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    • 1. 发明申请
    • Plastic containers coated on the inner surface and process for production thereof
    • 涂在内表面上的塑料容器及其生产方法
    • US20050118365A1
    • 2005-06-02
    • US10507887
    • 2003-04-23
    • Shunzo MiyazakiYuji YamashitaHiroyuki NakaneShouhei ShimuraAkihisa Suzuki
    • Shunzo MiyazakiYuji YamashitaHiroyuki NakaneShouhei ShimuraAkihisa Suzuki
    • C23C16/04C23C16/26H05H1/24B32B9/00
    • C23C16/045C23C16/26Y10T428/13Y10T428/1317Y10T428/30Y10T428/31786
    • The invention provides a plastic container with a coated inner surface having superior gas barrier properties. It further provides a plastic container with a coated inner surface capable of suppressing elution of minor components from the resin, in addition to having the superior gas barrier properties. The container has on its inner surface an amorphous carbon film formed by plasma CVD from a starting material containing carbon atoms and whose main component is carbon. In the carbon film, when the number of carbon atoms contained in the film is 100, the ratio of the number of nitrogen atoms is 15 or less, or the ratio of the number of oxygen atoms is 20 or less, or the ratio of the total number of nitrogen atoms and oxygen atoms is 27 or less. Alternatively, when the number of carbon atoms contained in the film is 100, the ratio of the number of nitrogen atoms is 15 or less, the ratio of the number of oxygen atoms is 20 or less, and the ratio of the total number of nitrogen atoms and oxygen atoms is 27 or less. The amorphous carbon film exhibits an oxygen permeability of 20×10−5 ml/day/cm2 or less.
    • 本发明提供一种塑料容器,其具有优异的气体阻隔性能的涂覆内表面。 除了具有优异的阻气性之外,还提供了具有能够抑制次要组分从树脂中洗脱的涂覆内表面的塑料容器。 容器在其内表面上具有通过等离子体CVD形成的无定形碳膜,其由含有碳原子的原料形成,其主要成分为碳。 在碳膜中,当膜中含有的碳原子数为100时,氮原子数为15以下,氧原子数的比例为20以下, 氮原子和氧原子的总数为27以下。 或者,当膜中所含的碳原子数为100时,氮原子数为15以下,氧原子数为20以下,氮的总数 原子和氧原子为27以下。 无定形碳膜的透氧度为20×10 -5 /天/ cm 2以下。
    • 2. 发明申请
    • Method and Device for Manufacturing Content-Filled Bottle
    • 制造内装瓶的方法和装置
    • US20090218003A1
    • 2009-09-03
    • US12226868
    • 2007-05-11
    • Shunzo MiyazakiYasuhiro SatoHiroyuki NakaneAkio WatanabeMasaru KimuraTomoya Oosaka
    • Shunzo MiyazakiYasuhiro SatoHiroyuki NakaneAkio WatanabeMasaru KimuraTomoya Oosaka
    • B67C3/14B67C3/24
    • B65D1/0276B29K2067/00B29L2031/7158B67C3/045B67C3/14B67C2003/226
    • A method and device for manufacturing a content-filled bottle having an inversion part at its bottom. In producing the bottle, the inversion part is inverted to prevent deformation of a body part caused by a pressure reduction in the bottle, and as a result, inappropriate deformation and buckling of the bottle are prevented, enabling efficient manufacturing of the bottle with high quality. The bottle (3) is held from the outside by an empty-bottle chuck (41) of auxiliary device mounting means in such a way that the bottle (3) is held at its a mouth part (4) by the chuck along the upper surface of a flange part (10) of the bottle (3). Next, an empty-bottle support table (42) on which an assistance device (24) is placed is raised, the assistance device (24) is mounted on a bottom part (7) of the bottle (3), and the bottle (3) is placed on the empty-bottle support table (42). After that, with the empty bottle (3) held positioned by the empty-bottle chuck (41) and the empty-bottle support table (42), the inversion part (12) is projected to the outside of the body part (6) by a push-down member (54) of bottom projecting means. Then, the bottle (3) is filled with contents and sealed by a cap. The inverted part (12) is recessed into the body part (6), and the assistance device (24) is separated from the bottle (3).
