会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明专利
    • Method, useful to protect metallic surface with corrosion inhibitor composition coating comprises applying coating on metallic surface, where the components comprising: deposit substance; and further components and/or matrix substance
    • DE102004037542A1
    • 2006-02-23
    • DE102004037542
    • 2004-08-03
    • CHEMETALL GMBH
    • STRATMANN MARTINROHWERDER MICHAELADLER HANS-JUERGENPOTJE-KAMLOTH KARINPLIETH WALDFRIEDRAMMELT URSULAHEBESTREIT NILSPICH ANDRIJJAEHNE EVELINSCHNEIDER JULIADOMES HERIBERTPALIWODA-PROBESKA GRAZYNA
    • C09D5/08C23F11/173
    • Method for the protection of metallic surface (A) with a coating (A1) of corrosion inhibitor composition, comprises applying (A1) on (A), where a component optionally at least partially in a matrix comprising: at least a deposit substance (a) comprising incorporating anions by an oxidation reaction and releasing at least a part of anions for a potential variation; and optionally at least a further components and/or matrix substance. Method for the protection of metallic surface (A) with a coating (A1) of corrosion inhibitor composition, that after providing, optionally drying and hardening, comprises applying (A1) on (A), that as a component optionally at least partially in a matrix comprising: (a) at least deposit substance and at least a conductive polymer, comprising (1) anions incorporated by an oxidation reaction as doped ion and (2) releasing at least a part of anions for a potential variation (reduction), where at least a type of anions is suitable to inhibit an anodic and/or cathodic part reaction of the corrosion and optionally also to act as coupling agent, where the anions respectively exhibits ionic radius, that it is non- or not substantially- impaired the migration through the deposit substances and optionally through at least a further component e.g. in a matrix of the coating, where at least a type of anion are mobile in water, at least an another polar solvent and/or also in at least non polar solvent containing mixture, where the release of anions from at least a deposit substance does not and/or only dependent over a deprotonation reaction, but predominantly and/or completely takes place over a reduction reaction, and where at least a educt for the preparation of the deposit substance is selected, that the oxidation potential is less or same to the decomposition potential of the water and/or at least an another polar solvents in the mixture; and (b) optionally at least a further component and/or at least a matrix substance, that at least a deposit substance serves at least partially as matrix and at least an organic polymer/copolymer, where at least a deposit substance present in the undistributed areas of the coating are at least partially oxidized and/or at least partially doped by the anions and at least the deposit substance in the disturbed areas of the at least partially reduced coating and/or devoid at least partially of doping anions, where the coating is adjusted by the contained components or their contents, that an essential content of corrosion protecting anion and optionally also of coupling agent anion is released from at least a deposit substance with a potential reduction between the redox potential at least a deposit substance in undistributed condition to the corrosion potential of the metallic surface at an defect like e.g. at an scratch or at a pollution at the boundary area metal/coating, so that it acts at least partially prematurely or prematurely against the generation and/or progression of the delamination, before the strong delamination enters at the boundary area metal/coating. Independent claims are also included for: (1) a metallic substrate with at least a coating, which is protected; and (2) use of respectively at least a complex fluoride, a titanate and/or a zirconate as an anion for at least a conductive polymer.
    • 6. 发明专利
    • Method, useful to protect metallic surface with corrosion inhibitor composition coating comprises applying coating on metallic surface, where the components comprising: deposit substance; and further components and/or matrix substance
    • DE102005030489A1
    • 2007-01-04
    • DE102005030489
    • 2005-06-30
    • CHEMETALL GMBH
    • PLIETH WALDFRIEDRAMMELT URSULAHEBESTREIT NILSSTRATMANN MARTINROHWERDER MICHAELADLER HANS-JUERGENPOTJE-KAMLOTH KARINJAEHNE EVELINPICH ANDRIJDOMES HERIBERTSCHNEIDER JULIAPALIWODA-PROBESKA GRAZYNA
    • B05D7/24C09D5/08C09D5/24
