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1)  the lest cable waste
损耗极限
2)  confinement loss
限制损耗
1.
Analysis of confinement loss in microstructured optical fibers with elliptical air holes;
椭圆空气孔微结构光纤限制损耗的分析
2.
In this paper,foundational mode filed,birefringence,dispersion and confinement loss ofphotonic crystal fiber which is designed by myself are carried on the numerical computation use multipole method.
对高双折射光子晶体光纤的特性进行了分析,用多极法对自行设计的高双折射光子晶体光纤的基模模场、双折射、色散、限制损耗等特性进行了数值模拟计算。
3.
The mode cutoff,confinement loss,modal radius,and numerical aperture of photonic crystal fiber(PCF) with high birefringence were analyzed by using full-vector finite difference frequency domain(FDFD) method.
数值模拟结果表明,通过设置合适的结构参量,可使这种高双折射光子晶体光纤在保持模式双折射为10-3量级的前提下,能够在600~1800 nm波长范围内保持单模传输,并且限制损耗可低于10-4dB/m量级,同时还可以获得较大的数值孔径,因而聚光能力增强。
3)  electrode wastage
电极损耗
1.
The Analysis and Prevent Measures Influenced on Electrode Wastage in ElementElectron Discharge Machining
电火花加工中影响电极损耗的因素分析及预防措施
2.
The electrode structure was designed and divided for the purpose of eliminating the effects of electrode wastage on the processing dimensional accuracy,and then for manufacturing precision injection mould.
在分析手表壳结构和工艺特点的基础上,叙述了表壳电极的拆分方法,阐述了如何根据产品结构拆分电极以及采取怎样的电极结构可以消除电极损耗对加工尺寸精度的影响,如何保证高效率、高精密地生产出高质量的手表壳模具。
4)  electrode wear
电极损耗
1.
In 3D scanning process of micro electro discharge machining(micro EDM),the machining efficiency and geometrical tolerance are difficult to be guaranteed due to the serious electrode wear.
进行微细电火花三维扫描加工时,由于电极损耗相对严重,导致形位公差难以保证和加工效率较低。
2.
From the electrode wearing status,it was found that there is also .
通过对电极损耗情况的观察 ,发现电极损耗特性也有一临界点 ,这一点与普通电火花加工相
5)  electrode loss
电极损耗
1.
The factors that affecting the electrode loss in EDM are analyzed from the aspects of absorption effect,polarity effect and reasonable match of electrical parameters.
从吸附效应、极性效应以及电参数的合理匹配等方面分析了影响电极损耗的因素,提出了降低电极损耗的措施 ,对提高电火花型腔加工质量、实现“高效低损耗”加工具有一定意
2.
The method of automatically measuring and compensating the electrode loss that occurring in the EDM machining was introduced.
介绍了对电火花成型加工中产生的电极损耗进行自动测量及自动补偿的方法。
3.
Electrode loss,which occurs during the electrospark moulding process can be automatically measured and compensated.
介绍了对电火花成形加工中产生的电极损耗进行自动测量及自动补偿的方法。
6)  plate dissipation
板(极损)耗
补充资料:介质损耗角正切试验(见电容率与损耗因数试验)


介质损耗角正切试验(见电容率与损耗因数试验)
dielectric loss tangent test

)!eZh.sunhooJ一002匕engq一e sh一yon介质损耗角正切试验(dieleetri。1055 tangenttest)见电容率与损耗因数试验。
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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