Products Laboratory Hydraulic Press Laboratory Press Molds Infrared Heating Quantitative Flat Plate Mold for Precise Temperature Control
Infrared Heating Quantitative Flat Plate Mold for Precise Temperature Control

Laboratory Press Molds

Infrared Heating Quantitative Flat Plate Mold for Precise Temperature Control

Item Number : PMHD

Price varies based on specs and customizations


Die heating
0.0℃-300.0℃
Sample size
Φ25mm~Φ50mm (d)
Sample thickness
15-100μm~25、50、100、250、500μm
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Infrared Heating Quantitative Flat Plate Mold: Precision and Efficiency for Your Lab

KINTEK specializes in advanced lab press machines, including automatic lab presses, lab isostatic presses, and heated lab presses, designed to meet diverse laboratory needs. Our Infrared Heating Quantitative Flat Plate Mold system embodies this expertise, offering precise and efficient heating for your critical applications.

Discover the key components and processes that make this system a valuable asset in your laboratory:

Infrared heating flat plate mold
Infrared heating flat plate mold
1) Sample Preparation Process  2)Release Process
1) Sample Preparation Process  2)Release Process

Advanced Control and Features for Optimal Performance

Our Infrared Heating Quantitative Flat Plate Mold technology leverages advanced materials and precise temperature control to deliver exceptionally uniform heat distribution across your samples. This ensures consistent results and reliable material processing. Key features include:

  • Uniform Heat Distribution: Achieved through advanced materials and precise temperature control, crucial for consistent sample treatment.
  • Effective Thermal Management: High-performance insulation layers, including high-temperature ceramic fiber boards and zirconia fiber blankets, minimize heat loss and maximize energy efficiency.
  • Enhanced Precision and Safety: An integrated PID controller with SCR power control and auto-tune functions ensures reliable, consistent performance and operational safety.
  • Optimized Heat Conduction: The innovative one-piece platen heater, incorporating a swaged tubular element, optimizes heat conduction for rapid heating and simplifies assembly, contributing to durability and ease of maintenance.
  • High-Temperature Stability: Constructed with high-quality ceramic and quartz materials, the infrared heaters offer exceptional stability even at high temperatures, ensuring longevity for demanding applications.

The intuitive operation interface provides comprehensive control over the heating process:

Operation interface - (Standard mode)
Operation interface - (Standard mode)
  • Standard interface: You can set the mold heating temperature and constant temperature time separately in this interface.
  • Water cooling button: The water cooling machine power supply is connected to the thermostat, and the thermostat can control the opening and closing of the water cooling machine.
  • Heating button: You can start heating the mold.
  • Stop button: You can stop the heating of the mold.
  • Timing switch: You can turn the timing function on and off.
Operation interface - (Advanced mode)
Operation interface - (Advanced mode)
  • Start button: You can heat up according to the multi-stage heating program.
  • Stop button: During the heating process, you can stop the heating process.
  • List curve: You can switch the current display state, list and curve chart.

Ready to enhance your laboratory's capabilities with precise and efficient heating? Contact us for a consultation or quote using the form below.

Technical specifications

Instrument model PMHD-A PMHD-B
Sample shape Sample shape
Die heating 0.0℃-300.0℃ 0.0℃-300.0℃
Die material Alloy tool steel :Cr12MoV Alloy tool steel :Cr12MoV
Sample size Φ50mm (d) Φ25mm (d)
Sample thickr 15-100μm 25、50、100、250、500μm(6 measuring loops)
Dimensions 200*60mm (D*H) 200*60mm(D*H)
Weight 220V/300W 220V/300W
Diagram of hydraulic powder press size Diagram of hydraulic powder press size Diagram of hydraulic powder press size

Versatile Applications

Infrared heating quantitative flat plate molds are versatile tools designed for a wide range of applications, particularly in industries and research settings that require precise and efficient heating processes. These applications benefit from rapid energy transfer and the ability to control heating zones effectively, making our system ideal for material science, sample preparation, and quality control procedures.

Operation steps

1. Set the temperature for heating the upper and lower molds.

1. Set the temperature for heating the upper and lower molds.

2. Click the upper and lower plates to start heating.

2. Click the upper and lower plates to start heating.

3. Put the sample into the mold first.

3. Put the sample into the mold first.

4. Put the mold into the tablet press for pre-compression.

4. Put the mold into the tablet press for pre-compression.

5. When the temperature reaches the set temperature, start pressurizing the mold.

5. When the temperature reaches the set temperature, start pressurizing the mold.

6. Turn off the heating function and let the sample cool.

6. Turn off the heating function and let the sample cool.

7. Remove the heated mold.

7. Remove the heated mold.

8. Take out the pressed sample.

8. Take out the pressed sample.

Partner with KINTEK for Your Laboratory Needs

KINTEK is committed to providing high-quality, reliable lab press machines and accessories that empower researchers and technicians. Our Infrared Heating Quantitative Flat Plate Mold is a testament to this commitment, designed for precision, efficiency, and ease of use.

For detailed specifications, to explore custom configurations, or to discuss how this system can integrate into your specific application, please contact us through the form below. Our expert team is ready to assist you in finding the perfect solution for your laboratory.

Full range of types of laboratory press molds

We have a full range of molds for you to choose from, and the molds fit the body perfectly.

If you need molds with special shapes, we can also customize them for you.

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FAQ

What Are The Main Applications Of A Heated Platen Press?

Heated platen presses are widely used in infrared spectroscopy for sample preparation, XRF spectroscopy for elemental analysis, polymer film preparation, pharmaceutical pill making, and laminating processes to bond multiple material layers.

What Safety Features Are Commonly Found In Heated Platen Presses?

Common safety features include closed molding areas to contain fumes, protection doors with safety locks to prevent accidental access, and automatic control systems with user-friendly interfaces for safe operation.

How Does A Heated Platen Press Operate?

A heated platen press operates by applying positive pressure combined with negative pressure and special adhesives. It features high pressure, low temperature, and short processing times to reduce workpiece deformation. The process involves table feeding, heating, vacuuming, forming, and demolding, driven by oil pressure and compressed air.

What Are The Advantages Of Using A Heated Platen Press?

Heated platen presses offer several advantages including enhanced heating efficiency through uniform temperature distribution, improved workpiece quality via consistent thickness and closure force, reduced heat generation for energy savings, and environmental friendliness by adhering to strict emission standards.

What Types Of Heated Platen Presses Are Available?

There are several types of heated platen presses available, such as split automatic heated hydraulic press machines with heated plates, lab heat press special molds, and infrared heating quantitative flat plate molds for precise temperature control.
View more faqs for this product

Product Datasheet

Infrared Heating Quantitative Flat Plate Mold for Precise Temperature Control

Category Catalog

Laboratory Press Molds


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