LMEC-11 Measuring Liquid Viscosity Falling Sphere Method
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Measuring Liquid Viscosity Falling Sphere Method
Liquid viscosity coefficient, also known as liquid viscosity, is one of the important properties of liquid, which has important applications in engineering, production technology and medicine. The falling ball method is very suitable for the experimental teaching of freshmen and sophomores because of its obvious physical phenomenon, clear concept and many experimental operations and training contents. However, due to the influence of manual stopwatch, parallax and the ball falling off the center, the accuracy of falling speed measurement is not high in the past. This instrument not only retains the operation and experimental content of the original experimental device, but also adds the principle and use method of laser photoelectric timer, which expands the scope of knowledge, improves the accuracy of measurement, and embodies the modernization of experimental teaching.
Features
1. Adopt laser photoelectric gate timing, more accurate measurement time.
2. With photoelectric gate position calibration indication, with a start button to prevent mismeasurement.
3. Improve the design of the falling ball conduit, the inner hole 2.9mm, the falling ball orientation can be fine-tuned, so that smaller steel balls can also
smoothly cut the laser beam, extend the falling time and improve the measurement accuracy.
Experiments
1. Learning the experimental method of measuring time and velocity of object movement by laser photoelectric sensor.
2. Measuring the viscosity coefficient (viscosity) of oil using the falling ball method with the stokes formula.
3. Observing the experimental conditions for measuring the viscosity coefficient of liquids by the falling ball method and making corrections if necessary.
4. Study the influence of different diameters of steel balls on the measurement process and results.
Specifications
Description |
Specifications |
Steel ball diameter | 2.8mm& 2mm |
Laser photoelectric timer | Range 99.9999s resolution 0.0001s, with calibration photoelectric gate position indicator |
Liquid cylinder | 1000ml height of about 50cm |
Liquid viscosity coefficient measurement error | Less than 3% |