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COMPOSITIONS TO BE POLYMERIZED BY WAVE ENERGY WHEREIN SAID COMPOSITION CONTAINS A RATE-AFFECTING MATERIAL; OR COMPOSITIONS TO BE MODIFIED BY WAVE ENERGY WHEREIN SAID COMPOSITION CONTAINS A RATE-AFFECTING MATERIAL; OR PROCESSES OF PREPARING OR TREATING A SOLID POLYMER UTILIZING WAVE ENERGY

Subclass of:

522 - Synthetic resins or natural rubbers -- part of the class 520 series

522000000 - SYNTHETIC RESINS (CLASS 520, SUBCLASS 1)

Patent class list (only not empty are listed)

Deeper subclasses:

Class / Patent application numberDescriptionNumber of patent applications / Date published
522006000 Compositions to be polymerized or modified by wave energy wherein said composition contains at least one specified rate-affecting material; or processes of preparing or treating a solid polymer utilizing wave energy in the presence of at least one specified rate-affecting material; e.g., nitrogen containing photosensitizer, oxygen containing photoinitiator, etc. wave energy in order to prepare a cellular product 485
522071000 Processes of preparing or treating a solid polymer by wave energy in the presence of a designated nonreactant material (DNRM); or compositions therefore 135
522178000 Processes of preparing a solid polymer from at least one oxygen containing monomer; or compositions therefore 74
522150000 Processes of treating a solid polymer derived from ethylenic monomers only; or compositions therefore 59
522113000 Processes of chemically modifying a solid polymer derived only from ethylenically unsaturated monomers by treating polymer with a chemical reactant; or compositions therefore 56
522173000 Processes of preparing a solid polymer from at least one nitrogen containing monomer; or compositions therefore 52
522168000 Processes of preparing a solid polymer from a heterocyclic chalogen monomer; or compsitions therefore 42
522090000 Processes involving a polyurethane having terminal ethylenic unsaturation as reactant or as solid polymer; or compositions therefore 40
522111000 Processes of treating a blend of two or more solid polymers or reacting one solid polymer with another solid polymer; or compositions therefore 24
522162000 Processes of treating a solid polymer or SICP derived from at least one nonethylenic reactant or compositions therefore 23
522172000 Processes of preparing a solid polymer from at least one silicon containing monomer; or compositions therefore 22
522167000 Processes of preparing a solid polymer from heterocyclic nitrogen monomers; or compositions therefore, e.g., carbazole, etc. 22
522099000 Processes involving a polysiloxane having ethylenic unsaturation as reactant or as solid polymer; or compositions therefore 21
522134000 Processes of chemically modifying a solid polymer or SICP derived from at least one saturated monomer by treating solid polymer or SICP with a chemical reactant; or compositions therefor 16
522148000 Processes of treating a solid polymer or SICP derived from silicon containing reactant; or compositions therefore 15
522104000 Processes involving an ethylenically unsaturated polyester derived from a polycarboxylic acid or derivative and polyol, condensate or solid polymer thereof; or compositions therefore 14
522002000 Processes of forming or modifying a solid polymer by laser; or compositions therefore 12
522109000 Processes of chemically modifying a blend of two or more solid polymers in the presence of a chemical reactant; or compositions therefore 9
522100000 Processes involving an ethylenically unsaturated material derived from poly 1,2-epoxide as reactant or a solid polymer; or compositions thereof 9
522003000 Processes of forming or modifying a solid polymer wherein specified mixing, stirring, agitating, movement of material or directional orientation is employed; or compositions therefore 8
522088000 Processes involving carbohydrate as reactant or as solid polymer; or compositions therefore 6
522171000 Processes of preparing a solid polymer from at least one phosphorous containing monomer; or compositions therefore 6
522184000 Processes of preparing a solid polymer from ethylenic reactants only; or compositions therefore 5
20100286304POLYMERIC COMPOSITIONS, METHODS OF MANUFACTURE THEREOF AND ARTICLES COMPRISING THE SAME - Disclosed herein is a polymeric composition comprising a polymeric composition comprising a first crosslinked network; and a second crosslinked network; wherein the first crosslinked network is crosslinked at a first stress and/or a first strain and the second crosslinked network is crosslinked at a second stress and/or a second strain; where the first stress and/or the first strain is different from the second stress and/or the second strain either in magnitude or direction. Disclosed herein is a method comprising subjecting a polymeric mass to a first stress and/or a first strain level; crosslinking the polymeric mass to form a first crosslinked network; subjecting the polymeric mass to a second stress and/or a second strain level; and crosslinking the polymeric mass to form a second crosslinked network; where the first stress and/or the first strain level is different from the second stress and/or the second strain level.11-11-2010
20120035295METHOD FOR REMOVING VINYL MONOMERS FROM A GAS STREAM - A method for removing vinyl monomers from a gas stream comprises steps of: irradiating a photoactive-inorganic medium by a light emitting unit to activate the photoactive-inorganic medium; and pumping a gas stream including vinyl monomers to contact with the activated photoactive-inorganic medium to make the vinyl monomers in the gas stream to polymerize on the photoactive-inorganic medium to jointly form a polymeric nano-composite.02-09-2012
