ESD DISSIPATIVE CERAMICS
    42.
    发明专利

    公开(公告)号:MY157027A

    公开(公告)日:2016-04-15

    申请号:MYPI20084031

    申请日:2001-11-20

    Abstract: THIS INVENTION RELATES TO A DENSE CERAMICS HAVING ESD DISSIPATIVE CHARACTERISTICS, TUNABLE VOLUME AND SURFACE RESISTIVITIES IN SEMI-INSULATIVE RANGE (10³-10¹¹ OHM-CM), SUBSTANTIALLY PORE FREE, HIGH FLEXURAL STRENGTH, LIGHT COLORS, FOR DESIRED ESD DISSIPATION CHARACTERISTICS, STRUCTURAL RELIABILITY, HIGH VISION RECOGNITION, LOW WEAR AND PARTICULATE CONTAMINATION TO BE USED AS ESD DISSIPATING TOOLS, FIXTURES, LOAD BEARING ELEMENTS, WORK SURFACES, CONTAINERS IN MANUFACTURING AND ASSEMBLING ELECTROSTATICALLY SENSITIVE MICROELECTRONIC, ELECTROMAGNETIC, ELECTRO-OPTIC COMPONENTS, DEVICES AND SYSTEMS.

    СПОСОБ КРИСТАЛЛОГРАФИЧЕСКОЙ ПЕРЕОРИЕНТАЦИИ МОНОКРИСТАЛЛИЧЕСКОГО ТЕЛА

    公开(公告)号:UA98967C2

    公开(公告)日:2012-07-10

    申请号:UAA201000722

    申请日:2008-06-25

    Abstract: Предлагаетсяспособизменениякристаллографическойориентациимонокристаллическоготела, которыйвключаетэтапыизучениякристаллографическойориентациимонокристаллическоготелаи вычисленияугланесогласованнойориентациимеждувыбраннымкристаллографическимнаправлениемданногомонокристаллическоготелаи проекциейэтогокристаллографическогонаправлениянаплоскостьпервойвнешнейосновнойповерхностимонокристаллическоготела. Этотспособдополнительновключаетудалениематериалас, покрайнеймере, частиуказаннойпервойвнешнейосновнойповерхностидляизмененияугланесогласованнойориентации.

    LIGHT-COLORED ESD SAFE CERAMICS
    47.
    发明专利

    公开(公告)号:MY137542A

    公开(公告)日:2009-02-27

    申请号:MYPI20041897

    申请日:2004-05-19

    Abstract: ASPECTS OF THE PRESENT INVENTION MAY BE FOUND IN AN ELECTROSTATIC DISSIPATIVE CERAMIC COMPONENT HAVING A STABIILIZED ZIRCONIA BASE, A SURFACE RESISTIVITY BETWEEN 1 X 10( ) AND 1 X 10( ) OHMS PER SEQUARE AND AT LEAST 2 PERCENT BY VOLUME SCATTERING MATERIAL. THE STABILIZED ZIRCONIA MAY BE PRESENT IN AMOUNTS BETWEEN 60 TO 95 WEIGHT PERCENT. FURTHER ASPECTS OF THE INVENTION MAY BE FOUND IN AN ELECTROSTATIC DISSIPATIVE CERAMIC MATERIAL HAVING STABILIZED ZIRCONIA, A RESISTIVITY MODIFIER, AND A SCATTERING MATERIAL. THE STABILIZED ZIRCONIA MAY BE PRESENT IN AMOUNTS BETWEEN 60 TO 95 WEIGHT PERCENT OF THE CERAMIC MATERIAL. THE RESISTIVITY MODIFIER MAY BE PRESENT IN AMOUNTS BETWEEN 5 TO 30 WEIGHT PERCENT. THE SCATTERING MATEIAL MAY COMPRISE AT LEAST 2 VOLUME PERCENT OF THE ELECTROSTATIC DISSIPATIVE CERAMIC MATERIAL. THE COMPONENT MAY BE USED IN THE MANUFACTURING OF ELECTRONIC COMPONENT SUCH AS HARD DRIVES.

    CERAMIC ARTICLE HAVING CORROSION-RESISTANT LAYER, SEMICONDUCTOR PROCESSING APPARATUS INCORPORATING SAME, AND METHOD FOR FORMING SAME

    公开(公告)号:SG147461A1

    公开(公告)日:2008-11-28

    申请号:SG2008078750

    申请日:2004-08-19

    Abstract: CERAMIC ARTICLE HAVING CORROSION- RESISTANT LAYER, SEMICONDUCTOR PROCESSING APPARATUS INCORPORATING SAME, AND METHOD FOR FORMING SAME An article-is provided that includes a substrate and a corrosion-resistant coating provided on the substrate. The substrate generally consists essentially of alumina, and the corrosion-resistant coating is provided so as to directed contact the substrate without the provision of intervening layers between the substrate and the corrosion-resistant coatin, such as reaction products provided by high-temperature treatment processes. The corrosion-resistant coating generally consists essentially of a rare earth oxide, and has an adhesion strength not less than about 15 MPa. According to particular embodiments, the article is a ceramic component utilized and implemented in a semiconductor processing apparatus for processing semiconductor wafers. Fig.1

    50.
    发明专利
    未知

    公开(公告)号:DE69630832T2

    公开(公告)日:2004-09-23

    申请号:DE69630832

    申请日:1996-04-13

    Abstract: A method of making a diamond coated insert (310) includes, obtaining a substrate (204) of durable and diamond adherent material having a substantially smooth surface on which is coated a diamond layer (222) using any known CVD technique, and partitioning the diamond covered substrate (204) with a laser beam into multiple inserts (310) with desired geometries. If desired, the insert edges (318a-c) and corners (320a-c) may be thereafter machined or ablated until the desired smoothness and finish are achieved, and a fastening throughbore (324) may be preformed or drilled in the center of each insert (310). The diamond coated inserts (310) as formed have a top surface entirely coated by a surface layer (222) of diamond of a first thickness, and at least one rake face (208) which is not diamond coated beyond the surface layer (222) of diamond.

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