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180kg Load 6000N Electromagnetic Vibration Testing Systems For Third Party Inspection

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City:dongguan
Country/Region:china
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180kg Load 6000N Electromagnetic Vibration Testing Systems For Third Party Inspection

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Brand Name :ASLI
Model Number :ES-6
Certification :CE, ISO, SGS
Place of Origin :CHINA
MOQ :1 set
Price :negotiable
Payment Terms :T/T, L/C, Western Union
Supply Ability :100 sets per quarter
Delivery Time :30~40 days
Packaging Details :strongly wooden case
vibration force :6000N
Vibration direction :3 Axis
moving coil weight :6.5kg
displacement :25mm
max. acceleration :100g
application :Small Component
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third party inspection electromagnetic vibration testing systems

What is high-frequency vibration testing?

High-frequency, high-performance hydraulic vibration test systems for vertical, horizontal, multi-axis, rotary, and acoustic testing applications. Precision engineered slip tables, actuators, head expanders, hydraulic power supplies, bearings, couplings, and torsional vibration tables.

Download document for storage -- click here ----→ES-10 mechanical vibration test system.pdf

third party inspection electromagnetic vibration testing systems

Technical Parameters:

Model

Rated Sine

Force (N)

Rated Random

Force (N)

Frequency

Range (Hz)

Rated Acceleration (m/s2) Rated Speed(m/s)

Rated displacement

(p-p)mm

Max. Loading (Kg) moving coil(Kg)

Dimension of

Moving coil(mm)

ES-3 3000 3000 3-3500 1000 1.6 25 100 3.5 Φ150
ES-3a 3000 3000 3-3500 400 1.6 40 120 9 Φ230
ES-6 6000 6000 3-3500 1000 1.6 25 180 6.5 Φ230
ES-6a 6000 6000 3-3500 1000 1.6 51 250 12 Φ230
ES-10 10000 10000 3-3000 1000 1.8 51 270 14 Φ240
ES-20 20000 20000 3-3000 1000 1.8 51 300 30 Φ320
ES-30 30000 30000 3-2800 1000 1.8 5l 450 40 Φ450
ES-40 40000 40000 3-2800 1000 1.8 51 500 50 Φ450
ES-50 50000 50000 3-2700 1000 1.8 51 750 50 Φ450

180kg Load 6000N Electromagnetic Vibration Testing Systems For Third Party Inspection

Features:

1. Rugged suspension system and linear motion guiding, strong carrying capacity, good guiding functions, high stability.
2. Load center airbag with high static stiffness and low dynamic stiffness, strong carrying capacity, perfect performance on amplitude variation.
3. High efficiency D class power switching, 3-sigma peak current, low power consumption and minimum harmonic distortion.
4. Quick self-diagnosis with safety interlock, high safety reliability.
5. Airbag shock isolation device for vibration platform without the need of additional. foundation, perfect reproduction of vibrational wave and reduction in vibration transmittance.
6. Horizontal and vertical expansion platforms for different applications.
7. Simple controller operation.

technical parameters of horizontal expander:

Model Bench Size (mm) Frequency Range (Hz) Weight of Moving Parts (kg)
LT0303 300×300×22
300×300×26
300×300×30
5-1000
5-1500
5-2000
6.6
7.8
9.0
LT0404 400×400×22
400×400×26
400×400×30
5-l000
5-1400
5-2000
11.2
13.2
16.0
LT0505 500×500×25
500×500×30
500×500×35
5-1000
5-1500
5-2000
19.3
23.1
27.0
LT0606 600×600×25
600×600×30
600×600×40
5-1000
5-1200
5-2000
27.5
33.0
45

180kg Load 6000N Electromagnetic Vibration Testing Systems For Third Party Inspection180kg Load 6000N Electromagnetic Vibration Testing Systems For Third Party Inspection180kg Load 6000N Electromagnetic Vibration Testing Systems For Third Party Inspection180kg Load 6000N Electromagnetic Vibration Testing Systems For Third Party Inspection

Working Principle of Vibration Shaker

The working principle of the electromagnetic vibration exciter is similar to a loudspeaker whereby electrical conductor is moved by the action of electromagnetic force in the magnetic field. The force to accelerate the moving part is generated by the balance between driving current and magnetic flux. Therefore, by controlling the driving current, one can control the vibration generator.

The maximum acceleration level of the electromagnetic vibration exciter is determined by the maximum current and the loading. At low frequency, displacement of moving part is restricted such that the acceleration will not reach high level. The resonance frequency of the moving element is set higher than the upper limit of the frequency range.

The performance of vibration generator can be reflected by the chart that displays the maximum acceleration under different frequencies. By using a log-log plot, the restriction of displacement can be expressed by a straight line with slope of 6 dB/octave.

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