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    • 1. 发明授权
    • Gas sensor arrangement
    • 气体传感器装置
    • US06843102B1
    • 2005-01-18
    • US09979858
    • 2000-05-26
    • Aleksandr ShulgaUdo SchmaleHolger Müller
    • Aleksandr ShulgaUdo SchmaleHolger Müller
    • G01N29/00G01N21/00G01N21/27G01N21/3504G01N21/37G01N21/61G01N25/00
    • G01N21/274G01N21/1702G01N21/3504G01N2021/1704
    • A gas sensor configuration comprises a radiation-emitting radiation device, a gas measuring chamber, a detector unit and an evaluation device. A measuring gas that contains at least one gas component is present in the gas measuring chamber. The evaluation device detects the gas component and/or its concentration depending on the output signal of the detector unit. The radiation emitting device comprises at least one source that emits a measuring radiation and at least one reference radiation source, the latter being switched on periodically to measure the aging state of the source that emits the measuring radiation. The evaluation device detects the aging of the source that emits the measuring radiation on the basis of deviations with respect to the output signals of the detector unit when the reference radiation source and the source that emits the measuring radiation are switched on, and, if necessary, compensates for the aging.
    • 气体传感器配置包括辐射发射辐射装置,气体测量室,检测器单元和评估装置。 在气体测量室中存在包含至少一种气体成分的测量气体。 评估装置根据检测器单元的输出信号检测气体成分和/或其浓度。 所述辐射发射装置包括发射测量辐射的至少一个源和至少一个参考辐射源,所述参考辐射源周期性地接通以测量发射测量辐射的源的老化状态。 当参考辐射源和发射测量辐射的源被接通时,评估装置基于相对于检测器单元的输出信号的偏差来检测发射测量辐射的源的老化,并且如果需要 ,补偿老化。
    • 2. 发明授权
    • Process and device for producing components and semifinished products from synthetic graphite or ceramic granules, in particular for producing graphite tubes
    • 用于从合成石墨或陶瓷颗粒生产组分和半成品的方法和装置,特别是用于生产石墨管
    • US06905644B1
    • 2005-06-14
    • US09936067
    • 2000-11-24
    • Holger MüllerJürgen KünzelManfred Schmid
    • Holger MüllerJürgen KünzelManfred Schmid
    • C04B35/52B28B3/20B28B3/24B28B3/26B28B21/52C04B35/532C04B35/83B29C47/00
    • B28B21/52B28B3/20B28B3/24B28B3/26C04B35/532C04B35/83
    • This invention relates to a process and a device for producing components and semi-finished products from synthetic graphite or from ceramic granules, in particular for producing graphite tubes, involving shaping of a material to be mixed preferably containing petroleum coke or graphite granules, by means of an extrusion press (22) or an extruder, wherein the process provides the following steps: a) Pre-pressing the material (20) to be mixed in static or quasi-static manner, flow movements of the material (20) to be mixed being stopped or impeded in such a way that particles previously irregularly arranged in the material to be mixed are initially aligned transversely to the direction of pressing, b) Pressing out of the pre-pressed material (20) to be mixed through an outlet opening (28) of the extrusion press (22) or the extruder in such a way that owing to adjusted flow properties of the material (20) to be mixed, the particles within the pre-compressed material (20) to be mixed realign, starting from their transverse alignment, by an angle (β) of a maximum of 75° in the direction of pressing.
    • 本发明涉及一种用于从合成石墨或陶瓷颗粒生产组分和半成品的方法和装置,特别是用于生产石墨管的方法和装置,包括优选含有石油焦炭或石墨颗粒的待混合材料的成型 的挤出机(22)或挤出机,其中该方法提供以下步骤:a)预先将静态或准静态混合的材料(20)预压,将材料(20)的流动移动为 混合物被阻止或阻碍,使得先前不规则地排列在待混合材料中的颗粒最初横向于压制方向对准,b)从预压材料(20)中挤出以通过出口开口 (22)的挤出机(28)或挤压机,使得由于要混合的材料(20)的调节的流动性质,预压缩材料(20)内的颗粒, 从其横向对准开始,在压制方向上以最大75°的角度(β)混合重新对齐。
    • 3. 发明授权
    • Device for longitudinally stitching multipiece printed products
    • 纵向拼接多件印刷品的装置
    • US06223964B1
    • 2001-05-01
    • US09423024
    • 1999-10-28
    • Holger Müller
    • Holger Müller
    • B27F717
    • B42B4/02
    • A rotating stitcher 4 for driving U-shaped wire stitches 43 into printed products 3 being conveyed along a linear path, wherein a stapling closing device 5 cooperates with the stitcher 4, for closing the wire stitches 43. The rotating stitcher 4 has stitching heads 7 which are hinged around a rotating support 6. A control device guarantees that the stitching heads 7 are swung into a position where the direction of displacement E of the stitch plunger 10 is at right angles to the direction of transport A of the products 3 to be stitched. This takes place before or during entry of the stitching head 7 into the stitching area. While the wire stitches are driven in and stitched, the stitching heads 7 are held in this position and thus move linearly in the stitching area. The heads 32 of the stapling closing device 5 are guided in the same way, so that they move linearly during stapling, just like the allocated staple head 7.
    • 用于将U形线迹43驱动成沿着线性路径传送的打印产品3的旋转缝合器4,其中装订关闭装置5与缝合器4配合,用于封闭线迹43.旋转缝合器4具有缝合头7 它们围绕旋转的支撑件6铰接。控制装置确保缝合头7摆动到针脚10的位移方向E与产品3的运送方向A成直角的位置 缝合 这在缝合头7进入缝合区域之前或期间进行。 当线缝被驱动并缝合时,缝合头7保持在该位置,从而在缝合区域中线性移动。 装订关闭装置5的头部32以相同的方式被引导,使得它们在缝合期间线性移动,就像分配的钉头7一样。
    • 5. 发明授权
    • Method and device for the quantitative gas analysis
    • 定量气体分析的方法和装置
    • US06903823B1
    • 2005-06-07
    • US10088428
    • 2000-09-15
    • Holger MüllerUdo Schmala
    • Holger MüllerUdo Schmala
    • C12M1/34G01N21/03G01N33/497G01N21/61
    • C12M41/34G01N21/03G01N2033/4977
    • The invention relates to a device and a method for the quantitative gas analysis in which the gas analysis of a sample atmosphere is implemented by means of a sensor device, a diffusion seal being produced between the sample atmosphere contained in a sample system and a measuring chamber and the gas analysis of the sample atmosphere which is diffused into the measuring chamber being implemented with the sensor device, the sensor head (5) being able to be coupled to the measuring adapter (4) and the radiation source (16) and the detector device (17) being fixed to the measuring chamber (9) in a defined orientation and the measuring radiation (24) emitted from the radiation source (16) traversing at least once through the measuring chamber (9) and being detected by the detector device (17) after leaving the measuring chamber (9).
    • 本发明涉及一种用于定量气体分析的装置和方法,其中通过传感器装置实现样品气氛的气体分析,在样品系统中包含的样品气氛和测量室之间产生扩散密封 并且用传感器装置实现扩散到测量室中的样品气氛的气体分析,传感器头(5)能够耦合到测量适配器(4)和辐射源(16)和检测器 装置(17)以限定的方向固定到测量室(9),并且从辐射源(16)发射的测量辐射(24)至少穿过测量室(9)并被检测器装置 (17)离开测量室(9)。