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    • 1. 发明授权
    • Electrochemical cell
    • 电化学电池
    • US09166236B2
    • 2015-10-20
    • US14006739
    • 2012-03-06
    • Torsten BrandtJoachim HoffmannArno Mattejat
    • Torsten BrandtJoachim HoffmannArno Mattejat
    • H01M8/04C25B15/08H01M8/02
    • H01M8/04201C25B15/08H01M8/0247H01M8/0252H01M8/0258H01M8/0263Y02E60/50
    • An electrochemical cell includes a flow chamber disposed between two plate elements and having a flow inlet and a flow outlet for a flow medium permeating the flow chamber and defining a main flow direction of the flow medium between the flow inlet and the flow outlet. One of the plate elements has protrusions for supporting the plate element on the other plate element in a regular grid structure, between which a network of flow channels passing through the flow chamber runs in at least one flow channel direction. The regular grid structure is configured in such a way that the grid of the flow channels has two or more flow channel directions each enclosing an angle differing from zero degrees relative to the main flow direction of the flow medium.
    • 电化学电池包括设置在两个板元件之间的流动室,并具有用于流动介质的流入口和流出口,流动介质渗透流动室并且限定流动介质在流入口和流出口之间的主流动方向。 板元件中的一个具有用于以规则的格栅结构在另一个板元件上支撑板元件的突起,在其间通过流动室的流动通道的网络在至少一个流动通道方向上延伸。 规则格栅结构被配置成使得流动通道的格栅具有两个或更多个流动通道方向,每个流动通道方向相对于流动介质的主流动方向包围不同于零度的角度。
    • 2. 发明授权
    • Coverslipping module for mounting coverslips onto specimen slides
    • 翻盖模块,用于将盖玻片安装到标本载玻片上
    • US09011066B2
    • 2015-04-21
    • US13354696
    • 2012-01-20
    • Joachim HoffmannBernhard NeefSimon KeimerKarl-Heinz Westerhoff
    • Joachim HoffmannBernhard NeefSimon KeimerKarl-Heinz Westerhoff
    • B65G53/48G02B21/34
    • G02B21/34
    • The invention relates to a coverslipping module for mounting coverslips onto specimen slides (12) for microscopic investigations, having a transport apparatus (9) for transporting a specimen slide (12) out of a rack (3) or a specimen slide holder to a coverslipping position (13) in which the specimen slide (12) is equipped with a coverslip, and having an alignment device for aligning the specimen slide (12) in the coverslipping position (13) for mounting the coverslip. In order to allow the specimen slide (12) to be reliably and quickly aligned for mounting of the coverslips, thereby ensuring a high level of process dependability with a short processing time, the alignment device are constituted by multiple movable orientation jaws (18) which are arranged so that by closure of the orientation jaws (18), the specimen slide (12) becomes aligned in the coverslipping position (13).
    • 本发明涉及一种用于将盖玻片安装在用于显微镜检查的样品载玻片(12)上的盖玻片模块,具有用于将试样滑块(12)从支架(3)或试样载片架传送到盖板的输送装置(9) 位置(13),其中试样滑动件(12)装备有盖玻片,并具有对准装置,用于将试样滑块(12)对准用于安装盖玻片的盖板位置(13)。 为了允许试样滑动件12可靠且快速地对准以安装盖玻片,从而在短的加工时间内确保高水平的加工可靠性,对准装置由多个可移动取向夹(18)构成, 被布置成使得通过关闭定向爪(18),试样滑块(12)在盖板位置(13)中对齐。
    • 4. 发明申请
    • Torque converter with brazed turbine
    • 具有钎焊涡轮的转矩转换器
    • US20080044285A1
    • 2008-02-21
    • US11810565
    • 2007-06-06
    • Donald McCullickChristopher SidorJoachim HoffmannChad KeetsPantanjali Peri
    • Donald McCullickChristopher SidorJoachim HoffmannChad KeetsPantanjali Peri
    • F16H41/28
    • F16H41/28F16H41/26
    • The invention broadly comprises a torque converter including: a core ring; a turbine blade connected to the ring and having a perimeter with a segment facing an outer surface of the ring and disposed proximate the outer surface; and joining material fixedly connecting less than the entirety of the segment to the outer surface. The segment is fixedly connected to reduce resonance in the turbine. In some aspects, the ring includes an inner surface oppositely disposed from the outer surface and an open path between the surfaces. The present invention broadly comprises a notched turbine blade and a core ring with a discontinuity in an outer surface arranged to block capillary action for flowable joining material disposed in an interface between a turbine blade installed on the ring and the outer surface. The invention also broadly comprises a method for controlling resonance of a turbine in a torque converter.