20140296367OPTICAL MEMBER, PROCESS FOR PRODUCING SAME, AND ARTICLE PROVIDED WITH OPTICAL MEMBER - To provide an optical member having an excellent transparency and heat resistance and further having favorable light resistance as compared with a molded product made of a conventional ethylene/tetrafluoroethylene copolymer, a process for producing the same, and an article provided with the optical member.10-02-2014
20090318582Method for Producing Water-Absorbing Polymer Particles by Polymerizing Droplets of a Monomer Solution - A process for producing water-absorbing polymer particles by polymerizing droplets of a monomer solution, where the monomer solution comprises at least two initiators, one of the initiators is a peroxide with the exception of persulfate, and the molar ratio of peroxide to further initiator is at least 1:8, the water-absorbing polymer particles themselves, and hygiene articles comprising these water-absorbing polymer particles.12-24-2009
20140296366METHODS AND SYSTEMS OF GRAFT POLYMERIZATION ON A FUNCTIONALIZED SUBSTRATE - Graft polymerization is fullfiled on a functionalized substrate. The functionalized substrate is prepared from a disulfide bond-containing feedstock and has been prepared for polymerization through the introduction of one or more polyfunctional monomers containing a disulfide bond breaking material functional group.10-02-2014
522149000 Processes of treating a reaction product of a solid polymer and ethylenic reactant; or compositions therefore e.g., graft- or graft-type polymer, etc. 5
20090176908Absorbent Articles Comprising Hydrophilic Nonwoven Fabrics - A process for treating fibers to render the fibers more hydrophilic. The process includes contacting the fibers with a solution of hydrophilic monomers and radical polymerization initiators and exposing the fibers to UV radiation.07-09-2009
20110160329Photoresist Composition for Color Filter Protective Layer, Color Filter Protective Layer Including the Same, and Image Sensor Including the Same - Disclosed is a photosensitive resin composition for a color filter protective layer including a cross-linkable alkali soluble resin including a repeating unit represented by the following Chemical Formula 1, a reactive unsaturated compound, a photopolymerization initiator, and a solvent.06-30-2011
20110230586(METH)ACRYLATED MELAMINE FORMALDEHYDE RESINS - The present invention relates to melamine-formaldehyde resins bearing (meth)acrylic groups, to processes for preparing them, to their use, and to coating compositions comprising them.09-22-2011
20130289154RADIATION-CURABLE FORMULATION WHICH FORMS FLEXIBLE COATINGS WITH INCREASED CORROSION PROTECTION ON METALLIC SUBSTRATES - Radiation-curable formulations leading to flexible coatings with enhanced corrosion control on metal substrates.10-31-2013
20160137778SHAPE MEMORY POLYMERS AND METHODS OF MAKING AND USE THEREOF - Described are shape memory polymers and methods of making shape memory polymers and actuators from the shape memory polymers.05-19-2016
522004000 Processes of forming or modifying a solid polymer by wave energy wherein at least two distinct external radiant energy sources are utilized; or compositions therefore 5
20120101182DENTAL COMPOSITE CURING SYSTEM, APPARATUS, AND METHOD - Dental curing systems, apparatuses, and methods may include a light source, a perforated plate, and a dental composite. The perforated plate may be positioned between the light source and the dental composite. The perforated plate may include a plurality of perforations that convert a first curing light beam from the light source into multiple curing light beams before reaching the dental composite. The multiple curing light beams come in contact with the dental composite to begin the curing process at certain locations on the dental composite. The perforated plate may then be removed, and a second curing light beam from the light source may be applied to the dental composite to complete the curing process.04-26-2012
20120142803METHOD FOR CURING A SILICONE RESIN COMPOSITION - A method for curing a silicone resin composition with heat, wherein the silicone resin composition comprises (A) an organopolysiloxane having at least two alkenyl groups per molecule, (B) an organohydrogenpolysiloxnae having, per molecule, at least two hydrogen atoms each bonded to a silicon atom, and (C) a photoactive catalyst, wherein the method is characterized by comprising a step of irradiating the silicone resin composition with light before a step of heating, the light has a maximum peak of irradiance in a region of wavelengths of 300 to 400 nm and an irradiance of light of wavelength shorter than 300 nm is 5% or less of the irradiance at the maximum peak.06-07-2012
20120178843Polyolefin treatment process for uniform crosslinking - A process produces a block of polyolefin material with uniform crosslinking, which may be uniform between and within polymer chains in the polyolefin material. Steps include: providing an oven; placing the block into the oven; preheating the block to a uniform temperature above the melting point; further heating the block to a temperature at least 30 degrees Centigrade above the melting point; cooling the block to room temperature under an inert gas; and removing oxidized material from surface of the block. Optional steps include: subjecting the block to radiation before placing the block into the oven; removing the gases from the oven on a continuous or stepwise basis; controlling the purge gas flow out of the oven; and determining a heating time period for the block by subjecting control blocks to the same process and analyzing them after various heating times.07-12-2012
