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公开(公告)号:WO2010081797A2
公开(公告)日:2010-07-22
申请号:PCT/EP2010/050268
申请日:2010-01-12
Applicant: BASF SE , EISENHARDT, Andrea , KROGMANN, Joerg , LEUNG, Emi , MUELLER, Ulrich , KIENER, Christoph
Inventor: EISENHARDT, Andrea , KROGMANN, Joerg , LEUNG, Emi , MUELLER, Ulrich , KIENER, Christoph
IPC: B01J20/22 , F17C3/08 , F16L59/065
CPC classification number: B01J20/22 , B01J20/226 , F16L59/065 , F25D2201/14
Abstract: Die vorliegende Erfindung betrifft Vakuumisolationseinheiten enthaltend zumindest ein wärmeisolierendes, evakuiertes, luftdicht verschlossenes poröses Kernmaterial sowie ein Sorptionsmittel, wobei das Sorptionsmittel mindestens ein poröses metallorganisches Gerüstmaterial enthaltend mindestens eine an mindestens ein Metallion koordinativ gebundene, mindestens zweizähnige organische Verbindung enthält sowie Formkörper enthaltend eine solche Vakuumisolationseinheit. Darüber hinaus betrifft die vorliegende Erfindung die Verwendung eines porösen metallorganischen Gerüstmaterials als Gettermaterial in einer Vakuumisolationseinheit.
Abstract translation: 本发明涉及真空绝缘单元,其包括至少一个热绝缘,抽真空,密封的多孔芯材和吸附剂,其中所述吸附剂的至少一种包含至少多孔金属有机骨架包含一个配位到至少一种金属,至少双齿有机化合物,和模制品包括这样的真空绝热部。 此外,本发明涉及使用多孔金属 - 有机骨架材料作为在真空绝缘单元的吸气剂材料。
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公开(公告)号:WO2021122177A1
公开(公告)日:2021-06-24
申请号:PCT/EP2020/085138
申请日:2020-12-08
Applicant: BASF SE
Inventor: WAGNER, Hendrik , GREVER, Marko , HOLLE, Joachim , KROGMANN, Joerg
IPC: C08G18/48 , C08G18/50 , C08G18/63 , C08G18/40 , C08G18/09 , C08G18/22 , C08G18/18 , C08G18/20 , C08G18/16 , C08G18/76 , C08J9/14 , B29C44/04 , F25D23/00 , B29B7/74 , G06Q50/04 , B29B7/00 , B29B7/60 , B29B7/80 , B29C44/34 , B29C44/60 , B29K75/00 , C08G101/00 , B29B7/007 , B29B7/603 , B29B7/7404 , B29B7/7471 , B29B7/805 , B29C44/3442 , B29K2075/00 , B29K2995/0015 , C08G18/092 , C08G18/163 , C08G18/1816 , C08G18/1833 , C08G18/2036 , C08G18/225 , C08G18/4072 , C08G18/4829 , C08G18/4883 , C08G18/5021 , C08G18/632 , C08G18/7664 , C08G2110/0025 , C08G2110/005 , C08G2115/02 , C08J2203/14 , C08J2203/162 , C08J2205/052 , C08J2205/10 , C08J2375/04 , C08J9/141 , C08J9/144
Abstract: The present invention relates to a flexible discontinuous process for producing a series of at least two articles containing thermally insulating polyurethane foam from at least three streams (A), (B) and (C) by mixing the at least three streams with different mixing ratios and injecting the mixture into cavities of the articles, and to a production unit for performing this process.
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公开(公告)号:WO2019110631A1
公开(公告)日:2019-06-13
申请号:PCT/EP2018/083571
申请日:2018-12-05
Applicant: BASF SE
Inventor: KROGMANN, Joerg , KLASSEN, Johann , WAGNER, Hendrik
CPC classification number: C08G18/6674 , C08G18/3206 , C08G18/4845 , C08G18/6677 , C08G18/7664 , C08G2101/0025 , C08G2101/0083
Abstract: Gegenstand der Erfindung ist ein Verfahren zur Herstellung eines offenzelligen Polyurethanhartschaum nach einem Blockschaumverfahren sowie die Verwendung der erhaltenen Polyurethanhartschaums in Vakuumisolationspanelen.
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4.
公开(公告)号:WO2020002104A1
公开(公告)日:2020-01-02
申请号:PCT/EP2019/066252
申请日:2019-06-19
Applicant: BASF SE
Inventor: WAGNER, Hendrik , GREVER, Marko , THIELBEER, Frank , KRONIG, Sabrina , HUSKOBLA, Antje , KROGMANN, Joerg , PETROVIC, Dejan
Abstract: The present invention relates to a process for producing a rigid polyurethane foam, also referred to as rigid PU foam, via mixing of three streams, rigid PU foams that are obtained by that process, and the use thereof as an insulation material.
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5.
公开(公告)号:WO2017167697A1
公开(公告)日:2017-10-05
申请号:PCT/EP2017/057214
申请日:2017-03-27
Applicant: BASF SE
Inventor: BEHAM, Frank , KOLB, Stefan , BOECKMANN, Philipp Johannes , SANDLER, Jan Kurt Walter , FRICKE, Marc , JAMIN-MAGUIRE, Elsie , KROGMANN, Joerg
Abstract: A transport container (100) for transporting an object (105) has an object location (104) to receive the object (105) and a vacuum insulation panel VIP (102-i) to thermally insulate the object location (104). A sensor unit (120-i) in the VIP provides a panel condition signal (PCS, 125-i) that corresponds to a measurement value of a physical property of the VIP. The physical property influences the temperature of the object (θ OBJECT). A short-distance transmitter unit (130-i) transmits a first coding (135-i) of the PCS inside the Container (100), a long-distance transmitter unit (140) transmits a second coding (145) of the PCS to a remote server (200) for processing the PSC. The server (200) determines a representation of an Operation State of the transport container, wherein the operation state is related to the temperature of the object (θ OBJECT). The material of the VIP is classified and differentiated so that transmitting parameters depend on the material.
Abstract translation: 用于运输物体(105)的运输容器(100)具有用于容纳物体(105)的物体位置(104)和真空绝热板VIP(102-i),以使绝热板 对象位置(104)。 VIP中的传感器单元(120-i)提供对应于VIP的物理属性的测量值的面板状态信号(PCS,125-i)。 物理属性影响物体的温度(θOBJECT)。 短距离发射机单元(130-i)在容器(100)内发送PCS的第一编码(135-i),长距离发射机单元(140)将PCS的第二编码 远程服务器(200),用于处理PSC。 服务器(200)确定运输容器的操作状态的表示,其中操作状态与对象的温度(θOBJECT)有关。 VIP的材料被分类和区分,以便传输参数取决于材料。 p>
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