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    • 41. 发明授权
    • Sheet stacking apparatus
    • 纸张堆垛装置
    • US08083225B2
    • 2011-12-27
    • US12869989
    • 2010-08-27
    • Taki OhishiMasahiro HagiwaraMasayasu Suzuki
    • Taki OhishiMasahiro HagiwaraMasayasu Suzuki
    • B65H43/00
    • B65H31/02B65H29/52B65H31/26B65H2401/113B65H2404/63B65H2404/693B65H2405/115B65H2511/17B65H2511/514B65H2513/50B65H2701/1313B65H2701/1912B65H2220/11B65H2220/01
    • A banknote stacking apparatus includes a banknote stacking plate 1 on which banknotes are to be stacked, a first banknote press member 11 fixed to a support shaft 10 so as to be swingably together with the support shaft 10, a second banknote press member 15 which is formed of a synthetic resin sheet having flexibility, whose upstream end portion is fixed to the banknote stacking apparatus and whose downstream end portion is fixed to the first banknote press member 11 and a solenoid 27 for driving the first banknote press member 11 and the banknote stacking apparatus is constituted so that when a banknote is fed into the banknote stacking apparatus and the first banknote press member 11 is driven by the solenoid 27, the first banknote press member 11 is swung and presses a portion of a banknote close to the front end portion thereof and the second banknote press member 15 is swung together with the first banknote press member 11 and deformed so as to form a convex portion 15c projecting toward the banknote, whereby a portion of the banknote close to the rear end portion thereof is pressed by the convex portion 15c of the second banknote press member 15. According to the thus constituted banknote stacking apparatus, a banknote can be stacked on the banknote stacking plate 1 in the desired manner using a single drive means.
    • 纸币堆垛装置包括纸币堆叠纸币1的纸币堆叠板1,与支撑轴10一起可摆动地固定在支撑轴10上的第一纸币按压部件11,第二纸币按压部件15, 由具有柔性的合成树脂片形成,其上游端部固定在纸币堆叠装置上,其下游端部固定在第一纸币按压部件11上,螺线管27用于驱动第一纸币按压部件11和纸币堆叠 设备被构造成使得当纸币被馈送到纸币堆垛装置中并且第一纸币按压部件11被螺线管27驱动时,第一纸币按压部件11被摆动并按压靠近前端部分的纸币的一部分 并且第二纸币按压部件15与第一纸币按压部件11一起摆动并变形,以形成凸出部分15c 朝向纸币,由此靠近其后端部的纸币的一部分被第二纸币按压部件15的凸部15c按压。根据这样构成的纸币堆垛装置,可以将纸币堆叠在纸币堆叠 板1以期望的方式使用单个驱动装置。
    • 46. 发明申请
    • DEVICE AND METHOD FOR TAKING OVER FLEXIBLE, FLAT OBJECTS
    • 用于获取柔性,平面物体的装置和方法
    • US20100230887A1
    • 2010-09-16
    • US12719431
    • 2010-03-08
    • Erwin Stauber
    • Erwin Stauber
    • B65H39/00
    • B65H29/68B65H29/003B65H29/26B65H39/02B65H2301/432B65H2301/4476B65H2405/22B65H2405/352B65H2511/17B65H2511/22B65H2220/01B65H2220/02B65H2220/11
    • A device and a method for taking over flexible, two-dimensional objects (100), in particular printed products, at a take-over location (S1). The objects (100) are received by receiver units (10, 12). Controllable narrowing elements (20) are present, in order to prevent a squashing and rebounding of the objects (100) on or from an abutment of the receiver unit (10, 12), with which narrowing elements, in an active condition, the opening width (W2) of the receiver unit (10, 12) in a middle region between an entry opening (16) of the receiver unit (10, 12) and the abutment (15), may be reduced compared to an inactive condition. These are controlled with a control device (30). A more reliable positioning of the objects (100) in the receiver unit (10, 12), in particular at high feed speeds and with thin, elastically deformable objects (100), may be achieved.
    • 一种用于在接收位置(S1)处理柔性的二维物体(100),特别是印刷品的装置和方法。 对象(100)由接收器单元(10,12)接收。 存在可控制的变窄元件(20),以便防止物体(100)在接收器单元(10,12)的邻接处或从接收器单元(10,12)的邻接处的挤压和回弹,在活动状态下,狭窄元件与开口 与接收单元(10,12)的进入开口(16)和基台(15)之间的中间区域中的接收单元(10,12)的宽度(W2)可以与非活动状态相比减小。 这些由控制装置(30)控制。 可以实现物体(100)在接收器单元(10,12)中的更可靠的定位,特别是在高进给速度下并且具有薄的可弹性变形的物体(100)。
    • 49. 发明授权
    • Design support method and design support program
    • 设计支持方法和设计支持方案
    • US07421381B2
    • 2008-09-02
    • US11243337
    • 2005-10-04
    • Kiyoshi Oyama
    • Kiyoshi Oyama
    • G06G7/48G06F17/10
    • G06F17/5009B65H5/062B65H2408/40B65H2511/17B65H2513/40B65H2557/20G06F2217/42B65H2220/01B65H2220/11B65H2220/03
    • The present invention provides a design support method adapted to support a design of a conveying path by performing simulation of a behavior of a sheet-shaped flexible medium being conveyed in the conveying path and comprising a conveying condition setting step for setting a conveying condition of a conveying roller for conveying the flexible medium, a roller nip calculation step for preparing a finite element model of a conveying roller pair including the conveying roller and for calculating of deformation of the conveying roller in a nip portion of the conveying roller pair, and a motion calculating step for calculating the behavior of the flexible medium in a time-series manner on the basis of the deformation of the conveying roller calculated in the roller nip calculating step regarding a portion of the flexible medium conveyed by the conveying roller pair having the finite element model prepared in the roller nip calculating step and calculating the behavior of the flexible medium in a time-series manner without preparing the finite element model regarding a portion of the flexible medium not conveyed by the conveying roller pair having the finite element model prepared in the roller nip calculating step.
    • 本发明提供了一种设计支持方法,其适于通过对在输送路径中传送的片状柔性介质的行为进行模拟来支持传送路径的设计,并且包括传送条件设置步骤,用于设置传送条件的传送条件 用于输送柔性介质的输送辊;辊压区计算步骤,用于准备包括输送辊的输送辊对的有限元模型,并计算输送辊对在输送辊对的夹持部分中的变形;以及运动 计算步骤,基于在辊压计算步骤中计算的输送辊的变形,以时间序列方式计算柔性介质的行为,关于由具有有限元素的输送辊对传送的柔性介质的一部分 在辊隙计算步骤中准备的模型,并计算柔性mediu的行为 m,而无需准备关于在辊压计算步骤中准备的具有有限元模型的输送辊对不输送的柔性介质的一部分的有限元模型。