20120283348METHOD AND DEVICE FOR CURING A THERMOSETTING POLYMER - The present invention concerns a method and a device for curing a thermosetting polymer. The method comprises the steps of irradiating the thermosetting polymer with microwaves at a first power level so as to heat up the thermosetting polymer by dielectric heating, and when the thermosetting polymer reaches a first predetermined temperature, irradiating the thermosetting polymer with microwaves at a second power level, substantially higher than the first power level, to further heat up the thermosetting polymer by dielectric heating. The device comprises an enclosure for receiving the thermosetting polymer, a microwave emitter for emitting microwave radiation into the enclosure, and a control unit for controlling a microwave emission power of the microwave emitter according to the abovementioned method.11-08-2012
20140066537ORGANIC COMPOSITIONS FOR REPEATEDLY ADJUSTABLE OPTICAL ELEMENTS AND SUCH ELEMENTS - The present invention relates an organic liquid composition comprising a mixture of a first polymer with a linear polymeric chain having two photoactive groups as endgroup; and a second polymer with a multifunctional polymeric chain having at least three photoactive groups, that can reversibly and repeatedly crosslink to form a solid polymer network wherein said liquid composition been crosslinked by irradiation with at least one wavelength L1 and been uncrosslinked at least locally by irradiating the network with at least one other wavelength L2 in order to repeatedly adjust shape and optical properties of said composition in its crosslinked state. The composition is applicable as a starting material for intraocular lenses and for other lenses and optical elements.03-06-2014
522087000 Processes involving protein as reactant or as solid polymer; or compositions therefore 1
20110124765Versatile Biodegradable Elastic Polymers Featured with Dual Crosslinking Mechanism for Biomedical Applications - The present invention provides a dual crosslinked biodegradable polymer and methods of making and using the polymer. The dual crosslinked biodegradable polymer composition includes a multifunctional monomer; a diol; and an unsaturated di-acid at least partially polymerized to form a network and photocrosslinked into a dual crosslinked polymer network.05-26-2011
Entries
DocumentTitleDate
20080306177POLYMER COMPONENTS - Conventional curable polymers tend to shrink upon curing whilst low shrinkage ultraviolet light curing polymers have a problem with respect to curing below surface areas of a component. By providing light transmitting elements and/or local ultraviolet light source precursors, greater depth of ultraviolet curing can be achieved and therefore enhanced acceptability with regard to component manufacture. The light transmitting elements may be formed by optic fibers or coatings to existing reinforcing fibers or through consideration of the refractive index of the cured and uncured polymer to create light transmission paths through the component. Ultraviolet light source precursors can be activated by heat or a “seed” light exposure or vibration to create localised ultraviolet curing of the polymer thereabout.12-11-2008
20120077895STATUS ESTIMATION DEVICE, STATUS ESTIMATION METHOD AND PROGRAM FOR ULTRAVIOLET CURABLE RESIN - A status estimation device for ultraviolet curable resin includes a probe configured to irradiate an ultraviolet curable resin with excitation light, a wavelength demultiplexer configured to receive fluorescence produced from the ultraviolet curable resin and detect spectral distribution of the fluorescence, and a computer configured to estimate status of the ultraviolet curable resin by comparing a shape of pre-irradiation spectral distribution detected when the ultraviolet curable resin is irradiated by excitation light before being irradiated by ultraviolet radiation with a shape of post-irradiation spectral distribution detected when the ultraviolet curable resin is irradiated by excitation light after being irradiated by ultraviolet radiation.03-29-2012
20130090402SYSTEMS AND METHODS FOR PERFORMING PHOTOREACTIONS USING LIGHT-DIFFUSING OPTICAL FIBER - Systems and methods for performing photoreactions in a photoreactive material using scattered actinic light from at least one light-diffusing optical fiber are disclosed. The systems and methods include disposing a light-diffusing optical fiber relative to the photoreactive material. The light-diffusing optical fiber has a glass core, a surrounding cladding, and nano-sized structures situated either within the glass core or at the core-cladding boundary. The nano-sized structures are configured to scatter guided actinic light that travels in the light-diffusing optical fiber from an actinic light source. The scattered actinic light is provided throughout the photoreactive material and causes a photoreaction throughout the photoreactive material.04-11-2013
20160168331METHODS AND SYSTEMS OF GRAFT POLYMERIZATION ON A FUNCTIONALIZED SUBSTRATE06-16-2016

Patent applications in all subclasses COMPOSITIONS TO BE POLYMERIZED BY WAVE ENERGY WHEREIN SAID COMPOSITION CONTAINS A RATE-AFFECTING MATERIAL; OR COMPOSITIONS TO BE MODIFIED BY WAVE ENERGY WHEREIN SAID COMPOSITION CONTAINS A RATE-AFFECTING MATERIAL; OR PROCESSES OF PREPARING OR TREATING A SOLID POLYMER UTILIZING WAVE ENERGY

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