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Horizontal oscillator achieves uniform mixing of samples through horizontal vibration
Date: 2025-10-30Read: 18
Horizontal oscillators are mainly used to achieve uniform mixing, dissolution, or promote chemical reactions of samples through horizontal vibration, and are widely used in scientific research, teaching, and industrial production fields. In the laboratory, it is commonly used in scenarios such as cell culture, biological reagent mixing, chemical solution reactions, etc. By adjusting the oscillation frequency and amplitude to accelerate solute contact, the mixing efficiency or reaction rate can be improved.
A horizontal oscillator is a conventional laboratory equipment that achieves sample mixing, extraction, and dissolution through reciprocating or circular motion in the horizontal direction. Its core value lies in simulating a uniform oscillation environment, improving sample reaction efficiency or extraction accuracy. It is widely used in environmental detection, food analysis, biological experiments, and other fields, and is a key tool for sample pretreatment.
The horizontal oscillator drives the oscillation disk through a power device (such as a permanent magnet DC motor) to make the sample container perform periodic reciprocating motion in the horizontal direction. Its core is to generate stable and controllable horizontal vibrations to meet the temperature, oscillation frequency, and amplitude requirements of different experiments. Electronic speed control circuits are used to ensure smooth motion and long lifespan.
Most horizontal oscillators are equipped with a stepless speed regulation system (such as 0-300 beats per minute) and mechanical timing devices, which can accurately control the oscillation speed and time, simplifying the conditions for repeated experiments.
All metal base and brushless DC motor design enhance oscillation stability and extend service life. The tray is made of aluminum alloy material, which is corrosion-resistant and has a water conducting design to prevent liquid overflow, making it suitable for various experimental environments.
routine maintenance
Regular cleaning: After the experiment, wipe the sample holder and body with a damp cloth to avoid residual corrosion of the equipment; If liquid spills, it is necessary to clean the motor and circuit parts in a timely manner (to prevent short circuits).
Lubrication and inspection: Check the transmission components (such as belts and bearings) every 3-6 months, and add specialized lubricating oil as needed; If uneven oscillation or increased noise is found, the machine should be stopped to check for loose or worn components.
Temperature control model maintenance: Regularly calibrate the temperature sensor (compare with a standard thermometer), clean the dust inside the temperature control box, and ensure good heat dissipation.