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
    • 54. 发明授权
    • Spectrophotometer employing magneto-optic effect
    • 分光光度计采用磁光效应
    • US4166697A
    • 1979-09-04
    • US836971
    • 1977-09-27
    • Masaru ItoSeiichi MurayamaManabu YamamotoKounosuke Ohishi
    • Masaru ItoSeiichi MurayamaManabu YamamotoKounosuke Ohishi
    • G01J4/00G01N21/21G01N21/31G01J3/42
    • G01N21/3103
    • This application discloses a spectrophotometer employing a magneto-optic effect which enables quantitative analysis of a sample to be measured by a double beam method. In performing the double beam method for analyzing the sample, a magnetic field is applied to the sample along with linearly polarized light from a light source, the forward scattered light scattered by the sample atoms and the incident linearly polarized light from the sample are converted into two cross-polarized beams of light using an analyzer, and these two beams of cross-polarized light are spectrally analyzed by a single dispersive element. The spectrophotometer of the invention provides an arrangement such that the plane defined by the above-mentioned two beams of light is perpendicular to the plane of dispersion of the dispersive element, and the two beams of light so dispersed are independently detected by separate detectors.
    • 本申请公开了一种使用磁光效应的分光光度计,其能够通过双光束法对待测量的样品进行定量分析。 在进行用于分析样品的双光束方法中,与来自光源的线偏振光一起向样品施加磁场,将由样品原子散射的前向散射光和来自样品的入射线偏振光转换成 使用分析器的两个交叉偏振光束,并且这两个交叉偏振光束通过单个色散元素进行光谱分析。 本发明的分光光度计提供了这样的布置,使得由上述两束光束所限定的平面垂直于色散元件的色散平面,并且通过分开的检测器独立地检测到这样分散的两束光束。
    • 57. 发明申请
    • Process for Production of Gaskets
    • 垫圈生产工艺
    • US20100024195A1
    • 2010-02-04
    • US12517547
    • 2007-12-05
    • Syuji YoshitsuneMasaru ItoTomoyuki KoyamaHirotaka Muragishi
    • Syuji YoshitsuneMasaru ItoTomoyuki KoyamaHirotaka Muragishi
    • B23P25/00
    • C09K3/10C09K2200/0607F16J15/121Y10T29/49885
    • The invention provides a process for producing gaskets that is capable of improving the wettability of the metal surface to thereby enhance the tackiness when rubber is anchored to a metal core material without using an adhesive.The process for producing gaskets includes the steps of: forming a metal core material (2) using a stainless steel plate; treating the resulting metal core material (2) with an alkali treating solution; preparing an unvulcanized rubber molded product (1); mounting the metal core material (2) treated in the treating step to the unvulcanized rubber molded product (1); and vulcanizing the rubber-molded product to thereby anchor the elastic material to the metal core material (2) without using an adhesive; characterized in that the alkali treating solution used in the step of alkali treatment includes the following components (A), (B), and (C): (A) an alkali metal hydroxide or an alkaline earth metal hydroxide; (B) an alkali metal silicate or an alkaline earth metal silicate; and (C) a carboxylate salt.
