 2005-03-14
    • Hideki IsonoShinji EdaKazuhiko MaedaNaohiro KamiyaNobuyuki Eto
    • Hideki IsonoShinji EdaKazuhiko MaedaNaohiro KamiyaNobuyuki Eto
    • C03C21/00
    • C03C3/083C03C19/00C03C21/002
    • A magnetic disk glass substrate manufacturing method includes a step of polishing a surface of a glass substrate to a mirror surface, a gas heating process step of causing a heated atmosphere and the glass substrate to contact each other so as to heat the glass substrate at a temperature T0, a step of causing a chemically strengthening salt melted exceeding a freezing temperature TF and the glass substrate to contact each other so as to chemically strengthen the glass substrate at a temperature T1, a gas cooling process step of causing a gas coolant and the glass substrate to contact each other so as to cool the glass substrate to a temperature T2, and a liquid cooling process step of causing a liquid coolant and the glass substrate to contact each other so as to cool the glass substrate to a temperature T3, the above-mentioned steps being included in this order, wherein the temperature T2 is set to a temperature less than the freezing temperature TF of the chemical strengthening salt in a gas cooling process.
    • 磁盘玻璃基板的制造方法包括将玻璃基板的表面研磨成镜面的工序,使加热气氛与玻璃基板接触的气体加热工序,以将玻璃基板加热到 温度T0,使化学强化盐熔化超过冷冻温度TF的步骤和玻璃基板彼此接触,以便在温度T1下化学强化玻璃基板;气体冷却工艺步骤,使气体冷却剂和 玻璃基板彼此接触以将玻璃基板冷却至温度T2;以及液体冷却步骤,使液体冷却剂和玻璃基板彼此接触,以将玻璃基板冷却至温度T3, 上述步骤按照该顺序包括,其中将温度T2设定为低于化学强化盐的冷冻温度TF的温度 在气体冷却过程中。
    • 10. 发明授权
    • Fluorine-containing polymerizable monomer and polymer compound using same
    • 含氟聚合性单体和使用其的高分子化合物
    • US07728103B2
    • 2010-06-01
    • US12533024
    • 2009-07-31
    • Hiroshi SaegusaSatoru NarizukaKazuhiko Maeda
    • Hiroshi SaegusaSatoru NarizukaKazuhiko Maeda
    • C08G63/06
    • C07C217/90C08G73/1039
    • Polymer compounds obtained by polymerization of a fluorine-containing polymerizable monomer represented by the formula [1] in which A represents a single bond, oxygen atom, sulfur atom, CO, CH2, SO, SO2, C(CH3)2, NHCO, C(CF3)2, phenyl, or aliphatic ring; “a” and “b” each independently represent an integer of 0-2, and 1≦a+b≦4. This fluorine-containing polymerizable monomer can be used as an effective polymerizable monomer, which can exhibit water repellency, oil repellency, low water absorptive property, heat resistance, weather resistance, corrosion resistance, transparency, photosensitivity, low refractive index property, low dielectric property, etc., and can be used for advanced polymer material fields.
    • A表示单键,氧原子,硫原子,CO,CH 2,SO,SO 2,C(CH 3)2,NHCO,C的式[1]表示的含氟聚合性单体聚合得到的高分子化合物 (CF 3)2,苯基或脂族环; “a”和“b”各自独立地表示0-2的整数,1&nlE; a + b&nlE; 4。 该含氟聚合性单体可以用作有效的可聚合单体,其可以具有防水性,拒油性,低吸水性,耐热性,耐候性,耐腐蚀性,透明性,光敏性,低折射率性,低介电性 等,可用于高级聚合物材料领域。