Vibration Motor Selection According to Applications

Frequency, amplitude, operating torque, centrifugal force and acceleration are the technical values of the vibration motor. Depending on the applications, these technical data should be considered. Circular motion is obtained by using only one vibration motor and linear motion is obtained by using two (2).

Uygulamalar - ApplicationFrekans
Frequency
İvme
Acclerations
Genlik
Amplitude
Vibrasyon Doğrultusu
Vibration Direction
Besleme, Dozajlama - Feeding, Dosaging 1000-1500
2,0 - 3,5Büyük - BigDoğrusal - Linear
Eleme - Sieving1000-15003,0 - 4,0Büyük - BigDoğrusal - Linear
Filtrenin Temizlenmesi - Filter cleaning1500-30003,5 - 5,0Orta - MiddleDoğrusal - Linear
Silo içi boşaltım - Silo excretion1500-3000Malzemenin %20-%20 of metarialOrta - MiddleDairesel - Circular
Sıkıştırma - Pressing1500-60002,0 - 4,0Ufak - SmallDairesel/Doğrusal - Circular/Linear
Betonun sıkıştırılması - Concrete pressing3000-90000,8 - 1,15Çok Ufak - Too smallDairesel/Doğrusal - Circular/Linear
Test masası - Testing table3000-66000,5 - 5,0Ufak/Büyük - Small/BigDairesel/Doğrusal - Circular/Linear
In vibratory ducts, the mounting angle changes depending on the applications.
Açı - DegreeUygulamalar - Application
25 - 35Besleme, Yükleme, Ayıklama, Dozajlama - Feeding, Loading, Seperating, Dosaging
30 - 45Eleme, Sınıflandırma, Ayırma - Sieving, Classification, Separation
45 - 80Kurutma - Drying
In vibratory ducts, the mounting angle changes depending on the applications.
Vibrasyon Frekansı - Vibration FrequencyKanal Uzunluğu - Vessel Lenght
Salınım - Oscillation
3000 d/d (2 Kutuplu) - 3000 rpm (2 poles)Maksimum 3000 mm - Maximum 3000 mm0,5 - 2 mm
1500 d/d (4 Kutuplu) - 1500 rpm (4 poles)Maksimum 4800 mm - Maximum 4800 mm4 - 6 mm
1000 d/d (6 Kutuplu) - 1000 rpm (6 poles)Maksimum 6000 mm - Maximum 6000 mm6 -12 mm
750 d/d (8 Kutuplu) - 750 rpm (8 poles)Maksimum 6800 mm - Maximum 6800 mm10 - 16 mm

1. WORKING MOMENT

M = s x m
[ MOMENT (cmkg) = TOTAL oscillation (cm) x WEIGHT (kg) ]



2. TOTAL Emissions

s = 2 x amplitude
[ TOTAL oscillation (cm) = 2 x amplitude (cm) ]



3. CENTRAL FORCE

F = M x n² x 54.84 / 106
[ FORCE (N) = OPERATING MOMENT (cmkg) x REV2) / 18235]



4. CENTRAL FORCE

F = a (g) x m x 9.81
[ FORCE (N) = ACCELERATION (1g) x WEIGHT (kg) x 9.81 ]



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