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    • 1. 发明申请
    • Toner and image forming method
    • 调色剂和成像方法
    • US20070072104A1
    • 2007-03-29
    • US11528310
    • 2006-09-28
    • Naruo YabeKouzou TeramotoKousuke SatoTomohiko Kubo
    • Naruo YabeKouzou TeramotoKousuke SatoTomohiko Kubo
    • G03G9/08
    • G03G9/09708G03G9/09716
    • When a titanium oxide surface-treated with a titanate-based coupling agent is used as an external additive on the surface of toner particles, titanium oxides are likely to be aggregated with each other and aggregated titanium oxide particles are likely to fall off from the surface of the toner. As a result, since toner particles do not support a required amount of titanium oxide particles, poor charging of the toner may occur and fog increases. Therefore, when a toner for electrostatic latent image development comprises color particles containing at least a binder resin and a colorant, and titanium oxide, as an external additive, formed on the surface of the color particles, the titanium oxide being surface-treated with a titanate-based coupling agent containing 30% or less of a solvent soluble component, aggregation of titanium oxides can be reduced and stable charging of the toner can be achieved, and thus the resulting image is stable for a long period.
    • 当用钛酸酯类偶联剂表面处理的氧化钛作为调色剂颗粒表面的外部添加剂时,钛氧化物可能彼此聚集,聚集的氧化钛颗粒很可能从表面脱落 的调色剂。 结果,由于调色剂颗粒不支持所需量的氧化钛颗粒,所以调色剂的充电可能会发生并且雾化增加。 因此,当用于静电潜像显影的调色剂包括至少含有粘合剂树脂和着色剂的着色颗粒和形成在着色颗粒表面上的氧化钛作为外部添加剂时,用氧化钛表面处理 含有30%以下的溶剂可溶性成分的钛酸酯系偶联剂可以降低钛氧化物的聚集,可以实现调色剂的稳定充电,因此得到的图像长时间稳定。
    • 5. 发明申请
    • COOLING SYSTEM
    • 冷却系统
    • US20140216085A1
    • 2014-08-07
    • US14235969
    • 2012-07-31
    • Yoshiaki KawakamiYuki JojimaEizo TakahashiKousuke SatoYuichi OhnoKazuhide Uchida
    • Yoshiaki KawakamiYuki JojimaEizo TakahashiKousuke SatoYuichi OhnoKazuhide Uchida
    • F01P9/06
    • F01P9/06B60H1/00278B60H1/143B60H1/323B60H2001/00307B60H2001/3288
    • A cooling system (1) that cools an HV apparatus (31) includes a compressor (12) that circulates a refrigerant, a heat exchanger (14) that carries out heat exchange between the refrigerant and outside air, an expansion valve (16) that reduces the pressure of the refrigerant, a heat exchanger (18) that carries out heat exchange between the refrigerant and air-conditioning air, a cooling portion (30) that cools, the HV apparatus (31) using the refrigerant that flows between the heat exchanger (14) and the expansion valve (16), a gas-liquid separator (40) that separates the refrigerant that flows between the heat exchanger (14) and the cooling portion (30) into a liquid-phase refrigerant and a gas-phase refrigerant, and a liquid accumulator (70) that is provided between the gas-liquid separator (40) and the cooling portion (30), and that retains the liquid-phase refrigerant separated by the gas-liquid separator (40).
    • 冷却HV设备(31)的冷却系统(1)包括:制冷剂循环的压缩机(12);在制冷剂和外部空气之间进行热交换的热交换器(14);膨胀阀(16),其 降低制冷剂的压力,在制冷剂和空调空气之间进行热交换的热交换器(18),使用在热量之间流动的制冷剂使HV装置(31)冷却的冷却部(30) 交换器(14)和膨胀阀(16),将在热交换器(14)和冷却部分(30)之间流动的制冷剂分离成液相制冷剂和气 - 液制冷剂的气 - 液分离器(40) 以及设置在所述气液分离器(40)和所述冷却部(30)之间并且保持由所述气液分离器(40)分离的所述液相制冷剂的液体蓄积器(70)。