deflection sensitivity的意思|示意

美 / dɪˈflekʃən ˌsensɪˈtɪvɪti: / 英 / dɪˈflɛkʃən ˌsɛnsɪˈtɪvɪti /

偏转灵敏度


deflection sensitivity的用法详解

Deflection sensitivity is a measure of the degree to which a transducer can detect a change in its input. It is usually expressed as the ratio between the output signal and the input force or displacement.

The deflection sensitivity of a transducer is determined by the shape and material of its sensing element. For example, a stiff cantilever beam is sensitive to displacement, while a flexible diaphragm is sensitive to pressure.

The deflection sensitivity of a transducer can be measured in a variety of ways, including a pendulum test, a shear test, or a deflection test. Generally speaking, a higher deflection sensitivity indicates a higher level of accuracy.

In practice, deflection sensitivity is important in many industries, such as automotive and aerospace, where accuracy is critical. It is also essential in medical and laboratory applications, where precise measurements are needed.

The concept of deflection sensitivity is also important in physics and engineering, where it is used to measure the reaction of materials to pressure, temperature, acceleration, vibration, and other physical forces.

In conclusion, deflection sensitivity is an important concept in many areas of science and engineering, where accuracy and precision are key. It measures the degree to which a transducer can detect a change in its input, and is usually expressed as a ratio between the output signal and the input force or displacement.

deflection sensitivity相关短语

1、 magnetic deflection sensitivity 磁偏转灵敏度

2、 electromagnetic deflection sensitivity 电磁偏转灵敏度

3、 angular deflection sensitivity 角偏移灵敏度,角偏转灵敏度

4、 electrostatic deflection sensitivity 静电偏转灵敏度

5、 electric clipper deflection sensitivity 电偏转灵敏度

6、 electrostatic convergence deflection sensitivity 静电偏转灵敏度

7、 deflection n sensitivity 偏转灵敏度

8、 sensitivity deflection 灵敏度偏转,偏转灵敏度

9、 sensitivity of deflection 偏转灵敏度

deflection sensitivity相关例句

It takes into account the influences of geometrical nonlinearities due to large, deflection and material nonlinearities due to plasticity, strain-hardening and Strain-rate Sensitivity.

分析中考虑了大位移引起的几何非线性;塑性、应变强化及应变率效应引起的材料非线性的影响。

Verification works on vertical deflection sensitivity and horizontal sweep speed of digital oscilloscope are summarized.

总结了数字示波器垂直偏转灵敏度和水平扫描速度的检定工作。

We present an analytical solution for the total stress and mechanical sensitivity of highly boron doped si diaphragm with small deflection considering effect to result from the residual stress.

给出了小挠度下,在外界载荷作用下总应力表达式和薄膜机械灵敏度表达式,并分析了残余应力对二者的影响。