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    • 1. 发明授权
    • Seamless endless belt
    • 无缝无边带
    • US5296276A
    • 1994-03-22
    • US809170
    • 1991-12-18
    • Satoshi MaruyamaKenji TateishiKazuo Kondo
    • Satoshi MaruyamaKenji TateishiKazuo Kondo
    • B29C55/28B29D29/00B27N5/02
    • B29C55/28B29D29/00Y10S428/91Y10T428/1352Y10T428/139Y10T428/1393Y10T428/31504Y10T428/31551Y10T428/31594Y10T428/31942Y10T428/31946
    • A seamless endless belt formed of a polyether-ether-ketone resin subjected to a specific simultaneous inflation-and-biaxially stretching treatment followed by an optional specific thermosetting/relaxation treatment as well as a process for manufacturing same is disclosed. This belt is manufactured by biaxially stretching a tube of a polyether-ether-ketone resin while inflating the tube at a temperature above the glass transition temperature of the resin but below the melting point of the resin, optionally and preferably thermosetting the stretched tube at 150.degree.-320.degree.C. while relaxing it at a rate of relaxation of 5-30% and then cutting the resultant tube in round slices. The stretched tube may be laminated with a tube of a thermoplastic polyurethane resin so as to form a laminate tube formed of a polyether-ether-ketone resin in the outer and inner tubes with, interposed therebetween, an intermediate tube of a thermoplastic polyurethane resin. A seamless endless tube is manufactured also from the laminate tube in such manner that the laminate tube is heated above the melting point of the polyurethane resin whereby the outer and inner tubes of the polyether-ether-ketone resin are thermoset while being relaxed and the intermediate tube of the polyurethane is melted and integrally bonded to the outer and inner tubes to form an integrally bonded laminate tube which is cut to form a seamless endless belt. The belt thus obtained is excellent in heat-resistance, dimensional stability at a high temperature and mechanical strength and can be used as a conveyer belt or the like especially in electronic apparatus where the belt moves smoothly without any elongation or contraction, even in severe service.
    • 公开了一种由具有特定的同时进行充气和双轴拉伸处理,然后进行特定的热固化/松弛处理的聚醚醚酮树脂形成的无缝环带以及其制造方法。 该带通过在高于树脂的玻璃化转变温度但低于树脂的熔点的温度下对管进行双轴拉伸来制造,任选地且优选地将拉伸管的热固化为150 摄氏320度。 同时以5-30%的放松率放松,然后将成品管切成圆片。 拉伸管可以与热塑性聚氨酯树脂管层压,以在外管和内管中形成由聚醚 - 醚 - 酮树脂形成的层压管,其间插入热塑性聚氨酯树脂的中间管。 也可以从层叠管制造无缝环管,使得将层压管加热到聚氨酯树脂的熔点以上,由此聚醚醚酮树脂的外管和内管在松弛的同时被热固化,中间体 将聚氨酯的管熔化并整体地结合到外管和内管,以形成整体结合的层压管,其被切割以形成无缝环形带。 由此获得的带材具有优异的耐热性,高温下的尺寸稳定性和机械强度,并且可以用作输送带等,特别是在皮带平稳移动而没有任何伸长或收缩的电子设备中,即使在严格的服务 。
    • 5. 发明授权
    • Lithium-ion secondary battery and method of charging lithium-ion secondary battery
    • 锂离子二次电池及锂离子二次电池充电方法
    • US08785047B2
    • 2014-07-22
    • US11066247
    • 2005-02-25
    • Kazuya OgawaTsuyoshi IijimaSatoshi Maruyama
    • Kazuya OgawaTsuyoshi IijimaSatoshi Maruyama
    • H01M4/133H01M4/587
    • H01M4/587H01M2/0275H01M2/0295H01M4/02H01M6/42H01M10/0436H01M10/0525H01M10/0585H01M2004/021H01M2300/004
    • A lithium-ion secondary battery device comprises a positive electrode collector having a surface formed with a positive electrode active material layer containing a positive electrode active material; a negative electrode collector having a surface formed with a negative electrode active material layer containing a negative electrode active material; an electrically insulating porous separator; and an electrolyte containing a lithium salt and being in contact with the positive electrode active material layer, negative electrode active material layer, and separator. The negative electrode active material is a carbon material having a graphite structure. The amount of the carbon material supported by the negative electrode active material layer is 2.0 to 4.0 mg/cm2. The graphite structure in an X-ray diffraction pattern of the carbon material exhibits a peak intensity P101 of (101) plane and a peak intensity P100 of (100) plane having a ratio (P101/P100) of 2.0 to 2.8 therebetween.
    • 锂离子二次电池装置包括正极集电体,其具有由含有正极活性物质的正极活性物质层形成的表面; 具有由含有负极活性物质的负极活性物质层形成的表面的负极集电体; 电绝缘多孔分离器; 以及包含锂盐并与正极活性物质层,负极活性物质层和隔膜接触的电解质。 负极活性物质是具有石墨结构的碳材料。 由负极活性物质层支撑的碳材料的量为2.0〜4.0mg / cm 2。 碳材料的X射线衍射图中的石墨结构表现出(101)面的峰强度P101和(100)面的峰值强度P100(P101 / P100)为2.0〜2.8。
    • 7. 发明授权
    • Lithium secondary battery
    • 锂二次电池
    • US07651815B2
    • 2010-01-26
    • US10247511
    • 2002-09-20
    • Atsushi SanoTsuyoshi IijimaSatoshi MaruyamaKazuya Ogawa
    • Atsushi SanoTsuyoshi IijimaSatoshi MaruyamaKazuya Ogawa
    • H01M4/60H01M6/16
    • H01M4/624H01M4/131H01M4/133H01M10/0525H01M10/0567H01M10/0569H01M2004/021
    • A lithium secondary battery comprising positive and negative electrodes both capable of occluding and releasing lithium ions, and a lithium ion conductive material which contains a compound of formula (1) exhibits improved characteristics including charge/discharge efficiency, low-temperature properties and cycle performance when (a) only one substituent group of R1, R2, R3 and R4 in formula (1) is alkyl, (b) the negative electrode-constituting material partially contains a carboxyl or hydroxyl group-bearing compound, and the lithium ion conductive material contains propylene carbonate, or (c) a positive electrode active material is a lithium-containing transition metal compound, a negative electrode active material is a carbonaceous material, and the lithium ion conductive material contains as a non-aqueous electrolysis solution a solvent mixture of propylene carbonate and ethylene carbonate in combination with a chain-like carbonate as a low-viscosity solvent
    • 包含能够吸留和释放锂离子的正极和负极的锂二次电池和含有式(1)化合物的锂离子传导性材料具有包括充放电效率,低温性能和循环性能在内的改善的特性, (a)式(1)中R1,R2,R3和R4只有一个取代基是烷基,(b)负极构成材料部分含羧基或含羟基化合物,锂离子导电材料含 碳酸丙烯酯,或(c)正极活性物质为含锂过渡金属化合物,负极活性物质为碳质材料,锂离子传导性材料含有作为非水电解液的丙烯的溶剂混合物 碳酸酯和碳酸亚乙酯与作为低粘度溶剂的链状碳酸酯组合