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
    • 4. 发明授权
    • Hydrostatic hybrid drive system
    • 静液压驱动系统
    • US09180764B2
    • 2015-11-10
    • US13261405
    • 2011-03-21
    • Frank BauerHerbert BaltesPeter Kloft
    • Frank BauerHerbert BaltesPeter Kloft
    • B60K6/12F15B1/02F16H61/433
    • B60K6/12F15B1/024F15B2201/205F15B2201/31F15B2201/32F15B2211/20561F15B2211/20569F15B2211/212F16H61/433Y02T10/6208
    • A hydrostatic hybrid drive system for road vehicles includes a pump/motor unit (1) connected to the powertrain of the vehicle, controlled by a control unit (5) in a pump or motor operation, and connected to a high-pressure hydraulic accumulator via a first working line (7). The first working line can be closed by a control valve (45) and connected to a low-pressure hydraulic accumulator via a second working line (9). The high-pressure hydraulic accumulator and low-pressure hydraulic accumulator are formed by a double-piston accumulator (11), in which a high-pressure side and a low-pressure side having respective accumulator pistons (15, 17) are formed in an accumulator housing (13). The fluid chambers (23, 25) of the high-pressure side and the low-pressure side are separated by a central housing part (21) through which the common piston rod for both accumulator pistons (15, 17) extends. The control unit (5) of the pump/motor unit (1) having a control area can be supplied from the first working line (7) via a line connection (59) provided on the first working line (7) between the pump/motor unit (1) and the control valve (45).
    • 用于道路车辆的静液压混合动力驱动系统包括连接到车辆的动力系的泵/马达单元(1),由泵或马达操作中的控制单元(5)控制,并连接到高压液压蓄能器 第一条工作线(7)。 第一工作线可以由控制阀(45)关闭,并通过第二工作线(9)连接到低压液压蓄能器。 高压液压蓄能器和低压液压蓄能器由双活塞蓄能器(11)形成,其中具有各自的蓄能器活塞(15,17)的高压侧和低压侧形成在 蓄能器壳体(13)。 高压侧和低压侧的流体室(23,25)由中心壳体部分(21)分开,用于两个蓄能器活塞(15,17)的公共活塞杆通过该中心壳体部分延伸。 具有控制区域的泵/马达单元(1)的控制单元(5)可以经由设置在第一工作管线(7)上的线路连接(59)从第一工作线(7)供给到泵/ 马达单元(1)和控制阀(45)。
    • 5. 发明申请
    • DUAL PISTON ACCUMULATOR
    • 双活塞式蓄能器
    • US20130068333A1
    • 2013-03-21
    • US13261485
    • 2011-04-27
    • Walter DorrHerbert BaltesPeter Kloft
    • Walter DorrHerbert BaltesPeter Kloft
    • F15B1/04
    • F15B1/04F15B1/24F15B2201/31F15B2201/405
    • The invention relates to a dual piston accumulator which is provided, in particular, in a hydrostatic hybrid-drive system for vehicles to replace a high pressure hydro accumulator and a low pressure hydro accumulator, wherein, inside a single accumulator housing (2) which extends in the axial direction in a single piece over a high pressure part (4) and a low pressure part (6), an accumulator piston (8, 10) defines a high pressure-sided fluid chamber (16) and a low pressure-sided fluid chamber (18), both of which border an intermediate piece (12) separating the high pressure side (4) from the low pressure side (6) through which the common piston nod (14) extends for both accumulator pistons (8, 10). Said accumulator is characterised in that the wall width of the housing (2) corresponding to the high pressure pan (4) is greater than the opposite induced wall width which corresponds to the low pressure pan (6).
    • 本发明涉及一种双活塞蓄能器,其特别地提供在用于车辆的液压混合动力驱动系统中以替代高压蓄能器和低压蓄能器,其中,在单个蓄能器壳体(2)内部延伸 在高压部分(4)和低压部分(6)上以轴向方向在一个单一的方向上,蓄能器活塞(8,10)限定高压侧流体室(16)和低压侧 流体室(18),两者都与将高压侧(4)与低压侧(6)分离的中间件(12)相接触,共同的活塞点(14)通过该低压侧延伸用于两个储存器活塞(8,10 )。 所述蓄能器的特征在于,对应于高压锅(4)的壳体(2)的壁宽大于对应于低压锅(6)的相反的诱导壁宽。
    • 7. 发明授权
    • Dual piston accumulator
    • 双活塞蓄能器
    • US08746287B2
    • 2014-06-10
    • US13261485
    • 2011-04-27
    • Walter DorrHerbert BaltesPeter Kloft
    • Walter DorrHerbert BaltesPeter Kloft
    • F16L55/04
    • F15B1/04F15B1/24F15B2201/31F15B2201/405
    • A dual piston accumulator, in particular for a hydrostatic hybrid drive system for vehicles, replaces a high pressure hydro accumulator and a low pressure hydro accumulator. Inside a single accumulator housing (2) extending in the axial direction in a single piece over a high pressure part (4) and a low pressure part (6), an accumulator piston (8, 10) defines a high pressure-sided fluid chamber (16) and a low pressure-sided fluid chamber (18). Both chambers border an intermediate piece (12) separating the high pressure side (4) from the low pressure side (6). A common piston rod (14) extends through the intermediate piece for both accumulator pistons (8, 10). The wall width of the housing (2) corresponding to the high pressure part (4) is greater than the opposite reduced wall width corresponding to the low pressure part (6).
