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    • 91. 发明专利
    • FI944317A0
    • 1994-09-16
    • FI944317
    • 1994-09-16
    • SHINTO PAINT CO LTD
    • MIYAZAKI SUSUMUNAKANO TSUYOSHIOKADA YOSHIKATSUYASUKAWA JUN-ICHIMATSUMURA MIKITSUEDA KAZUO
    • G02B5/20G02F1/1335G03F7/20H05K3/00H05K3/24H01L
    • A method for manufacturing a substrate having electrically conductive circuits on the surface of a transparent substrate, window-shaped coating films on the electrically conductive circuits and a frame-shaped, functional coating film at the regions not occupied with the window-shaped coating films, includes the steps of: (a) coating the surface of a transparent substrate with a photoresist composition to cover the circuits-carrying surface of the substrate, followed by forming a photoresist coating film, (b) superposing a photomask on the surface of the photoresist coating film formed through step (a) and exposing the thus masked photoresist coating film to light, (c) subjecting the substrate formed through steps (a) and (b) to development, and eliminating the photoresist coating film in the frame-shaped part, (d) subjecting the photoresist coating film left in step (c) to heat-treatment, (e) coating the substrate obtained through steps (a) to (d) in this order with a negative photoresist composition containing a function-imparting additive to cover the circuits-carrying surface of the substrate, followed by forming a functional coating film, (f) exposing the substrate obtained through steps (a) to (e) in this order to light emitted from the opposite side of the circuits-carrying surface of the substrate, (g) subjecting the substrate obtained through steps (a) through (f) in this order to development, and eliminating the uncured part of the functional coating film, (h) eliminating the photoresist coating film having been heat-treated in step (d), and (i) subjecting the substrate obtained through steps (a) to (h) in this order to electro-deposition using the circuits on the substrate as one electrode, and forming electro-deposition coating films at the window-shaped parts on the circuits.
    • 93. 发明专利
    • FI943498A0
    • 1994-07-25
    • FI943498
    • 1994-07-25
    • SHINTO PAINT CO LTD
    • WATANABE TSUTOMUTESHIMA YASUHIKOMATSUMURA MIKIMIYAZAKI SUSUMUOKADA YOSHIKATSU
    • G03F7/00H01L
    • A method for manufacturing a substrate having electrically conductive circuits on its surface, window-shaped films on the electrically conducive circuits and a frame-shaped film at the regions not occupied with the window-shaped films, includes the steps of: (a) coating the surface of a transparent substrate with a photoresist composition to cover the electrically conductive circuits-carrying surface of the substrate, followed by forming a photoresist film, (b) superposing a photomask on the surface of the photoresist film formed in step (a) and exposing the thus mask-superposed photoresist film to light, (c) subjecting the substrate obtained in step (b) to development, (d) subjecting the photoresist film left in step (c) to heat-treatment, second exposure to light or no treatment, (e) subjecting the substrate passed the steps (a) to electro-deposition using the electrically conductive circuits on the substrate as one electrode to form electro-deposition coating films, (f) eliminating the photoresist film having been subjected to heat-treatment, second exposure to light or no treatment in step (d) and leaving the electro-deposition coating films formed in step (e), (g) coating the whole surface of the transparent substrate passed the steps (a) to (f) in this order with a negative photoresist composition to cover the electrically conductive circuits-carrying surface of the substrate, followed by forming a functional coating film, (h) exposing the surface opposite to the electrically conductive circuits-carrying surface of the transparent substrate passed the steps (a) to light, and (i) eliminating the uncured parts irrespective of step (h) from the functional coating film.
    • 94. 发明专利
    • DE69007234D1
    • 1994-04-14
    • DE69007234
    • 1990-10-17
    • SHINTO PAINT CO LTD
    • MATSUO KATSUHIKOIKEHIRA AKIOKUNINORI TAKESHI
    • C25D13/00C09D5/24C25D13/20H01C7/105B05D7/14H01C7/10
    • The present invention is concerned with a coating composition which contains a resin and fine particles of an electrically conductive substance and/or an electrically semiconductive substance, a coating film to be formed therefrom on a work article surface exhibiting a varistor property represented by the equation (1): I = (V/V1) (1) wherein I is a current density (mA/cm2); V1 is a voltage at which a current of 1 mA begins to flow when a voltage applied to the coating film is increased; V is an applied voltage; and n is an exponent showing the non-linearity between I and V and is 1.5 or more. Further, the present invention is concerned with a process for production of a coated metal article, which comprises applying the above-described coating composition in a dry film thickness of from 0.5 to 20 microns on a metal plate and/or a metal formed article with or without having been subjected to a surface treatment and then drying or baking at a temperature of from room temperature to 300 DEG C. Still further, the present invention is concerned with a method for further subjecting the formed coating film to electrodeposition coating.
    • 95. 发明专利
    • METHOD FOR INTEGRATED COATING
    • AU639571B2
    • 1993-07-29
    • AU7914791
    • 1991-06-19
    • SHINTO PAINT CO., LTD.
    • KATSUHIKO MATSUOTAKESHI KUNINORI
    • C25D13/00C23C28/00C25D13/12
    • A shaped or unshaped article of a non-ferrous metal sheet having an organic, surface coating film containing conductive and/or semiconductive, fine particles, is integrally bonded with a shaped or unshaped article of a steel sheet having or not having an organic, surface coating film; and this integrated body is subjected simultaneously to electrodeposition coating. The non-ferrous metal sheet having an organic, surface coating film containing conductive and/or semiconductive, fine particles shows excellent electrodeposition coating characteristics which can be easily regulated. Hence, integral coating after bonding with a steel sheet gives the same degree of film thickness and surface smoothness on both of the non-ferrous metal and steel sheets. This method is particularly suitable for the coating of automobile bodies integrally composed of non-ferrous metal and steel sheets ( needed by recent demand for lighter-weight automobiles ), ensuring energy- and labor-saving and giving final products of uniform finish.