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    • 1. 发明授权
    • Moving apparatus for a load
    • 移动装置用于负载
    • US4087078A
    • 1978-05-02
    • US677059
    • 1976-04-14
    • Masami JorakuKoji YamauchiShigeyoshi KawanoMasahiro Ueno
    • Masami JorakuKoji YamauchiShigeyoshi KawanoMasahiro Ueno
    • B66B1/28B66D1/46B66D1/48
    • B66D1/46B66B1/302B66B1/32
    • A moving apparatus for a load lifts the load by the torque of a motor, and balances and holds the same with the aid of a mechanical brake when the apparatus stops. A timing device is incorporated in brake control so that when the apparatus stops in response to a signal indicating that a zero speed is designated, the mechanical brake is operated with a time lag after the receipt of the signal and, as soon as the brake is applied, the power supply to the motor is cut off. This arrangement remarkably reduces the impact of stopping upon the mechanical brake and drive, lessens the wear of the brake, permits reduction in size of the components and extends the service life of the components, thus providing an apparatus which saves power in comparison with conventional equipment.
    • 用于负载的移动装置通过电动机的扭矩提升负载,并且当装置停止时借助机械制动器平衡并保持负载。 定时装置被并入制动控制中,使得当装置响应于指示零速度的信号停止时,机械制动器在接收到信号之后以时间延迟运行,并且一旦制动器 应用时,电机的电源被切断。 这种布置显着地减少了停止在机械制动和驱动上的影响,减小了制动器的磨损,允许部件的尺寸减小并且延长了部件的使用寿命,从而提供了一种与常规设备相比节省功率的装置 。
    • 6. 发明申请
    • BIO-DEGRADABLE/ ABSORBABLE POLYMER HAVING REDUCED METAL CATALYST CONTENT, AND PROCESS FOR PRODUCTION THEREOF
    • 具有降低金属催化剂含量的生物降解/可吸收聚合物及其生产方法
    • US20090171064A1
    • 2009-07-02
    • US12305104
    • 2007-06-18
    • Hidetoshi ArimuraYoshitake TakahashiKoji Yamauchi
    • Hidetoshi ArimuraYoshitake TakahashiKoji Yamauchi
    • C08G63/08
    • C08G63/823A61L17/12A61L27/18A61L27/58A61L31/148C08G63/08C08G63/90C08L67/04
    • The present invention provides a safe biodegradable and bioabsorbable polymer having an extremely low metal catalyst content, while retaining the properties desired for a medical implant or the like; and a process for producing the same. The present invention further provides a method for reducing the content of a metal catalyst in a biodegradable and absorbable polymer that can be applied on an industrial scale. A method for producing a biodegradable and bioabsorbable polymer having a metal catalyst content of less than 1 ppm in terms of a metal comprising the steps of (1) copolymerizing lactide and ε-caprolactone at a molar ratio ranging from 40/60 to 60/40 in the presence of the metal catalyst to produce a copolymer; and (2) washing the copolymer with a mixed solvent comprising acetic acid and isopropanol at a volume ratio ranging from 25/75 to 45/55 at less than 40° C., and drying the copolymer. 13. A method for producing a biodegradable and bioabsorbable polymer having a metal catalyst content of less than 1 ppm in terms of a metal comprising the steps of (1) copolymerizing lactide and ε-caprolactone at a molar ratio ranging from 65/35 to 85/15 in the presence of the metal catalyst to produce a copolymer; and (2) washing the copolymer with a mixed solvent comprising acetic acid and isopropanol at a volume ratio ranging from 45/55 to 55/45 at less than 40° C., and drying the copolymer.
    • 本发明提供一种具有极低金属催化剂含量的安全的可生物降解和生物可吸收的聚合物,同时保持医用植入物等所需的性质; 及其制造方法。 本发明还提供一种降低能够以工业规模应用的生物可降解和可吸收的聚合物中的金属催化剂的含量的方法。 一种制备金属催化剂含量小于1ppm的可生物降解和生物可吸收聚合物的方法,包括以下步骤:(1)以40/60至60/40的摩尔比共聚丙交酯和ε-己内酯 在金属催化剂存在下制备共聚物; 和(2)在低于40℃下,用包含乙酸和异丙醇的混合溶剂以25/75〜45/55的体积比洗涤共聚物,并干燥该共聚物。 13.一种用于生产金属催化剂含量小于1ppm的可生物降解和生物可吸收聚合物的方法,包括以下步骤:(1)以65/35至85的摩尔比共聚丙交酯和ε-己内酯 / 15,在金属催化剂的存在下制备共聚物; 和(2)在低于40℃的体积比为45/55至55/45的范围内用包含乙酸和异丙醇的混合溶剂洗涤共聚物,并干燥该共聚物。
    • 8. 发明授权
    • Electric operation apparatus
    • 电动操作装置
    • US07172591B2
    • 2007-02-06
    • US10660400
    • 2003-09-11
    • Kenji HaranoMasahide OhyamaKazuya HijiiKoji YamauchiShinji Hatta
    • Kenji HaranoMasahide OhyamaKazuya HijiiKoji YamauchiShinji Hatta
    • A61B18/18
    • A61B18/1206A61B18/12A61B2018/0066A61B2018/00702A61B2018/00875A61B2018/124
    • When a user steps on a footswitch, high-frequency output power is delivered. A control circuit included in a diathermic power supply calculates the impedance ZSn that is offered by a living tissue immediately after delivery of high-frequency output power is started during the n-th delivery period. The control circuit also calculates the impedance ZEn that is offered thereby immediately before delivery of high-frequency output power is discontinued with elapse of predetermined time. The control circuit then discontinues delivery of high-frequency output power for the predetermined time, and calculates a difference ΔZn between the impedances. When the difference meets a predetermined condition that implies coagulation or when the number of times of delivery reaches a predetermined value, the control circuit discontinues delivery of high-frequency output power.
    • 当用户踏脚踏开关时,会传送高频输出功率。 包含在透热电源中的控制电路计算在第n次输送期间开始输送高频输出功率后立即由活体组织提供的阻抗ZSn。 控制电路还在经过预定时间之后立即停止高频输出功率的传送之前立即提供的阻抗ZEn。 然后,控制电路在预定时间内中断高频输出功率的传送,并且计算阻抗之间的差值DeltaZn。 当差异满足意味着凝固的预定条件时,或者当输送次数达到预定值时,控制电路中断高频输出功率的传递。