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1)  Fused-tapered zone
熔锥区
2)  fused-biconical
熔锥
3)  fused biconical taper
熔融拉锥
1.
Viscoelastic modeling and analysis of optical fibre coupler in process of fused biconical taper;
光纤耦合器熔融拉锥粘弹性建模与分析
2.
Through the discussion of the key processing parameters in the fused biconical taper process,firstly the paper pointed out that this process was highly nonlinear and multi variable coupled.
分析了熔融拉锥过程的关键工艺参数,指出该过程是一个高度非线性、多变量耦合作用的复杂过程。
3.
Through theoretical and experimental research, the viscoelastic mechanical model of optical fiber coupler in the process of fused biconical taper was established, with which, the numerical analysis under non-uniform temperature field was realized.
基于理论与实验研究,建立了光纤耦合器熔融拉锥过程的粘弹流变力学模型,并给出了光纤耦合器非均匀温度场条件下的流变过程数值分析,获得了拉锥速度、熔融温度等流变工艺参数对器件应力分布与器件性能的影响规律。
4)  fused taper
熔融拉锥
1.
The demodulation instrument is based on passive proportion demodulation method,which uses a fused taper component as the li.
解调仪基于无源比例解调原理,以熔融拉锥器件作为线性滤波器,采用锁相放大技术提取微弱信号,并利用单片机控制光纤Bragg光栅波长信息的采集、显示以及存储。
2.
Based on the improved fused taper technique,under the condition of slow change and a.
然后,在改进熔融拉锥技术的同时,保持慢变、绝热条件拉制出在80 mm长度范围内具有良好均匀性、半径为5μm的高质量微细光纤,在此基础上采用自缠绕法研制出半径仅为500μm,谐振效果明显加强的全光纤型微环谐振器,从而很好地解决了集成型微环谐振器较高的弯曲损耗和连接损耗问题。
3.
A portable and low-cost solution for FBG wavelength demodulation is proposed in this paper, which is based on passive proportion demodulation method with fused taper component as linear filter.
通过采用无源比例解调方法,以熔融拉锥器件作为线性滤波器,为光纤Bragg光栅的解调提供了一种便携式低成本解决方案。
5)  fiber taper
熔锥光纤
1.
Based on CO_2 laser fabrication of fused-fiber taper rig developed by E.
实验得到锥腰直径2~3μm左右的熔锥光纤,锥腰和过渡区的形状和尺寸都得到了很好的控制。
2.
A new melt-drawn fiber taper system using CO2 laser is developed to improve traditional fused biconical taper(FBT) technology.
试验结果表明利用该系统可精确控制熔锥光纤的形状,从而提高熔锥型器件的精度。
6)  fused-tapered
熔锥型
1.
It was shown experimentally the axial twisting of a fused-tapered fiber coupler without packed can cause the coupling ratio changing and the coupler loss and the working wavelength do not change significantly.
通过旋转装置对未封装的熔锥型光纤耦合器耦合区施加扭转作用,发现耦合比可以随扭转角度的变化而连续改变。
补充资料:锥间区
分子式:
CAS号:

性质:预混合型原子化器火焰结构中介于初级和次级燃烧区中间的区域。因初级和次级燃烧区呈锥形而得名。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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