About: Insulative paint is a research topic. Over the lifetime, 4 publications have been published within this topic receiving 35 citations. The topic is also known as: insulating paint.
TL;DR: In this paper, a method of producing electrically conductive anisotropic heat sealing connector members is described, which consists of a process A of preparing an electrically conducting anisotropically suspended liquid type paint, applying the conductive paint on a surface of a flexible electrically insulative substrate film to form an electrical circuit of longitudinal thin stripes pattern, and drying the applied conductivity paint on the substrate film.
Abstract: A method of producing electrically conductive anisotropic heat sealing connector members comprising, a process A of preparing an electrically conductive anisotropic suspension liquid type paint, applying the conductive paint on a surface of a flexible electrically insulative substrate film to form an electrically conductive circuit of longitudinal thin stripes pattern, and drying the applied conductive paint on the substrate film; a process B of preparing an electrically insulative heat-bonding suspension liquid type paint, applying the insulative paint wholly on the surface of the substrate film including both the longitudinal thin stripes pattern formed by the process A and the remaining portion of the substrate film, and drying the applied insulative paint on the substrate film to form a press heat bonding layer; and a process C of severing the applied and dried substrate film prepared by the processes A and B to desired length and width sizes to produce electrically conductive anisotropic heat sealing connector members.
TL;DR: In this paper, a small-sized element having high inductance was obtained by alternately laminating electrically insulative layer and metal pattern for forming coil by printing method and connecting one end of the pattern to one end adjacent pattern through a hole of the insulative layers.
Abstract: PURPOSE: To obtain a small-sized element having high inductance by alternately laminating electrically insulative layer and metal pattern for forming coil by printing method and connecting one end of the pattern to one end of adjacent pattern through a hole of the insulative layer. CONSTITUTION: On an electrically insulative layer 1, metal patterns 3 having terminal 2 are printed by an electrically conductive paint. Then the electrically insulative paint is printed as leaving holes 5 of the metal patterns 3 and terminals 2 to form electrically insulative layer 4. Then, metal patterns 6 are printed by electrically conductive paint. In this time, one end of the patterns 6 is to be laid on an end of the pattern 3 declosed through the hole 5. Next, as leaving hole 7 to declose an another end of pattern, insulative layer 8 is printed. Then these steps are repeated to form a desired inductance element. Thus, an element having suffi ciently high inductance and being small-sized and adapted to mass production can be obtained. COPYRIGHT: (C)1980,JPO&Japio
TL;DR: In this paper, an insulative paint is applied to a conductor such as a copper wire to be based so as to form an insulating coat 2 and a strong polyimide resin coat 2 is formed on the conductor 1.
Abstract: PURPOSE:To enhance heat resistivity and solderability without impairing its mechanical, electrical, chemical and other properties by using an insulating paint containing a polyamide acid or a polyimide with specified chemical structure for applying and baking it on a conductor. CONSTITUTION:An insulative paint is applied to a conductor 1 such as a copper wire to be based so as to form an insulating coat 2. Namely, an insulative paint, which is expressed by a specified general formula and contains a polyamide acid containing double bonds at both terminal ends, is applied to the conductor 1 to be baked, so that the amide group and carboxyl group in the formula turn into imido due to an intramolecular reaction and a cross-linked polyimide resin is generated due to an intramolecular reaction between respective double bonds at terminal ends while a solvent volatilizes, and finally a strong polyimide resin coat 2 is formed on the conductor 1. Accordingly, excellent thermal, mechanical, electrical, and chemical properties are provided and heat resistivity and solderability can be enhanced by applying an insulative paint containing a polyamide acid or a polyimide with specified chemical structure to the conductor 1 to be baked.
TL;DR: In this article, a flat conductor is introduced to a box and, after an insulative paint 2t is attached to the conductor by the use of a roll 2a, uniform application of the paint is carried out by a felt 3 on which a weight (w) is placed.
Abstract: PROBLEM TO BE SOLVED: To manufacture a flat insulated electric wire applyed with an insulative paint in a plurality of runs to the periphery of a flat conductor followed by a baking process, with which a coating film can be formed uniformly over the whole surface including corners after the baking process without requiring the manufacturing process to any large extent and wherein there is no risk that the conductor surface is exposed. SOLUTION: A flat conductor 1a is introduced to a box 2 and, after an insulative paint 2t is attached to the conductor by the use of a roll 2a, uniform application of the paint is carried out by a felt 3 on which a weight (w) is placed. The coated conductor 1a is led into a chamber 4 and immersed in a non-solvent 4h contained therein which has no solubility for the component resin of the paint, and the resin is left deposited on the conductor surface and solidified. A preliminary drying of the non-solvent is made by a drying means 5, and baking is made with a furnace 6 so that an intended flat insulated wire 1 is fabricated, wherein the application of the coating is performed through a plurality of runs.