Class / Patent application number | Description | Number of patent applications / Date published |
525276000 | Ethylenic reactant contains a fluorine atom | 16 |
20090131596 | PROCESS FOR PRODUCING THERMOPLASTIC RESIN COMPOSITION, AND THERMOPLASTIC RESIN COMPOSITION PRODUCED BY THE SAME - A process for producing a thermoplastic resin composition includes kneading a mixture obtained by combining a rubber component with a ground product, the ground product being formed by grinding a thermoplastic resin molded article having an alloy resin of a polycarbonate and an ABS, and then molding the mixture after kneading. The mixture has 0.5 wt % or more and 1.5 wt % or less of the rubber component based on 100 wt % of the mixture. | 05-21-2009 |
20100010164 | CURABLE RESIN COMPOSITION AND PROCESS FOR PREPARING SAME - The present invention relates to the curable resin composition, comprising (A) the reaction product of the fluorine-containing copolymer (A-1) having hydroxyl group and comprising a fluoroolefin unit and a radically polymerizable hydroxyl group-containing unsaturated monomer unit and the isocyanate group-containing unsaturated compound (A-2) having one isocyanate group and at least one radically polymerizable unsaturated group, and the reaction product is dissolved in (B) the acrylic monomer, and the present invention provides the curable resin composition being moldable even without containing an organic solvent and the preparation process thereof. | 01-14-2010 |
20110082260 | ROTATABLE FIXING MEMBER, MANUFACTURING METHOD THEREOF AND FIXING DEVICE - A rotatable fixing member includes an elastic layer, a primer layer provided on the elastic layer, and a parting layer provided on the primer layer. The primer layer contains a crystalline fluorocarbon polymer having a functional group and has a thickness of 850 nm or less. The parting layer is a coating layer of a crystalline fluorocarbon polymer. | 04-07-2011 |
20110144276 | MEDICAL DEVICES HAVING IMPROVED PERFORMANCE - In accordance with various aspects of the invention, implantable and insertable medical devices are provided, which contain one or more polymeric regions. In one aspect, the polymeric regions comprise (a) a block copolymer that comprises a polyaromatic block and a polyalkene block admixed with (b) a sulfonated high Tg polymer. In another aspect, the polymeric regions comprise a block copolymer that comprises (a) a sulfonated polymer block and (b) fluorinated polymer block. | 06-16-2011 |
20110201759 | ONIUM SALT-CONTAINING POLYMER - It is to provide a polymer having a high antistatic function, a high solubility to solvent and high compatibility to a formulation, and an antistatic agent, curable composition or a water repellent and oil repellent comprising the polymer. It is a linear block polymer, block star polymer or block graft polymer in which at least one block is a block wherein an anion and a counter cation form an onium salt on the polymer chain side, and a composition comprising the same. It is preferred that a linear block polymer has a number average molecular weight of 20000 or less, and a block star polymer and block graft polymer has a number average molecular weight of 10000 or more. | 08-18-2011 |
20110213088 | HEAT AGED PERFLUOROPOLYMER - Tensile strength after heat aged of articles molded from melt-fabricable perfluoropolymer is improved by incorporating polytetrafluoroethylene as dispersed submicrometer-size particles into the melt-fabricable perfluoropolymer. | 09-01-2011 |
20110213089 | MOLDED TRANSPARENT RESIN AND PROCESS FOR PRODUCING THE SAME - The present invention provides a clear resin molded body which has high heat resistance that can be used in the reflow soldering process using Pb-free solder, which has high transparency that can be used for an optical member, and which can be easily produced, and also provides a method of producing the same. | 09-01-2011 |
