Patent classifications
C08J2391/00
ELASTOMERIC THERMOPLASTIC PRE-EXPANSION COMPOSITION COMPRISING AN ELASTOMER AND A PHYSICAL BLOWING AGENT
A subject matter of the invention is a pre-expansion thermoplastic elastomeric composition comprising at least 10% by weight of one or more elastomers and heat-expandable polymeric particles encapsulating a heat-expandable fluid.
Another subject matter of the invention is a process for the preparation of an expanded thermoplastic elastomeric composition comprising the following stages:
injection into a mold or addition to an extruder die of the pre-expansion elastomeric composition according to the invention, then
heating the pre-expansion elastomeric composition at a temperature greater than the temperature for expansion of the heat-expandable polymeric particles, preferably of greater than 160 C.
A subject matter of the invention is also an expanded thermoplastic elastomeric composition capable of being obtained by the process.
Finally, a subject matter of the invention is a sealing lip used in the fields of the transportation industry and in the construction industry.
STRUCTURE, METHOD OF MANUFACTURING STRUCTURE, AND HEAT INSULATING MATERIAL
A structure according to an embodiment of the present disclosure includes: a plurality of nanoparticles or a plurality of nanofibers surface-coated with an amphipathic molecule or an organic silane molecule; and a cross-linking part that couples the plurality of nanoparticles or the plurality of nanofibers to each other.
Composition for Manufacturing Secondary Battery Separator and Secondary Battery Including the Same
The present disclosure relates to a composition for manufacturing a secondary battery separator having excellent electrical conductivity and capable of minimizing occurrence of black scum on an electrode and a secondary battery thereof. The composition for manufacturing a secondary battery separator according to the present disclosure includes a polyethylene resin and an ionic liquid lubricant composition. The ionic liquid lubricant composition includes a pore-controlling agent, an ionic liquid, and paraffinic oil.
TEREPHTHALATE AND BENZOATE BASED ESTERS AND EPOXIDIZED OIL COMPOSITIONS
The present invention provides a non-phthalate, highly sustainable plasticizer, with performance comparable to or better than the existing orthophthalate market leader (DINP) and non-phthalate market leader (DOTP) at a lower cost position. The novel plasticizers are terephthalate ester and epoxidized oil compositions and dibenzoate ester and epoxidized oil compositions. The novel plasticizer compositions are produced by blending a fast fusing terephthalate diester or dibenzoate ester with an epoxidized oil. The presence of the terephthalate diester or the dibenzoate ester in the blend imparts better physical properties and performance properties over the ester or epoxidized oil components alone.
Streamer filler material and process
This disclosure presents a streamer filler material that is a low density gel formed from a two-part, mix-curable polymer, and methods of making streamers using such materials. One embodiment of the filler material features a two-part silicone gel mixed with a paraffinic oil. The two-part silicone gel can make up 15% to 25%, by weight or volume, of the mixture. Methods of making such materials include forming a first unreactive mixture having a first reactant, promoter, and/or catalyst and a second unreactive mixture having a second reactant, promoter, and/or catalyst and mixing the first and second mixtures in a paraffinic oil system to make a gel. The streamer can be loaded with the filler by pumping or extruding the mixture.
Product with absorbed gel
A product with absorbed gel leaving the exposed surface of such product free of stickiness and/or free of the release of oils in any appreciable amounts.
Streamer Filler Material And Process
This disclosure presents a streamer filler material that is a low density gel formed from a two-part, mix-curable polymer, and methods of making streamers using such materials. One embodiment of the filler material features a two-part silicone gel mixed with a paraffinic oil. The two-part silicone gel can make up 15% to 25%, by weight or volume, of the mixture. Methods of making such materials include forming a first unreactive mixture having a first reactant, promoter, and/or catalyst and a second unreactive mixture having a second reactant, promoter, and/or catalyst and mixing the first and second mixtures in a paraffinic oil system to make a gel. The streamer can be loaded with the filler by pumping or extruding the mixture.
FLEXIBLE PHASE CHANGE MATERIAL COMPOSITE FOR THERMAL MANAGEMENT SYSTEMS
A thermal management composite, comprising a phase change material within a carbon or graphite matrix. The matrix is coated with a polymer coating to improve flexibility. The matrix can be a molded carbon or graphite material or a carbon or graphite cloth.
Flexible phase change material composite for thermal management systems
A thermal management composite, comprising a phase change material within a carbon or graphite matrix. The matrix is coated with a polymer coating to improve flexibility. The matrix can be a molded carbon or graphite material or a carbon or graphite cloth.
CLEAR BINDER AND APPLICATIONS OF SAME
A clear binder is used in colored compositions in certain road and/or industrial applications.