High Performance 40KHZ 100W P4 Ultrasonic Piezoelctric Piezo Ceramic Cleaning Oscillator For Dishwasher
  • Item No.ARS-QXHNQ40100
    MOQ1 Piece / Pieces
  • Size 20.00 x 15.00 x 15.00 cm
    Weight2.00 kg
    Model Number
    ARS-QXHNQ40100
    description

    High Performance 40KHZ 100W P4 Ultrasonic Piezoelctric Piezo Ceramic Cleaning Oscillator For Dishwasher

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    Ultrasonic transducers are widely used. They are divided into industry, agriculture, transportation, life, medical and military according to the applied industry. According to the functions realized, it is divided into ultrasonic processing, ultrasonic cleaning, ultrasonic detection, detection, monitoring, telemetry, remote control, etc.; according to the working environment, it is divided into liquid, gas, biological, etc.; according to the nature, it is divided into power ultrasonic, ultrasonic detection, ultrasonic imaging, etc. .

    Ultrasonic transducers are piezoelectric ceramics that resonate at ultrasonic frequencies and convert electrical signals into mechanical vibrations by the piezoelectric effect of the material. Medical ultrasonic transducers (ultrasonic probes) operate in much the same way, and typically contain an electrical energy storage element and a mechanical vibration system inside. When the transducer is used as a transmitter, the electrical oscillating signal sent from the excitation source will cause a change in the electric or magnetic field in the electrical energy storage element of the transducer, which changes the mechanical vibration system of the transducer through some effect. A driving force is generated to cause it to vibrate, thereby propelling the medium in contact with the mechanical vibration system of the transducer to vibrate and radiate sound waves into the medium. The process of receiving sound waves is exactly the opposite. External sound waves act on the vibrating surface of the transducer, causing the mechanical vibration system of the transducer to vibrate, causing an electric field in the energy storage element of the transducer or by some physical effect. The magnetic field changes accordingly, causing the electrical output of the transducer to produce a voltage and current corresponding to the acoustic signal.

     

    The frequency of the transducer is inversely proportional to the wavelength, and the size of the wavelength is related to the diameter of the cavities (strictly speaking, it is caused by low frequency and longer nucleation time), and the diameter of the cavities is related to its explosion pressure. Generally, the higher the frequency, the smaller the wavelength, the smaller the diameter of the cavities, and the lower the explosion pressure, but the higher the density of the cavities and the better the permeability.
    Based on the above principles:
    Low frequency (17 ~ 23KHz): When the dirt to be cleaned is heavy or difficult to clean, and the impact of the explosion on the surface of the cleaned material is not great, a low frequency transducer should be selected. Commonly used industries are: magnetic industry, auto maintenance industry, textile industry, etc. Note that this series is relatively noisy, so it is best to do sound insulation treatment.
     Intermediate frequency (25 ~ 28KHz): If the dirt to be cleaned is slightly heavy or difficult to clean, and the impact of the explosion on the surface of the cleaned material is not great, you should choose an intermediate frequency transducer. This series of industries is the most widely used. The common ones are: machining industry, electroplating industry, catering industry, etc.
    Medium and high frequency (33 ~ 60KHz): If the dirt to be cleaned is light, easy to clean, or if there is a requirement for the impact of the explosion on the surface of the cleaned object, a medium to high frequency transducer should be selected. Commonly used industries are: precision parts, glass glasses, electronic components, circuit boards, etc .;
    High frequency (68-200KHz): The dirt to be cleaned is very light and easy to clean. When it is required to prevent any damage to the surface of the cleaned object from the impact of explosion, a high frequency series transducer should be selected. Commonly used industries are: semiconductors, special high-precision parts, etc.

    Applications In Research
    One of the important areas of scientific study in which ultrasonics has had an enormous impact is cavitation. When water is boiled, bubbles form at the bottom of the container, rise in the water, and then collapse, leading to the sound of the boiling water. The boiling process and the resulting sounds have intrigued people since they were first observed, and they were the object of considerable research and calculation by the British physicists Osborne Reynolds and Lord Rayleigh, who applied the term cavitation to the process of formation of bubbles. Because an ultrasonic wave can be used carefully to control cavitation, ultrasound has been a useful tool in the investigation of the process. The study of cavitation has also provided important information on intermolecular forces.
    Research is being carried out on aspects of the cavitation process and its applications. A contemporary subject of research involves emission of light as the cavity produced by a high-intensity ultrasonic wave collapses. This effect, called sonoluminescence, can create instantaneous temperatures hotter than the surface of the Sun.

    The speed of propagation of an ultrasonic wave is strongly dependent on the viscosity of the medium. This property can be a useful tool in investigating the viscosity of materials. Because the various parts of a living cell are distinguished by differing viscosities, acoustical microscopy can make use of this property of cells to “see” into living cells, as will be discussed below in Medical applications.

     

    1.High efficiency : high quality mechine, high electro-acoustic conversion efficiency at the resonant frequencies.
    2.Large amplitude : computer optimized structure, high vibration ratio , large amplitude front cover.
    3.High power: In the influence of pre-stressed screw, piezoelectric ceramic energy can achieve to the most.
    4.Heat-resistance: small resonant impedance, wide temperature range.

     

    Specification List 
    ModelFrequency  Capacitance   Size Power
    (KHz)(pF) Radiation head*Height (mm)(W)
    ARS-4QXHNQ-17K60W17±0.54800±10%78*9060w
    ARS-4QXHNQ-20K50W20±0.54000±10%57*9450w
    ARS-8QXHNQ-20K70W20±0.53250±10%78*9470w
    ARS-4QXHNQ-20K100W20±0.57600±10%67*92100w
    ARS-8QXHNQ-20K100W20±0.54500±10%67*92100w
    ARS-8QXHNQ-20K120W20±0.54650±10%79*94120w
    ARS-4QXHNQ-25K60W25±0.84800±10%59*8060w
    ARS-4QXHNQ-25K100W25±0.57600±10%67*76100w
    ARS-4QXHNQ-28K50WN28 ±0.54000±10%45*7950w
    ARS-4QXHNQ-28K60W                28±0.54800±10%59*6860w
    ARS-4QXHNQ-28K100W28±0.57600±10%67*68100w
    ARS-8QXHNQ-28K100W28±0.55800±10%67*68100w
    ARS-4QXHNQ-28K120W28±0.59600±10%67*68120w
    ARS-8QXHNQ-28K120W28±0.56500±10%67*68120w
    ARS-4QXHNQ-33K60W33±0.54800±10%48*6260w
    ARS-8QXHNQ-33K60W33±0.53750±10%48*6260w
    ARS-4QXHNQ-35K60W35±0.54800±10%45*5560w
    ARS-4QXHNQ-40K30W40±0.82400±10%30*5030w
    ARS-4QXHNQ-40K50W40 ±1.04000±10%45*5550w
    ARS-4QXHNQ-40K50WN40 ±1.04000±10%45*5350w
    ARS-8QXHNQ-40K50WN40 ±1.03250±10%45*5350w
    ARS-4QXHNQ-40K60W40±0.54800±10%48*5260w
    ARS-8QXHNQ-40K60WN40±0.53850±10%48*5060w
    ARS-4QXHNQ-40K100W40±0.57600±10%55*53100w

     

     

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    Why choose us and About us

     

    Certification

     

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    Shipping.JPG

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    FAQ

     

    High Performance 40KHZ 100W P4 Ultrasonic Piezoelctric Piezo Ceramic Cleaning Oscillator For Dishwasher

     

     

     

     

     

     

     

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