Hot Melt Heating Plate

The hot melt heating plate converts electrical energy into thermal energy through a resistance heating element, causing the metal plate surface to heat up evenly. It is used to melt solid samples or maintain a constant temperature, soften resins in coating tests, and detect the melting characteristics of materials in the plastics industry.
Selection
When selecting, consider matching the heating plate size to the sample specifications, ensuring temperature control accuracy meets experimental requirements, selecting materials with corrosion resistance suitable for the working environment, ensuring safety protection devices are complete, determining the heating rate according to testing standards, and matching the power with the power supply conditions.

Terms

Standards

Instruments

Equipped with 8 Meters Oven, roller heating temperature up to 200 ℃, effective application width 500mm, Spreader thickness range 0.005-3mm, support automatic unwinding to winding process, suitable for hot-melt adhesive film.

$ 29120.00

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

$ 206.00

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

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

Temperature control accuracy of +/- 0.5 ℃, equipped with eight standard test force, can accurately determine the melt flow performance of polymers at high temperatures, to meet a variety of material testing needs.

$ 977.00

Adopting MCU to adjust power and temperature control mode, temperature control accuracy +/- 0.5 ℃, with eight standard test force, can meet the needs of different material testing, suitable for melt flow performance measurement at high temperature.

$ 945.00

Split PID intelligent control, temperature control accuracy +/- 0.1 ℃, extremely fast temperature rise of 1 ° C/5 seconds, strong acid and alkali corrosion resistance, support a variety of utensils heating, no electromagnetic interference.

$ 1542.00

The thickness range of Spreader is 0.01mm~ 2mm, the minimum gluing thickness is 0.01mm, the coating surface density ≤ +/- 1.5%, the dial Meter is used to fine-tune the gap and the Teflon baffle to adjust the width, and it supports forward and reverse continuously variable speed and automatic winding.

$ 4269.00

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

Special molding process is used to ensure high temperature without warping deformation. Temperature range RT +~ 999 ℃, working area 770cm ², uniform heating and safe and easy operation.

$ 180.00

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

Using Hastelloy heating cylinder to avoid high temperature oxidation, dual Sensor temperature control accuracy of +/- 0.5 ℃, support strong corrosion plastic test, with four minutes countdown and RS232 data output function.

$ 933.00

The equipment adopts High Accuracy modular Spreader station, all-electric control without air source, minimum glue thickness 0.01mm, Spreader speed 2-4.5 m/min adjustable, with electronic control precision tension to adapt to a variety of materials such as paper, plastic and metal film.

$ 5721.00

The equipment has 200x200mm hot pressing area, temperature control accuracy +/- 2 ℃, heating temperature up to 250 ℃. Using light curtain protection and safety protection design, the upper and lower templates have high parallelism, and the hot pressing time, temperature and pressure can be adjusted.

$ 4430.00

Using high purity graphite material and fuzzy PID temperature control technology, temperature control accuracy +/- 0.1 ℃, with over-temperature alarm, temperature self-setting and thermostatic timing function, panel size 400 * 300mm.

$ 808.00

Articles

Application of High-Temperature Viscometer in Testing the Melt Viscosity Characteristics of Hot Melt Ink
This article introduces a method for testing the melt viscosity of hot-melt ink using a high-temperature viscometer. The test employs a rotational viscometer to measure the viscosity of three ink samples at different temperatures.
Peel strength tester measures the peel force of hot melt adhesive resin.
The peel strength tester is used to measure the adhesive properties of hot melt adhesive resins, simulating the actual peeling process by recording changes in force values through constant-speed stretching.
Universal material testing machine for testing the tensile strength of hot melt adhesive.
This article introduces the method of testing the tensile strength of hot melt adhesives using a universal material testing machine.
Method for Determining Peel Strength of Hot Melt Adhesives Using an Electronic Tensile Tester
This article introduces the standard method for determining the peel strength of hot melt adhesives using an electronic tensile testing machine. The test employs a 180° peel mode, where a sample coated with hot melt adhesive is clamped in the machine's fixtures and peeled at a constant speed. The peel strength is calculated based on the recorded force variations.
Application of T-peel Strength Tester in Hot Melt Adhesive Evaluation
This article introduces how the T-peel strength tester is used to evaluate the performance of hot melt adhesives. The tester simulates scenarios where materials are subjected to peel stress, measures and records the force and displacement during the peeling process, and calculates the average peel strength to assess the uniformity of adhesion.
Adhesion Retention Tester Evaluates the Cohesive Strength of Hot Melt Adhesive
This article introduces how to use a tack retention tester to evaluate the cohesive strength of hot-melt adhesives. During testing, a sample coated with hot-melt adhesive is attached to a test plate, and a weight is hung to apply a continuous shear stress. The time until detachment or the displacement is recorded, which directly reflects the internal cohesion of the adhesive.
Application of Initial Tack Tester in the Detection of Pressure-Sensitive Hot Melt Adhesives
The initial tack tester is a device used to measure the initial adhesive properties of pressure-sensitive hot melt adhesives, primarily by employing the rolling ball method or probe method to assess the adhesive force at the moment of contact.
Constant Temperature and Humidity Chamber Testing for Environmental Adaptability of Hot Melt Adhesive
This article introduces the method of testing the environmental adaptability of hot melt adhesive using a constant temperature and humidity chamber. The performance of hot melt adhesive is easily affected by temperature and humidity, and the purpose of the test is to evaluate its stability under different climatic conditions.
Evaluation of thermal aging life of hot melt adhesives using high-temperature oven method
This article introduces a method for evaluating the thermal aging life of hot melt adhesives using a high-temperature oven. The principle is based on the Arrhenius equation, where aging is accelerated by increasing the temperature to simulate performance changes under long-term use.
Operation Tips for Laboratory-Scale Hot Melt Adhesive Coating Machines
This article introduces the key operational points of a laboratory-scale hot melt adhesive coater. The equipment is primarily used in laboratories to apply hot melt adhesives uniformly onto substrates, supporting the research, development, and testing of adhesives.
Karl Fischer moisture analyzer detects moisture content in hot melt adhesives.
This article introduces the method of using a Karl Fischer moisture analyzer to detect the moisture content in hot melt adhesives. The Karl Fischer method is based on the quantitative reaction of iodine, sulfur dioxide, and water, and calculates the moisture content by measuring the amount of iodine consumed.
Operation procedure of hot melt adhesive ash content determination instrument
This article introduces the operating procedures of a hot-melt adhesive ash content analyzer. The instrument incinerates the sample at high temperatures to decompose the organic components, leaving behind inorganic residues as ash. The ash content is then calculated based on the mass change before and after incineration.
Capillary Rheometer for Determining the Shear Viscosity Curve of Hot Melt Adhesives
This article introduces the method of measuring the shear viscosity curve of hot melt adhesives using a capillary rheometer. The principle involves pushing molten hot melt adhesive through a capillary, measuring the pressure and flow rate, and then calculating the shear stress and viscosity.
Operating Specifications for Measuring the Flow Rate of Hot Melt Adhesive with a Melt Flow Index Tester
The role of DSC thermal analyzer in the detection of hot melt adhesive crystallinity
The crystallinity of hot melt adhesive directly affects its properties such as bonding strength. Differential scanning calorimetry captures the thermal effect peaks corresponding to melting and crystallization by measuring the heat flow changes of the sample during heating and cooling processes.