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公开(公告)号:US07135114B2
公开(公告)日:2006-11-14
申请号:US10545113
申请日:2003-11-19
申请人: Ralph Nonninger , Olaf Binkle , Romeo Volz , Hans-Jürgen Schmidt
发明人: Ralph Nonninger , Olaf Binkle , Romeo Volz , Hans-Jürgen Schmidt
CPC分类号: B01D63/066 , B01D29/39 , B01D63/082
摘要: In a filtration device (1) comprising a pressure-resistant housing (2) with a liquid inlet opening (3) and an outlet opening (4) for filtered matter, into which a collecting channel (12) terminates, at least one filter element (8–11) designed as flat membrane is connected to the collecting channel (12) in a pressure-tight manner. This device provides a high liquid throughput at the same time having a compact construction.
摘要翻译: 在包括具有液体入口(3)的耐压壳体(2)和用于过滤物质的出口开口(4)的过滤装置(1)中,收集通道(12)终止于该过滤装置中,至少一个过滤元件 (8-11)以压力密封的方式与收集通道(12)连接。 该装置在紧凑的结构的同时提供高液体通量。
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公开(公告)号:US20060163142A1
公开(公告)日:2006-07-27
申请号:US10545113
申请日:2003-11-19
申请人: Ralph Nonninger , Olaf Binkle , Romeo Volz , Hans-Jurgen Schmidt
发明人: Ralph Nonninger , Olaf Binkle , Romeo Volz , Hans-Jurgen Schmidt
IPC分类号: B01D63/00
CPC分类号: B01D63/066 , B01D29/39 , B01D63/082
摘要: In a filtration device (1) comprising a pressure-resistant housing (2) with a liquid inlet opening (3) and an outlet opening (4) for filtered matter, into which a collecting channel (12) terminates, at least one filter element (8-11) designed as flat membrane is connected to the collecting channel (12) in a pressure-tight manner. This device provides a high liquid throughput at the same time having a compact construction.
摘要翻译: 在包括具有液体入口(3)的耐压壳体(2)和用于过滤物质的出口开口(4)的过滤装置(1)中,收集通道(12)终止于该过滤装置中,至少一个过滤元件 (8-11)被设计为平膜,以压力方式连接到收集通道(12)。 该装置在紧凑的结构的同时提供高液体通量。
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公开(公告)号:US20060210818A1
公开(公告)日:2006-09-21
申请号:US10523573
申请日:2003-07-30
申请人: Olaf Binkle , Stefam Faber , Ralph Nonninger , Romeo Volz
发明人: Olaf Binkle , Stefam Faber , Ralph Nonninger , Romeo Volz
CPC分类号: C04B41/009 , C04B41/5064 , C04B41/87 , C04B2111/2069 , C23C24/08 , C23C26/00 , F28F19/02 , C04B41/4539 , C04B41/4549 , C04B41/5027 , C04B35/00
摘要: The invention relates to a method for the production of ceramic coatings on metallic and/or ceramic surfaces, especially pipe walls and the linings of pipe wall in boilers, in order to protect coated surfaces from corrosion and adhesion problems, in addition to relating to coatings which can be produced according to said method. The ceramic coatings are characterised in that the coating contains boron nitride in order to form a low-energy surface, and ceramic nanoparticles as temperature-stable binding agents which, on account of their high specific powder surfaces, act as binders, or alternatively glass-type binder systems based on metal organyl compounds.
摘要翻译: 本发明涉及一种用于在金属和/或陶瓷表面,特别是管壁和锅炉管壁衬里生产陶瓷涂层的方法,以便保护涂层表面免受腐蚀和粘附问题,以及涉及涂层 其可以根据所述方法生产。 陶瓷涂层的特征在于,为了形成低能量表面,涂层含有氮化硼,而陶瓷纳米颗粒是温度稳定的结合剂,由于它们的高比表面积,作为粘合剂,或者玻璃 - 基于金属有机化合物的粘合剂体系。
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公开(公告)号:US20090017200A1
公开(公告)日:2009-01-15
申请号:US12236386
申请日:2008-09-23
申请人: Olaf BINKLE , Stefan Faber , Ralph Nonninger , Romeo Volz , Karl Schwetz , Martin Engler , Helmut Schmidt , Mesut Aslan , Robert Drumm , Hareesh Nair , Klaus Endres , Bernd Reinhard
发明人: Olaf BINKLE , Stefan Faber , Ralph Nonninger , Romeo Volz , Karl Schwetz , Martin Engler , Helmut Schmidt , Mesut Aslan , Robert Drumm , Hareesh Nair , Klaus Endres , Bernd Reinhard
IPC分类号: B05D3/02
CPC分类号: C04B41/009 , C04B41/5064 , C04B41/87 , C04B2111/2069 , C23C24/08 , C23C26/00 , F28F19/02 , C04B41/4539 , C04B41/4549 , C04B41/5027 , C04B35/00
摘要: A method for producing a ceramic coating of metallic and/or ceramic surfaces and products in reactors, process plants and combustion plants includes applying a mixture of fine-particle boron nitride, at least one inorganic binding agent of medium particle size in the nanometer range, containing substantially Al2O3, AlO(OH), ZrO2, Y—ZrO2, TiO2, Fe2O3 and/or SnO2 or an associated precursor compound and at least one solvent and/or water onto a metallic and/or ceramic surfaces or product, and burning the applied mixture into a coating through heating.
摘要翻译: 一种用于在反应器,工艺设备和燃烧设备中制造金属和/或陶瓷表面和产品的陶瓷涂层的方法包括:将微粒氮化硼,至少一种中等粒度的无机粘合剂在纳米范围内的混合物, 在金属和/或陶瓷表面或产品上基本上含有Al 2 O 3,AlO(OH),ZrO 2,Y-ZrO 2,TiO 2,Fe 2 O 3和/或SnO 2或相关的前体化合物和至少一种溶剂和/或水,并将 施加的混合物通过加热涂覆。
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