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    • 3. 发明授权
    • Adjusting device for a transmission
    • 变速器调整装置
    • US07543515B2
    • 2009-06-09
    • US12020350
    • 2008-01-25
    • Wolfgang DoerrZoltan Skriba
    • Wolfgang DoerrZoltan Skriba
    • F16H59/00F16H61/00F16H63/00
    • F16H63/38F16H59/70Y10T74/19251Y10T74/19279Y10T74/2003
    • An adjusting device for a transmission is described. The device has at least one movable adjusting element, a plurality of sensors for detecting a position of the at least one movable adjusting element, which are arranged substantially parallel to one another, and a plurality of cam paths having sections of different heights, assigned to corresponding ones of the plurality of sensors. The device also includes a plurality of scanning elements coupled to the plurality of sensors for mechanically scanning the sections of different height, and at least one catch of each of the plurality of cam paths in which a latching element is engageable, wherein the plurality of sensors and the latching element are designed as a common component. The plurality of cam paths result in comparable stroke movements arising for each of the plurality of scanning elements.
    • 描述了用于变速器的调节装置。 该装置具有至少一个可移动调节元件,用于检测基本上彼此平行布置的至少一个可移动调节元件的位置的多个传感器以及具有不同高度部分的多个凸轮路径,分配给 对应的多个传感器。 该装置还包括耦合到多个传感器的多个扫描元件,用于机械扫描不同高度的部分,以及多个凸轮路径中的每一个的至少一个卡扣,其中闩锁元件可接合,其中多个传感器 并且锁定元件被设计为公共部件。 多个凸轮路径导致针对多个扫描元件中的每个扫描元件产生的类似的行程运动。
    • 4. 发明申请
    • Adjusting Device for a Transmission
    • 调整传动装置
    • US20080264191A1
    • 2008-10-30
    • US12020350
    • 2008-01-25
    • Wolfgang DoerrZoltan Skriba
    • Wolfgang DoerrZoltan Skriba
    • F16H59/02
    • F16H63/38F16H59/70Y10T74/19251Y10T74/19279Y10T74/2003
    • An adjusting device for a transmission is described. The device has at least one movable adjusting element, a plurality of sensors for detecting a position of the at least one movable adjusting element, which are arranged substantially parallel to one another, and a plurality of cam paths having sections of different heights, assigned to corresponding ones of the plurality of sensors. The device also includes a plurality of scanning elements coupled to the plurality of sensors for mechanically scanning the sections of different height, and at least one catch of each of the plurality of cam paths in which a latching element is engageable, wherein the plurality of sensors and the latching element are designed as a common component. The plurality of cam paths result in comparable stroke movements arising for each of the plurality of scanning elements.
    • 描述了用于变速器的调节装置。 该装置具有至少一个可移动调节元件,用于检测基本上彼此平行布置的至少一个可移动调节元件的位置的多个传感器以及具有不同高度部分的多个凸轮路径,分配给 对应的多个传感器。 该装置还包括耦合到多个传感器的多个扫描元件,用于机械扫描不同高度的部分,以及多个凸轮路径中的每一个的至少一个卡扣,其中闩锁元件可接合,其中多个传感器 并且锁定元件被设计为公共部件。 多个凸轮路径导致针对多个扫描元件中的每个扫描元件产生的类似的行程运动。
    • 5. 发明授权
    • Method for producing a sintered nuclear fuel body
    • 烧结核燃料体的制造方法
    • US06235223B1
    • 2001-05-22
    • US09185841
    • 1998-11-04
    • Wolfgang DoerrHarald CuraGerhard Gradel
    • Wolfgang DoerrHarald CuraGerhard Gradel
    • G21C2100
    • G21C3/623Y02E30/38Y10S376/901
    • A sintered nuclear fuel body includes (U, Pu)O2 mixed crystals having a mean particle size in a range from 7.5 &mgr;m to 50 &mgr;m. This sintered nuclear fuel body has a high retention capacity for fission gas in a power reactor. In order to produce the sintered nuclear fuel body by sintering a body in a hydrogen-containing sintering atmosphere, a powered substance selected from the group consisting of aluminum oxide, titanium oxide, niobium oxide, chromium oxide, aluminum stearate, aluminum distearate and aluminum tristearate is added to the starting powder for the body. As an alternative or in addition, the body made from the starting powder is sintered during a holding period of 10 minutes to 8 hours at a sintering temperature of 1400° C. to 1800° C. in a hydrogen-containing sintering atmosphere, initially with an oxygen partial pressure of 10−10 to 10−20 bar and then from 10−8 to 10−10 and then cooled in a hydrogen-containing atmosphere having an oxygen partial pressure of 10−10 to 10−20 bar.
    • 烧结核燃料体包括(U,Pu)O 2混合晶体,其平均粒度在7.5μm至50μm的范围内。 这种烧结核燃料体在动力反应堆中具有高裂变气体的保留能力。 为了通过在含氢烧结气氛中烧结体来生产烧结核燃料体,选自氧化铝,氧化钛,氧化铌,氧化铬,硬脂酸铝,二硬脂酸铝和三硬脂酸铝的动力物质 加入到身体的起始粉末中。 作为替代或另外,在含氢烧结气氛中,在1400℃至1800℃的烧结温度下,在10分钟至8小时的保持时间内,由起始粉末制成的体系烧结,最初与 氧分压为10-10至10-20巴,然后为10-8至10-10,然后在氧分压为10-10至10-20巴的含氢气氛中冷却。
    • 7. 发明授权
    • Method of generating compressed air, and compressor arrangement for implementing the method
    • 产生压缩空气的方法以及用于实施该方法的压缩机装置
    • US07226273B2
    • 2007-06-05
    • US10653450
    • 2003-09-03
    • Wolfgang DoerrEduard Gerum
    • Wolfgang DoerrEduard Gerum
    • F04B43/12F04B49/00F04B17/00F04B39/00
    • B60T17/02B60T17/18
    • Method and compressor arrangement for generating compressed air, particularly for commercial vehicles, which is generated by way of a compressor unit (3) driven by an internal-combustion engine (1) from the ambient air according to a control unit (14), in which cases, by means of the compressor unit (3) operated by the internal-combustion engine, compressed of only a low pressure level is generated for assigned low-pressure consuming devices (7a, 7b), and in that, starting from the compressed air of the low pressure level, by means of a separate auxiliary compressor unit (8), compressed air of a high pressure level is generated for assigned high-pressure consuming devices (11a, 11b), the coordinated triggering of the two compressor units (3,8) being carried out, in a pressure-demand-controlled manner, centrally by means of the control unit (14).
    • 用于产生特别是用于商业车辆的压缩空气的方法和压缩机布置,其通过根据控制单元(14)从环境空气由内燃机(1)驱动的压缩机单元(3)产生, 对于分配的低压消耗装置(7a,7b),通过由内燃机操作的压缩机单元(3)的这些情况产生仅仅是低压水平的压缩机构,并且从 为分配的高压消耗装置(11a,11b)产生低压水平的压缩空气,借助于单独的辅助压缩机单元(8),高压水平的压缩空气被协调触发 两个压缩机单元(3,8)以压力需求控制的方式通过控制单元(14)居中地进行。