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    • 2. 发明授权
    • Green-state ceramic discharge vessel parts
    • 绿色陶瓷放电容器部件
    • US07404496B2
    • 2008-07-29
    • US11160334
    • 2005-06-20
    • Jeffrey T. NeilGregory ZaslavskyVictor E. PerezJoseph V. Lima
    • Jeffrey T. NeilGregory ZaslavskyVictor E. PerezJoseph V. Lima
    • B65D6/00B65D25/28
    • H01J9/266H01J61/30
    • A ceramic discharge vessel in a green state prior to assembly includes a first discharge vessel part in a green state, a second discharge vessel part in a green state, wherein the first and second discharge vessel parts form a discharge vessel when joined together, and a first capillary attached to the first discharge vessel part and a second capillary attached to one of the first and second discharge vessel parts. To facilitate joining the first and second discharge vessel parts, a first removable handle is temporarily attached to the first discharge vessel part for maneuvering the first discharge vessel part, and a second removable handle is temporarily attached to the second discharge vessel part for maneuvering the second discharge vessel part.
    • 在组装之前,处于绿色状态的陶瓷放电容器包括处于绿色状态的第一放电容器部分,处于绿色状态的第二放电容器部分,其中第一和第二放电容器部分在接合时形成放电容器,并且 附着于第一放电容器部分的第一毛细管和连接到第一和第二放电容器部分之一的第二毛细管。 为了便于连接第一和第二放电容器部分,第一可移除手柄临时附接到第一放电容器部分以操纵第一放电容器部分,并且第二可移除手柄临时附接到第二放电容器部分,以操纵第二放电容器部分 放电容器部分。
    • 5. 发明申请
    • Ceramic Arc Discharge Vessel and Method of Manufacture
    • 陶瓷放电容器及其制造方法
    • US20080047665A1
    • 2008-02-28
    • US11467270
    • 2006-08-25
    • Jeffrey T. NeilKlaus StockwaldVictor E. Perez
    • Jeffrey T. NeilKlaus StockwaldVictor E. Perez
    • B29C65/00H01J17/16
    • H01J61/302C04B35/115C04B37/001C04B2237/343H01J9/247
    • A method of forming a hollow ceramic body (10) comprising the steps of: forming a first section half (12) with a given wall thickness T and a second section half (14) with the given wall thickness T, the first section half and the second section half containing a binder material; forming a first joining surface (16) on the first section and forming a second joining surface (18) on the second section, the first joining surface 16 and the second joining surface 18 having a wall thickness T1 thinner than the given thickness; simultaneously heating the first and second joining surfaces (16, 18) to cause localized melting of the binder material; initially contacting the first joining surface with the second joining surface to form an interface region; and applying compression to the interface region to join the first section (12) to the second section (14) without the protrusion of any material into a discharge space (20) formed when the first section (12) and the second section (14) are joined.
    • 一种形成中空陶瓷体(10)的方法,包括以下步骤:形成具有给定壁厚T的第一部分半部(12)和具有给定壁厚T的第二部分半部(14),第一部分半部和 第二部分半部分含有粘合剂材料; 在所述第一部分上形成第一接合表面(16)并且在所述第二部分上形成第二接合表面(18),所述第一接合表面16和所述第二接合表面18具有壁厚T 1 比给定厚度薄; 同时加热第一和第二接合表面(16,18)以引起粘合剂材料的局部熔化; 最初使所述第一接合表面与所述第二接合表面接触以形成界面区域; 以及将压缩施加到所述界面区域以将所述第一部分(12)连接到所述第二部分(14),而不会使任何材料突出到当所述第一部分(12)和所述第二部分(14)形成时形成的放电空间(20) 被加入。
    • 6. 发明授权
    • Method of reducing magnesium loss during sintering of aluminum oxide articles
    • 在氧化铝制品烧结过程中减少镁损失的方法
    • US07481963B2
    • 2009-01-27
    • US11160537
    • 2005-06-28
    • Jeffrey T. NeilVictor E. PerezTimothy J. Horton
    • Jeffrey T. NeilVictor E. PerezTimothy J. Horton
    • C04B35/48
    • C04B35/10C04B2235/3206C04B2235/6587C04B2235/94H01J9/247H01J61/302
    • A method for reducing the loss of magnesium during the sintering of aluminum oxide articles, such as ceramic discharge vessels for lighting applications. Magnesium oxide is added to aluminum oxide articles to control grain growth during sintering, but the sintering causes magnesium loss from the article. In order to address this problem, one or more aluminum oxide articles that are enriched in magnesium oxide are added to the sintering furnace to stem the loss of magnesium oxide in the remaining articles. The enriched aluminum oxide article is made by soaking a porous aluminum oxide article in an aqueous solution of magnesium nitrate and heating the porous article to convert the magnesium nitrate to magnesium oxide. The enriched articles may then be added in one or several locations to the sintering furnace, where the magnesium from the enriched articles is released to suppress the magnesium loss.
    • 一种在氧化铝制品烧结过程中减少镁的损失的方法,例如用于照明应用的陶瓷放电容器。 将氧化镁加入到氧化铝制品中以控制烧结过程中的晶粒生长,但烧结会导致制品中的镁损失。 为了解决这个问题,将一种或多种富含氧化镁的氧化铝制品加入到烧结炉中以阻止剩余制品中氧化镁的损失。 富氧化铝制品通过将多孔氧化铝制品浸入硝酸镁水溶液中并加热多孔制品以将硝酸镁转化为氧化镁来制备。 然后将富集的物品加入到烧结炉的一个或几个位置,其中来自富集物品的镁被释放以抑制镁损失。