会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Multilayered liquid container
    • 多层液体容器
    • US08309189B2
    • 2012-11-13
    • US13057439
    • 2009-07-27
    • Toyoaki SuzukiKoichi MiuraAtsushi Mio
    • Toyoaki SuzukiKoichi MiuraAtsushi Mio
    • B29D22/00
    • B65D75/5883A61J1/10A61J1/1475B32B27/32Y10T428/1352
    • A multilayered liquid container having a discharge port welded under specified conditions to a sealant, which is constituted of a resin comprising a cycloolefin resin as a main component. The discharge port is composed of: an innermost layer constituted of a resin comprising a cycloolefin as a main component; and a surface layer whose main part is constituted of a resin comprising a specific type of polyethylene as a main component. According to the present invention, there can be provided a multilayered liquid container, which can prevent an effective component of a content fluid from being adsorbed onto or penetrating through not only the container body, but also the resin constituting the discharge port, and enables high temperature sterilization treatment, coupled with the discharge port having high welded strength and drop strength.
    • 一种多层液体容器,其具有在特定条件下焊接到由包含环烯烃树脂作为主要成分的树脂构成的密封剂的排出口。 排出口由以下物质构成:由以环烯为主要成分的树脂构成的最内层; 以及其主要部分由包含特定类型的聚乙烯作为主要成分的树脂构成的表面层。 根据本发明,可以提供一种多层液体容器,其能够防止含量流体的有效成分不仅吸附到或穿过容器主体,也可以渗透到构成排出口的树脂上,并且能够高 与排出口相结合,焊接强度高,落下强度高。
    • 3. 发明授权
    • Multipurpose optical sensor
    • 多用途光学传感器
    • US5838843A
    • 1998-11-17
    • US604742
    • 1996-02-23
    • Shinichi AoseKoichi MiuraTakashi Hiyama
    • Shinichi AoseKoichi MiuraTakashi Hiyama
    • G01D5/353G01J1/02G01N21/25G01N21/31G01N21/47G01N21/49G01N21/64G02B6/04
    • G01N21/25G01N21/49
    • A multipurpose optical sensor including an even number of optical fiber bundles, and optical systems for converting light guided through optical fiber bundles and leaving leading ends of optical fiber bundles into a substantially parallel light beam in a direction at right angles with the axes thereof, and converging substantially parallel light beam incident on axes from a direction at right angles therewith and guiding the thus converged light beam from leading ends into optical fiber bundles in the form of guide light. The optical fiber bundles are concentrically located in the vicinity of leading ends and, one set of optical systems for a pair of opposing optical fiber bundles, with the center of the concentric circle being positioned therebetween, is opposed to each other at an interval and disposed such that substantially parallel light beam leaving one set of optical systems is incident on other set of optical systems, and trailing ends of the even number of optical fiber bundles are constructed such that trailing ends separately receive or give out light.
    • 包括偶数个光纤束的多功能光学传感器以及用于转换通过光纤束导引的光的光学系统,并将光纤束的前端沿与其轴线成直角的方向留在基本上平行的光束中;以及 从与其成直角的方向入射到轴上的大致平行的光束会聚,并将来自前端的会聚的光束以引导光的形式引导到光纤束中。 光纤束同心地位于前端附近,并且一组相对的光纤束的一组光学系统,同心圆的中心位于它们之间,以间隔彼此相对设置 使得离开一组光学系统的基本平行的光束入射到另一组光学系统上,并且偶数个光纤束的尾端被构造成使得后端分别接收或发出光。
    • 7. 发明授权
    • Eddy current braking apparatus
    • 涡流制动装置
    • US06725982B2
    • 2004-04-27
    • US09778882
    • 2001-02-08
    • Yasunori TaniKenji ArakiKoichi MiuraAkira SaitoYasutaka NoguchiKenji ImanishiKeiichi Kawano
    • Yasunori TaniKenji ArakiKoichi MiuraAkira SaitoYasutaka NoguchiKenji ImanishiKeiichi Kawano
    • B60L700
    • H02K49/043
    • A single row rotating-type eddy current braking apparatus for use with a rotor mounted on a powered shaft comprises a support ring, a plurality of magnets, a plurality of ferromagnetic switching plates, and a support body. The switching plates or magnets are capable of rotating with respect to each other to effect braking. The dimensions of the switching plates and angular displacement of the magnets and switching plates are controlled to minimize drag torque when in a non-braking state. The switching plates can be made to rotate and the bearing can be employed in combination with the rotating and stationary components to alleviate problems such as thermal expansion and wear. The apparatus also utilizes a pneumatic cylinder designed to rotate in the direction of the shaft rotation to achieve a braking state, and can employ a single rod double acting cylinder to switch between braking and non-braking states.
    • 一种与安装在动力轴上的转子一起使用的单列旋转式涡流制动装置包括支撑环,多个磁体,多个铁磁切换板和支撑体。 切换板或磁体能够相对于彼此旋转以实现制动。 控制切换板的尺寸和磁体和切换板的角位移以在非制动状态下最小化拖曳扭矩。 开关板可以旋转,并且轴承可以与旋转和静止部件组合使用,以减轻诸如热膨胀和磨损的问题。 该装置还利用设计成沿轴旋转方向旋转的气缸,以实现制动状态,并且可采用单杆双作用气缸在制动和非制动状态之间切换。
    • 9. 发明授权
    • Multi-chamber container
    • 多室容器
    • US07976917B2
    • 2011-07-12
    • US10582100
    • 2004-12-10
    • Toyoaki SuzukiKoichi MiuraKenjiro Takayanagi
    • Toyoaki SuzukiKoichi MiuraKenjiro Takayanagi
    • B29D22/00
    • A61J1/2093A61J1/10A61J1/2024A61M2207/00B32B27/08B32B27/32B32B2250/242B32B2307/31B32B2307/5825B32B2439/40B65D75/5883B65D81/3266Y10T428/1334Y10T428/1352
    • Multi-chamber container (1) having its interior partitioned by weak seal portions (3) provided through detachable heat sealing so that multiple contents are accommodated separately from each other, wherein use is made of heat seal layers consisting of a composition comprising two types of propylene copolymers components (component A and component B) from propylene and ethylene and/or a C4-C8 α-olefin which have the following elution properties. Thus, a region wherein a change of seal strength by a change of heat seal temperature is small has a wide temperature range to thereby facilitate controlling of the seal strength at the weak seal portions. The proportion (mass %) of, to total solution, elution according to the TREF method (temperature: 0 to 140° C. and solvent: ODCB) is as follows. With respect to component A: 15 to 50 at 0° C., and 5 to less than 15 at 60 to 90° C. With respect to component B: 0 to 25 at 0° C., and 15 to 70 at 60 to 90° C.
    • 多室容器(1)具有通过可拆卸热封提供的弱密封部分(3)的内部分隔,使得多个内容物彼此分开容纳,其中使用的热封层由包含两种 来自丙烯和乙烯的丙烯共聚物组分(组分A和组分B)和/或具有以下洗脱性质的C 4 -C 8α-烯烃。 因此,通过热封温度的变化,密封强度的变化小的区域具有宽的温度范围,从而有助于控制弱密封部分处的密封强度。 相对于总溶液,根据TREF方法(温度:0〜140℃,溶剂:ODCB)的洗脱比例(质量%)如下。 相对于组分A,在0℃为15〜50℃,在60〜90℃为5〜15℃。相对于组分B,0℃为0〜25℃,在60〜 90°C