序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
141 VITREOUS ENAMELS GB8431244 1984-12-11 GB8431244D0 1985-01-23
142 PROCESS FOR APPLYING A VITREOUS ENAMEL PT7970984 1984-12-19 PT79709A 1985-01-01
143 IT4932184 1984-12-19 IT8449321D0 1984-12-19 CLAUD MUMFORD JOHN LEWIS; FRANK PRICE ROGER
144 ZPUSOB CHEMICKE UPRAVY POVRCHU ANORGANICKYCH PRASKOVYCH LATEK CS618783 1983-08-25 CS618783A1 1984-05-14 FALDYNA ANTONIN ING; TURINSKY KAREL ING
145 A process for the manufacture of a gasontladingsweergave- and / or memory panel, and panel thus manufactured. NL7305335 1973-04-17 NL174102C 1984-04-16
146 VITREOUS ENAMELS GB8334118 1983-12-21 GB8334118D0 1984-02-01
147 FORMING DOUBLE LAYERS OF PORCELAIN ENAMELS ON METAL SUBSTRATES AU4508379 1979-03-13 AU527086B2 1983-02-17 NISHINO ATSUSHI; SONETAKA KAZUNORI; KIMURA KUNIO; WATANABE YOSHIHIRO
148 DE2822253C2 - DE2822253 1978-05-22 DE2822253C2 1981-12-10 ACKERMANN, WERNER; VOLLHARDT, FROHMUT, 5900 SIEGEN, DE
149 DEVICE FOR HEATING OPEN MELTING RESERVOIRS AS BATHS FOR COVERING WITH ZINC OR LEAD OR SIMILAR BATHS IN TANKS OR RESERVOIRS CS333879 1979-05-15 CS203961B2 1981-03-31 ACKERMANN WERNER; VOLLHARDT FROHMUT
150 Electric furnace contg. heater electrodes made of molten metal - and used for continuous melting of inorganic oxide frits employed as surface coatings DE2932261 1979-08-09 DE2932261A1 1981-02-26 JOSEPH WERNER DIPL CHEM DR; RINKES HANS DIPL ING DR
The electrodes used to heat the material in the furnace consist of molten metal, pref. Pb, Sn, Sb, Bi, Zn, Cd, Te, or their alloys, which may contain other metals. The oxides of the metal electrodes are pref. constituents of the frit, esp. where Pb electrodes are used to melt a frit contg. lead oxide. The ratio of the square root of the surface of the molten bath to its depth is pref. 9-15. The furnace pref. has a constant throughput of molten frit heated using a constant electric current, where the melt is covered by an unmelted layer 1-10, esp. 3-5 mm thick. The material pref. takes 3-6 h to travel through the furnace.
151 DE2719339B2 - DE2719339 1977-04-30 DE2719339B2 1981-01-22 JOSEPH, WERNER, DR.; ENDRES, ROBERT, DR.; MUELLER, ALEXIUS, DR., 5090 LEVERKUSEN
152 METHOD OF PRODUCING SILICATE ENAMELS SU2502832 1977-07-01 SU702076A1 1979-12-05 ALEKHIN ANATOLIJ M; PERMYAKOV PETR G; KONDIN VLADIMIR F; CHIBISOV VLADIMIR M; DROZDOVSKAYA MIRA E; RASHCHENKO LYUDMILA N; GORDEEV ALEKSEJ P
153 An apparatus for heating open materiaalsmelt- reservoirs, such as galvanizing, enamelling, glass or the like baths in vats or basins. NL7903028 1979-04-18 NL7903028A 1979-10-23
154 A method and device for melting of frits for inorganic oxide oberflaechenbeschichtungen by electrical resistance heating DE2753351 1977-11-30 DE2753351A1 1979-06-07 RINKES HANS DIPL ING DR; JOSEPH WERNER DIPL ING DR
155 IT5117878 1978-09-21 IT7851178D0 1978-09-21
156 A method and system for about pulling the innenflaeche of hohlkoerpern with email powder DE2800866 1978-01-10 DE2800866A1 1978-07-13 LACCHIA ADRIEN
157 NL7311022A - NL7311022 1973-08-09 NL7311022A 1974-02-12
158 Enamel smelting furnace - of simplified construction and long working life DE2227855 1972-06-08 DE2227855A1 1973-12-20 BARBONI GIORGIO
The furnace has a furnace bottom and a delivery tongue which take the form of an air chamber. The cover of the chamber comprising the furnace bottom consists of a single steel plate in contact at is upper surface with the enamel and which has coolant fins projecting from its bottom side into the air chamber. The chamber itself is formed by side walls from which the coolant fins protrude outwards, and has internal partitions in which offset openings constitute a serpentine-like positive flow path for guiding the coolant air.
159 CATALYTICALLY ACTIVE CERAMIC COATINGS AU4109672 1972-04-13 AU4109672A 1973-10-18 CARINI GEORGE FRANCIS; HOMMEL ERNEST MAYER; TWIGGER JAMES RAYMOND
160 SU1477182 1970-09-21 SU384946A1 1973-05-29
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