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. 发明申请
    • COMPRESSIVE FORCE TRANSMITTING CONNECTION ELEMENT
    • 压缩力传递连接元件
    • US20120144772A1
    • 2012-06-14
    • US13300595
    • 2011-11-20
    • Georg Koch
    • Georg Koch
    • E04B1/41
    • E04B1/78E04B1/161E04B1/41E04B2001/7679E04B2002/0254E04B2002/0293
    • Compressive force transmitting connection element for connecting a first cast structural component part to a second cast structural component part having an insulation body for thermal separation of the first and second cast structural component parts situated above and below the compressive force transmitting connection element. This insulation body being limited on the top and bottom by two support surfaces. At least one compression element penetrating the insulation body from the first to the second support surface. Transmitting transverse force elements have at least one transverse force transmitting element which continuously runs through the compressive force transmitting connection element in direction from the first support surface to the second support surface, the at least one compression element encloses the at least one transverse force transmitting element over at least part of the circumference thereof.
    • 压力传递连接元件,用于将第一铸造结构部件连接到第二铸造结构部件,该第二铸造结构部件具有用于热分离位于压缩力传递连接元件上方和下方的第一和第二铸造结构部件的绝缘体。 该绝缘体在顶部和底部被两个支撑表面限制。 至少一个压缩元件从第一支撑表面到第二支撑表面穿透绝缘体。 传递横向力元件具有至少一个横向力传递元件,该横向力传递元件在从第一支撑表面到第二支撑表面的方向上连续地穿过压缩力传递连接元件,至少一个压缩元件包围至少一个横向力传递元件 在其周边的至少一部分上。
    • 2. 发明申请
    • COMPRESSIVE FORCE TRANSMITTING CONNECTION ELEMENT
    • 压缩力传递连接元件
    • US20120159884A1
    • 2012-06-28
    • US13300597
    • 2011-11-20
    • Georg Koch
    • Georg Koch
    • E04B1/68
    • E04B1/78E04B1/161E04B1/41E04B2001/7679E04B2002/0254E04B2002/0293
    • Force transmitting connection for connecting first and second cast structural component parts having an insulation body for thermal separation of the cast structural component parts limited by two support surfaces. The first support surface faces the first cast structural component part and the second support surface faces the second cast structural component part. A compression element penetrates the insulation body from the first to the second support surface. An element for transmitting transverse force has at least one transverse force transmitting element that runs through the compressive force transmitting connection element from the first to the second support surface. The at least one compression element is connected to the at least one transverse force transmitting element and at least one pressure distributing element is formed at one end face of the compression element.
    • 用于连接第一和第二铸造结构部件的力传递连接件,其具有用于由两个支撑表面限制的铸造结构部件的热分离的绝缘体。 第一支承表面面向第一铸造结构部件,第二支承表面面向第二铸造结构部件。 压缩元件从第一支撑表面到第二支撑表面穿透绝缘体。 用于传递横向力的元件具有穿过压缩力传递连接元件从第一至第二支撑表面延伸的至少一个横向力传递元件。 所述至少一个压缩元件连接到所述至少一个横向力传递元件,并且至少一个压力分配元件形成在所述压缩元件的一个端面处。
    • 3. 发明授权
    • Compressive force transmitting connection element
    • 压力传递连接元件
    • US08733050B2
    • 2014-05-27
    • US13300595
    • 2011-11-20
    • Georg Koch
    • Georg Koch
    • E04B1/686E04F15/14
    • E04B1/78E04B1/161E04B1/41E04B2001/7679E04B2002/0254E04B2002/0293
    • Compressive force transmitting connection element for connecting a first cast structural component part to a second cast structural component part having an insulation body for thermal separation of the first and second cast structural component parts situated above and below the compressive force transmitting connection element. This insulation body being limited on the top and bottom by two support surfaces. At least one compression element penetrating the insulation body from the first to the second support surface. Transmitting transverse force elements have at least one transverse force transmitting element which continuously runs through the compressive force transmitting connection element in direction from the first support surface to the second support surface, the at least one compression element encloses the at least one transverse force transmitting element over at least part of the circumference thereof.
    • 压力传递连接元件,用于将第一铸造结构部件连接到第二铸造结构部件,该第二铸造结构部件具有用于热分离位于压缩力传递连接元件上方和下方的第一和第二铸造结构部件的绝缘体。 该绝缘体在顶部和底部被两个支撑表面限制。 至少一个压缩元件从第一支撑表面到第二支撑表面穿透绝缘体。 传递横向力元件具有至少一个横向力传递元件,该横向力传递元件在从第一支撑表面到第二支撑表面的方向上连续地穿过压缩力传递连接元件,至少一个压缩元件包围至少一个横向力传递元件 在其周边的至少一部分上。
    • 4. 发明授权
    • Compressive force transmitting connection element
    • 压力传递连接元件
    • US08590240B2
    • 2013-11-26
    • US13300597
    • 2011-11-20
    • Georg Koch
    • Georg Koch
    • E04B1/686E04F15/14
    • E04B1/78E04B1/161E04B1/41E04B2001/7679E04B2002/0254E04B2002/0293
    • Force transmitting connection for connecting first and second cast structural component parts having an insulation body for thermal separation of the cast structural component parts limited by two support surfaces. The first support surface faces the first cast structural component part and the second support surface faces the second cast structural component part. A compression element penetrates the insulation body from the first to the second support surface. An element for transmitting transverse force has at least one transverse force transmitting element that runs through the compressive force transmitting connection element from the first to the second support surface. The at least one compression element is connected to the at least one transverse force transmitting element and at least one pressure distributing element is formed at one end face of the compression element.
