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■The basic principle is the amplitude of the vibration of a sine function with time, usually with an acceleration; displacement; speed, these quantities to represent the vibration is horizontal.
■Parameters of sine curve
.Period=1/f(f: Frequency)
.Single Amplitude (0-p)
.Double Amplitude (p-p)=Single Amplitude (0-p)×2
.Root-mean-square Value (rms)=Single Amplitude (0-p)×1/√2
.Average Value (Ave)=Single Amplitude (0-p)×2/π
.The basic formula y(t)=A sin a ω t (ω: Angular Frequency )
■Sine sweep test
Some law continuously changing frequency of the excitation test product, aimed at the assessment of the frequency range to find cause-specific resonance frequency.
■Main parameter
●Frequency[Hz] ●Test Time[t]
●Acceleration[m/s²] ●Sweep Rate(oct/min), [Hz/min]
■Fixed frequency test
Specifies an arbitrary frequency tested. Goal is endurance and strength of the resonance point detection and assessment of a particular specification under(such as IEC, GB/T2423, MIL-STD, GJB150 and other tests on the sample frequency sweep, resonance dwell test)
■Electronic and electrical products are subjected to vibration during transportation is the most random vibration properties, random vibration frequency sinusoidal vibration than wide, and it is a continuous spectrum, it can also carry out vibration excitation on the products in all frequencies, the real clone reality.
■Main parameters
●Overall RMS Value (rms) [Grms]
●Power Spectral Density(PSD)[g²/Hz]
●Test Time[T]
■The impact and collision impact all belong to the category of shock pulse impact test is used to determine the main components, equipment and other products in the use and transportation process subjected to repeated(collision is repeated) and evaluate the applicability of packaging to protect the mechanical shock.
■The term
●The average energy of Power Spectral Density has the units of bandwidth, which describes the process in the vibration energy distribution in different frequency bands;
●Overall rms Value curve in its predetermined test frequency range (power spectrum) under the square root of the area, but do it with the peak sinusoidal vibration were compared, there id on relationship between them;
●Pre-Pulse, post-pulse, respectively, before and after the increase in the compensation pulse before and after the main pulse is the role of the velocity and displacement finally return to the zero position.
Measure name | Unit name | Unit abbreviation |
Length | Meter | M |
Mass | Kilogram | Kg |
Time | Second | S |
Velocity | Meter per second | m/s |
Acceleration | Meter per second square | m/s² |
Force | Newton | N |
Moment, Torque | Newton-meter | N. m |
Guidance
Relation | Equation for Estimation |
Acceleration a[m/s]=(2πf)□d/1000=2πfv | A[m/s] 0.0394df□※1 6.28fv ※1 |
Velocity v[m/s]=2πfd/1000=a/2πf | V[m/s] 0.00628fd 0.159a/f |
Didplacement d[mm]=1000a/(2πf)□=1000v/2πf | D[mm] 25.5a/f²□※2 159.2v/f |
※1 Divide the acceleration value
by 9.8when its unit is G
※1 2 Multiply the acceleration value
By 9.8 when is unit is G