不对称振幅(不对称度)
指同一谐振器上本应有相等振幅的对称位置处出现的振幅差异。轻微的振幅不对称可能由加工公差或谐振器内部材料性能的差异引起。显著的不对称通常是由指定谐振与邻近的不对称谐振之间的相互作用引起的。
对于任意一组对称位置,这些位置处的不对称度定义为:
\begin{align} \label{eq:11401a} \textsf{Asymmetry (%)} &= \left[ \frac{\textsf{Highest amplitude - Lowest amplitude}}{\textsf{Highest amplitude}} \right] 100 \end{align}
其中所有振幅均沿同一方向测量(例如通常沿轴向)。
如果对称位置处的所有振幅都相等(即最大振幅 = 最小振幅)——这通常是期望的状态——则不对称度 = 0%。最差的不对称情况出现在最小振幅 = 0 时,此时不对称度 = 100%。
谐振器上的多个位置都可能存在不对称(例如端面的角部、槽间腹板上方等)。谐振器的总体不对称度取所有这些不对称度中的最大值。
Asymmetric amplitude (asymmetry)
A difference in amplitude at symmetric locations on the same resonator where the amplitude would be expected to be equal. Slight amplitude asymmetry may be caused by machining tolerances or variations in material properties within the resonator. Significant asymmetry is usually caused by interaction between the specified resonance and a close asymmetric resonance.
For any set of symmetric locations, the asymmetry at those locations is defined as:
\begin{align} \label{eq:11401a} \textsf{Asymmetry (%)} &= \left[ \frac{\textsf{Highest amplitude - Lowest amplitude}}{\textsf{Highest amplitude}} \right] 100 \end{align}
where all amplitudes are measured in the same direction (e.g., generally axial).
If all amplitudes at the symmetric locations are equal (i.e., highest amplitude = lowest amplitude), which is generally the desired condition, then the asymmetry = 0%. The worst asymmetry occurs when the lowest amplitude = 0 for which the asymmetry = 100%.
Asymmetry may exist at several locations on the resonator (e.g., at the corners of the face, over the slot webs, etc.). The overall resonator asymmetry is the highest asymmetry of all of these asymmetries.
Also see —
Amplitude droop
Amplitude rise
Uniformity