Electrodeposited continuous thin film transfer process for producing
film functional as barrier coatings
    3.
    发明授权
    Electrodeposited continuous thin film transfer process for producing film functional as barrier coatings 失效
    电沉积连续薄膜转移工艺,用于制造膜作为阻隔涂层

    公开(公告)号:US4566962A

    公开(公告)日:1986-01-28

    申请号:US565071

    申请日:1983-12-23

    申请人: Vincent McGinniss

    发明人: Vincent McGinniss

    CPC分类号: C09D5/44 C25D13/16

    摘要: Novel electrodeposited coating copolymer blends for a transfer process are disclosed enabling copolymers displaying high adhesion to metals, and which normally cannot be contact transferred, to be made readily transferable as thin continuous barrier films preferably 0.3 mil in thickness or less.

    摘要翻译: 公开了用于转移方法的新型电沉积涂料共聚物共混物,其使得能够显示出对金属具有高粘合性并且通常不能接触转移的共聚物,使其易于作为薄的连续阻挡膜转移,优选为0.3密耳厚度或更小。

    Soft-goods type, formable orthopaedic cast
    4.
    发明授权
    Soft-goods type, formable orthopaedic cast 失效
    软货物类型,成形矫形器

    公开(公告)号:US4996979A

    公开(公告)日:1991-03-05

    申请号:US420920

    申请日:1989-10-13

    IPC分类号: A61F5/058 A61F13/04

    CPC分类号: A61F13/04 A61F5/05841

    摘要: A soft goods type foldable, wrappable sleeve orthopedic cast immobilizes and conforms to the shape and configuration of a limb, or other part of the anatomy. The soft-goods type cast assembly is initially specially formed or configured to specifically fit a selected portion of the anatomy of a patient. The cast conforms to the anatomy through the use of airtight and moisture-proof pouches which encapsulate either (1) open cell or fiberglass matrices impregnated with a water-activated hardenable pre-polymer, or (2) the entire assembly. After the tightening of the cast around the limb, the application of water activates the urethane polymer which conforms to the configuration of the limb encased. Supplemental bendable ribs may be employed to splint the limb prior to activation of the hardenable material. The soft goods type cast is held in place by straps, and may be removed or adjusted by releasing or tightening the straps. The splinting elements may be removed and replaced. An inlet duct may have a capsule in it with some of the chemical material which aids in polymerization of the urethane. A venting duct may also be provided to permit the escape of air or gases. The water activated pre-polymer material may include two isocyanate pre-polymers of significantly different viscosities and equivalent weights.

    摘要翻译: 柔软的货物类型可折叠,可包装的袖口矫形器固定并符合肢体或解剖结构的其他部分的形状和构型。 软货物铸造组件最初被特别地形成或构造成特别地适合患者的解剖结构的选定部分。 铸件通过使用气密和防潮袋,符合解剖学,其中包括(1)用水激活的可硬化预聚物浸渍的开孔或玻璃纤维基体,或(2)整个组件。 在围绕肢体收紧铸件之后,水的使用激活了符合肢体包裹构型的聚氨酯聚合物。 可补充的可弯曲肋条可在活化可硬化材料之前夹住肢体。 软质铸件通过带子固定在适当位置,可以通过松开或拉紧带子来移除或调整。 可以去除和更换夹板元件。 入口管道可以在其中具有胶囊,其中一些化学材料有助于聚氨酯的聚合。 还可以设置排气管以允许空气或气体逸出。 水活化的预聚物材料可以包括具有显着不同粘度和当量重量的两种异氰酸酯预聚物。

    Embedded electrode integrated optical devices and methods of fabrication
    5.
    发明授权
    Embedded electrode integrated optical devices and methods of fabrication 失效
    嵌入式电极集成光学器件及其制造方法

    公开(公告)号:US07373047B2

    公开(公告)日:2008-05-13

    申请号:US10719892

    申请日:2003-11-21

    IPC分类号: G02F1/025 G02F1/313

    CPC分类号: G02F1/065

    摘要: Waveguide devices and schemes for fabricating waveguide devices useful in applications requiring modulation, attenuation, polarization control, and switching of optical signals are provided. In accordance with one embodiment of the present invention, a method of fabricating an integrated optical device is provided. The method comprises the acts of: (i) providing a support wafer defining an electrode support surface; (ii) forming an electrode pattern over the electrode support surface of the support wafer; (iii) forming a non-polymeric buffer layer on at least a portion of the electrode pattern and over at least a portion of the support wafer; (iv) forming a waveguide core material layer over the non-polymeric silica-based buffer layer; (v) removing portions of the core material layer to define a waveguide core; and (vi) positioning a cladding material in optical communication with the waveguide core such that the buffer layer, the cladding material, and the waveguide core define an optically-clad waveguide core.

    摘要翻译: 提供了用于制造用于需要调制,衰减,偏振控制和光信号切换的应用的波导器件的波导器件和方案。 根据本发明的一个实施例,提供了一种制造集成光学器件的方法。 该方法包括以下动作:(i)提供限定电极支撑表面的支撑晶片; (ii)在支撑晶片的电极支撑表面上形成电极图案; (iii)在所述电极图案的至少一部分上并在所述支撑晶片的至少一部分上形成非聚合物缓冲层; (iv)在非聚合二氧化硅基缓冲层上形成波导芯材料层; (v)去除所述芯材料层的部分以限定波导芯; 以及(vi)将包层材料定位成与所述波导芯光学连通,使得所述缓冲层,所述包层材料和所述波导芯限定光学包层波导芯。

    Electrooptic chromophores with large optical birefringence for applications at high speed and short wavelengths
    10.
    发明申请
    Electrooptic chromophores with large optical birefringence for applications at high speed and short wavelengths 审中-公开
    具有大光学双折射的电光发色团,适用于高速和短波长的应用

    公开(公告)号:US20060106262A1

    公开(公告)日:2006-05-18

    申请号:US11281082

    申请日:2005-11-17

    IPC分类号: C07C17/42

    摘要: Disclosed is a series of materials, which exhibit large birefringence under the influence of an applied electric field. These materials are capable of switching this large birefringence with a characteristic time on the order of 1 microsecond or less. In addition, these materials have good optical loss at this wavelength, and are stable under irradiation. These materials are suitable for fabrication of optical devices such a variable optical attenuators, switches, and modulators that respond in these time frames or slower. These materials are also suitable for use across a wide range of wavelengths. As a second component of this invention, some of these novel materials exhibit these desired optical properties (large birefringence, low loss, stability under illumination) at wavelengths as short as about 400 nm. These materials are suitable for fabrication of optical devices operating at or about 405 nm, where conventional EO materials strongly absorb and/or quickly degrade.

    摘要翻译: 公开了一系列在施加的电场的影响下显示出大的双折射的材料。 这些材料能够以1微秒或更小的特征时间切换这种大的双折射。 此外,这些材料在该波长处具有良好的光学损失,并且在照射下是稳定的。 这些材料适用于制造光学器件,例如在这些时间帧或更慢时间响应的可变光衰减器,开关和调制器。 这些材料也适用于广泛的波长范围。 作为本发明的第二组分,这些新型材料中的一些在短达约400nm的波长下表现出这些所需的光学性质(大的双折射,低损耗,照射下的稳定性)。 这些材料适用于制造在约405nm或约405nm下工作的光学器件,其中常规EO材料强烈吸收和/或快速降解。