    • 本发明提供了一种生产垫圈的方法,该方法能够提高金属表面的润湿性,从而在不使用粘合剂的情况下将橡胶固定在金属芯材上时提高粘合性。 制造垫圈的方法包括以下步骤:使用不锈钢板形成金属芯材料(2); 用碱处理液处理得到的金属芯材料(2); 制备未硫化橡胶模制产品(1); 将处理步骤处理的金属芯材(2)安装到未硫化橡胶模制产品(1)上; 硫化橡胶成型体,从而将弹性材料固定在金属芯材(2)上,而不使用粘合剂; 其特征在于,碱处理工序中使用的碱处理液包括以下成分(A),(B)和(C):(A)碱金属氢氧化物或碱土金属氢氧化物; (B)碱金属硅酸盐或碱土金属硅酸盐; 和(C)羧酸盐。
    • 59. 发明申请
    • Substrate for magnetic recording medium, fabrication method thereof, and magnetic recording medium
    • 用于磁记录介质的基板,其制造方法和磁记录介质
    • US20070231607A1
    • 2007-10-04
    • US11723228
    • 2007-03-19
    • Masaru ItoKen Ohashi
    • Masaru ItoKen Ohashi
    • G11B5/66G11B5/706B05D1/18
    • G11B5/667G11B5/7325G11B5/8404G11B5/858
    • A soft magnetic under layer (SUL) is formed on a non-magnetic substrate by an electroless plating method. The SUL formed by plating is subjected to magnetic field heat treatment on conditions that the heat treatment temperature is 150° C. to 350° C., a magnetic field applied to the substrate has a strength of 50 oersteds (Oe) or more, and the treatment time is selected within a range of five minutes to ten hours. Through the magnetic field heat treatment, magnetic anisotropy is obtained with a difference (δH=Hd−Hc) of 5 oersteds (Oe) or more in terms of absolute value between a magnetization saturation magnetic field strength (Hd) in the in-plane radial direction of a soft magnetic film and a magnetization saturation magnetic field strength (Hc) in the in-plane circumferential direction of the soft magnetic film, and the magnetic anisotropy is symmetric with respect to the axis of the substrate.
    • 通过无电镀法在非磁性基板上形成软磁性层(SUL)。 通过电镀形成的SUL在热处理温度为150℃〜350℃的条件下进行磁场热处理,施加到基板的磁场的强度为50奥斯特(Oe)以上, 治疗时间在5分钟至10小时的范围内选择。 通过磁场热处理,获得磁性各向异性,其绝对值为5奥斯特(Oe)或更高的差异(ΔH= H 2 H 3 -H c C) 在软磁膜的面内径向方向上的磁化饱和磁场强度(H SUB)和磁化饱和磁场强度(H SUB)之间的磁化饱和磁场强度(H SUB) 软磁性膜的面内圆周方向,磁各向异性相对于基板轴线对称。
    • 60. 发明授权
    • Wire-dot impact printer
    • 点击冲击打印机
    • US5295750A
    • 1994-03-22
    • US15094
    • 1993-02-09
    • Jiro TanumaNaoji AkutsuTakao UchidaChihiro KomoriMasaru Ito
    • Jiro TanumaNaoji AkutsuTakao UchidaChihiro KomoriMasaru Ito
    • B41J2/30B41J2/235B41J9/44
    • B41J9/44
    • In a wire-dot impact printer having a capacitance detector for detecting a displacement of each armature by a sensor electrode arranged opposite the armature, a space is formed between each sensor electrode and its associated armature, and a shield pattern is formed with a small space left around each sensor electrode. The shield pattern is fed with a potential at least equal to the potential of each sensor electrode. This makes it possible to reduce the influence of noise upon detection of a capacitance by the capacitance detector. A noise canceling electrode is also disposed around each sensor electrode and is connected to the sensor electrode, whereby a noise canceling circuit is further provided to eliminate noise voltage. The noise canceling circuit can eliminate a noise voltage picked up by the sensor electrode and the noise canceling electrode.
    • 在具有电容检测器的线点冲击式打印机中,通过与衔铁相对设置的传感器电极检测每个电枢的位移,在每个传感器电极及其相关电枢之间形成空间,并且形成具有小空间的屏蔽图案 留在每个传感器电极周围。 屏蔽图案被馈送至少等于每个传感器电极的电位的电位。 这使得可以通过电容检测器来减小噪声对电容检测的影响。 噪声消除电极也设置在每个传感器电极周围并连接到传感器电极,由此进一步提供噪声消除电路以消除噪声电压。 噪声消除电路可以消除由传感器电极和噪声消除电极拾取的噪声电压。