    • 本发明广泛地包括一个变矩器,包括:一个芯环; 涡轮叶片,其连接到所述环并且具有周边,所述周边具有面向所述环的外表面的段,并且邻近所述外表面设置; 以及将小于整个片段固定地连接到外表面的接合材料。 该段固定连接以减少涡轮机中的共振。 在一些方面,环包括与外表面相对设置的内表面和表面之间的开放路径。 本发明广泛地包括缺口涡轮机叶片和在外表面上具有不连续性的芯环,其布置成阻止设置在安装在环上的涡轮叶片与外表面之间的界面中的可流动接合材料的毛细作用。 本发明还广泛地包括一种用于控制变矩器中的涡轮机的共振的方法。
    • 7. 发明授权
    • Cutting blade for a trimmer
    • 切割刀片用于修剪器
    • US06640449B1
    • 2003-11-04
    • US09889127
    • 2001-11-05
    • Joachim HoffmannThomas SchweigertAndreas Schneider
    • Joachim HoffmannThomas SchweigertAndreas Schneider
    • B26B902
    • A01D34/73
    • The present invention relates to a cutting blade for a trimmer. The cutting blade (1) comprises a base body (14) having a central portion (15) as well as end portions (16) adjoining the central portion. Cutting edges (26) are formed on the longitudinal edges (23,24) of the end portions (16), whereby a central fastening opening (21) is provided in the central portion (15) for mounting the cutting blade (11) on a drive shaft. In order to obtain a multiply cutting blade for chopping material, it is provided that the end portions (16) that carry the cutting edges (26) be angled off in the same direction (18) out of the plane (17) of the central portion (15).
    • 本发明涉及一种用于修剪机的切割刀片。 切割刀片(1)包括具有中心部分(15)的基体(14)以及与中心部分邻接的端部(16)。 切割刃(26)形成在端部(16)的纵向边缘(23,24)上,由此在中心部分(15)中设置有用于将切割刀片(11)安装在其上的中心紧固开口(21) 驱动轴。 为了获得用于切割材料的多重切割刀片,提供了携带切割边缘(26)的端部(16)在与中心的平面(17)相同的方向(18)上成角度地偏离 部分(15)。
    • 9. 发明授权
    • Cutterhead for a vegetation cutter
    • 切割机用于植被切割机
    • US4893410A
    • 1990-01-16
    • US273925
    • 1988-11-21
    • Joachim HoffmannDieter AngstenbergerGerhard Zerrer
    • Joachim HoffmannDieter AngstenbergerGerhard Zerrer
    • A01D34/416
    • A01D34/416
    • The invention is directed to a cutterhead for attachment to a vegetation cutting apparatus. The cutterhead has a housing with a spool on which a coil of cutting filament is wound. The cutting filament is paid out in incremental lengths when its ends effective for cutting are worn. This is achieved with an incremental rotation of the spool while the cutterhead rotates. For this purpose, the filament coil must have a winding rotation corresponding to the direction of rotation of the cutterhead. So that the cutterhead can be utilized for oppositely directed rotations as desired, the spool can be turned over through 180.degree. and can be blocked and released in both positions by means of a switching member to provide the incremental rotation. The spool can be seated on the switching member and its position, when installed, is determined by means of a marking which is applied to the adapter nut and to the spool. The adapter nut serves to tighten the cutterhead onto the vegetation cutting apparatus.
    • 本发明涉及一种用于连接到植被切割装置的刀架。 刀架具有壳体,其上缠绕有切割细丝的线圈。 当切割长丝的端部有效切割时,切割长丝以增量长度支付。 这是通过在刀架旋转时卷轴的增量旋转来实现的。 为此,灯丝线圈必须具有对应于刀盘的旋转方向的卷绕旋转。 因此,刀头可根据需要用于相反方向的旋转,可将卷轴翻转180°,并通过切换部件在两个位置上被阻塞和释放,以提供增量旋转。 阀芯可以安置在切换构件上,其安装位置通过施加到适配器螺母和阀芯的标记来确定。 适配器螺母用于将切割头拧紧到植被切割装置上。
    • 10. 发明申请
    • DEVICE AND PROCESS FOR HANDLING COVERSLIPS FOR MICROSCOPE SLIDES
    • 用于处理微阵列滑块的装置和方法
    • US20120195731A1
    • 2012-08-02
    • US13354375
    • 2012-01-20
    • Joachim HOFFMANN
    • Joachim HOFFMANN
    • B65G47/91B66C1/02B66C1/10
    • G02B21/34G01N2035/00079
    • The invention relates to a coverslip handling device (100) comprising a pick-up component (200) for picking up a coverslip (800) and a sensor device (203, 204) for checking the state of the coverslip (800) picked up, the coverslip handling device (100) being arranged to pick up a coverslip (800) automatically by means of the pick-up component (200), to check the state of the coverslip (800) picked up by means of the sensor device (203, 204) so that unusable coverslips are detected, and to set down a coverslip (800) that has been detected as being usable, automatically by means of the pick-up component (200) on a slide (500) provided for this purpose, wherein the coverslip handling device (100) is configured to automatically discard a coverslip found to be unusable by means of the pick-up component (200).
    • 本发明涉及一种盖玻片处理装置(100),其包括用于拾取盖玻片(800)的拾取部件(200)和用于检查所拾取的盖玻片(800)的状态的传感器装置(203,204) 盖玻片处理装置(100)被布置成通过拾取部件(200)自动拾取盖玻片(800),以检查通过传感器装置(203)拾取的盖玻片(800)的状态 ,204),使得检测不到的盖玻片,并且通过拾取部件(200)自动地将被检测为可用的盖玻片(800)放置在为此设置的滑块(500)上, 其中所述盖玻片处理装置(100)被配置为通过所述拾取部件(200)自动丢弃发现不能使用的盖玻片。