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Rotary dynamometer (for high load) 9171A

The newly developed piezoelectric sensor integrated into the rotor can measure dynamic signals during high-speed cutting!

This rotary cutting dynamometer is a quartz piezoelectric four-component dynamometer. It measures the three-component forces and torque acting on the cutting tool during cutting. The measurement data is transmitted non-contact. -* Features *-*-*-*-*-*-*-*-*-*-*-*-*- • Measures cutting forces acting on the cutting edge while rotating • Measures a total of four components: three-component forces (Fx, Fy, Fz) and torque (Mz) • Maximum rotational speed: 20,000 min–1 • Non-contact type • Internal cutting fluid supply • Compatible with conventional machine spindle interfaces • Tool holder with ER clamp • Maintains eccentricity and balance with high precision

basic information

The 4-component rotary dynamometer consists of a rotor, stator, connection cables, and signal conditioner. The type of rotor is determined by the required spindle type on the machine side. A piezoelectric 4-component sensor and a 4-channel charge amplifier are integrated into the rotor to measure radial forces Fx and Fy, axial force Fz, and torque Mz. The voltage output from the charge amplifier is digitized and transmitted to the stator. The range selection and power supply for the charge amplifier are transmitted non-contact from the stator to the rotor. There is a gap of a few millimeters between the stator and the machine tool. The signal conditioner controls the measurement system. Additionally, the measurement range can be selected from three options, and measurements can be initiated manually or via a serial interface. The output signal is an analog voltage of ±10V. Data can be recorded using Kistler's DynoWare or compatible data acquisition software.

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Model number/Brand name

9171A

Applications/Examples of results

• Measurement of mechanical load during cutting processing • Wear analysis • Optimization of cutting parameters • Material-specific specific cutting resistance • Optimization of tool shape and coating • Verification of cutting simulation

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