会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • System of injection blow molding and injection molding device
    • 注塑吹塑成型设备系统
    • US06607375B1
    • 2003-08-19
    • US09653222
    • 2000-08-31
    • Minoru TakadaKoichi SatoAtsushi SakuraiYoichi NetsuYoichi Tsuchiya
    • Minoru TakadaKoichi SatoAtsushi SakuraiYoichi NetsuYoichi Tsuchiya
    • B29C4908
    • B29C49/4215B29C35/02B29C35/16B29C45/42B29C49/06B29C49/064B29C49/28B29C49/4205B29C49/6409B29C2049/067B29K2105/253
    • An injection blow molding system includes an injection molding station (22), a first delivery section (24), a cooling station (26), a heating station (30), a second delivery section (32) and a plurality of blow molding stations (34). The station (22) simultaneously injection molds M rows of N preforms (36) arranged in a second direction (B) perpendicular to a first direction (A) in which the preforms (36) are carried. The first delivery section (24) removes the M rows of preforms (36) using a removing mechanism (102) in their upright state while decreasing the pitch in the rows. The preforms 36 are inverted with the column pitch changed by an inverting mechanism (104) before delivery to the cooling station in their inverted state. The cooling and heating stations (26), (30) cool and heat one row of N preforms (36) while parallel carrying them along a first carrying chain (200). The second delivery section (32) delivers the preforms (36) to two blow molding stations while in their inverted state. Each blow molding station (34) stretch blow molds the N/2 preforms into containers at the same time.
    • 注塑吹塑系统包括注射成型站(22),第一输送段(24),冷却站(26),加热站(30),第二输送段(32)和多个吹塑站 (34)。 工位(22)同时注射模制M行N个预成型件(36),其沿与第一方向(A)垂直的第二方向(B)布置,其中承载预型件(36)。 第一传送部分(24)使用处于其直立状态的移除机构(102)移除M行预成型件(36),同时减小行中的间距。 预成型坯36在倒置状态下以冷却站输送之前,通过反转机构(104)而改变列间距。 冷却和加热站(26),(30)冷却并加热一排N个预成型件(36),同时沿着第一承载链(200)携带它们。 第二输送部分32处于倒立状态时将预型件(36)输送到两个吹塑站。 每个吹塑站(34)拉伸吹塑将N / 2预成型件同时成型为容器。
    • 3. 发明授权
    • Injection blow molding machine, injection blow molding method and
injection molding machine
    • 注塑吹塑机,注塑吹塑法和注塑机
    • US6156258A
    • 2000-12-05
    • US51956
    • 1998-09-04
    • Minoru TakadaKoichi SatoAtsushi SakuraiYoichi NetsuYoichi Tsuchiya
    • Minoru TakadaKoichi SatoAtsushi SakuraiYoichi NetsuYoichi Tsuchiya
    • B29C35/02B29C35/16B29C45/42B29C49/06B29C49/28B29C49/42B29C49/64
    • B29C49/4215B29C45/42B29C49/28B29C49/4205B29C49/6409B29C2049/067B29C35/02B29C35/16B29C49/06B29C49/064B29K2105/253
    • An injection blow molding system includes an injection molding station 22, a first delivery section 24, a cooling station 26, a heating station 30, a second delivery section 32 and a plurality of blow molding stations 34. The injection molding station 22 is designed to simultaneously injection mold M rows of N preforms 36 arranged in a second direction B perpendicular to a first direction A in which the preforms 36 are carried. The first delivery section 24 is designed to remove the M rows of preforms 36 injection molded by the injection molding station 22 through a removing mechanism 102 in their upright state while decreasing the pitch in the rows. The preforms 36 are inverted with the column pitch being changed by an inverting mechanism 104 before they are delivered to the cooling station in their inverted state. The cooling and heating stations 26, 30 are designed to cool and heat one row of N preforms 36 while parallel carrying them along a first carrying chain 200. The second delivery section 32 is designed to deliver the preforms 36 to two blow molding stations while they are maintained in their inverted state. Each of the blow molding stations 34 is designed to stretch blow mold the N/2 preforms into containers at the same time.
    • PCT No.PCT / JP97 / 03064 Sec。 371日期:1998年9月4日 102(e)1998年9月4日PCT PCT 1997年9月2日PCT公布。 第WO98 / 09793号公报 日期1996年3月12日注射吹塑成型系统包括注塑站22,第一输送部分24,冷却站26,加热站30,第二输送段32和多个吹塑站34。 工位22被设计成同时注射模制M行的N个预成型件36,其沿着第二方向B布置,第二方向B垂直于其中承载预型件36的第一方向A. 第一输送部分24被设计成通过移除机构102在其直立状态下移除注射成型工位22注射成型的M行预成型件36,同时减小行中的间距。 预成型件36在其倒立状态被输送到冷却站之前由反转机构104改变,柱间距变化。 冷却和加热站26,30设计成冷却和排列一排N个预成型件36,同时沿着第一承载链200携带它们。第二输送段32设计成将预型件36输送到两个吹塑站,而它们 保持倒立状态。 每个吹塑工位34被设计成拉伸吹塑N / 2预制件同时进入容器。
    • 4. 发明授权
    • Method of molding heat-resistant containers
    • 耐热容器成型方法
    • US06451243B1
    • 2002-09-17
    • US09366332
    • 1999-08-02
    • Minoru TakadaKoichi SatoKazuyuki YokobayashiKazuya KitamuraAtsushi Sakurai
    • Minoru TakadaKoichi SatoKazuyuki YokobayashiKazuya KitamuraAtsushi Sakurai
    • B29C4918
    • B29C49/28B29C49/06B29C49/18B29C49/4236B29C49/6481B29C49/649B29K2067/00B29K2995/0017B29K2995/0041Y10S264/904Y10S264/905
    • A heat-resistant container molding apparatus and method which are compact and inexpensive and can reliably increase the crystallinity, reduce the residual stress in a container filled with a hot content such as thermally sterilized fruit juice, and prevent a thermal deformation with improved container stability at a raised temperature. The apparatus has a receiving and removing unit for receiving primary moldings obtained by blow-molding preforms and for removing final products, a heat treatment section for heating the primary moldings by bringing the primary moldings into contact with the inner wall of a heat treatment mold while pressurizing the interior of the primary moldings within the heat treatment mold, a final molding section for blow molding intermittent moldings into final products within a final blow mold, and a rotary plate, neck support fixing plate and neck support member for conveying the moldings through the receiving and removing unit, heat treatment section and final molding section.