20120088884 | LOW TEMPERATURE CURABLE AMORPHOUS FLUOROPOLYMERS - There is provided a comprising an amorphous peroxide curable fluoropolymer comprising an iodine, bromine or chlorine containing cure site, an organic peroxide with a 10-hour half life temperature below 90° C., and a coagent, where the amorphous fluoropolymer has a storage modulus at 25° C. and 0.1 rad/s of less than or equal to 300 kPa, and also where the fluropolymer 90% cure time as measured by sealed torsion shear rotorless curemeter in ASTM D5289-07 is less than 30 minutes at 110° C. There is also provided a fluoroelastomer preparable by curing such composition. There is further provided a cure in place process using such composition to create a cure in place article and cure in place articles from such process. | 04-12-2012 |
20120202950 | CROSSLINKABLE FLUORORUBBER COMPOSITION AND CROSSLINKED RUBBER ARTICLE - Obtaining a crosslinked rubber with high flexibility at low temperature includes crosslinking a fluororubber composition. The fluororubber composition includes a fluororubber and a compound of formula (X—) | 08-09-2012 |
20120264884 | Amphiphobic Surfaces from Block Copolymers - Provided are amphiphobic block copolymers, methods for preparing amphiphobic block copolymers, and applications thereof. Amphiphobic block copolymers can be used to prepare amphiphobic coatings on material surfaces, such as glass, printing paper or fabric. Amphiphobic block copolymers can also be used to coat particles, e.g., silica nanoparticles, which are then used to coat material surfaces. Such coated particles and uses thereof are also provided herein. | 10-18-2012 |
20130053518 | POSITIVE RESIST COMPOSITION, METHOD OF FORMING RESIST PATTERN USING THE SAME, AND FLUORINE-CONTAINING POLYMERIC COMPOUND - A fluorine-containing polymeric compound which contains a structural unit (f1) that is decomposable in an alkali developing solution as a block copolymer portion, a base component (A) that exhibits increased solubility in an alkali developing solution under the action of acid, and an acid generator component (B) that generates acid upon exposure. | 02-28-2013 |
20140171593 | FLUORINATED BLOCK COPOLYMER AND PROCESS FOR ITS PRODUCTION, AND SURFACE TREATMENT AGENT - A fluorinated block copolymer having R | 06-19-2014 |
20140323661 | CURABLE COMPOSITION - The invention relates to the use of 1,5-enediyne compounds of formula (I) as curing agents in polymeric systems. In particular the invention relates to a curable composition comprising a curing agent of formula (I) and a fluorinated polymer suitable to be cross-linked and at least one fluorinated aromatic compound. | 10-30-2014 |
20150320913 | MULTI-FUNCTIONAL SURFACE COATING OF IMPLANTS - The invention provides novel surface coatings having surface polymer brushes with zwitterionic and antibiotics-conjugated side chains and synergistic anti-fouling and bactericidal properties. The surface coatings may be prepared using highly efficient surface-initiated “living” polymerization. The design of the surface polymer brushes are highly modular, allowing independent tuning of the anti-fouling and bactericidal properties, e.g., by varying the chemical nature of the zwitterionic motif and the antibiotic agent, the chemistry through which the antibiotic agent is conjugated to the polymer side chains, the molecular weight of the polymer brushes (e.g., thickness of coating and density of respective functional motifs), and the spatial arrangement of the respective functional motifs (e.g., homopolymers, block copolymers, random copolymers) to achieve optimal and sustained anti-infection outcome for a given application. | 11-12-2015 |
20160046752 | POLYCYCLO-OLEFINIC BLOCK COPOLYMERS - A series of vinyl addition block polymers derived from functionalized norbornene monomers are disclosed and claimed. Specifically, a series of diblock and triblock polymers derived from norbornene monomers are disclosed. Also disclosed are the method of preparation of such block polymers, and their use in the fabrication of membranes which exhibit unique separation properties. | 02-18-2016 |
20160185892 | CROSSLINKING AGENT AND FLUORINE-CONTAINING AROMATIC COMPOUND - A crosslinking agent includes a compound represented by the following formula (1). In the formula (1), R | 06-30-2016 |