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    • 3. 发明授权
    • Thermal mechanical diffusion system and method
    • 热机械扩散系统及方法
    • US09526129B2
    • 2016-12-20
    • US14572223
    • 2014-12-16
    • Robert G. WileyBrett ClarkJohn Lower
    • Robert G. WileyBrett ClarkJohn Lower
    • G02B6/255H05B1/02
    • H05B1/023G02B6/2551G02B6/2552
    • Provided is a thermal mechanical diffusion system and method. In accordance with the present invention, one end of a fiber under tension is vibrated while a portion of the fiber is heated. A push-pull action of one end of the fiber forces increased (or rapid) diffusion of dopants in the portion of the fiber that is in a heat zone, which receives the heat. By controlling the amplitude and frequency of the vibration, a diffusion profile of one or more fibers can be dictated with precision. Heat sources having narrower thermal profiles can enable greater precision in dictating the diffusion profile. As an example, this can be particularly useful for creating a diffusion taper within a fiber to be spliced, where the taper is a result of thermal expansion of the fiber core. Diffusion can occur much more rapidly than is typical.
    • 提供了一种热机械扩散系统和方法。 根据本发明,在加热纤维的一部分的同时,在张力下的纤维的一端振动。 纤维力的一端的推拉动作增加了(或快速)扩散的纤维在处于受热区域的热区中的部分中的掺杂剂。 通过控制振动的振幅和频率,可以精确地规定一根或多根光纤的扩散轮廓。 具有较窄热分布的热源可以实现更大的精确度来规定扩散分布。 作为示例,这对于在要拼接的光纤中产生扩散锥度特别有用,其中锥度是纤维芯的热膨胀的结果。 扩散可能比典型的发生得更快。
    • 6. 发明申请
    • THERMAL MECHANICAL DIFFUSION SYSTEM AND METHOD
    • 热机械扩散系统与方法
    • US20120183265A1
    • 2012-07-19
    • US13350274
    • 2012-01-13
    • Robert G. WileyBrett ClarkJohn Lower
    • Robert G. WileyBrett ClarkJohn Lower
    • G02B6/255
    • H05B1/023G02B6/2551G02B6/2552
    • Provided is a thermal mechanical diffusion system and method. In accordance with the present invention, one end of a fiber under tension is vibrated while a portion of the fiber is heated. A push-pull action of one end of the fiber forces increased (or rapid) diffusion of dopants in the portion of the fiber that is in a heat zone, which receives the heat. By controlling the amplitude and frequency of the vibration, a diffusion profile of one or more fibers can be dictated with precision. Heat sources having narrower thermal profiles can enable greater precision in dictating the diffusion profile. As an example, this can be particularly useful for creating a diffusion taper within a fiber to be spliced, where the taper is a result of thermal expansion of the fiber core. Diffusion can occur much more rapidly than is typical.
    • 提供了一种热机械扩散系统和方法。 根据本发明,在加热纤维的一部分的同时,在张力下的纤维的一端振动。 纤维力一端的推拉动作增加(或快速)扩散在接收热量的热区中的纤维部分中的掺杂剂。 通过控制振动的振幅和频率,可以精确地规定一根或多根光纤的扩散轮廓。 具有较窄热分布的热源可以实现更大的精确度来规定扩散分布。 作为示例,这对于在要拼接的光纤中产生扩散锥度特别有用,其中锥度是纤维芯的热膨胀的结果。 扩散可能比典型的发生得更快。
    • 9. 发明授权
    • Multi-stage fiber processing system and method
    • 多级纤维加工系统及方法
    • US09028158B2
    • 2015-05-12
    • US13354090
    • 2012-01-19
    • Robert G. WileyBrett ClarkJohn Lower
    • Robert G. WileyBrett ClarkJohn Lower
    • G02B6/255
    • G02B6/2551G02B6/2552
    • A multi-stage fiber processing system comprises first and second fiber holders configured to hold respective portions of at least one fiber and a plurality of heat sources arranged between the first and second fiber holders and configured to provide a heat zone that axially extends about the at least on fiber. The first and second fiber holders can be configured to translate away from each other for tapering. The plurality of heat sources can include two 3 electrode heat sources that deliver an extended, substantially isothermic heat field axially about the fiber. All but one heat source can be turned off to splice the fiber. The two 3 electrode heat sources can generate 9 arcs to from the heat zone, wherein arcs between the two 3 electrode heat sources can be rotated about the at least one fiber.
    • 多级光纤处理系统包括第一和第二光纤保持器,第一和第二光纤保持器被配置为保持至少一个光纤的相应部分和布置在第一和第二光纤保持器之间的多个热源,并且被配置为提供围绕该 至少在纤维上。 第一和第二光纤保持器可被配置为相互平移以进行锥形化。 多个热源可以包括两个3个电极热源,其围绕光纤轴向传递延伸的基本上等温的热场。 除了一个热源之外,所有的热源都可以关闭以将光纤接合。 两个3个电极热源可以从热区产生9个弧,其中两个3个电极热源之间的电弧可围绕至少一个光纤旋转。
    • 10. 发明申请
    • MULTI-STAGE FIBER PROCESSING SYSTEM AND METHOD
    • 多级光纤加工系统及方法
    • US20120183266A1
    • 2012-07-19
    • US13354090
    • 2012-01-19
    • Robert G. WileyBrett ClarkJohn Lower
    • Robert G. WileyBrett ClarkJohn Lower
    • G02B6/255
    • G02B6/2551G02B6/2552
    • A multi-stage fiber processing system comprises first and second fiber holders configured to hold respective portions of at least one fiber and a plurality of heat sources arranged between the first and second fiber holders and configured to provide a heat zone that axially extends about the at least on fiber. The first and second fiber holders can be configured to translate away from each other for tapering. The plurality of heat sources can include two 3 electrode heat sources that deliver an extended, substantially isothermic heat field axially about the fiber. All but one heat source can be turned off to splice the fiber. The two 3 electrode heat sources can generate 9 arcs to from the heat zone, wherein arcs between the two 3 electrode heat sources can be rotated about the at least one fiber.
    • 多级光纤处理系统包括第一和第二光纤保持器,第一和第二光纤保持器被配置为保持至少一个光纤的相应部分和布置在第一和第二光纤保持器之间的多个热源,并且被配置成提供一个热区域, 至少在纤维上。 第一和第二光纤保持器可被配置为相互平移以进行锥形化。 多个热源可以包括两个3个电极热源,其围绕光纤轴向传递延伸的基本上等温的热场。 除了一个热源之外,所有的热源都可以关闭以将光纤接合。 两个3个电极热源可以从热区产生9个弧,其中两个3个电极热源之间的电弧可围绕至少一个光纤旋转。