Aluminum alloy sheet for high-speed high-temperature blow forming
    1.
    发明申请
    Aluminum alloy sheet for high-speed high-temperature blow forming 审中-公开
    铝合金板用于高速高温吹塑成型

    公开(公告)号:US20060035106A1

    公开(公告)日:2006-02-16

    申请号:US11195148

    申请日:2005-08-02

    IPC分类号: B32B15/01

    CPC分类号: C22C21/08 Y10T428/12736

    摘要: An aluminum alloy sheet for high-speed high-temperature blow forming has an aluminum alloy containing 4 to 5% of Mg, 0.35 to 0.5% of Mn and 0.001 to 0.05% of Cr, 0.6% or less of Si+Fe, 0.15% or less of Cu, and the balance being substantially Al. The aluminum alloy sheet has an elongation of 150% or more in a high-temperature tensile test at 400 to 550° C. and at a strain rate of 10−2/second or more, has a cavitation area percentage of 2% or less at the time of 100% tensile deformation, and is free from any abnormally grown grains of 100 microns or more. A formed piece of the aluminum alloy sheet also has a cavitation area percentage of 2% or less when blow-formed at 400 to 550° C. and at a reduction in sheet thickness of 65% or less, and is free from any abnormally grown grains of 100 microns or more.

    摘要翻译: 用于高速高温吹塑的铝合金板具有含有4〜5%的Mg,0.35〜0.5%的Mn和0.001〜0.05%的Cr,0.6%以下的Si + Fe,0.15% 以下的Cu,余量基本上为Al。 铝合金板在400〜550℃的高温拉伸试验和10 -2 /秒以上的应变速率下的伸长率为150%以上具有空化 在100%拉伸变形时的面积百分比为2%以下,并且没有任何异常生长的100微米或更大的晶粒。 当在400〜550℃吹塑时,铝合金板的成形片也具有2%以下的空化面积百分比,板厚减小65%以下,无任何异常生长 100微米以上的颗粒。

    Film deposition method and film deposition apparatus of metal film
    4.
    发明授权
    Film deposition method and film deposition apparatus of metal film 失效
    金属膜的成膜方法和成膜装置

    公开(公告)号:US08029873B2

    公开(公告)日:2011-10-04

    申请号:US11922918

    申请日:2006-06-28

    IPC分类号: H05H1/24 C23C16/00

    摘要: The present invention is a film deposition method of a metal film comprising the steps of: placing an object to be processed having a recess formed in a surface thereof, on a stage in a processing vessel; evacuating the processing vessel to create a vacuum therein; ionizing a metal target in the evacuated processing vessel to generate metal particles including metal ions, by means of a plasma formed by making the plasma from an inert gas; and by applying a bias electric power to the object to be processed placed on the stage to draw the plasma and the metal particles into the object to be processed, scraping a bottom part of the recess to form a scraped recess, and depositing a metal film on an entire surface of the object to be processed including surfaces in the recess and in the scraped recess.

    摘要翻译: 本发明是一种金属膜的成膜方法,包括以下步骤:将处理容器内的台阶上形成有凹部的被处理物放置在其表面; 抽出处理容器以在其中产生真空; 在真空处理容器中电离金属靶,通过由惰性气体制备等离子体形成的等离子体产生包含金属离子的金属颗粒; 并且通过向被放置在台架上的待加工物体施加偏置电力,以将等离子体和金属颗粒拉入待加工物体,刮掉凹部的底部以形成刮削凹部,并且沉积金属膜 在待处理物体的整个表面上,包括凹部和刮削凹槽中的表面。

    Lighting device, and electronic device using the same
    9.
    发明授权
    Lighting device, and electronic device using the same 有权
    照明装置和使用其的电子装置

    公开(公告)号:US06626551B2

    公开(公告)日:2003-09-30

    申请号:US09791638

    申请日:2001-02-26

    IPC分类号: F21V916

    摘要: A composite lighting device is provided, which is inexpensive and has high uniformity in brightness, in which light emitted from an end face of a backlight having an organic EL device is used to illuminate input buttons and the like. The lighting device includes a transparent substrate having one principal plane on which a transparent electrode film, a luminescent layer, and a reflective electrode film are at least formed. In the lighting device, a liquid crystal display unit is adjacently disposed on the other principal plane, and a light-guide element is adjacent to an end face of the substrate, so that input buttons embedded into the light-guide element are illuminated.

    摘要翻译: 提供了一种复合照明装置,其便宜并且具有高的均匀性,其中使用从具有有机EL装置的背光源的端面发射的光照射输入按钮等。 照明装置包括具有至少形成有透明电极膜,发光层和反射电极膜的一个主面的透明基板。 在照明装置中,液晶显示单元相邻设置在另一个主平面上,导光元件与基板的端面相邻,使得嵌入到导光元件中的输入按钮被照亮。

    Projector and method of manufacturing a light modulation device

    公开(公告)号:US06585379B2

    公开(公告)日:2003-07-01

    申请号:US10050796

    申请日:2002-01-18

    IPC分类号: G03B2100

    摘要: There is provided a method of manufacturing a light modulation device that does not produce scattered reflection comprising: a step of forming a release layer whereby a release layer that produces separation in response to irradiation with incoming light is formed on a heat-resistant substrate having the capability of withstanding heat; a step of forming a piezoelectric layer whereby a piezoelectric layer is formed on the release layer; a patterning step whereby an electrode pattern is formed in respect of the piezoelectric layer and mirror elements are formed at each pixel; a connection step of electrically connecting the active element substrate wherein active elementary elements are provided for each pixel and the piezoelectric layer laminated on the heat-resistant substrate such that the active elements correspond to mirror elements; and an irradiating separation step whereby separation is produced in the release layer by irradiating the release layer with irradiating light from the side of the heat-resistant substrate.