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    • 25. 发明申请
    • BAND CLIP
    • 带夹
    • US20130193279A1
    • 2013-08-01
    • US13878792
    • 2011-03-28
    • Hiroaki Tanaka
    • Hiroaki Tanaka
    • F16L3/137
    • F16L3/137B60R16/0215F16B21/086H02G3/32Y10T24/1498
    • A band clip includes a body, a band integral with the body, and a clip that is attached to the body. The body has a vertical plate with a band insertion hole and a horizontal plate with a clip attachment hole. The band extends from the vertical plate. Locking holes penetrate the band at intervals. The clip includes a shaft that is fit into the clip attachment hole of the body, a wing on one end of the shaft, a band locking claw at another end of the shaft, and a body locking claw on an intermediate portion of the shaft. The band is wrapped around a group of wires and inserted into the band insertion hole. The band locking claw of the clip is inserted into and locked to a band locking hole, and the body locking claw contacts the surface of the body.
    • 带夹包括主体,与身体整体的带,以及附接到身体的夹子。 本体具有带有带插孔的垂直板和带有夹子安装孔的水平板。 带从垂直板延伸。 锁孔每隔一段时间穿透。 该夹子包括一个装配在主体的夹子附接孔中的轴,在轴的一端上的翼,在轴的另一端的带锁定爪,以及在轴的中间部分上的主体锁定爪。 带缠绕在一组电线上并插入带插入孔。 夹子的带锁定爪插入并锁定到带锁定孔,并且身体锁定爪接触身体的表面。
    • 27. 发明授权
    • Resin composition for optical member and optical member obtained from the same
    • 用于光学部件的树脂组合物和由其获得的光学部件
    • US08389671B2
    • 2013-03-05
    • US12529918
    • 2008-03-11
    • Motoharu TakeuchiHiroshi HorikoshiHiroaki TanakaHirohito Ishizuka
    • Motoharu TakeuchiHiroshi HorikoshiHiroaki TanakaHirohito Ishizuka
    • B32B27/30G02B1/00G02B1/04
    • C08F12/30C08F212/08C08F212/14C08F212/36C08F216/1466C08F220/38C08F2222/1013C08G75/08G02B1/04C08L81/00
    • The present invention can provide a composition for optical members, which contains (a) a compound having one or more of any group selected from the group consisting of an acryloyl group, a methacryloyl group, an allyl group and a vinyl group and one or more β-epithiopropyl groups in a molecule. In a preferable embodiment of the present invention, the composition for optical members further contains at least one compound selected from (b) a compound having one or more β-epithiopropyl groups in a molecule while having no polymerizable unsaturated bond group, (c) an inorganic compound having a sulfur atom and/or a selenium atom, (d) a compound having one or more thiol groups in a molecule, (e) a compound having one or more amino groups in a molecule while having no heterocyclic ring, and (f) a compound having one or more of at least one group selected from the group consisting of a vinyl group, an acryloyl group, a methacryloyl group and an allyl group in a molecule.
    • 本发明可以提供一种光学部件用组合物,其含有(a)具有选自丙烯酰基,甲基丙烯酰基,烯丙基和乙烯基中的一个或多个的一种或多种的化合物和一种或多种 一个分子中的β-二硫丙基。 在本发明的优选实施方案中,用于光学部件的组合物还含有至少一种选自(b)分子中具有一个或多个β-伯硫丙基的化合物中的化合物,同时不具有可聚合的不饱和键基,(c) 具有硫原子和/或硒原子的无机化合物,(d)分子中具有一个或多个硫醇基的化合物,(e)分子中具有一个或多个氨基但不具有杂环的化合物,以及 (f)在分子中具有一个或多个选自乙烯基,丙烯酰基,甲基丙烯酰基和烯丙基中的至少一个基团的化合物。
    • 29. 发明申请
    • DEVICE AND METHOD FOR MEASURING SURFACE CHARGE DISTRIBUTION
    • 用于测量表面电荷分布的装置和方法
    • US20120059612A1
    • 2012-03-08
    • US13224873
    • 2011-09-02
    • Hiroyuki SUHARAHiroaki TanakaHidekazu MurataHiroshi Shimoyama
    • Hiroyuki SUHARAHiroaki TanakaHidekazu MurataHiroshi Shimoyama
    • G06F19/00
    • G03G15/5037
    • A surface charge measuring distribution method includes the steps of irradiating a sample with a charged particle beam and charging a sample surface in a spot-like manner, irradiating the charged sample with the charged particle beam to measure a potential at a potential saddle point formed above the sample, selecting one of preset multiple structure models and a tentative space charge distribution associated with the selected structure model, calculating a space potential at the potential saddle point by electromagnetic field analysis using the selected structure model and tentative space charge distribution, comparing the calculated space potential and measured value to determine the tentative space charge distribution as a space charge distribution of the sample when an error between the space potential and the measured value is within a predetermined range, and calculating a surface charge distribution of the sample by electromagnetic field analysis based on the determined space charge distribution.
    • 表面电荷测量分配方法包括以下步骤:用带电粒子束照射样品并以点样方式填充样品表面,用带电粒子束照射带电样品以测量在上述形成的电位鞍点处的电位 采样,选择一个预设的多重结构模型和与所选择的结构模型相关联的暂定空间电荷分布,通过使用所选择的结构模型和暂定空间电荷分布的电磁场分析来计算潜在鞍点处的空间电位,比较计算出的 空间电位和测量值,当空间电位和测量值之间的误差在预定范围内时,确定作为样本的空间电荷分布的暂定空间电荷分布,并且通过电磁场分析来计算样品的表面电荷分布 基于确定的空间ch arge分布。