    • Method for the protection of metallic surface (A) with a coating (A1) of corrosion inhibitor composition, comprises applying (A1) on (A), where a component optionally at least partially in a matrix comprising: at least a deposit substance (a) comprising incorporating anions by an oxidation reaction and releasing at least a part of anions for a potential variation; and optionally at least a further components and/or matrix substance. Method for the protection of metallic surface (A) with a coating (A1) of corrosion inhibitor composition, that after providing, optionally drying and hardening, comprises applying (A1) on (A), that as a component optionally at least partially in a matrix comprising: (a) at least deposit substance and at least a conductive polymer, comprising (1) anions incorporated by an oxidation reaction as doped ion and (2) releasing at least a part of anions for a potential variation (reduction), where at least a type of anions is suitable to inhibit an anodic and/or cathodic part reaction of the corrosion and optionally also to act as coupling agent, where the anions respectively exhibits ionic radius, that it is non- or not substantially- impaired the migration through the deposit substances and optionally through at least a further component e.g. in a matrix of the coating, where at least a type of anion are mobile in water, at least an another polar solvent and/or also in at least non polar solvent containing mixture, where the release of anions from at least a deposit substance does not and/or only dependent over a deprotonation reaction, but predominantly and/or completely takes place over a reduction reaction, and where at least a educt for the preparation of the deposit substance is selected, that the oxidation potential is less or same to the decomposition potential of the water and/or at least an another polar solvents in the mixture; and (b) optionally at least a further component and/or at least a matrix substance, that at least a deposit substance serves at least partially as matrix and at least an organic polymer/copolymer, where at least a deposit substance present in the undistributed areas of the coating are at least partially oxidized and/or at least partially doped by the anions and at least the deposit substance in the disturbed areas of the at least partially reduced coating and/or devoid at least partially of doping anions, where the coating is adjusted by the contained components or their contents, that an essential content of corrosion protecting anion and optionally also of coupling agent anion is released from at least a deposit substance with a potential reduction between the redox potential at least a deposit substance in undistributed condition to the corrosion potential of the metallic surface at an defect like e.g. at an scratch or at a pollution at the boundary area metal/coating, so that it acts at least partially prematurely or prematurely against the generation and/or progression of the delamination, before the strong delamination enters at the boundary area metal/coating. Independent claims are also included for: (1) a metallic substrate with at least a coating, which is protected; and (2) use of respectively at least a complex fluoride, a titanate and/or a zirconate as an anion for at least a conductive polymer.
    • 7. 发明专利
    • Verfahren zum Beschichten von Partikeln mit leitfähigen Polymeren, Gemisch zum Beschichten, beschichtete Partikel, die Verwendung derart beschichteter Partikel und Zusammensetzung einer Beschichtung
    • DE102005030489B4
    • 2014-05-22
    • DE102005030489
    • 2005-06-30
    • CHEMETALL GMBH
    • PLIETH WALDFRIED PROF DRRAMMELT URSULA DRHEBESTREIT NILSSTRATMANN MARTIN PROF DRROHWERDER MICHAEL DRADLER HANS-JÜRGEN PROF DRPOTJE-KAMLOTH KARIN DRJÄHNE EVELIN DRPICH ANDRIJ DRDOMES HERIBERTSCHNEIDER JULIAPALIWODA-PROBESKA GRAZYNA
    • B05D7/24C09D5/08C09D5/24
    • Verfahren zum Beschichten von anorganischen oder organischen Partikeln, bei dem die Partikel in einem Gemisch vorliegen oder/und hierin anfangs gebildet werden, wobei das Gemisch eine Dispersion, eine fließfähige oder knetbare Masse, ein Sol oder/und ein Gel ist, dadurch gekennzeichnet, dass das als Edukt-Gemisch bezeichnete Gemisch enthält: – Mindestens ein Monomer oder/und mindestens ein Oligomer – im Folgenden als „Edukt(e) der leitfähigen Polymere” oder nur als „Edukt(e)” bezeichnet – ausgewählt aus Monomeren oder/und Oligomeren von Aromaten oder/und ungesättigten Kohlenwasserstoff-Verbindungen, die geeignet sind, hieraus elektrisch leitfähiges Oligomer/Polymer/Copolymer/Blockcopolymer/Pfropfcopolymer zu bilden, wobei mindestens ein Edukt zur Herstellung von mindestens einem leitfähigen Polymer danach ausgewählt wird/ist, dass sein Oxidationspotenzial kleiner oder gleich ist dem Zersetzungspotenzial des Wassers oder/und mindestens eines anderen polaren Lösemittels in dem hierzu verwendeten Gemisch und wobei die Freisetzung von beweglichen korrosionsschützenden Anionen aus dem entstandenen leitfähigen, Anionen-beladenen Polymer nicht oder/und nur untergeordnet über eine Deprotonierungsreaktion, sondern vorwiegend oder gänzlich über eine Reduktionsreaktion erfolgt, – mindestens eine Art von Anionen, wobei diese mindestens eine Art von Anionen in das leitfähige Polymer 1. als Dotierion in die Struktur des leitfähigen Polymers eingebaut werden kann oder/und eingebaut ist, 2. aus dieser Struktur im Falle eines Potenzialabfalls des leitfähigen Polymers (Reduktion) auch wieder freigesetzt werden kann und 3. im Falle der Anwesenheit einer metallischen Oberfläche korrosionsschützend wirken kann – im Folgenden „bewegliche korrosionsschützende Anionen” genannt, – mindestens ein Oxidationsmittel, wobei dieses mindestens eine Oxidationsmittel gänzlich oder teilweise entfallen kann, wenn mindestens ein Anion gleichzeitig als Oxidationsmittel wirkt oder/und wenn elektrochemisch oder/und photochemisch polymerisiert wird, – mindestens eine Art von Partikeln ausgewählt aus Clustern, Nanopartikeln, Nanoröhrchen, faserigen, knäuelartigen oder/und porösen Strukturen, Partikeln mit einer mittleren Partikelgröße im Bereich von 10 nm bis 10 mm und deren Ansammlungen wie Agglomeraten oder/und Aggregaten sowie – Wasser oder/und mindestens ein anderes polares Lösemittel, wobei aus dem Edukt-Gemisch auf mindestens einem Teil der Oberflächen der Partikel eine Beschichtung mit einer Dicke mindestens von einer Monolage ausgebildet wird, die entweder einen wesentlichen Anteil an Monomeren oder/und Oligomeren oder/und einen wesentlichen Anteil an leitfähigem Polymer enthält ...
    • 8. 发明专利
    • Method, useful to protect metallic surface with corrosion inhibitor composition coating comprises applying coating on metallic surface, where the components comprising: deposit substance; and further components and/or matrix substance
    • DE102005030488A1
    • 2007-01-04
    • DE102005030488
    • 2005-06-30
    • CHEMETALL GMBH
    • PLIETH WALDFRIEDRAMMELT URSULAHEBESTREIT NILSSTRATMANN MARTINROHWERDER MICHAELADLER HANS-JUERGENPOTJE-KAMLOTH KARINJAEHNE EVELINPICH ANDRIJDOMES HERIBERTSCHNEIDER JULIAPALIWODA-PROBESKA GRAZYNA
    • B05D7/16
    • Method for the protection of metallic surface (A) with a coating (A1) of corrosion inhibitor composition, comprises applying (A1) on (A), where a component optionally at least partially in a matrix comprising: at least a deposit substance (a) comprising incorporating anions by an oxidation reaction and releasing at least a part of anions for a potential variation; and optionally at least a further components and/or matrix substance. Method for the protection of metallic surface (A) with a coating (A1) of corrosion inhibitor composition, that after providing, optionally drying and hardening, comprises applying (A1) on (A), that as a component optionally at least partially in a matrix comprising: (a) at least deposit substance and at least a conductive polymer, comprising (1) anions incorporated by an oxidation reaction as doped ion and (2) releasing at least a part of anions for a potential variation (reduction), where at least a type of anions is suitable to inhibit an anodic and/or cathodic part reaction of the corrosion and optionally also to act as coupling agent, where the anions respectively exhibits ionic radius, that it is non- or not substantially- impaired the migration through the deposit substances and optionally through at least a further component e.g. in a matrix of the coating, where at least a type of anion are mobile in water, at least an another polar solvent and/or also in at least non polar solvent containing mixture, where the release of anions from at least a deposit substance does not and/or only dependent over a deprotonation reaction, but predominantly and/or completely takes place over a reduction reaction, and where at least a educt for the preparation of the deposit substance is selected, that the oxidation potential is less or same to the decomposition potential of the water and/or at least an another polar solvents in the mixture; and (b) optionally at least a further component and/or at least a matrix substance, that at least a deposit substance serves at least partially as matrix and at least an organic polymer/copolymer, where at least a deposit substance present in the undistributed areas of the coating are at least partially oxidized and/or at least partially doped by the anions and at least the deposit substance in the disturbed areas of the at least partially reduced coating and/or devoid at least partially of doping anions, where the coating is adjusted by the contained components or their contents, that an essential content of corrosion protecting anion and optionally also of coupling agent anion is released from at least a deposit substance with a potential reduction between the redox potential at least a deposit substance in undistributed condition to the corrosion potential of the metallic surface at an defect like e.g. at an scratch or at a pollution at the boundary area metal/coating, so that it acts at least partially prematurely or prematurely against the generation and/or progression of the delamination, before the strong delamination enters at the boundary area metal/coating. Independent claims are also included for: (1) a metallic substrate with at least a coating, which is protected; and (2) use of respectively at least a complex fluoride, a titanate and/or a zirconate as an anion for at least a conductive polymer.