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    • 4. 发明公开
    • METHOD OF CURING COATINGS ON AUTOMOTIVE BODIES USING HIGH ENERGY ELECTRON BEAM OR X-RAY
    • 使用高能电子束或X射线在汽车车身上固化涂层的方法
    • EP1651680A2
    • 2006-05-03
    • EP04757194.8
    • 2004-07-23
    • ION BEAM APPLICATIONS S.A.
    • KERLUKE, David, R.GALLOWAY, RichardCLELAND, Marshall, R.BALMER, Victor, R.
    • C08F2/54
    • C08J3/28B05D3/068B05D7/14B05D7/57
    • The invention is directed to the use of medium to high power (greater than or equal to 1 kW) and medium to high energy (greater than or equal to 1 MeV) electron beam or X-ray to cure coatings in thick complex three dimensional automotive bodies. The medium to high power, medium to high energy has sufficient throughput and penetration to permit curing through multiple layers of steel and, therefore, is able to penetrate shadows caused by the bends, folds and curves in automotive bodies. In addition, the medium to high power, medium to high energy beam has sufficient throughput and penetration to cure the thicker coatings that accumulate in surface cracks and crevices. The invention permits the use of electron beam curable coatings and, thereby, reduces the fire hazard, hazardous air pollutant, and volatile organic problems associated with the non-reactive solvents used in the solvent based paints conventionally employed in the automotive industry.
    • 本发明涉及使用中等至高功率(大于或等于1kW)和中等至高能(大于或等于1MeV)电子束或X射线来固化厚的复杂三维汽车中的涂层 身体。 中高功率,中高能量具有足够的吞吐量和穿透力,可以通过多层钢材进行固化,因此能够穿透汽车车身弯曲,折叠和弯曲引起的阴影。 此外,中高功率,中高能量束具有足够的产量和渗透率,以固化积聚在表面裂缝和裂缝中的较厚涂层。 本发明允许使用电子束固化涂料,从而减少与在汽车工业中常规使用的溶剂基油漆中使用的非反应性溶剂相关的火灾危险性,有害空气污染物和挥发性有机问题。
    • 7. 发明授权
    • APPARATUS AND PROCESS FOR CHARACTERISING SAMPLES
    • 设备和工艺样品表征
    • EP1454183B1
    • 2006-04-26
    • EP02782544.7
    • 2002-12-05
    • UNIVERSITE LIBRE DE BRUXELLES
    • JOANNES, Luc
    • G02B27/54G01N21/45
    • G02B27/54G01N21/455
    • The present invention is related to an apparatus for measuring by the Schlieren technique light beam deviations generated by a sample (EV), said apparatus comprising: a source (S) of light beam for lighting up said sample (EV) therewith so as to have a transmitted beam; imaging means (L2, L3) for forming the image of said sample from said transmitted beam; a Schlieren filter (SFP) for filtering said image, generating said Schlieren fringes; detecting means (CCD) for detecting said filtered image; phase shifting means for creating a phase shift of the Schlieren fringes at the transmitted beam; processing means for calculating the phase of the Schlieren fringes and deducing the angle of the beam deviation created by the sample from the detected image, characterised in that the Schlieren filter (SFP) comprises a periodic structure (SFP) of a defined period and having a series of alternating absorbing and transparent sub-elements. The present invention is also related to a method for measuring by the Schlieren technique light beam deviations generated by a sample using said apparatus.
    • 10. 发明公开
    • Portable medical device for automatic electrical coherence analysis inside a patient
    • 一种用于在病人身体的内部自动电相干性分析的便携式医疗设备
    • EP1627600A1
    • 2006-02-22
    • EP04447141.5
    • 2004-06-09
    • Université Libre de Bruxelles
    • Manto, MarioPons Rovira, JoseCeres Ruiz, RamonBrunetti, Fernando
    • A61B5/11A61B5/0488
    • A61B5/1107A61B5/0488A61B5/1101A61B5/4082A61B5/6831A61B5/6848
    • The present invention is related to a portable medical device for automatic monitoring of the electrical activity of target areas inside a patient, said medical device based on a wireless communication network comprising:

      a measuring unit (1) for measuring, as a function of a monitoring frequency, electrical signals at the surface of said two target areas (10,11);
      a processing unit (4) connected to the measuring unit (1), said processing unit (4) comprising:

      (i) a slave unit (5) and a master unit (6) connected to said slave unit (5) for collecting and analysing the electrical signals measured by the measuring unit;
      (ii) possibly a basic unit, and
      (iii) a visualisation unit (7),


      wherein the master unit (6) and the possibly basic unit (8) are configured so as to allow an analysis of the electrical signals comprising the analysis of the coherence between said first and second sets of electrical signals as a function of the monitoring frequency.
    • 本发明涉及一种用于在患者体内的目标区域的电活动的自动监控的便携式医疗设备,所述基于无线通信网络上的医疗设备,包括:测量单元(1),用于测量,作为监视的功能 频率,在所述的表面电信号两个靶区域(10,11); 的处理单元(4)连接到测量单元(1),所述处理单元(4)包括:(i)(5)和一个主单元(6),连接到所述从属单元(5),用于收集从单元和 成就分析由所述测量单元测量的电信号; (二)可能是一个基本单元,和(iii)一个可视化单元(7),worin主单元(6)和可能的基本单元(8)被配置以便允许所述电信号包括分析的分析 所述第一和第二组电信号之间的一致性作为监视频率的函数。