特种光纤
- 网络special fiber;specific fiber
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新型特种光纤几何参数的检测,是研究新型光纤特性以及保证光纤生产质量的前提和保证。
Detecting geometric parameters of new type specific fiber is precondition and guarantee that researching property of new type specific fiber and ensuring quality of processing of production .
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新型强光敏性特种光纤的研究
Research on Novel Special Fiber with Strong Photosensitivity
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采购产品特种光纤,掺铒光纤,掺铒光纤放大器,光纤光栅,光学产品
Specialty Optical Fiber , Doped Fiber , Erbium Doped Attenuating , Edfa , Fbg , Optical .
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光子晶体光纤作为一种典型的特种光纤有着广泛的应用,而色散(Chromaticdispersion,CD)作为它的重要参数之一,直接影响光子晶体光纤及其制作器件的性能。
Photonic crystal fibers ( PCFs ), as a special type of optical fibers , have a wide range of applications . Chromatic dispersion , which is one of the PCFs ' most important parameters , plays key roles in its performance and the device which is made of it .
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灵巧结构与蒙皮中的特种光纤
Special optical fiber for smart structure and skin
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用于大功率红外传输的特种光纤
Special Optical Fiber for Infrared High-Power Transmitting
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非线性特种光纤的研究
Research on special fibers with high nonlinearity
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传感器用特种光纤
Optical fibers for sensors
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特种光纤及其相关器件在光通信、传感、材料加工和军事等领域有着广泛而重要的应用。
Special optical fibers and related devices have great applications in the optical communications , sensing , material process and military fields .
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特种光纤已广泛应用于光纤通信、光纤传感、医学、材料加工和军事科技等领域。
Special Optical Fibers are widely used in such fields as optical fiber communications , sensing , physic , material process and military technoloty .
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不截止的单模特性、可控的模场面积、灵活的色散特性、高非线性等,在特种光纤、光电子器件等方面将具有广阔的应用前景,是光纤技术发展的一个新方向。
PCFs are a new developing direction of the optical fiber technology and they would have good application prospects in the special fibers and photonic & electronic devices .
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随着光纤通信技术和小型固体激光器的不断发展,掺杂稀土元素的特种光纤成为人们研究的热点。
Along with the development of optical communication technology and solid-state laser miniaturization there is increasing interest in the field of special fibers doped with some rare-earth element ( s ) .
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针对目前光纤传感所采用的特种光纤的成本高且制作工艺复杂,提出一种以标准单模光纤为光纤传感的光纤传感系统。
At present , the special fiber as optic fiber sensor is expensive and the technique is complicated , then a quasi-distribution optic fiber sensor system based on general optic fibers is presented .
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经过实验测试,光纤几何参数检测系统可以准实时的测量D型光纤的侧面抛磨深度,同时可以对特种光纤端面几何参数准确测量,测量精度满足实验要求。
Through experimental tests , fiber geometry detection system can measure the length of D type fiber in-line , and measure Special fiber end geometry correctly , accuracy to meet the test requirements .
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介绍了一种以标准多模光纤(50μm/125μm)代替高掺锗的特种光纤作为传感光纤的分布式光纤温度传感器系统。
A distributed temperature sensor based on the standard multimode optical fiber ( 50 μ m / 125 μ m ) instead of high doped germanium special optical fiber is presented in the paper .
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磁光非线性光纤是一类具有高磁光效应和光纤非线性效应的特种光纤,在磁场传感、光通信与光信息处理领域已具有广泛应用前景。
Magneto-optical nonlinear fibers , as a class of special fibers , possess high magneto-optical effects and nonlinear effects with wide application prospects in magnetic field sensing , optical communication and optical information processing field .
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机床数控化改造可行性分析及其技术途径本文较全面地介绍了用于光纤传感器的各种光纤,开发传感器用特种光纤的主要技术途径,制作工艺及传感特性。
Feasibility analysis on machine tool retrofit with CNC system and the technological process Optical fibers for sensors are discussed , and the approaches , fabrication methods and sensing characteristics of the fibers are detailed in this paper .
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对双椭圆芯的光纤端面的几何参数进行了测量,特种光纤的几何参数包括包层的直径和圆心位置、空气孔的直径和圆心位置、两个椭圆纤芯的长轴和短轴、中心坐标。
The system also measure two ellipse-core fiber geometric data , and the geometric data contain Cladding diameter and Center position , air-hole diameter and center position , long axis and short axis of elliptical core , the center coordinates .
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由于光纤传感技术和集成光学的飞速发展,许多新型特种光纤开始涌现,这些特种光纤被广泛地应用于制作高集成度光纤器件和高灵敏度的光纤传感器。
With the rapid development of fiber optic sensor technology and integrated optics , many new types special optical fibers are starting to emerge , and these special optical fibers are widely used in producing high integrated optical fiber devices and high sensitive optical fiber sensors .
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光器件用选择截止特种单模光纤的开发
Exploitation of Select Cut-Off Specialty Single Mode Fibers for Optical Devices
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本文研究了直接耦合式特种石英光纤束低温辐射测温仪的理论和设计,实现了低至120℃的温度测量。
The theory and the design of the low temperature radiation thermometer with a special quartz optical fiber bundle in direct coupling mode are studied in this paper . The temperature measurement as low as 120 ℃ has been realized .
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通过承载性能实验,测试了石英光纤、塑料光纤和特种液芯光纤的承载性能。
The load performance of quartz optical fiber , plastic optical fiber and special liquid core optical fiber was tested .
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对自制特种液芯光纤进行了几何参数(直径)的检测,提出了一种基干数字图像处理的高效、实用的分析方法来测量光纤的直径。
The geometrical parameter ( diameter ) of a self-made special liquid core optical fiber was measured with an efficient and practical method which was based on digital image processing .