Patent classifications
C09K2003/1081
WATERPROOF SHEET, RESIN COMPOSITION, AND SEALING MATERIAL
A waterproof sheet of the present invention can be applied to a waterproof sheet. 30 to be included in a sheet waterproofing structure 10 that provides waterproofing to a building frame 100. The waterproof sheet of the present invention contains a vinyl chloride-based resin and a plasticizer. The plasticizer includes a (meth)acrylic acid ester-based polymer. The acrylic acid ester-based polymer is preferably an acrylic acid ester monopolymer without functionality.
Hydrophobic silicone-based putty composition
A putty composition comprising an organic binder, which further comprises a silicone fluid, an anti-blocking agent, and a rheological additive. The putty also contains a filler. The non-staining putty composition meets the ASTM-D2203 standard test method for staining sealants.
Pre-Filled Syringe Formulation With Needle, Which Is Equipped With Syringe Cap
The purpose of the present invention is to provide a pre-filled syringe formulation with staked needle, which contains an antibody at a high concentration and can be produced on an industrial scale in a simple manner without causing clogging. A pre-filled syringe formulation with staked needle, in which a protein solution is packed. The pre-filled syringe formulation is characterized in that a cap formed with a material having low water vapor permeability is provided at the needle.
PHOTOVOLTAIC THERMAL COLLECTOR
A photovoltaic thermal collector is provided with: glasses disposed on both a sunlight receiving surface side and an opposite surface side thereto; a hot-water producing portion and a power generating portion. An olefinic rubber sealing member (A) is disposed on at least one surface side of a power generating element of the power generating portion, and an olefinic rubber sheet (B) including carbon black is disposed on an opposite surface side thereto. In addition, a resin pipe as a channel of the hot-water producing portion is made of cross-linked polyethylene or polybutene; the resin pipe is sandwiched in the olefinic rubber sheet (B); and the olefinic rubber sheet (B) is further disposed in a side portion of the resin pipe and in a gap between one resin pipe and another resin pipe.
Fluoropolymers and treatment agent
Disclosed is a fluorine-containing polymer prepared by polymerizing (I) a polyfluoroalkyl group-containing (meth)acrylate which is substituted at alpha-position, in the presence of (II) a blocked isocyanate compound. A water- and oil-repellent composition containing the fluorine-containing polymer can impart the excellent water- and oil-repellency, and excellent durability thereof to substrates.
HYDROPHOBIC SILICONE-BASED PUTTY COMPOSITION
A putty composition comprising an organic binder, which further comprises a silicone fluid, an anti-blocking agent, and a rheological additive. The putty also contains a filler. The non-staining putty composition meets the ASTM-D2203 standard test method for staining sealants.
PRE-FILLED SYRINGE
The purpose of the present invention is to provide a pre-filled syringe formulation with staked needle, which contains an antibody at a high concentration and can be produced on an industrial scale in a simple manner without causing clogging. A pre-filled syringe formulation with staked needle, in which a protein solution is packed. The pre-filled syringe formulation is characterized in that a cap formed with a material having low water vapor permeability is provided at the needle.
Polyurethane-based ice-shedding coatings
Winter icing can adversely impact transportation systems (aircrafts, drones, trains, etc.), infrastructure, and energy systems, among many other things. Existing ice-shedding coatings generally suffer from low durability under various mechanical, chemical, and environmental stresses. The polyurethane-based, stress-localized ice-shedding coatings described herein present a novel material paradigm to develop highly durable ice-shedding coatings capable of withstanding harsh aerospace and other industrial conditions. By optimizing the chemical composition and processing of the coating, a uniform, highly durable, polyurethane-based ice-shedding coating has been achieved that can be applied to a variety of surfaces. These coatings have been comprehensively tested, including ice adhesion strength measurements, ice-shedding capabilities in an icing wind tunnel, and a set of mechanical, chemical and environmental durability tests. These ice-shedding surfaces promise a feasible approach to address long-standing icing problems in aircrafts, drones, off-shore wind-turbines and other types of equipment and infrastructure.