    • 一种耐压容器成型装置和方法,其紧凑且便宜并且可以可靠地提高结晶度,减少填充有热含量(例如热灭菌果汁)的容器中的残余应力,并且防止热变形,改善容器稳定性 升高的温度。 该装置具有接受和取出单元,用于接收通过吹塑成型预成型件和用于除去最终产品而获得的一次成型品,一个热处理部分,用于通过使一次成型体与热处理模具的内壁接触来加热第一成型体,同时 对热处理模具内的初级模制品的内部加压,用于将间歇模制品吹塑成最终吹塑模具中的最终产品的最终模塑部分,以及旋转板,颈部支撑固定板和颈部支撑构件,用于通过 接收和拆卸单元,热处理段和最终成型段。
    • 6. 发明授权
    • Charge/discharge control circuit and battery device
    • 充放电控制电路和电池装置
    • US09065281B2
    • 2015-06-23
    • US13208753
    • 2011-08-12
    • Atsushi SakuraiToshiyuki KoikeKazuaki SanoFumihiko Maetani
    • Atsushi SakuraiToshiyuki KoikeKazuaki SanoFumihiko Maetani
    • H02J7/00
    • H02J7/0034
    • Provided is a battery device for controlling charge/discharge of a secondary battery by a single bidirectionally conductive field effect transistor, a charge/discharge control circuit with which a leakage current of the bidirectionally conductive field effect transistor is reduced to perform stable operation. The charge/discharge control circuit includes: a switch circuit for controlling a gate of the bidirectionally conductive field effect transistor based on an output of a control circuit for controlling the charge/discharge of the secondary battery; and two MOS transistors for preventing back-flow of a charge current and a discharge current. The first MOS transistor has a drain and a back gate which are connected to each other, and a source connected to a drain of the bidirectionally conductive field effect transistor. The second MOS transistor has a drain and a back gate which are connected to each other, and a source connected to a source of the bidirectionally conductive field effect transistor.
    • 提供一种用于通过单个双向导电场效应晶体管控制二次电池的充电/放电的电池装置,具有双向导电场效应晶体管的漏电流被减小以执行稳定操作的充放电控制电路。 充放电控制电路包括:开关电路,用于基于用于控制二次电池的充电/放电的控制电路的输出来控制双向传导场效应晶体管的栅极; 以及用于防止充电电流和放电电流的反向流动的两个MOS晶体管。 第一MOS晶体管具有彼此连接的漏极和背栅极,以及连接到双向导电场效应晶体管的漏极的源极。 第二MOS晶体管具有彼此连接的漏极和背栅极,以及连接到双向导电场效应晶体管的源极的源极。
    • 9. 发明申请
    • CELL BALANCE DEVICE AND BATTERY SYSTEM
    • 细胞平衡装置和电池系统
    • US20120139493A1
    • 2012-06-07
    • US13292482
    • 2011-11-09
    • Atsushi SakuraiKazuaki SanoHiroshi Saito
    • Atsushi SakuraiKazuaki SanoHiroshi Saito
    • H02J7/00
    • H02J7/0016
    • Provided are a cell balance device with high cell balance performance and high cell balance speed and requiring no high voltage process, and a battery system including the cell balance devices. The cell balance device includes: three terminals to be connected to secondary batteries; one terminal to be connected to a voltage hold device; three switches provided between the three terminals and the one terminal; and a receiving terminal and a transmitting terminal for a synchronization signal. Alternatively, the cell balance device includes: four terminals to be connected to secondary batteries; two terminals to be connected to a voltage hold device; six switches provided between the four terminals and the two terminals; and a receiving terminal and a transmitting terminal for a synchronization signal. The battery system includes: a plurality of secondary batteries; a plurality of voltage hold devices; a plurality of cell balance devices; and a clock generation circuit.
    • 提供了具有高电池平衡性能和高电池平衡速度并且不需要高电压处理的电池平衡装置,以及包括电池平衡装置的电池系统。 电池平衡装置包括:三个要连接到二次电池的端子; 一个端子连接到电压保持装置; 三个开关设置在三个端子和一个端子之间; 以及用于同步信号的接收终端和发送终端。 或者,电池平衡装置包括:四个要连接到二次电池的端子; 两个端子连接到电压保持装置; 六个开关设置在四个端子和两个端子之间; 以及用于同步信号的接收终端和发送终端。 电池系统包括:多个二次电池; 多个电压保持装置; 多个电池平衡装置; 和时钟发生电路。