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    • 31. 发明授权
    • Granular agent for ruminants and process for producing the same
    • 反刍动物颗粒剂及其制备方法
    • US5633004A
    • 1997-05-27
    • US480033
    • 1995-06-07
    • Kunio NishimuraToshio Morita
    • Kunio NishimuraToshio Morita
    • A23K1/00A23K1/18
    • A61K9/5073A23K40/35Y10S426/807
    • Disclosed is the feed or feed additive granular agent containing a physiologically active substance and a coating layer having a laminar structure in which the tabular crystals are arranged in a laminated state. The coating layer comprises (a) one or more substances selected from the group consisting of a specific fatty acid or ester thereof, a specific animal or vegetable fat and fatty oil which may be hardened by hydrogenation, and a specific wax, and (b) tabular crystals of a substance which is sparingly water-soluble under a neutral condition but is readily water-soluble under an acidic condition and which has an average particle size of 5 to 30 .mu.m, wherein said coating layer is present in a coating ratio of 5% by weight or more and 50% by weight or less, wherein said first coating material and said second coating material are in a proportion of 3:2 to 1:3 by weight, and process for producing the same. The granular agent has a high mechanical strength, increased durability in the rumen and superiority in solubility and absorption of the physiologically active substance of said agent in the abomasum or downstream thereof resulting in efficient breeding, growth, or lactation of ruminants.
    • 公开了含有生理活性物质的进料或饲料添加剂颗粒剂和层状结构的层状结构的涂层。 涂层包含(a)一种或多种选自特定脂肪酸或其酯的物质,可通过氢化硬化的特定动物或植物脂肪和脂肪油以及特定的蜡,和(b) 在中性条件下微溶于水但在酸性条件下容易溶于水并且平均粒度为5〜30μm的物质的片状晶体,其中所述涂层以 5重量%以上且50重量%以下,其中所述第一涂料和所述第二涂料的重量比为3:2至1:3,以及其制备方法。 颗粒剂具有高机械强度,瘤胃的耐久性以及所述药物在皱胃或下游的生理活性物质的溶解度和吸收性优异性,从而导致反刍动物的有效育种,生长或哺乳。
    • 32. 发明授权
    • Electrically conducting polymer and production method and use thereof
    • 导电聚合物及其制备方法及用途
    • US07569161B2
    • 2009-08-04
    • US10570140
    • 2004-09-01
    • Yuji NagaoRyuji YamamotoToshio Morita
    • Yuji NagaoRyuji YamamotoToshio Morita
    • H01B1/24
    • C08K7/06C08J3/201C08K3/04C08K2201/016C08L101/12H01B1/24
    • The invention provides a production method of a conductive polymer, comprising a step of blending a polymer in a state of a melt viscosity of 600 Pa·s or less at a shear rate of 100 s−1 with a vapor grown carbon fiber in 1 to 15 mass at a mixing energy of 1,000 mJ/m3 or less, and a conductive polymer obtained thereby. Preferably, a vapor grown carbon fiber used has an outer fiber diameter of 80 to 500 nm, an aspect ratio of 40 to 1,000, a BET specific surface area of 4: to 30 m2/g, a do02 of 0.345 nm or less according to an X-ray diffraction method, and a ratio (Id/Ig) of 0.1 to 2 wherein Id and Ig each represent peak heights of a band ranging from 1,341 to 1,349 cm−1 and a band ranging from 1,570 to 1,578 cm−1 respectively, according to a Raman scattering spectrum. According to the invention, an excellent conductivity can be attained by compounding vapor grown carbon fiber in a smaller amount than in a conventional method.
    • 本发明提供一种导电聚合物的制造方法,包括以100s -1的剪切速度将熔融粘度为600Pa·s以下的聚合物与气相生长碳纤维在1〜 15质量份,混合能量为1,000mJ / m 3以下,由此得到的导电性聚合物。 优选使用的气相生长碳纤维的外纤维直径为80〜500nm,纵横比为40〜1000,BET比表面积为4〜30m 2 / g,do02为0.345nm以下,根据 X射线衍射法和0.1〜2的比(Id / Ig),其中Id和Ig分别表示1,341〜1349cm -1的谱带的峰高和1,570〜1578cm -1的谱带 ,根据拉曼散射光谱。 根据本发明,可以通过以比常规方法更少的量将气相生长的碳纤维复合而获得优异的导电性。
    • 33. 发明申请
    • RESIN CRYSTALLIZATION PROMOTER AND RESIN COMPOSITION
    • 树脂结晶促进剂和树脂组合物
    • US20080287590A1
    • 2008-11-20
    • US12177026
    • 2008-07-21
    • Tatsuhiro TAKAHASHIToshio Morita
    • Tatsuhiro TAKAHASHIToshio Morita
    • C08K3/04
    • C08K7/06C08K2201/016
    • The present invention relates to a method for producing a resin composition having a crystallized and orderly arranged structure. The method comprises kneading an amorphous thermoplastic resin with a resin crystallization promoter to form a mixture, wherein the resin crystallization promoter comprises vapor grown carbon fibers, each fiber filament of the carbon fibers having a diameter of 0.001 μm to 5 μm and an aspect ratio of 5 to 15,000, the fibers having undergone a graphitization at 1,500° C. or higher, and subsequently subjecting the mixture to annealing at a temperature of from 55° C. higher than the glass transition point of the resin to a temperature 75° C. higher than the glass transition point of the resin. The crystallization promoter and annealing provide a thermoplastic resin composition, which, when molded, exhibits improved strength and tribological characteristics.
