序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 Sprayable Aerogel Insulation US12061631 2008-04-02 US20080241490A1 2008-10-02 Aron Newman; Fred Lauten
An insulation structure and a method for forming an insulation structure on a surface provide both mechanical integrity and insulative capabilities in applications and environments involving extreme temperatures and compressive forces. The insulation structure includes aerogel agglomerates formed by combining ceramic particles with aerogel particles. The insulation structure may further include ceramic particles. The aerogel agglomerates and ceramic particles are thermally sprayed on a surface to form a graded or layered structure. The method for forming an insulation structure includes spray-drying and post-drying a mixture of ceramic particles, aerogel particles, water, and a binder.
62 高強度及び高吸放湿性を有する多孔性セラミックタイル JP2016516456 2014-05-30 JP6342996B2 2018-06-13 カン・ボンギュ; ジョン・ソンムン; カン・ギルホ; リム・ホヨン
63 High surface area carbon opals and inverse opals obtained from the same JP2013125696 2013-06-14 JP2014012629A 2014-01-23 YANO KAZUHISA; MATTHEW DAVE GOODMAN; PAUL VANNEST BRAUN
PROBLEM TO BE SOLVED: To provide a self assembled carbon structure having heat stability usable as a template in manufacturing of inverse opals, and an inverse opal structure obtained from the same.SOLUTION: A carbon is made of hydrophilic carbon sphere arrayed in a periodic colloidal crystal structure and has a porous surface and a mean particle diameter of less than 3000 nm. A inverse opal structure including a plurality of voids in structural materials is disclosed. Voids are regularly arrayed in orderly periodic structures and have a sphere shape. The inverse opal has a specific surface area of more than 100 m/g.
64 Porous concrete and its aggregate JP2007334719 2007-12-26 JP4864866B2 2012-02-01 敏明 吉川; 基博 田中; 達志 相原
65 block JP2005332195 2005-11-16 JP2007138491A 2007-06-07 IDO HISATOSHI; SUDO MASAO
<P>PROBLEM TO BE SOLVED: To provide a block improved in water retention and water absorption while suppressing the lowering of flexural strength. <P>SOLUTION: The block 10 has a block body formed of a raw material obtained by mixing first sand, second sand, ceramic aggregates and cement. The mixing ratio of each sand and cement is set so that the fineness modulus of the raw material is 2.05-2.3. A continuous porous structure comprising a large number of pores 25 is formed in the block 10 manufactured under such conditions. Further, the block 10 is formed so that the pore volume of pores 25 whose radii are 3.7-6500 nm out of internal pores 25 is 0.02-0.04 ml/g, that the specific surface is 1.3-4 m<SP>2</SP>/g and that porosity based on the respective pores 25 formed inside is 18-28%. <P>COPYRIGHT: (C)2007,JPO&INPIT
66 고강도 및 고흡방습성을 갖는 다공성 세라믹 타일 KR1020130062705 2013-05-31 KR101731139B1 2017-04-27 강봉규; 정승문; 강길호; 임호연
γ-알루미나 15중량% 내지 60중량% 및유리질결합물질 5중량% 내지 20중량%를포함하는다공성세라믹타일을제공한다.
67 블럭 KR1020060066339 2006-07-14 KR100775071B1 2007-11-08 이도,히사토시; 수도,마사오
본 발명에 따른 블럭은 제1 모래, 제2 모래, 세라믹 골재 및 세멘트를 배합하여 만든 초기 혼합물로부터 형성된 블럭 주 몸체가 포함된다. 모래와 세멘트의 배합율은 초기 혼합물의 조립율이 2.05 내지 2.3 이 되도록 설명한다. 그러나 상태하에서 만들어진 블럭에는 연속 다공질 구조를 형성하는 다수의 미세 구멍이 포함된다. 그 미세 구멍은 반지름이 3.7 내지 6500 nm 이고, 0.02 내지 0.04 ㎖/g 의 미세 구멍 체적 및 1.3 내지 4 ㎡/g 의 비표면적을 가진다. 상기 미세 구멍의 공극율은 18 내지 28% 이다. 블럭
68 Fabrication of articles from nanowires EP15158520.5 2015-03-10 EP2921245B1 2018-11-21 Li, Weina; Birnkrant, Michael J.; Sheedy, Paul; Beals, James T.; Willigan, Rhonda R.; Santana, Jose L.
A method of fabricating an article includes providing an arrangement of loose nanowires and bonding the loose nanowires together into a unitary cellular structure.
69 Fabrication of articles from nanowires EP15158520.5 2015-03-10 EP2921245A1 2015-09-23 Li, Weina; Birnkrant, Michael J.; Sheedy, Paul; Beals, James T.; Willigan, Rhonda R.; Santana, Jose L.

