序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
21 JPS5230494B1 - JP5037170 1970-06-12 JPS5230494B1 1977-08-09
22 JPS5089409A - JP13781974 1974-12-03 JPS5089409A 1975-07-17
23 JPS5039722A - JP8124474 1974-07-17 JPS5039722A 1975-04-12
24 耐火性組成物及びそれから物品を形成する方法 JP2013501392 2011-03-22 JP6037234B2 2016-12-07 ミンツ ディヴィッド; デッカー ジェンズ
25 Method for producing hardenable inorganic composition JP2000339128 2000-11-07 JP2002145649A 2002-05-22 INOUE AKIRA; ONOE SEITARO
PROBLEM TO BE SOLVED: To provide a method for obtaining phosphoric hardenable inorganic composition which has excellent operability till hardening and excellent strength and water resistance as an hardened article. SOLUTION: This method comprises a step wherein an aqueous solution of phosphoric acid containing 10 to 80 mass% P2O5 and at least one kind selected from basic metallic compounds of bivalent metals are reacted at a specified quantitative ratio in advance and a stage where aluminum hydroxide in a specified quantitative ratio is successively added thereto under heating at 70 to 100°C. The ratio between the total valence number of phosphoric ions and the total valence number of metallic ions in each step is prescribed to a specified range to obtain the hardenable inorganic composition. COPYRIGHT: (C)2002,JPO
26 Aqueous phosphate solution JP21181386 1986-09-10 JPS62187105A 1987-08-15 JIERII GUREN SUTORONGU; MAIKERU YUUJIN HAMURIN; JIEIMUZU JIYOZEFU MOINIHAN ZA
27 JPS515858B1 - JP8002072 1972-08-11 JPS515858B1 1976-02-23
28 JPS4913934B1 - JP3701572 1972-04-14 JPS4913934B1 1974-04-04
29 Method for forming a refractory composition, and then the article JP2013501392 2011-03-22 JP2013527827A 2013-07-04 ディヴィッド ミンツ; ジェンズ デッカー
耐火性組成物及び製造方法が提供され、前記組成物は向上した耐火性アルカリ抵抗性及び優れた取扱特性を有する。 組成物及びその製造のための方法は、多数のセラミック粒子及び前記粒子に焼結された結合剤を含んでもよく、前記結合剤は、メタリン酸アルミニウムとアルミナとのその場反応の結果として分散された結晶のオルトリン酸アルミニウムを含む。 本発明に従って提供されるキットは、組成物の製造における使用のための物質を提供し、前記キットはメタリン酸アルミニウム及び非ファーシル添加剤を含む。
30 Aluminum phosphate cement compositions and lamp assembly comprising therewith JP24117588 1988-09-28 JPH0725584B2 1995-03-22 KYASARIN MAASU; KURAAKU DEBITSUDO NERUSON; BITO JOSEFU ARUSENA; MARII SHUSUTAA JOFUE
31 Process for preparing aluminum polyphosphate JP5523077 1977-05-13 JPS52138500A 1977-11-18 RENAATE ADORIAN; RABAN FUON SHIENKU; BERUNTO KOTSUKUSU; PEETAA BUIRUTSU
32 JPS50840B1 - JP3701472 1972-04-14 JPS50840B1 1975-01-11
33 JPS4831818B1 - JP3701672 1972-04-14 JPS4831818B1 1973-10-02
34 인산알루미늄 접합제 조성물 및 이를 함유하는 램프 어셈블리 KR1019880012543 1988-09-28 KR1019930002668B1 1993-04-07 캐더린머스; 클라크데이비드넬슨; 비토조셉아세나; 매리슈스터재프
내용 없음.
35 REFRACTORY COMPOSITION AND PROCESS FOR FORMING ARTICLE THEREFROM EP11760064 2011-03-22 EP2550243A4 2014-04-02 MINTZ DAVID; DECKER JENS
A refractory composition and processes for manufacture are provided where the compositions possess improved refractory alkali resistance and superior handling properties. Compositions and processes for their manufacture may include a plurality of ceramic particles and a binder sintered to the particles wherein the binder includes crystalline aluminum orthophosphate distributed as the result of an in situ reaction of aluminum metaphosphate with alumina. Kits provided according to the invention provide materials for use in manufacture of a composition where the kit includes aluminum metaphosphate and a nonfacile additive.
36 Phosphate d'aluminium, son procédé de préparation et son utilisation dans la préparation de matériaux comprenant un liant et de pièces céramiques EP94400531.3 1994-03-11 EP0615953A1 1994-09-21 Fogel, William; Frouin, Laurent

La présente invention concerne un procédé de préparation d'un phosphate d'aluminium, caractérisé en ce qu'on fait réagir au moins un composé d'aluminium avec de l'acide phosphorique ou un phosphate d'aluminium, le milieu réactionnel ne comprenant pas d'anions d'un acide minéral autre que l'acide phosphorique, et on sèche par atomisation ou lyophilisation la suspension obtenue. L'invention concerne aussi le phosphate d'aluminium ainsi obtenu et qui est caractérisé en ce qu'il est amorphe et se présente sous forme sèche.

Le phosphate de l'invention peut être utilisé comme liant, durcisseur ou dans la préparation de pièces céramiques.

37 Aluminum phosphate cement compositions and lamp assemblies containing same EP88114119.6 1988-08-30 EP0309750B1 1991-12-04 Mers, Catherine; Nelson, Clark David; Arsena, Vito Joseph; Jaffe, Mary Schuster
38 Aluminum phosphate cement compositions and lamp assemblies containing same EP88114119.6 1988-08-30 EP0309750A2 1989-04-05 Mers, Catherine; Nelson, Clark David; Arsena, Vito Joseph; Jaffe, Mary Schuster

This invention relates to aluminum phosphate refractory cement compositions which comprise a mixture of aluminum phosphate containing excess phosphoric acid, relatively small particle size alumina and a mixture of relatively medium and coarse particle size inert filler materials. This cement (14) is useful for cementing tungsten-halogen lamps (10) into glass reflectors (12). The aluminum phosphate is formed with an excess of phosphoric acid which reacts with the alumina when the cement is baked at elevated temperatures.

39 Refractory composition and process for forming article therefrom US14486051 2014-09-15 US09586866B2 2017-03-07 Jens Decker
A refractory composition and processes for manufacture are provided where the compositions possess improved refractory alkali resistance and superior handling properties. Compositions and processes for their manufacture may include a plurality of ceramic particles and a binder sintered to the particles wherein the binder includes crystalline aluminum orthophosphate distributed as the result of an in situ reaction of aluminum metaphosphate with alumina. Kits provided according to the invention provide materials for use in manufacture of a composition where the kit includes aluminum metaphosphate and a nonfacile additive.
40 REFRACTORY COMPOSITION AND PROCESS FOR FORMING ARTICLE THEREFROM US14486051 2014-09-15 US20160236985A9 2016-08-18 Jens Decker
A refractory composition and processes for manufacture are provided where the compositions possess improved refractory alkali resistance and superior handling properties. Compositions and processes for their manufacture may include a plurality of ceramic particles and a binder sintered to the particles wherein the binder includes crystalline aluminum orthophosphate distributed as the result of an in situ reaction of aluminum metaphosphate with alumina. Kits provided according to the invention provide materials for use in manufacture of a composition where the kit includes aluminum metaphosphate and a nonfacile additive.
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