    • 用于连接第一和第二铸造结构部件的力传递连接件,其具有用于由两个支撑表面限制的铸造结构部件的热分离的绝缘体。 第一支承表面面向第一铸造结构部件,第二支承表面面向第二铸造结构部件。 压缩元件从第一支撑表面到第二支撑表面穿透绝缘体。 用于传递横向力的元件具有穿过压缩力传递连接元件从第一至第二支撑表面延伸的至少一个横向力传递元件。 所述至少一个压缩元件连接到所述至少一个横向力传递元件,并且至少一个压力分配元件形成在所述压缩元件的一个端面处。
    • 5. 发明授权
    • Compressive force transmitting connection element
    • 压力传递连接元件
    • US08590241B2
    • 2013-11-26
    • US13301620
    • 2011-11-21
    • Georg Koch
    • Georg Koch
    • E04B1/686E04F15/14
    • E04B1/78E04B1/161E04B1/41E04B2001/7679E04B2002/0254E04B2002/0293
    • A force transmitting connection element having an insulation body limited by two oppositely located support surfaces which are at a distance corresponding to a height H of the force transmitting connection. A first support surface faces a first cast structural component part and has a length L1 and a width B1. A second support surface limiting the insulation body faces a second cast structural component part and has a length L2 and a width B2. A longitudinal center axis runs through a center of the insulation body. A element penetrates the insulation body. An element for transmitting transverse force projects beyond the compressive force transmitting connection element in direction of the first cast structural component part and a ratio between transmissible compressive force and transmissible transverse force is between 1.5:1 and 15:1 and a distance LK is less than (B1+B2)/6.
    • 一种力传递连接元件,其具有由两个相对位置的支撑表面限定的绝缘体,所述支撑表面处于与所述力传递连接的高度H相对应的距离处。 第一支撑表面面向第一铸造结构部件并且具有长度L1和宽度B1。 限制绝缘体的第二支撑表面面向第二铸造结构部件并且具有长度L2和宽度B2。 纵向中心轴线穿过绝缘体的中心。 元件穿透绝缘体。 用于在第一铸造结构部件的方向上传递横向力突出超过压力传递连接元件的元件,以及传递压缩力和可传递横向力之间的比率在1.5:1至15:1之间,距离LK小于 (B1 + B2)/ 6。
    • 6. 发明授权
    • Hydraulic locking cylinder with throttled supply of fluid during
unlocking stage
    • 液压锁紧缸在解锁阶段带有液压供油
    • US5097748A
    • 1992-03-24
    • US631353
    • 1990-12-20
    • Georg KochWolfgang TraupeFrank van de PoelKurt SchaibleHolger Seel
    • Georg KochWolfgang TraupeFrank van de PoelKurt SchaibleHolger Seel
    • F15B15/26
    • F15B15/261
    • A hydraulic cylinder that locks into position has a housing (1) with at least one pressure connection (7) and a piston (3) and rod (6) that travel tight in an out of the housing. The locking mechanism comprises a piston (11) that rests against a spring (35) and a barrier mechanism (23) with a cage of balls (25) that roll radially into a locking position in a locking groove (26) and back into an unlocking position in an unlocking groove (22). The primary piston communicates with a hollow space (18) and acts on a primary participating surface (19) and the locking piston communicates with an unlocking space (13) and acts on an unlocking surface (14) by way of the pressure connection. There is a variable choke (17), which disengages after a while, beween the pressure connection and the primary space (18) in the primary piston (3). The unlocking space in the locking piston (11) can be supplied with fluid without being choked by way of the pressure connection, so that, once fluid has been supplied from the pressure connection, no pressure can build up in the primary space until the locking piston has left its locking position.
    • 锁定到位的液压缸具有壳体(1),其具有至少一个压力连接(7)和活塞(3)和杆(6),所述活塞(3)和杆(6)在壳体外部紧密地行进。 锁定机构包括一个活塞(11),该活塞靠在弹簧(35)和一个阻挡机构(23)上,该活塞具有一个滚珠保持架(25),该保持架径向地滚动到锁定槽(26)中的锁定位置并回到 在解锁槽(22)中的解锁位置。 主活塞与中空空间(18)连通并且作用在主要参与表面(19)上,并且锁定活塞与解锁空间(13)连通,并通过压力连接作用在解锁表面(14)上。 在一次活塞(3)中存在压力连接和主空间(18)之间的可变节流阀(17),其在一段时间之后脱离。 锁定活塞(11)中的解锁空间可以被供给流体而不被压力连接阻塞,使得一旦从压力连接件供给流体,在主空间内不会形成压力,直到锁定 活塞已经离开其锁定位置。
    • 7. 发明授权
    • Method and apparatus for charging rechargeable batteries
    • 充电电池充电的方法和装置
    • US06489750B2
    • 2002-12-03
    • US09903356
    • 2001-07-11
    • Uwe HebdingGeorg Koch
    • Uwe HebdingGeorg Koch
    • H02J700
    • H02J7/0052
    • A method and apparatus for charging a rechargeable battery with a current from a controllable current source. In order to adjust the rated current of the controllable current source, at least one operating parameter of the rechargeable battery, such as the rechargeable battery voltage which is produced as a consequence of a charging process, is detected. A pulsed control signal with a duty ratio which corresponds to the desired rated current is produced as a function of the operating parameter. The duty ratio of the pulsed control signal is evaluated, and the rated current of the current source is adjusted as a function of the duty ratio of the pulsed control signal.
    • 一种用于从可控电流源以电流对可再充电电池充电的方法和装置。 为了调整可控电流源的额定电流,检测充电电池的至少一个操作参数,例如作为充电过程产生的可充电电池电压。 作为操作参数的函数产生具有对应于期望额定电流的占空比的脉冲控制信号。 评估脉冲控制信号的占空比,并根据脉冲控制信号的占空比调节电流源的额定电流。