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    • 4. 发明授权
    • Optical fiber dispenser with thermal expansion accommodation layer
    • 具有热膨胀调节层的光纤分配器
    • US5594829A
    • 1997-01-14
    • US478297
    • 1995-06-07
    • Gregory LoStraccoRonald B. CheslerHui-Pin Hsu
    • Gregory LoStraccoRonald B. CheslerHui-Pin Hsu
    • G02B6/00G02B6/44G02B6/36
    • G02B6/4457
    • An optical fiber dispenser (40) includes a bobbin (42), an optical fiber pack (52) overlying the bobbin (42), and a thermal expansion accommodation layer (50) positioned between the bobbin (42) and the optical fiber pack (52 ). The thermal expansion accommodation layer (50) is made of a material, such as a silicone elastomer, that is readily deformable to accommodate the different longitudinal coefficients of thermal expansion of the bobbin (42) and the optical fiber pack (52). The thermal expansion accommodation layer (50) has a thickness, typically more than about 1/8 inch for a conventional bobbin size, sufficient to reduce any thermal stresses produced by the different longitudinal coefficients of thermal expansion to less than the failure strength of the optical fiber pack (52).
    • 光纤分配器(40)包括线轴(42),覆盖线轴(42)的光纤组件(52)和位于线轴(42)和光纤组件(42)之间的热膨胀容纳层(50) 52)。 热膨胀容纳层(50)由诸如硅氧烷弹性体的材料制成,其容易变形以适应线轴(42)和光纤组件(52)的不同纵向热膨胀系数。 对于传统的筒管尺寸,热膨胀容纳层(50)具有通常大于约+ E,fra 1/8 + EE英寸的厚度,足以将由不同纵向热膨胀系数产生的任何热应力减小到小于 光纤组件(52)的故障强度。
    • 8. 发明授权
    • Preparation of an optical fiber canister
    • 光纤罐的制备
    • US5220632A
    • 1993-06-15
    • US903394
    • 1992-06-24
    • Gregory LoStracco
    • Gregory LoStracco
    • B65H75/26G02B6/44
    • B65H75/265G02B6/4457
    • A method for preparing an optical fiber canister includes providing a length of a wire (44) having a diameter of about that of the optical fiber (60), and winding the wire (44) onto a mandrel (40) in a preselected winding pattern to form a base layer (46). A replicating strip (48) having a flexible substrate (50) with a patterning layer (52) of b-staged epoxy on one side thereof is provided, and the patterning layer (52) is pressed against the base layer (46) to form a groove pattern (62) in the patterning layer (52). The b-staged epoxy layer (52) is cured to harden it to preserve the groove pattern, and then the flexible substrate (50) is applied to an optical fiber bobbin (56) with the grooved patterning layer (52) facing outwardly. An optical fiber (60) is wound into the groove (62) of the patterning layer (52) to form an optical fiber pack (66).
    • 一种制备光纤罐的方法,包括提供直径大约为光导纤维(60)直径的线(44)的长度,并以预选的卷绕图案将线(44)缠绕在心轴(40)上 以形成基底层(46)。 提供了具有柔性基板(50)的复制带(48),其上具有一侧上具有b阶环氧树脂的图案化层(52),并且图案化层(52)被压靠在基层(46)上以形成 图形层(52)中的凹槽图案(62)。 固化b阶环氧树脂层(52)以使其硬化以保持凹槽图案,然后将柔性基底(50)施加到具有面向外的凹槽图案层(52)的光纤线轴(56)上。 光纤(60)被卷绕到图形层(52)的凹槽(62)中以形成光纤组件(66)。