A method of fabricating an article includes providing an arrangement of loose nanowires and bonding the loose nanowires together into a unitary cellular structure.

70 Verfahren zur Herstellung von Verbundkörpern EP11002960.0 2011-04-08 EP2386369A3 2014-01-01 Stoll, Kurt Dr.; Hirzel, Theodor

Bei einem Verfahren zur Herstellung von Verbundkörpern umfasst das Verfahren folgende Schritte:

- Bereitstellen von Salzpulver und/oder Metallpulver und Bindemittelpulver sowie eines steifen, fluidundurchlässigen Trägerkörpers (12),

- Mischen des Salzpulvers und/oder Metallpulvers und des Bindemittelpulvers zu einer Pulvermischung,

- Beladen des Trägerkörpers (12) mit der Pulvermischung,

- Sintern oder sonstiges Temperieren des mit Pulvermischung beladenen Trägerkörpers in einem Sinterofen, wobei die Pulvermischung zu einem harten, porösen und mit einer Vielzahl von Kanälen zur Durchleitung von Fluiden versehenen Formkörper (17) aushärtet, wodurch ein Verbundkörper (11) aus dauerhaft miteinander verbundenem Trägerkörper (12) und Formkörper (17) entsteht.

71 Verfahren zur Herstellung von Verbundkörpern EP11002960.0 2011-04-08 EP2386369A2 2011-11-16 Stoll, Kurt Dr.; Hirzel, Theodor

Bei einem Verfahren zur Herstellung von Verbundkörpern umfasst das Verfahren folgende Schritte:

- Bereitstellen von Salzpulver und/oder Metallpulver und Bindemittelpulver sowie eines steifen, fluidundurchlässigen Trägerkörpers (12),

- Mischen des Salzpulvers und/oder Metallpulvers und des Bindemittelpulvers zu einer Pulvermischung,

- Beladen des Trägerkörpers (12) mit der Pulvermischung,

- Sintern oder sonstiges Temperieren des mit Pulvermischung beladenen Trägerkörpers in einem Sinterofen, wobei die Pulvermischung zu einem harten, porösen und mit einer Vielzahl von Kanälen zur Durchleitung von Fluiden versehenen Formkörper (17) aushärtet, wodurch ein Verbundkörper (11) aus dauerhaft miteinander verbundenem Trägerkörper (12) und Formkörper (17) entsteht.

72 고강도 및 고흡방습성을 갖는 다공성 세라믹 타일 KR1020130062705 2013-05-31 KR1020140141214A 2014-12-10 강봉규; 정승문; 강길호; 임호연
γ-알루미나 15중량% 내지 60중량% 및 유리질 결합물질 5중량% 내지 20중량%를 포함하는 다공성 세라믹 타일을 제공한다.
73 블럭 KR1020060066339 2006-07-14 KR1020070052187A 2007-05-21 이도,히사토시; 수도,마사오
본 발명에 따른 블럭은 제1 모래, 제2 모래, 세라믹 골재 및 세멘트를 배합하여 만든 초기 혼합물로부터 형성된 블럭 주 몸체가 포함된다. 모래와 세멘트의 배합율은 초기 혼합물의 조립율이 2.05 내지 2.3 이 되도록 설명한다. 그렇나 상태하에서 만들어진 블럭에는 연속 다공질 구조를 형성하는 다수의 미세 구멍이 포함된다. 그 미세 구멍은 반지름이 3.7 내지 6500 nm 이고, 0.02 내지 0.04 ㎖/g 의 미세 구멍 체적 및 1.3 내지 4 ㎡/g 의 비표면적을 가진다. 상기 미세 구멍의 공극율은 18 내지 28% 이다. 블럭
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