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    • 13. 发明公开
    • DROPLET CUTTING METHOD AND DROPLET CROSS-SECTION ANALYSIS METHOD
    • TRÖPFCHENSCHNEIDEVERFAHRENSOWIE VERFAHREN ZUR ANALYZE VONTRÖPFCHENQUERSCHNITTEN
    • EP2866015A1
    • 2015-04-29
    • EP13807695.5
    • 2013-06-12
    • Nitto Denko Corporation
    • MAENO, Youhei
    • G01N1/06G01N1/28
    • G01N1/286B26D7/08G01N1/04G01N1/42G01N2001/2873H01J37/32321H01J2237/31749Y10T83/041
    • Provided is a droplet cutting method capable of cutting a droplet easily to expose its cross-section. Also provided is a droplet cross-section analysis method, including analyzing a cross-section exposed through cutting by such cutting method. A droplet cutting method of the present invention is a method of cutting a droplet to expose a cross-section, the method including: placing a droplet on a surface of a carbon nanotube aggregate including a plurality of carbon nanotubes; cooling the droplet to a cooling temperature equal to or less than a temperature at which the droplet is solidified; and cutting the droplet. A droplet cross-section analysis method of the present invention includes analyzing a cross-section exposed through cutting by the droplet cutting method of the present invention.
    • 提供了一种能够容易地切割液滴以暴露其横截面的液滴切割方法。 还提供了一种液滴横截面分析方法,包括通过这种切割方法分析通过切割暴露的横截面。 本发明的液滴切割方法是一种切割液滴以暴露横截面的方法,该方法包括:将液滴放置在包括多个碳纳米管的碳纳米管集合体的表面上; 将液滴冷却到等于或小于液滴固化温度的冷却温度; 并切割液滴。 本发明的液滴横截面分析方法包括通过本发明的液滴切割方法分析通过切割暴露的横截面。
    • 15. 发明授权
    • Automated seed sampler
    • 自动化Samenprobenehmer
    • EP2279658B1
    • 2015-03-18
    • EP10185374.5
    • 2005-08-26
    • Monsanto Technology LLC
    • Deppermann, KevinPetersen, Michael W.
    • A01C1/00
    • G01N1/04A01C1/00A01C1/025A01H1/02A01H1/04A01H4/003B07C2501/009C12Q1/6895C12Q2600/13C12Q2600/156G01N35/00029G01N35/04
    • An automated seed sampler (20) includes a sampling station (72); a sampler (154) for removing material from a seed in the sampling station (72); a seed conveyer (32) for conveying the seed from the sampling station (72) to a compartment in a seed tray (80); and a conveyor (34) for conveying the material removed from the seed to a corresponding compartment in a sample tray (82). The method of the present invention comprises feeding seeds individually to a sampling station (72), removing a sample from the seed in the sampling station (72); conveying the sample to a compartment in a sample tray (82), and conveying the seed to a corresponding compartment in a seed tray (80). The samples can be tested, and the seeds can be sorted according to the results of the testing of their corresponding samples.
    • 自动种子取样器(20)包括采样站(72); 用于从采样站(72)中的种子去除材料的采样器(154); 用于将种子从采样站(72)输送到种子盘(80)中的隔室的种子输送器(32); 以及用于将从种子移除的材料输送到样品托盘(82)中的对应隔室的输送机(34)。 本发明的方法包括将种子单独送入采样站(72),从取样站(72)中的种子中取出样品; 将样品输送到样品托盘(82)中的隔室,并将种子输送到种子托盘(80)中的相应隔室。 可以对样品进行测试,并根据其相应样品的测试结果对种子进行分类。
    • 19. 发明公开
    • CUTTING APPARATUS
    • 切割设备
    • EP2663729A2
    • 2013-11-20
    • EP12700182.4
    • 2012-01-11
    • Halliburton Energy Services, Inc.
    • RUTHERFORD, LorneMAGEREN, OlivierCHE, Khac Nguyen
    • E21B25/00B23C3/30B26D3/00B23D21/02
    • E21B25/005B23D21/02B26D1/18B26D3/001B26D7/01G01N1/04Y10T83/0267Y10T83/0281Y10T83/0289
    • Described herein is a cutting apparatus (100) for allowing visual inspection of a core sample in an inner tube at a drilling site after the inner tube has been removed from a coring tube and prior to it being transported to a laboratory. The cutting apparatus (100) comprises a support track (110, 112, 114, 116)) on which is mounted a tube support member (120), a cutter wagon (130, 132, 138) and a drive arrangement (140, 142, 144, 146). The apparatus (100) provides relative movement between an inner tube (150) and the cutter wagon (130, 132, 138) to allow a section of the inner tube (150) to be removed along its entire length for visual inspection. The drive arrangement (140, 142, 144, 146) provides the relative movement between the inner tube (150) and the cutter wagon (130, 132, 138).
    • 这里描述的是一种切割装置(100),用于在内管已经从取样管取出并在运送到实验室之前,允许在钻探现场对内管中的芯样品进行目视检查。 切割设备(100)包括其上安装有管支撑构件(120),切割器车(130,132,138)和驱动装置(140,142)的支撑轨道(110,112,114,116) ,144,146)。 设备(100)提供内管(150)和切割器货车(130,132,138)之间的相对运动,以允许内管(150)的一部分沿其整个长度被移除以供目视检查。 驱动装置(140,142,144,146)提供内管(150)和切割器车(130,132,138)之间的相对运动。