    • 双活塞蓄能器,特别是用于车辆的静液压混合动力驱动系统,代替高压蓄能器和低压蓄能器。 在一个高压部件(4)和低压部件(6)内沿单向轴向延伸的单个蓄能器壳体(2)中,蓄能器活塞(8,10)限定高压侧流体室 (16)和低压侧流体室(18)。 两个腔室与将高压侧(4)与低压侧(6)分开的中间件(12)相接。 常见的活塞杆(14)延伸穿过用于两个蓄能器活塞(8,10)的中间件。 对应于高压部分(4)的壳体(2)的壁宽大于对应于低压部分(6)的相对减小的壁宽度。
    • 8. 发明申请
    • HYDROSTATIC HYBRID DRIVE SYSTEM
    • HYDROSTATIC混合动力系统
    • US20120308404A1
    • 2012-12-06
    • US13261405
    • 2011-03-21
    • Frank BauerHerbert BaltesPeter Kloft
    • Frank BauerHerbert BaltesPeter Kloft
    • F04B49/22F15B15/00
    • B60K6/12F15B1/024F15B2201/205F15B2201/31F15B2201/32F15B2211/20561F15B2211/20569F15B2211/212F16H61/433Y02T10/6208
    • The invention relates to an hydrostatic hybrid drive system for road vehicles, said system comprising a pump/motor unit (1) which is or can be connected to the powertrain of the vehicle, can be controlled by means of a control unit (5) in a pump or motor operation and can be connected to a high-pressure hydraulic accumulator via a first working line (7) that can be closed by means of a control valve (45) and to a low-pressure hydraulic accumulator via a second working line (9). The high-pressure hydraulic accumulator and low-pressure hydraulic accumulator are formed by a double-piston accumulator (11), in which a high-pressure side and a low-pressure side having respective accumulator pistons (15, 17) are formed in an accumulator housing (13), wherein the fluid chambers (23 and 25) of the high-pressure side and the low-pressure side are separated by a central housing part (21) through which the common piston rod for both accumulator pistons (15, 17)extends. The invention is characterised in that the control unit (5) of the pump/motor unit (1) having a control area can be supplied from the first working line (7) via a line connection (59) which is provided on the first working line (7) between the pump/motor unit (1) and the control valve (45).
    • 本发明涉及一种用于道路车辆的静液压混合动力驱动系统,所述系统包括可以或者可以连接到车辆的动力系的泵/马达单元(1),可以通过控制单元(5)来控制 泵或电动机操作,并且可以经由可以通过控制阀(45)关闭的第一工作管线(7)和经由第二工作线路的低压液压蓄能器连接到高压液压蓄能器 (9)。 高压液压蓄能器和低压液压蓄能器由双活塞蓄能器(11)形成,其中具有各自的蓄能器活塞(15,17)的高压侧和低压侧形成在 蓄能器壳体(13),其中高压侧和低压侧的流体室(23和25)由中心壳体部分(21)分开,用于两个蓄能器活塞(15, 17)延伸。 本发明的特征在于,具有控制区域的泵/马达单元(1)的控制单元(5)可以经由线路连接(59)从第一工作线(7)提供,线路连接(59)设置在第一工作 泵/马达单元(1)和控制阀(45)之间的管路(7)。
    • 10. 发明申请
    • Method for the production of piston-type accumulators
    • 活塞式蓄能器生产方法
    • US20060016074A1
    • 2006-01-26
    • US10540011
    • 2004-01-15
    • Herbert BaltesWalter Dorr
    • Herbert BaltesWalter Dorr
    • B21D51/16
    • F15B1/24F15B2201/205F15B2201/312F15B2201/4155F15B2201/605Y10T29/49394Y10T29/49915Y10T29/49918
    • The invention relates to a method for producing piston-type accumulators comprising an accumulator housing (10) and a separating piston which can be displaced in a longitudinal direction inside the accumulator housing (10) and separates two working spaces located therein. The end faces of the accumulator housing are sealed by means of one respective cover part (20). Previously known production methods are further improved due to the fact that the cover part (20) is fixed on one side (40) thereof via the free longitudinal edge (32) of the accumulator housing (10), which is displaced towards the cover part (20) in order to do so, such that a functionally and positionally secure connection of a cover part is ensured within the housing of a piston-type accumulator without using standard threaded connections.
    • 本发明涉及一种用于生产活塞式蓄能器的方法,其包括蓄能器壳体(10)和分离活塞,所述蓄能器壳体(10)和分离活塞可以在蓄能器壳体(10)的内部沿长度方向移位并且分离位于其中的两个工作空间。 蓄能器壳体的端面通过一个相应的盖部分(20)密封。 由于盖部分(20)经由蓄能器壳体(10)的自由纵向边缘(32)固定在其一侧(40)上,因此先前已知的制造方法进一步改进, (20),以便在不使用标准螺纹连接的情况下确保活塞式蓄能器的壳体内的盖部件的功能和位置固定的连接。