    • 本发明涉及一种具有结晶有序排列结构的树脂组合物的制造方法。 该方法包括将无定形热塑性树脂与树脂结晶促进剂混合以形成混合物,其中树脂结晶促进剂包括气相生长碳纤维,碳纤维的每个纤维长丝的直径为0.001μm至5μm,纵横比为 5至15,000,纤维在1500℃或更高温度下经历石墨化,随后将混合物在比树脂的玻璃化转变点高55℃的温度下退火至75℃。 高于树脂的玻璃化转变点。 结晶促进剂和退火提供了一种热塑性树脂组合物,其在模制时表现出改进的强度和摩擦学特性。
    • 39. 发明申请
    • High-sensitivity measuring instrument
    • 高灵敏度测量仪器
    • US20050110499A1
    • 2005-05-26
    • US10508225
    • 2003-03-19
    • Yoshio SunaokaShinichi OhashiToshio MoritaMasashi Fujita
    • Yoshio SunaokaShinichi OhashiToshio MoritaMasashi Fujita
    • G01R27/22G01N27/06G01N27/08G01N30/64G01N27/02
    • G01N27/06
    • A high-sensitivity measuring instrument comprising at least two sensors for detecting the same characteristics by touching a substance being measured with a specified time difference, wherein the between detection signals taken out simultaneously from respective sensors is determined, the difference between characteristic values upon elapsing the specified time difference is determined from the difference between detection signals, a reference time of measurement and a reference characteristic value at that time are preset, a time axis having a time pitch of a specified time difference is set, and a measurement value is obtained at a point in time elapsing an arbitrary time pitch from the reference time. Objective measurement characteristics can be detected by the measuring instrument not in the form of difference or variation but as an absolute value with high accuracy and sensitivity.
    • 一种高灵敏度测量仪器,包括至少两个传感器,用于通过以指定的时间差触摸被测量的物质来检测相同的特性,其中确定从各个传感器同时取出的检测信号之间的差值, 根据检测信号之间的差异来确定规定的时间差,测量的基准时间和此时的基准特性值被预先设定为具有指定时间间隔的时间间隔的时间轴,并且在 从参考时间经过一个任意时间间隔的时间点。 客观测量特性可以通过测量仪器检测,不是以差异或变化的形式,而是以高精度和高灵敏度的绝对值。
    • 40. 发明授权
    • Fine carbon fiber and composition thereof
    • 细碳纤维及其组成
    • US06844061B2
    • 2005-01-18
    • US10220817
    • 2002-07-31
    • Toshio MoritaRyuji Yamamoto
    • Toshio MoritaRyuji Yamamoto
    • C08K7/06D01F9/127D01F6/00
    • B82Y30/00C08K7/06C08K2201/016D01F9/127Y10T428/2918Y10T428/2929Y10T428/2935Y10T428/2975
    • A fine carbon fiber, the main body of each fiber filament of the fiber having an outer diameter of about 1 to about 500 nm and an aspect ratio of about 10 to about 15,000 and comprising a hollow space extending along its center axis and a multi-layer sheath structure consisting of a plurality of carbon layers, the layers forming concentric rings, wherein the fiber filament has a nodular portion which is formed of outwardly protruding carbon layers or formed of a locally increased number of carbon layers. A similar fine carbon fiber, in which the fiber filament has repeatedly enlarged protruding portions and the filament diameter varies along with the length of the filament, the ratio of the diameter (d″) of a fiber filament of the fiber as measured at the outwardly enlarged portions to the diameter (d) of a fiber filament of the fiber as measured at a position at which no outwardly enlarged portions is present; i.e., d″/d, being about 1.05 to about 3, is also provided.
    • 一种细碳纤维,纤维的每个纤维长丝的主体具有约1至约500nm的外径和约10至约15,000的纵横比,并且包括沿着其中心轴延伸的中空空间, 由多个碳层组成的层鞘结构,所述层形成同心环,其中所述纤维丝具有由向外突出的碳层形成或由局部增加数量的碳层形成的结节部分。 类似的细碳纤维,其中纤维丝具有反复扩大的突出部分,并且丝直径随着丝的长度而变化,纤维长丝的直径(d“)在纤维长度 在不存在向外扩大的部分的位置处测量的纤维的纤维长丝的直径(d)向外扩大部分; 即d“/ d,为约1.05至约3。