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公开(公告)号:US06980292B2
公开(公告)日:2005-12-27
申请号:US10493332
申请日:2002-11-22
申请人: Claudia Sierakowski , Ines Mangels , Zenon-Paul Czornij , Thomas Krüger , Peter Hoffmann , Thomas Frey , Benno Sens , Manfred Mielke , Paul Günthert , Gerhard Berger , Peter Blaschka , Günter Etzrodt
发明人: Claudia Sierakowski , Ines Mangels , Zenon-Paul Czornij , Thomas Krüger , Peter Hoffmann , Thomas Frey , Benno Sens , Manfred Mielke , Paul Günthert , Gerhard Berger , Peter Blaschka , Günter Etzrodt
CPC分类号: G01N21/31 , C09B67/0002 , C09B67/0063 , C09D17/00
摘要: The invention relates to a method of producing color pastes, in which a component comprising colorant particles is dispersed in a binder. In the method of the invention the dispersing operation is controlled by beaming excitational light of a defined wavelength range into a mixture of the component comprising colorant particles and the binder, detecting the light transmitted, reflected and/or scattered by the mixture and determining a sample spectrum, evaluating the sample spectrum and hence determining parameters of the color paste, and monitoring changes in the sample spectrum over time and terminating the dispersing operation when predetermined target parameters are attained.
摘要翻译: 本发明涉及一种生产色浆的方法,其中包含着色剂颗粒的组分分散在粘合剂中。 在本发明的方法中,通过将具有确定的波长范围的激发光照射到包含着色剂颗粒和粘合剂的组分的混合物中来检测由混合物透射,反射和/或散射的光并确定样品 光谱,评估样品光谱,从而确定色浆的参数,并监测样品光谱随时间的变化,并在达到预定目标参数时终止分散操作。
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公开(公告)号:US06827478B2
公开(公告)日:2004-12-07
申请号:US10332843
申请日:2003-01-14
申请人: Dietmar Becker , Georg Beck , Stefan Bentz , Wolfgang Best , Peter Erk , Günter Etzrodt , Martin Könemann , Reinhold Rieger , Klaus Unterforsthuber
发明人: Dietmar Becker , Georg Beck , Stefan Bentz , Wolfgang Best , Peter Erk , Günter Etzrodt , Martin Könemann , Reinhold Rieger , Klaus Unterforsthuber
IPC分类号: B01F1100
CPC分类号: G01N35/0099 , B01F11/02 , B01F13/1055 , B01F15/00207 , B01F15/00214 , B01F15/0441 , B01F2215/005 , G01N21/25 , G01N21/83 , G01N35/028 , G01N35/10 , G01N2035/00188 , G01N2035/00217 , G01N2035/00752 , Y10S366/605
摘要: A method of automated preparation and characterization of liquid multicomponent systems comprising at least two, preferably three components comprises the automated preparation of a mixture by combining at least two, preferably three components in a vessel, at least one component being metered in an automated fashion into the vessel, and the automated homogenization of the mixture with subsequent automated measuring and evaluation. The apparatus for conducting this method comprises at least one metering station, one closing station, one homogenizing station, one measuring station for determining formulation properties, and one evaluation unit.
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