摘要:
The invention provides an inorganic powder-containing resin composition capable of forming a dielectric layer having high light transmittance and excellent in surface smoothness. The invention also provides a film-forming material layer, a transfer sheet and a dielectric layer, which comprise the composition, a method of producing a substrate having a dielectric layer formed thereon, and a substrate having a dielectric layer formed thereon. The inorganic powder-containing resin composition comprises inorganic powder, a binder resin, and a phosphorus compound represented by formula (1): wherein R1, R2 and R3 independently represent H, an alkyl group, an alkylaryl group, NH4+ (ammonium) or —(CH2CH2O)n—R4, wherein n is 1 to 15, and R4 represents H, an alkyl group, an alkylaryl group or a (meth)acryloyl group.
摘要:
The invention provides an inorganic powder-containing resin composition capable of forming a dielectric layer having high light transmittance and excellent in surface smoothness. The invention also provides a film-forming material layer, a transfer sheet and a dielectric layer, which comprise the composition, a method of producing a substrate having a dielectric layer formed thereon, and a substrate having a dielectric layer formed thereon. The inorganic powder-containing resin composition comprises inorganic powder, a binder resin, and a phosphorus compound represented by formula (1): wherein R1, R2 and R3 independently represent H, an alkyl group, an alkylaryl group, NH4+ (ammonium) or —(CH2CH2O)n—R4, wherein n is 1 to 15, and R4 represents H, an alkyl group, an alkylaryl group or a (meth)acryloyl group.
摘要:
An object is to provide an inorganic powder-containing resin composition excellent in an ability to disperse the inorganic powder and excellent in transferability upon formation into a sheet. Another object is to provide an inorganic powder-containing resin composition capable of forming a dielectric layer having highlight transmittance (without bubble defect) and excellent in surface smoothness. The present invention relates to an inorganic powder-containing resin composition comprising A) an inorganic powder, B) a binder resin, C) diglycerin, and D) at least one diglycerin fatty acid ester selected from the group consisting of a diglycerin fatty acid monoester, a diglycerin fatty acid diester, a diglycerin fatty acid triester, and a diglycerin fatty acid tetraester.
摘要:
An object of the invention is to provide a laminate sheet used in forming a dielectric layer exhibiting desired dielectric properties and a rib simultaneously and integrally. Another object of the invention is to provide a method of producing a back substrate for plasma display panel, which is excellent in production efficiency by significantly reducing the production process by using the laminate sheet. A still other object of the invention is to provide a back substrate for plasma display panel produced by the method described above and a plasma display panel using the back substrate. Disclosed is a laminate sheet used for integrally forming a dielectric layer and a rib on a glass substrate having electrodes, wherein a viscoelastic layer containing an inorganic powder is laminated in one side of a glass resin composition layer containing an inorganic powder and a binder resin, and the blast rate in the side of the glass resin composition layer is 2 to 100 times as high as the blast rate in the side of the viscoelastic layer.
摘要:
The object of the invention is to provide a pressure-sensitive adhesive sheet for removal of fluorescent substances, which removes fluorescent substances on only the top surface of a barrier rib but does not remove fluorescent substances on the side of the barrier rib. The invention relates to a pressure-sensitive adhesive sheet used for removing fluorescent substances adhering to a barrier rib of a plasma display panel back substrate and having at least a pressure-sensitive adhesive layer on one side of a base material, wherein the thickness of the pressure-sensitive adhesive layer is more than 3 μm and less than 20 μm.
摘要:
The invention provides a laminate sheet used for forming a dielectric layer and a rib simultaneously and integrally. The invention also provides a method of producing a back substrate for plasma display panel, which is excellent in the efficiency of production by reducing the production process significantly by using the laminate sheet. The laminate sheet of the invention is used for integrally forming a dielectric layer and a rib on a glass substrate having electrodes, which comprises a barrier layer laminated on a glass resin composition layer containing inorganic powder and a binder resin, an inorganic powder-containing viscoelastic layer laminated on the barrier layer.
摘要:
The present invention provides a transparent adhesive sheet for a flat-panel display, which permits easy re-peeling in early stages, has superior adhesiveness enabling adhesion to a telltale module (telltale panel) and a protective transparent plate with a high adhesive force after adhesion, is superior in adhesion stability particularly at low temperatures, and further has superior punching processability and level difference absorbability.The above-mentioned object can be achieved by a transparent adhesive sheet containing a polyoxyalkylene polymer as a main component, preferably, a transparent adhesive sheet comprised of a cured product of a composition containing a polyoxyalkylene polymer having at least one alkenyl group in one molecule (Component A), a compound having two or more hydrosilyl groups on average in one molecule (Component B) and a hydrosilylation catalyst (Component C).
摘要:
The present invention provides an impact absorption sheet for flat panel display with a polyoxyalkylene-series polymer as the main component, preferably, an impact absorption sheet for flat panel display made of a cured product obtained by curing a composition containing (A) polyoxyalkylene-series polymer having at least one alkenyl group in each molecule, (B) compound having an average of 2 or more hydrosilyl groups in each molecule, and (C) hydrosilylation catalyst.According to the present invention, an impact absorption sheet for flat panel display can be obtained, which can meet the size reduction and weight reduction of flat panel display, and which affords practically sufficient impact absorbability even in an area of thin film where practically sufficient impact absorbability has not been conventionally achieved. According to the present invention, moreover, an impact absorption sheet for flat panel display can be obtained, which not only has superior impact absorbability but is also superior in easy adhesion to flat panel display and redetachability after adhesion.
摘要:
The invention provides a transparent adhesive sheet for a flat panel display, which does not permit delamination on the adhesion surface to the glass plate even if a stress such as distortion, bending and the like is applied to the display, and does not produce bubbles in the boundary with the glass plate. The transparent adhesive sheet for a flat panel display comprised of a cured product of a composition comprising (A) a polyoxyalkylene based polymer having at least one alkenyl group in one molecule, (B) a compound having an average of not less than 2 hydrosilyl groups in one molecule, and (C) a hydrosilylation catalyst.
摘要:
Provision of a transparent adhesive sheet for flat panel display, which has superior light resistance.A transparent adhesive sheet for flat panel display, which contains a polyoxyalkylene based polymer as a main component, and a hindered amine based light stabilizer represented by the formula (I): wherein R is an alkyl group or an alkylcarbonyl group, and R′ is a hydrogen atom or an organic group bonded to the 4-position of a piperidyl group via oxygen or nitrogen. Preferably, a transparent adhesive sheet for flat panel display, which is made of a cured product of a composition containing components A-D below: A: a polyoxyalkylene based polymer having at least one alkenyl group in each molecule B: a compound having an average of two or more hydrosilyl groups in each molecule C: a hydrosilylation catalyst, and D: a hindered amine based light stabilizer of the formula (I) above.