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1)  flat bending pin
平面弯销
2)  uniplanar bending
平面拐弯
1.
Theoretics confirm on the feasible program of uniplanar bending with the ribbon conveyor,settltment problem of over-the-top action and drop out coa
理论确定煤矿井下平面拐弯皮带机的可行性,解决拐弯引起的掉货翻带等难题,突破了井下带式输送机不能平面拐弯的界线,使用效果良好。
3)  horizontal curves
平面转弯
1.
The calculation of radius and restrictive conditions of belt conveyor with horizontal curves is intrduced.
介绍了平面转弯带式输送机转弯半径的限制条件及转弯半径的计算方法。
2.
Using belt conveyor with horizontal curves to realize natural turn will be more economical, dependable and efficient.
在平面转弯分析过程中,通过对现有技术措施理论分析,建立了新的胶带受力模型,并对此模型进行了力学推导,得出了静力平衡关系式,进而解决了转弯曲率半径的计算问题;讨论了转弯处托辊组的结构及布置原则,确定了运输工况和用户要求不同的情况较优布置方案的原则。
4)  plane swerve
平面转弯
1.
Reserching about driving dispose style of plane swerve flexable trap of transporte;
平面转弯可伸缩皮带输送机驱动布置合理选择
2.
Introduce about driving dispose style on big power,long distance ,plane swerve flexable trap transporter, analyses whether or not adoption friction driving, offering reference value for design on sameness transporter .
介绍大功率、长运距、平面转弯可伸缩带式输送机上,合理选择驱动的布置形式,对于是否采用线摩擦多点驱动进行了分析,为同类带式输送机设计提供参考。
5)  plane bending
平面弯曲
1.
This paper chiefly discusses the problems of bending in mechanics of materials,including the build in differential equation of the deflection curve, the meaning of constant of integration in deflection curve and plane bending of ansymmetrical beam.
对材料力学中弯曲变形有关微分方程的建立,微分方程中积分常数的力学意义及非对称截面梁的平面弯曲等问题,给出一个完整的、确定的解释,并对有关概念给出明确的定义。
2.
Based on the extended homogeneous capacity precision integration method,a novel method was presented for solving plane bending problems of elastic arches with arbitrary profile.
基于齐次扩容精细积分法,提出了求解复杂载荷作用下任意外形弹性拱平面弯曲的一种新方法。
3.
This article embarks on a concrete question,elaborates the essential distinguishes between oblique beding and plane bending.
从一个具体的问题出发,论述了斜弯曲与平面弯曲的本质区别,最后强调指出,斜弯曲梁的强度条件即正应力强度条件,忽略了切应力对强度的影响,举例验证了强度条件能满足工程中的精度要求。
6)  planar bending
平面弯曲
1.
Several shape memory alloy(SMA) wires are embedded in liquid rubber at room temperature to form planar bending and spacial bending SMA actuators(SMAAs).
室温时将多根形状记忆合金丝嵌入液态橡胶中固化成弹性棒,实现平面弯曲运动且响应快速。
2.
The nonlinearity between SMA wire s resistance and temperature makes displacement control of planar bending ESMAAs inaccurate.
SMA电阻与温度存在严重的非线性,导致平面弯曲型ESMAA位置控制精度较低。
3.
To overcome low response speed and low control precision in the existing planar bending ESMAAs, the structures of actuators were improved.
现有平面弯曲ESMAA内嵌单丝,冷却过程不可控,响应速度慢;由于SMA电阻与温度的非线性关系,基于SMA丝电阻反馈实施电机位置控制时,控制精度较低。
补充资料:燔销
1.烧毁。
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