Product Description
Type 96-1 super large magnetic stirrer adopts stainless steel shell, new switching power supply, and self-developed high-power DC brushless three-phase motor as the driving motor. The motor has the characteristics of no spark, high efficiency, large torque, low temperature rise, and can stir and mix liquids from low to high viscosity
AI Product Description
*The following content is generated by AI and is for reference only.
The 96-1 Extra-large Magnetic Stirrer is a high-performance laboratory instrument designed for efficient mixing, heating, and stirring of large-volume liquid samples. Primarily utilized in chemical synthesis, pharmaceutical research, and environmental analysis, this device features an oversized stainless steel or ceramic-coated working plate capable of accommodating vessels ranging from 500 mL up to several liters. Its robust motor system generates powerful magnetic torque, ensuring consistent agitation even with highly viscous fluids or dense suspensions that would stall standard stirrers. The unit typically integrates precise digital temperature control, allowing users to maintain specific thermal conditions during reactions while simultaneously stirring, thereby enhancing reaction homogeneity and yield.
Key operational advantages include a wide speed range controlled by a variable knob or digital interface, offering smooth acceleration and deceleration to prevent splashing or vortex formation. The extra-large surface area provides flexibility for processing multiple samples or using oversized beakers without compromising stability. However, strict adherence to safety protocols is essential for optimal performance and longevity. Users must ensure the vessel is centered on the hotplate to avoid uneven heating or mechanical stress on the drive mechanism. It is critical not to exceed the maximum rated volume or viscosity limits specified by the manufacturer, as this can cause motor overheating or failure. When operating at elevated temperatures, always use appropriate heat-resistant glassware and avoid rapid cooling of the plate, which may lead to thermal shock and cracking. Additionally, never place ferromagnetic materials directly on the heated surface when the device is off, as residual heat could damage them or the plate coating. Regular cleaning with mild solvents and drying is recommended to prevent corrosion. Proper ventilation should be maintained if volatile substances are being stirred under heat. By following these guidelines, researchers can safely utilize the 96-1 Extra-large Magnetic Stirrer for demanding applications requiring reliable, large-scale fluid dynamics and thermal management in professional laboratory settings.