Cylindrical heating plate

The cylindrical heating plate generates heat through a resistance wire, which is then conducted to the surface of the metal cylinder. It is commonly used in laboratories for uniformly heating containers such as test tubes and flasks, and is frequently employed in operations like sample pretreatment and chemical reactions.

Instruments

Using brushless DC motor to achieve stepless speed regulation of 0~ 2000rpm, aluminum alloy heating plate Power 600W rises rapidly, temperature control accuracy +/- 1 ℃, heating plate temperature can be directly set and with safety restrictions.

$ 273.00

Adopt PID temperature control system, temperature control accuracy of 0.5 ℃, heating evenly and quickly; heating plate size 250 * 400mm, anti-corrosion and easy to clean, support a variety of timing modes and alarm functions to ensure safe and reliable operation.

$ 461.00

High-power aluminum heating plate, adjustable maximum temperature 350 ℃, equipped with brushless DC motor to provide 130mN · m torque, support 50-1500rpm stable Stir, microprocessor to ensure temperature control accuracy +/- 0.5 ℃ and long-term timing function.

$ 630.00

The fully enclosed heating plate is designed without open flame, Heating power 3000W, heating up quickly and safely, and the studio stainless steel material has superior corrosion resistance.

$ 236.00

It can measure planar and cylindrical surface roughness, with a minimum diaMeter of 5mm and a maximum depth of 22mm, and supports a variety of Sensors to adapt to different workpiece shapes.

$ 332.00

It is suitable for cylindrical surface measurement with a radius greater than 3mm, and can be equipped with extension Rods and transfer Rods to expand the range of use to ensure the accuracy and flexibility of surface asperity detection.

$ 404.00

Equipped with 2 to 12mm eight diaMeter stainless steel cylindrical mandrel, in the form of hinged bending, in line with GB6742 standard, suitable for Coating bending performance testing.

$ 235.00

NanoHeat technology implementation speed 1 ° C/5 seconds, temperature control accuracy up to +/- 0.1 ℃, split design supports PID intelligent program control, the whole machine strong acid and alkali corrosion resistance, Heating power 4.8KW to meet a variety of experimental needs.

$ 1886.00

Using infrared radiation heating, fine grinding mirror drying surface, heating power 2.0KW, maximum temperature 180 ℃, drying size 600mm × 350mm, to ensure uniform drying and smooth surface.

$ 2462.00

Heating power 800W, Temperature range RT +~ 999 ℃, no warping at high temperature, uniform working surface temperature, safe and simple operation.

$ 160.00

It can test the cracking of the paint film after bending 180 degrees in 1-3 seconds, and the diaMeter range of the shaft Rod is 2-32mm. It is suitable for the test plate with a thickness of not more than 1.0mm. Quick evaluation of flexibility.

$ 280.00

The stainless steel working panel has excellent corrosion resistance, the heating power is 500W, and the working area is 0.03 square Meters to meet the needs of the laboratory. It is easy to operate and safe to use.

$ 149.00

The stainless steel material is corrosion-resistant, with a heating area of 0.06 square Meters. The heating is fast and uniform, and the operation is safe and easy. It is suitable for a variety of temperature test requirements.

$ 169.00

Heating power 500W, working area 0.03m2, rapid and uniform heating, strong corrosion resistance of stainless steel panel, safe and simple operation.

$ 206.00

Temperature control accuracy of +/- 0.1 ℃, using fuzzy PID control technology, with over-temperature alarm and temperature self-tuning function, heating material is high purity graphite, panel size 600 * 400mm.

$ 1332.00

Articles

Coating Cylindrical Bending Tester for Determining the Resistance of Paint Films to Cylindrical Bending Cracking
This article introduces how the coating cylindrical bending tester measures the resistance of paint films to bending and cracking.
Cylindrical Mandrel Bending Tester for Detecting Flexibility of Coatings
This article introduces how the cylindrical shaft bending tester detects the flexibility of paints. Flexibility refers to the ability of the paint film to resist cracking when the substrate is bent.
Selection of Ceramic vs. Cast Aluminum Heating Surfaces for Laboratory Hot Plates
When selecting a laboratory heating plate, ceramic and cast aluminum are two common materials. Ceramic offers high-temperature resistance, corrosion resistance, and uniform heating, but it heats up slowly and is relatively brittle. Cast aluminum heats up quickly and is sturdy and durable, but it has weaker corrosion resistance and a lower maximum temperature.
The versatile electric furnace is still being used as a hot plate, but 90% of people are unaware of these hidden functions.
In addition to basic heating, the universal electric furnace has many practical functions that are often overlooked. It features a built-in temperature control system that allows for programmed automatic heating, making it suitable for experiments requiring precise temperature control.
Complete Guide to Methods for Determining the Flexibility of Paint Films
This article systematically outlines the core methods for determining the flexibility of paint films, including the mandrel bending test based on GB/T 1731, the cylindrical mandrel bending method according to GB/T 6742, and the conical mandrel bending method specified in GB/T 11185, providing a detailed explanation of the technical principles of each method.