    • 一种在其底部具有反转部分的内装瓶的制造方法和装置。 在生产瓶子时,反转部分被倒置以防止由于瓶子的压力降低引起的身体部位的变形,从而防止了瓶子的不适当的变形和弯曲,从而能够高效地制造具有高质量的瓶子 。 瓶子(3)通过辅助装置安装装置的空瓶卡盘(41)从外部保持,使得瓶子(3)沿着上部通过卡盘保持在其口部(4)处, 瓶子(3)的凸缘部分(10)的表面。 接着,升起在其上放置有辅助装置(24)的空瓶支撑台(42),辅助装置(24)安装在瓶(3)的底部(7)上,并且瓶 3)放置在空瓶支撑台(42)上。 之后,通过由空瓶卡盘(41)和空瓶支撑台(42)定位的空瓶(3),反转部(12)突出到主体部(6)的外侧, 通过底部突出装置的下推构件(54)。 然后,将瓶子(3)填充内容物并用盖子密封。 倒置部分(12)凹入主体部分(6)中,辅助装置(24)与瓶子(3)分离。
    • 6. 发明授权
    • Electromagnetic driving device and flow rate controlling apparatus employing the same driving device
    • 采用相同驱动装置的电磁驱动装置和流量控制装置
    • US06806802B2
    • 2004-10-19
    • US10055034
    • 2002-01-25
    • Kenichi OishiMotoyoshi AndoHiroyuki Nakane
    • Kenichi OishiMotoyoshi AndoHiroyuki Nakane
    • H01H300
    • F16K31/0613F16K31/0624H01F7/081H01F7/13H01F7/1607
    • Non-magnetic layers are formed on an inner circumferential wall of a housing portion 13 and an outer circumferential wall of a plunger 17, respectively. Assuming that the thickness of the non-magnetic layer of the housing portion is t0, the thickness of the non-magnetic layer of the plunger is t1, a magnetic gap formed in a radial direction between respective magnetic materials of the housing portion and the plunger which excludes the non-magnetic layers is d0, and an air gap formed in a radial direction between the non-magnetic layers when the plunger does not deviate from but remains coaxial with the housing portion is d1, the thickness are set so as to satisfy 40 &mgr;m≦t0+t1≦80 &mgr;m, d0≈100 &mgr;m. In addition, it is set such that the attracting portion becomes saturated magnetically when the value of electric current that is supplied to a coil increases to reach a predetermined value which falls between 40% or larger and 60% of smaller of a maximum value of the electric current.
    • 非磁性层分别形成在壳体部13的内周壁和柱塞17的外周壁上。 假设壳体部分的非磁性层的厚度为t0,柱塞的非磁性层的厚度为t1,在壳体部分的各个磁性材料和柱塞之间沿径向形成的磁隙 排除非磁性层的不是非磁性层的情况是d0,当柱塞没有偏离但与壳体部分保持同轴时,在非磁性层之间形成的径向空气间隙为d1,厚度设定为满足 40 mum <= t0 + t1 <= 80 mum,d0〜100 mum。 此外,当供给到线圈的电流值增加到达预定值的40%以上且60%以下的最大值的小的值时,吸引部分被设定为使得吸引部分变得饱和 电流。
    • 7. 发明申请
    • Spool valve
    • 阀芯阀
    • US20080230452A1
    • 2008-09-25
    • US12073201
    • 2008-03-03
    • Hidenori FujiiHiroyuki Nakane
    • Hidenori FujiiHiroyuki Nakane
    • B01D35/157B01D21/34
    • F16K31/0613
    • A spool valve includes a sleeve, a spool and a filter. The sleeve is configured into a generally tubular form and has an opening, which communicates between inside and outside of the sleeve. The spool is axially slidably supported in the sleeve to change an opening degree of the opening of the sleeve. The filter is installed to the opening of the sleeve to filter fluid, which passes through the opening. The filter is configured into a generally rectangular form such that four outer edge portions of the filter are placed generally in a common imaginary plane. The sleeve includes two guide grooves that receive two opposed sides, respectively, of the filter.
    • 滑阀包括套筒,线轴和过滤器。 套筒构造成大致管状的形状,并具有开口,该开口在套筒的内部和外部连通。 阀芯轴向可滑动地支撑在套筒中以改变套筒开口的开度。 过滤器安装到套筒的开口以过滤通过开口的流体。 过滤器被构造成大致矩形形状,使得过滤器的四个外边缘部分通常放置在共同的假想平面中。 套筒包括分别容纳过滤器的两个相对侧的两个引导槽。