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Ultrasonic plastic Welding Transducer
The ultrasonic energy transducer, working in the same way as the
cleaning transducer, also counteracts the expansion stress of the
piezoelectric ceramic by prestressing force to achieve the large
amplitude ultrasonic vibration. Because the welding transducer
requires very high instantaneous power, it is highly demanding for
materials and technology, and belongs to high-power acoustic wave
energy amplifier. It is usually combined with the ultrasonic horn
and the working head to make up the vibration system with high
power and large amplitude to complete the ultrasonic welding of the
materials such as plastic and metal.
Ultrasonic energy fusion transducer
Ultrasonic welding is the ultrasonic vibration produced by the
transducer, which produces high frequency friction and heat on the
surface of the contact gap of the welded material under the
pressure condition, so as to achieve the purpose of heat thawing.
The ultrasonic shaped transducer is a high-power ultrasonic
transducer which works in a gap or pulse. The power of the
transducer is usually calculated by instantaneous peak power.
Ultrasonic transducer is the core device that converts electrical
energy into mechanical energy (ultrasonic), the piezoelectric
ceramic chip adopts imported parts, and can give a strong and
stable output. It is made from American aluminum alloy and titanium
alloy. The frequency is 15 KHZ ~ 28 KHZ.
Product feature:
1. The piezoelectric ceramic chip adopts imported parts, and can
give a strong and stable output.
2. High efficiency, high mechanical quality factor, obtaining high
electric-acoustic conversion efficiency work at the resonance
frequency points.
3. Large amplitude: optimization design by computer , vibration
speed ratio is high .
4. Large power,Under the action of prestressed screw, the energy of
the piezoelectric ceramic to get maximum play;
5. Good heat resistance, small harmonic impedance, low calorific
value, using temperature range is wide.
Type | Full-length(mm) | Joint Bolt(mm) | Frequency(KHz) | Resonance Impedance(Ω) | Capacity(pF) | Input Power (W) |
ARS-HJHNQ152500 P8 | 153 | M20×1.5 | 15 | 15 | 13000 | 2500 |
ARS-HJHNQ152000 P8 | 167 | M20×1.5 | 15 | 10 | 9500 | 2000 |
ARS-HJHNQ151500 P4 | 171 | M18×1.5 | 15 | 12 | 12500 | 1500 |
ARS-HJHNQ151800 P4 | 118 | M20×1.5 | 20 | 15 | 15000 | 1800 |
ARS-HJHNQ202000 P8 | 128 | M18×1 | 20 | 10 | 11000 | 2000 |
ARS-HJHNQ202000 P8 | 124 | M18×1.5 | 20 | 12 | 10000 | 1500 |
ARS-HJHNQ20700 P8 | 112 | 1/2-20 UNF | 20 | 15 | 9000 | 700 |
ARS-HJHNQ20900 P8 | 133 | 1/2-20 UNF | 20 | 15 | 10000 | 900 |
ARS-HJHNQ20600 P8 | 121 | M18×1.5 | 20 | 15 | 6000 | 600 |
ARS-HJHNQ30500 P8 | 77 | M10×1.5 | 30 | 5 | 5500 | 500 |
ARS-HJHNQ28200 P4 | 92.1 | M10×1 | 28 | 20 | 3000 | 200 |
ARS-HJHNQ28100 P8 | 91 | M8×1 | 28 | 25 | 2200 | 100 |
ARS-HJHNQ28250 P8 | 94 | 1/2-20 UNF | 28 | 20 | 4000 | 250 |
ARS-HJHNQ202000 P8 | 128 | 1/2-20 UNF | 20 | 10 | 20000 | 2000 |
ARS-HJHNQ201500 P8 | 124 | 1/2-20 UNF | 20 | 10 | 16000 | 1500 |
ARS-HJHNQ201300 P8 | 128 | 1/2-20 UNF | 20 | 10 | 12500 | 1300 |
ARS-HJHNQ201500 P8 | 132 | 1/2-20 UNF | 20 | 10 | 11000 | 1500 |
ARS-HJHNQ20900 P8 | 123 | 1/2-20 UNF | 20 | 10 | 9500 | 900 |
ARS-HJHNQ152000 P4 | 171 | M18×1.5 | 15 | 12 | 10000 | 2000 |
ARS-HJHNQ35100 P8 | 71 | M8×1 | 35 | 25 | 2200 | 100 |
ARS-HJHNQ38100 P8 | 66 | M8×1.25 | 38 | 40 | 1200 | 100 |
ARS-HJHNQ38200 P4 | 65 | M8×1 | 38 | 14 | 3300 | 200 |