1)  angle of eccentricity
偏置角度
2)  offset
偏置
1.
Kinematic and dynamic analysis of reciprocating offset slidercrank mechanism.;
往复泵偏置式曲柄滑块机构的运动和动力分析
2.
Optimal Design of the Double Offset Torsion Bar Springs Mechanism;
双联偏置扭杆弹簧助力机构的优化设计
3.
Some problems about the offset of contour lines which consist of sequential lines and direction complies with left hand rule are studied.
对连续线段组成的、方向符合左手定则的平面轮廓线的偏置问题进行了研究。
3)  bias
偏置
1.
Effects of Bias at Different Dose Rates on Ionizing Radiation Response of Bipolar Transistors;
不同剂量率下偏置对双极晶体管电离辐照效应的影响
2.
The effects of rnagnetizations and anisotropy flelds of magnetoreslstive ele-ment and soft-adjacent-layer (SAL ) film on the bias of SAL biased magnetoresistive head are in-vestigaled applying the theory of micromagnetics.
计算了SAL偏置型磁电阻头的磁电阻元件(MR)和SAL的磁化强度和磁各向异性场对偏置的影响,为SAL偏置型磁电阻头的设计和制造提供了理论依据。
3.
This paper proposed a new bias-generator for high-speed serial data link based upon USB 2.
提出了一种符合USB高速模式的偏置产生方法,针对常规偏置设计方法特点,将偏置电路融合于接口电路本身。
4)  bias voltage
偏置电压
1.
Experimental Study on Influence of Interference and Bias Voltage on Detective Signal of Spark Plug;
干扰及偏置电压对火花塞检测信号影响的试验研究
2.
The influences of the bias voltage and hydrostatic pressure on FE/AFE and AFE/PE phase transition and transition temperature of these PLZST ceramics obtained by measuring the relation between the relative dielectric constants and loss and various parameters of samples.
通过测定样品的相对介电常数及损耗与各种参量的关系,得到了等静压力及偏置电压对反铁电体铁电/反铁电相变及反铁电/顺电(PE)相变温度影响的规律。
3.
The bias voltage Vp was discussed.
直流偏置电压V_p可消除系统倍频振动,为后续检测电路设计提供便利。
5)  eccentric valve
偏置阀
1.
Development and application of eccentric valve pump for viscous oil recovery.;
偏置阀式稠油抽油泵的研制与应用
6)  MnCO_3
内偏置场
1.
The effect of doping MnCO_3 in BaTiO_3-based materials was studied in this paper.
研究了MnCO_3掺杂对BaTiO_3基瓷料的改性作用,MnCO_3可以降低烧结温度,Mn~(3+),Mn~(2+)取代部分Ti~(4+),产生的内偏置场对自发极化有稳定作用,使系统的居里温度向高温方向略微移动,适量添加MnCO_3可以提高瓷体密度,损耗减小。
参考词条
补充资料:偏置屈服应力
分子式:
CAS号:

性质:应力-应变曲线偏离线性达到规定应变百分数的应力。也有称作残余变形屈服应力。该规定的变形量是人们事先商定的(偏置)。这种场合往往是由于该材料的应力、应变曲线不出现明显的屈服点,故作此规定。以统一衡量材料的力学性能,便于互相比较。当然,规定的该值不应超过该材料的拉伸强度值。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。