Abstract:
Provided is a flame retardant resin composition which contains a base resin, calcium carbonate particles which are blended at a proportion of 10 to 150 parts by mass relative to 100 parts by mass of the base resin, a silicone-based compound which is blended at a proportion of 0.5 to 10 parts by mass relative to 100 parts by mass of the base resin, and a fatty acid-containing compound which is blended at a proportion of 1 to 20 parts by mass relative to 100 parts by mass of the base resin. In this flame retardant resin composition, the calcium carbonate particles have an average particle diameter of less than 0.7 µm.
Abstract:
The present invention provides a composite obtained by processing a resin composition including a thermoplastic resin, multi-walled carbon nanotubes, and a reinforcing material. The multi-walled carbon nanotubes have an average diameter of 10 nm or more and an I d /I g of 1 or less. The walls of the multi-walled carbon nanotubes consist of 10 or more layers of graphene. The rate of residual length of the carbon nanotubes present in the composite is 40% or more. The composite has improved mechanical properties without deterioration of conductivity. Due to these advantages, the composite can be used to manufacture various molded articles.
Abstract:
After there is prepared a conductive paste which contains fine copper particles having an average particle diameter of 1 to 100 nm, each of the fine copper particles being coated with an azole compound, coarse copper particles having an average particle diameter of 0.3 to 20 µm, a glycol solvent, such as ethylene glycol, and at least one of a polyvinylpyrrolidone (PVP) resin and a polyvinyl butyral (PVB) resin and wherein the total amount of the fine copper particles and the coarse copper particles is 50 to 90% by weight, the weight ratio of the fine copper particles to the coarse copper particles being in the range of from 1:9 to 5:5, the conductive paste thus prepared is applied on a substrate by screen printing to be preliminary-fired by vacuum drying, and then, fired with light irradiation by irradiating with light having a wavelength of 200 to 800 nm at a pulse period of 500 to 2000 µs and a pulse voltage of 1600 to 3800 V to form a conductive film on the substrate.
Abstract:
A heat ray shielding film is disclosed, including composite tungsten oxide particles; and an ionomer resin. The composite tungsten oxide particles are expressed by a general formula M x WO y (where M denotes one or more kinds of elements selected from Cs, Rb, K, Tl, In, Ba, Li, Ca, Sr, Fe, Sn, Al, Cu, and Na, and 0.1≤x≤0.5 and 2.2≤y≤3.0).
Abstract translation:公开了一种热射线屏蔽膜,包括复合氧化钨颗粒; 和离聚物树脂。 复合氧化钨颗粒由通式M x WO y表示(其中M表示选自Cs,Rb,K,Tl,In,Ba,Li,Ca,Sr,Fe,Sn,Al中的一种或多种元素 ,Cu和Na,0.1‰¤x‰‰0.5和2.2‰‰‰¤3.0)。
Abstract:
The present invention provides a microcapsule type curable resin composition which produces substantially no gases when applied to an adherend, e.g. to a threaded member, which is then tightened, and which moreover, due to exceptional coating properties to an adherent, does not give rise to coating irregularities, and which additionally has exceptional adhesive strength and durability. The present invention is a microcapsule type curable resin composition containing (A) microcapsules encapsulating a curable compound (a), (B) a substance able to bring about curing of component (a); and (C) a binder able to adhere the microcapsules to an adherend, wherein the microcapsule type curable resin composition is characterized by including, per total 100 mass parts of all of the microcapsules, (D) 1-25 mass parts of mica having average particle diameter of 10-150 µm, and (E) 1-25 mass parts of an inorganic filler having average particle diameter of 3-50 µm, the mass ratio of component (D) and component (E) being 0.2-2.0 of component (E) with respect to 1.0 of component (D).
Abstract:
The invention relates to a thermoplastic moulding compound containing a polymer matrix (A) and a plurality of microspheres (M), at least one solid material particle (F), preferably exactly one solid material particle (F), being arranged in the microspheres (M).
Abstract:
The copolycarbonate composition according to the present invention has characteristics that it has excellent mobility and thus is excellent in various physical properties similtaneously.
Abstract:
Provided is a pressure sensitive adhesive sheet containing, on a substrate or a release material, a resin layer formed of a multilayer structure of three or more layers including a fine particle-containing layer that contains fine particles in an amount of 15% by mass or more, at least a surface (±) of the resin layer being opposite to the side thereof on which the substrate or the release material is provided having pressure sensitive adhesiveness, wherein the fine particle-containing layer is formed not as the outermost layer of the resin layer, and one or more concave portions exist on the surface (±) and the shapes of the one or more concave portions have irregular shapes. When attached to an adherend, the pressure sensitive adhesive sheet can exhibit excellent air escape property of readily removing air accumulation which may be formed, good blister resistance and good pressure sensitive adhesion characteristics.
Abstract:
Provided are excellent coated lithium-nickel composite oxide particles with which it is possible, due to the high environmental stability thereof, to minimize the incidence of impurities owing to absorption of moisture and carbon dioxide gas, said particles having high adhesiveness such that the coating layer does not easily delaminate, and having lithium-ion conductivity. The coated lithium-nickel composite oxide particles, in which an electroconductive polymer is crosslinked to the lithium-nickel composite oxide particles by a three-dimensional structure, are electrically and ionically conductive, and the compound is capable of suppressing the transmission of moisture and carbon dioxide. It is therefore possible to provide coated lithium-nickel composite oxide particles for a lithium-ion cell positive-electrode active substance that is excellent for use in a lithium-ion cell.
Abstract:
Provided is a pressure sensitive adhesive sheet containing, on a substrate or a release material, a resin layer formed of a multilayer structure of three or more layers including a fine particle-containing layer that contains fine particles in an amount of 15% by mass or more, at least a surface (±) of the resin layer being opposite to the side thereof on which the substrate or the release material is provided having pressure sensitive adhesiveness, wherein the fine particle-containing layer is formed not as the outermost layer of the resin layer, and one or more concave portions exist on the surface (±) and the shapes of the one or more concave portions have irregular shapes. When attached to an adherend, the pressure sensitive adhesive sheet can exhibit excellent air escape property of readily removing air accumulation which may be formed, good blister resistance and good pressure sensitive adhesion characteristics.