The proper frequency and impedance adjust is indispensable for all ultrasonic devices. The frequency depends mainly on dimensions (e.g.: length of the sonotrode) and the impedance of the quality of material used, assembly, and coupling of the acoustic sets parts. Deviations indicate the need for fine tuning, cleaning, re-gripping or re-assembly.
Advantages and benefits
- • Practicality and ease of use. No need for ultrasonic expertise.
- • Allows the quality control of ultrasonic transducers reducing technical assistance.
- • Makes fast and accurate manufacturing of sonotrodes possible.
- • Affordable cost.
- • Reduces ultrasonic equipment maintenance costs because it allows preventive maintenance.
Usage guidelines
To operate, the TRZ Horn Analyzer requires only a power outlet of 127 or 220 VAC (50-60 Hz). After connected, simply connect the transducer to the test probe, select the type of transducer and order the measure. The result is shown on a display with backlight and high contrast. To repeat the test, simply press the "Start" button again.
Types of transducers and the equipment characteristics
The equipment has 27 pre-configured transducers, 09 of welding system, 16 of cleaning and 02 of dental scalers. Additional settings can be incorporated according to the customer's needs.
For the tuning of sonotrodes it is necessary to couple it with a transducer.
The TRZ Horn Analyzer is also suitable for the determining of the impedance of other piezoelectric devices such as sensors, accelerometers and actuators.
Features of the instrument for ranges from 5 to 100 kHz and from 50 to 20 K
Parameters |
Minimum |
Maximum |
Units (mm) |
Frequency range: |
1 |
200 |
kHz |
Impedance range |Z|: |
0.1 |
999k |
Ohms |
Frequency accuracy: |
0.05 |
- |
% |
Impedance accuracy*: |
3 |
- |
% |
|
*Uncertainty values at 10 kHz for the range from 0.1 k to 10k purely resistive. |
Principle of operation - advanced information
The TRZ Horn Analyzer measures the module of impedance as a function of frequency, applying a sinusoidal signal of constant amplitude and monitoring the current flowing through the device under test as a function of frequency. The signal frequency is changed in scan mode in the range of interest discretized in a certain number of points. After scanning, an algorithm of the embedded software detects the frequency of resonance and anti-resonance and their impedances.
In the case of ultrasonic transducers for cut and welding and for dental scalers, the values presented on the display correspond to the anti-resonance. For the cleaning transducers and tanks, the values corresponds to the resonance.
|
The impedance curve versus frequency for a welding acoustic set with the frequencies of resonance and anti-resonance indicated. |
The frequencies are identified through an algorithm that searches the points with zero derivatives, which in turn occur at resonance (a local minimum) and at anti-resonance (a local maximum). Around these points a polynomial interpolation is performed in order to have greater accuracy than provided by the discretization. Additionally, in the case of the option cleaning tank, an algorithm of moving average is applied to smooth the curve and to obtain an average value in the region where the resonances of the various transducers of the tank occur.
Some examples of the TRZ Horn Analyzer customers:
3M - Unidade Itapetininga (Brazil) Receiving inspection and preventive maintenance of acoustic sets and items related to cutting machines and ultrasonic welding.
Magneti Marelli (Brazil) Receiving inspection and preventive maintenance of acoustic sets and items related to cutting machines and ultrasonic welding.
Andor Fournituren B.V. (Netherlands) Preventive and corrective maintenance of cutting and welding machines used in the manufacture of clothing and accessories.
Electrolux (Brazil) Receiving inspection and quality assurance of ultrasonic transducers.
Vulcabrás Azaléia (Brazil) Application not published by the customer.
Zunibal (Spain) Testing and quality control of transducers used in sonar and level sensors.
MRP Ultrasônica (Brazil) Control and quality assurance of sonotrodes and transducers of high-technology systems for welding and cut by ultrasonic.
MMOptics (Brazil) Quality control of the production line of ultrasonic transducers for ultrasonic dental scalers.
Quality Dies (Brazil) Preventive and corrective maintenance of transducers and ultrasonic acoustic sets used in the finishing of dies and special tools.
CTA do Brasil Quality control of high-tech ultrasonic cleaning system.
ASSVE Componentes Automotivos (Brazil) Preventive and corrective maintenance of ultrasonic acoustic sets for thermoplastics welding. Manufacture of sonotrode for own use.
Dentscler (Brazil) Development and quality control of ultrasonic transducers for electromedical equipment for dental use.
Simoldes (Brazil) Receiving inspection and preventive maintenance of acoustic sets and items related to cutting machines and ultrasonic welding.
Alpha Motion (Brazil) Corrective maintenance of ultrasonic welding systems employed in machines that manufacture and package mattress springs.
Vision-Ease Lens (Thailand) Maintenance of ultrasonic cleaning systems used in manufacture of eyeglass lenses.
Johnson & Johnson (Brazil) Preventive maintenance of ultrasonic cutting and drilling systems used in dressings manufacturing.
Lucky Moldes (Brazil) Preventive maintenance of ultrasonic welding systems used for manufacturing fishing lures.
ASK do Brasil Receiving inspection and preventive maintenance of acoustic sets and items related to cutting machines and ultrasonic welding.
Ortobom (Brazil) Predictive, corrective and preventive maintenance of ultrasonic welding systems employed in machines that manufacture and package mattress springs.
Essilor da Amazônia (Brazil) Maintenance of ultrasonic cleaning systems used in the manufacturing of spectacle lenses.
Itron (Brazil) Manufacture of ultrasonic sonotrodos for own use.
Caribe America Trading (USA) Preventive maintenance of ultrasonic welding systems.
Eurosonics (France) Quality control and detection of cracks in piezoelectric ceramics.
EnnisPaint (USA) Predictive and corrective maintenance of ultrasonic transducers.
Fitesa (Argentina) Preventive maintenance of ultrasonic welding systems.
Ability Ultrasonica (Brasil) Manufacture of converters and sonotrodos for ultrasonic welding.
Hardsonic (Hungary) Manufacture of ultrasonic cleaning systems and ultrasonic welding.
WTP Ultrasonic (Brazil) Manufacturing of ultrasonic horns and converters for ultrasonic welding.
CEMAS do Brasil (Brazil) Manufacturing of ultrasonic horns for ultrasonic welding.
Gerlucc (Brazil) Predictive, corrective and preventive maintenance of ultrasonic welding systems employed in machines that manufacture and package mattress springs.
HP Pelzer Group (Brazil) Maintenance of acoustic sets and ultrasonic horns used on ultrasonic welding of auto parts.
COPPE / UFRJ (Brazil) Development of high voltage sensors.
Cicor Technology Group (Singapore) Maintenance of ultrasonic welding systems.
Furukawa (Mexico) Maintenance of ultrasonic welding systems.
Fundació Privada ASCAMM (Spain) Development of ultrasonic transducers and horns for innovative applications.
TPAKS (Turkey) Manufacturing of ultrasonic horns and maintenance of ultrasonic welding systems. |