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1)  Break Away Support Structure
剥离性支撑
2)  Break away support material
剥离性支撑材料
3)  peeling performance
剥离性能
1.
Effect of fatigue on peeling performances of calendered flexible composites reinforced with weaving fabrics;
疲劳对机织压延类柔性复合材料剥离性能的影响
2.
Conclusion is made that the yarn counts, fabric density and PVC film thickness affect the tearing and peeling performances.
对机织物增强压延柔性复合材料进行撕裂、剥离性能测试分析,得出基布的纱线线密度、织物密度以及涂层厚度与撕裂强力、剥离强力之间的关系,并对经纬向撕裂强力和剥离强力的关系进行初步研究。
4)  strippability
剥离性
1.
Several methods to improve the strippability of buffer layer and the low temperature perform ance of premises fiber optic cable are com- pared.
简要归纳了紧套光纤的主要技术要求 ,对比介绍了改善紧套光纤缓冲层剥离性以及室内光缆低温性能的几种方法。
2.
Several methods to improve the strippability of buffer layers and low temperature performance of optical fiber cables are compared.
本文简要总结了紧套光纤的主要技术要求,对比介绍了改善紧套光纤缓冲层剥离性以及光缆低温性能的几种方法。
5)  flexible supporting
柔性支撑
1.
According to the design requirements of the mirror,the flexible supporting structure was designed,then the finite element analysis software was used to mesh and submit the operator.
为了满足反射镜较高的面形精度要求,提出了一种基于有限元分析的柔性支撑结构。
2.
In order to meet the requirements of the integrated precision of the mirror segment used for space camera,selec- tion of the materials of flexible supporting structure is introduced,and the design method of lightweight structure and the flexi- ble supporting structure of the mirror is proposed,engineering analysis and optimization process are done by means of finite ele- ment method(FEM).
从满足空间光学遥感器反射镜在复杂工况下综合面形误差要求的角度出发,介绍了长条型反射镜柔性支撑结构材料的选择,讨论了反射镜轻量化及柔性支撑结构的设计方法,采用有限元法进行了工程分析及多次迭代优化,设计出了一种在不同重力方向下引入面形误差变化量RMS值小于λ/40(λ=632。
6)  elastic supporting
弹性支撑
1.
FEM simulation of cracked gear body under elastic supporting condition;
弹性支撑条件下裂纹齿轮体有限元模拟与仿真
2.
In the elastic supporting condition, considering the influence of the elastic plate on the meshing tooth response, the dynamic model of gear supporting system and the response analytic model of meshing.
结合齿轮的实际工作状况,建立了齿轮结构的弹性体动力学模型,进行了弹性动力学分析,得出了齿轮的弹性固有特性;考虑了弹性支撑轴对齿轮体振动的影响,将其处理为弹性支撑,推导了弹性支撑弹簧刚度的表达式,并在弹性边界条件下,考虑了弹性圆盘对啮合齿响应的影响,建立了齿轮支撑系统的动力模型和轮齿响应计算模型,研究了齿轮支撑系统的固有特性,并与实验结果进行了对比验证;求解了啮合齿的动力学响应,并进行了模拟仿真。
补充资料:连续性与非连续性(见间断性与不间断性)


连续性与非连续性(见间断性与不间断性)
continuity and discontinuity

11an父ux泊g四f“山。麻以角g、.连续性与非连续性(c。nt,n琳t:nuity一)_见间断性与不间断性。and diseo红ti-
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条