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1)  chain flexibility
链的柔性
2)  flexible hinge
柔性铰链
1.
Computer aided designing system for single axial symmetric flexible hinge;
单轴对称柔性铰链计算机辅助设计系统
2.
Analysis on magnification ability and loading capacity of displacement magnification mechanism of flexible hinge;
柔性铰链位移放大机构放大能力和负载能力分析
3.
Design and performance analysis on flexible hinged magnifying mechanism applied to piezoelectric piling-up pump;
应用于压电叠堆泵的柔性铰链放大机构的设计和性能分析
3)  flexible chain
柔性链
1.
Preparation of polyimide with flexible chains in the main chain and the groping application in fabric;
主链含柔性链的聚酰亚胺的制备及其在纺织品中的探索性应用
4)  flexible joint
柔性铰链
1.
Adopting PZT as the micro-displacement driver and a kind of flexible joint as the guiding device,it compensates moving position of ball feed machine tools automatically and realizes the second precise orientation.
此机构采用压电陶瓷作为微位移驱动器,柔性铰链为导向机构,对丝杠螺母传动的精密机床工作台的运动位置进行自动补偿,实现了超精密定位。
2.
Adopting the actuator as the micro-displacement driver and a flexible joint as the guiding device, this mechanism compensates the moving position of the traditional lead-screw driven of working table machine tools automatically and realizes the secondary precise (positioning).
设计了一种压电式微位移补偿机构,采用压电陶瓷作为微位移驱动器,柔性铰链为导向机构,对传统电机驱动的丝杠螺母进给工作台运动位置进行自动补偿,实现了工作台二次精密定位,提高工作台的定位精度。
3.
A kind of micro-positioning stage driven by piezoelectric actuator and guided by flexible joint is researched and designed for improving the precision of machining tools.
为了提高机床的定位精度,研究、设计了一种以柔性铰链为导向元件、压电陶瓷为驱动器的微定位工作台。
5)  long flexible chain
长柔性链
1.
Polyimides having long flexible chains in the main chain were prepared by the condensation of α,ω di(4 aminophenoxy)alkane and hexafluoroisopropylidene bis(3,4 phthalic anhydride) followed by a chemical imidization.
以α,ω二(4氨基苯氧基)n烷与六氟叉丙基二(3,4邻苯二甲酸酐)缩聚并经化学亚胺化合成了主链含长柔性链的聚酰亚胺。
6)  flexure hinges
柔性铰链
1.
Design of micro-displacement amplifier based on flexure hinges
基于柔性铰链的微位移放大机构设计
2.
This paper aims at three typical flexure hinges, and analyzes the nonlinearity of the flexure hinges.
以三种常见的柔性铰链作为研究对象,对柔性铰链进行非线性分析。
3.
The compliance equations for double-axis elliptical flexure hinges are presented utilizing matrix theory, energy method, Castigliano’s displacement theorem and calculus knowledge, the analytical model predictions were confirmed by finite element analysis.
利用矩阵论、能量法、卡氏第二定理和微积分的知识推导出了双轴椭圆柔性铰链设计计算公式,并用有限元分析方法对所推导的公式进行了验证。
补充资料:高分子链柔性
分子式:
CAS号:

性质:高分子链能够改变其构象的性质。可分为静态柔(顺)性和动态柔(顺)性两个方面。静态柔(顺)性,又称平衡态柔(顺)性,是指高分子链处于较稳定状态的蜷曲程度。在一个高分子链中,第一个σ键都可能取反式、左旁式或右旁式三种较稳定的构象状态,三种构象的能量越接近,链的平衡柔(顺)性就越好。动态柔(顺)性又称动力学柔(顺)性,是指高分子链从一种平衡态构象转变成另一平衡态构象的容易程度。构象转变越容易,转变速率越快,则高分子链的动态柔(顺)性和静态柔(顺)性的综合效应。对于具体的高分子链,两者有时一致,有时不一致。

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