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    • 5. 发明申请
    • METHOD OF PRODUCING ULTRA FINE SURFACING BULK SUBSTRATE
    • 生产超薄表面粗粉底材的方法
    • US20110120626A1
    • 2011-05-26
    • US12622435
    • 2009-11-20
    • Chung-Ping Lai
    • Chung-Ping Lai
    • B32B37/10
    • C25D1/22B32B2037/246B32B2457/00B32B2551/08C25D1/06
    • A novel method of producing sub-nanometer grade surface finishing substrates comprises the following steps of: producing a mother substrate which has ultra fine finished surface; a sacrificial layer being employed on a top of this layer being used to facilitate the depletion of finished product with this mother substrate; after finishing the sacrificial layer, a vacuum tool being used to deposit a thin layer on the top of sacrificial layer, wherein this sacrificial layer is remained as a surface of a finished product. To further increase a thickness of the thin layer, vacuum tool or an electroplating method are employed. After reaching a predetermined thickness, the fine surface finishing layer will be bonded with a bulk substrate; bonding of these two objects being done by vacuum bonding with elevated temperature and pressure; and therefore, a fixture is used.
    • 一种生产亚纳米级表面处理基板的新方法包括以下步骤:制备具有超精加工表面的母基板; 用于该层顶部的牺牲层用于促进成品与该母基材的消耗; 在完成牺牲层之后,使用真空工具将薄层沉积在牺牲层的顶部上,其中该牺牲层保留为成品的表面。 为了进一步增加薄层的厚度,采用真空工具或电镀方法。 在达到预定厚度之后,精细表面处理层将与块状基板结合; 这两个物体的接合是通过在高温和高压下进行真空接合完成的; 因此,使用固定装置。
    • 6. 发明授权
    • Marking of block gauges
    • 块尺的标记
    • US5612100A
    • 1997-03-18
    • US668698
    • 1996-06-24
    • Chung-Ping LaiAi-Kang LiCheng-Tsu Fu
    • Chung-Ping LaiAi-Kang LiCheng-Tsu Fu
    • B41M1/34B41M5/24G01B1/00C23C14/28
    • B41M1/34B41M5/245G01B1/00
    • According to this invention, a novel marking method for block gauges employing an improved electron discharge marking approach is provided. The method for marking on the surface of a block gauge, comprising:preparing a block gauge with electric conductivity or partial conductivity;immersing said block gauge in an insulating oil with cooling circulation sufficient to maintain the oil at a temperature; andapplying to said block gauge a discharge current and a modulated pulse width to produce recessed markings.In some embodiments of this invention, the temperature is an ambient temperature, the discharge current is between 0.1 to 10 amperes, the modulated pulse width is between 1 to 100 microseconds and preferably between 1 to 20 microseconds, and the surface roughness of the recessed markings is within 10 .mu.m and preferably within 1 .mu.m.
    • 根据本发明,提供了一种使用改进的电子放电标记方法的块式测量仪的新型标记方法。 用于在块规表面上标记的方法,包括:制备具有导电性或部分导电性的块规; 将所述块规沉入绝热油中,其冷却循环足以将油保持在温度; 并且向所述块计量器施加放电电流和调制脉冲宽度以产生凹陷标记。 在本发明的一些实施例中,温度是环境温度,放电电流在0.1至10安培之间,调制脉冲宽度在1至100微秒之间,优选在1至20微秒之间,凹陷标记的表面粗糙度 在10微米以内,优选在1微米以内。
    • 9. 发明授权
    • Refrigerator with plasma device
    • 带等离子装置的冰箱
    • US09144623B2
    • 2015-09-29
    • US14072797
    • 2013-11-06
    • Chung-Ping Lai
    • Chung-Ping Lai
    • F25D11/00A61L9/22F25D17/06F25D17/04
    • A61L9/22A61L2209/212A61L2209/213F25D17/042F25D2317/041
    • The refrigerator includes a thermally insulated box with a first board, a plasma device and a pipeline, all of which are embedded in the first board. The plasma device includes an atomizer with a water tank and a first fan, a plasma generator and a pipeline. The plasma generator is hermetically connected to the atomizer and has an electrode device. The electrode device includes a dielectric plate and a plurality of electrode rods embedded therein. The electrode rods are interlacedly electrically connected to an AC source. The pipeline is hermetically connected to the plasma generator and composed of an inlet section with an inlet, an outlet section with at least one outlet and a middle section communicating with the dielectric plate. The inlet is provided with a second fan.
    • 冰箱包括具有第一板,等离子体装置和管道的绝热箱,所有这些都嵌入在第一板中。 等离子体装置包括具有水箱和第一风扇,等离子体发生器和管道的雾化器。 等离子体发生器气密地连接到雾化器并具有电极装置。 电极装置包括电介质板和嵌入其中的多个电极棒。 电极棒与AC电源交错电连接。 该管道气密地连接到等离子体发生器并由具有入口的入口部分,具有至少一个出口的出口部分和与电介质板连通的中间部分组成。 入口设有第二个风扇。