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    • 52. 发明申请
    • COIN DEPOSITING AND DISPENSING MACHINE
    • 硬币沉淀和分配机
    • US20100062700A1
    • 2010-03-11
    • US12525382
    • 2007-02-01
    • Keisuke NakazumiEisei NishidaTakushi OhnoMasashi Ito
    • Keisuke NakazumiEisei NishidaTakushi OhnoMasashi Ito
    • G07D1/02G07D9/06G07D9/00G07D9/04
    • G07D1/00G07D3/14G07D9/008
    • A coin depositing and dispensing machine prevents a foreign object mixed together with coins put in a coin receiving port from causing a malfunction, facilitates distinguishing coins of a depositing and transporting system from coins of a dispensing and transporting system, and facilitates removal of a coin jam. Coins received from a coin receiving port are fed separately by a feeding unit to a depositing and transporting unit. A rotary disc rotated at a position tilted at a predetermined angle is used for the feeding unit. By using the rotary disc, only coins are fed to the depositing and transporting unit, and foreign objects are eliminated. The depositing and transporting unit and a dispensing and transporting unit are arranged opposite to each other in a machine body, and the depositing and transporting unit is tilted together with the rotary disc. Coins in each unit are thereby easily distinguished from each other.
    • 硬币出入币装置防止与放入硬币接收口的硬币混合在一起的异物引起故障,便于将存放运输系统的硬币与配送和运输系统的硬币区分开,并且便于取出硬币卡纸 。 从硬币接收口接收的硬币由进给单元单独供给到存放单元。 在给定单元使用在倾斜预定角度的位置处旋转的旋转盘。 通过使用旋转盘,只有硬币被供给到存放单元,并且消除异物。 沉积和输送单元和分配和传送单元在机体中彼此相对布置,并且沉积和传送单元与旋转盘一起倾斜。 因此,每个单元中的硬币容易彼此区分。
    • 53. 发明申请
    • Levitation unit with a tilting function and levitation device
    • 悬浮单元具有倾斜功能和悬浮装置
    • US20080122151A1
    • 2008-05-29
    • US11723306
    • 2007-03-19
    • Masashi ItoHisanobu NiwaMasaki Saito
    • Masashi ItoHisanobu NiwaMasaki Saito
    • F16C32/06
    • F16C32/06
    • A rocking substrate 31 provided with a porous unit 41 is supported by a platform 21 by means of a spherical bearing. Furthermore, air is provided between the platform 21 and the rocking substrate 31 to allow the rocking substrate 31 and the porous unit 41 to rock along a spherical surface. This rocking allows the top surface 12a of an improved levitation unit 12 to tilt freely. When a wavy glass substrate is placed on the levitation device, the top surface 12a of the improved levitation unit 12 tilts, tracing the tilt of the substrate. Jetting air out in this state levitates the substrate, with its top surface 12a in the horizontal state, and allows the levitational force to be reliably applied to the substrate.
    • 设置有多孔单元41的摆动基板31由平台21通过球面轴承支撑。 此外,在平台21和摇摆基板31之间设置空气,以使摇摆基板31和多孔单元41沿球面滚动。 该摇摆允​​许改进的悬浮单元12的顶表面12a自由倾斜。 当波纹玻璃基板被放置在悬浮装置上时,改进的悬浮单元12的顶表面12a倾斜,跟踪基板的倾斜。 在这种状态下喷射空气使基板浮起,其顶表面12a处于水平状态,并且允许悬浮力可靠地施加于基板。
    • 55. 发明授权
    • Sound insulating structure
    • 隔音结构
    • US5677027A
    • 1997-10-14
    • US584278
    • 1996-01-11
    • Yuugorou MasudaShousuke OkuMasashi ItoTomohiro ItoHiroshi Sugawara
    • Yuugorou MasudaShousuke OkuMasashi ItoTomohiro ItoHiroshi Sugawara
    • B32B5/02B32B7/02B32B27/02B60N3/04B60R13/08D04H1/55G10K11/168B32B3/02
    • B60R13/083B32B27/02B60N3/048D04H1/54G10K11/168Y10T428/23979Y10T428/23986Y10T442/641Y10T442/656
    • The disclosure relates to a sound insulating structure formed on an automobile floor panel on which at least one of a vibration and a sound is incident. This structure includes a covering layer for covering the panel and a cushioning layer for reducing an impact of the at least one of the vibration and the sound. This cushioning layer is interposed between the covering layer and the panel and made of a nonwoven fabric. This nonwoven fabric includes 5-95 wt % of a first fiber and 5-95% of a second fiber, wherein the total amount of the first and second fibers is 100 wt %. This first fiber has a fineness within a range from 1.5 to 40 deniers, a first melting point, and a first portion including polyethylene terephthalate. The second fiber has a fineness within a range from 1.5 to 15 deniers, a core portion, and a sheath portion covering the core portion. A majority of the core portion includes polyethylene terephthalate. The sheath portion includes an elastic copolyester which has a second melting point that is lower than the first melting point and is not higher than 200.degree. C. The elastic copolyester is prepared by copolymerizing polyethylene terephthalate and at least one other monomer. The sound insulating structure has a high sound-transmission-loss factor within a so-called road-noise frequency range and an adequate cushioning effect and is particularly superior in sound insulating at a normal temperature (15.degree.-40.degree. C.).
    • 本公开涉及一种形成在汽车地板上的隔音结构,其中振动和声音中的至少一个入射。 该结构包括用于覆盖面板的覆盖层和用于减少振动和声音中的至少一个的冲击的缓冲层。 该缓冲层插入在覆盖层和面板之间,由无纺布构成。 该无纺布包括5-95重量%的第一纤维和5-95%的第二纤维,其中第一和第二纤维的总量为100重量%。 该第一纤维的细度在1.5至40旦,第一熔点和包含聚对苯二甲酸乙二醇酯的第一部分的范围内。 第二纤维的细度在1.5至15旦的范围内,芯部分和覆盖芯部分的护套部分。 核心部分的大部分包括聚对苯二甲酸乙二醇酯。 护套部分包括具有低于第一熔点且不高于200℃的第二熔点的弹性共聚酯。弹性共聚酯通过聚对苯二甲酸乙二醇酯和至少一种其它单体共聚来制备。 隔音结构在所谓的道路噪声频率范围内具有高的声音传输损耗因数,并具有足够的缓冲效果,并且在常温(15°-40℃)下隔音性能特别优异。