• Special Cushion For Pressing
  • Special Cushion For Pressing
  • Special Cushion For Pressing
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Special Cushion For Pressing

The Special Cushion for Pressing is a revolutionary material designed to meet the demands of modern industrial and manufacturing processes. When compared to traditional kraft paper, this innovative cushion offers a wide range of advantages, making it the preferred choice for various pressing applications.

1. Product overview

To meet the demands of 5G materials and advanced lamination standards in the electronics industry, while aligning with the industry's environmental sustainability goals, our R&D team has developed the Navies mat after years of innovation. This reusable high-temperature buffer material, designed for 260°C conditions, is crafted from premium glass fiber cloth and high-performance polymers. Compared to traditional kraft paper, it offers easier operation, superior heat resistance, enhanced stability, eco-friendliness, energy efficiency, and the ability to be recycled multiple times.




PerformanceCategory

FlatnessRoughnessWear resistanceSize shrinkageThickness changeBuffer performanceHigh temperature resistanceNumber of recommendations
Red hard pad Suitable for CCL500-800
kraft paper1-5

Excellent            Good         Poor

2. Product uses

This product is the best product to replace kraft paper at present. It is mainly used in CCL pressing process, which can improve the stability of ruler ( industry standard : positive and negative 300ppm, using cushion can reach positive and negative 250ppm ), plate thickness uniformity, stable temperature rise rate and reduce energy consumption.

 

3.Product advantages

Robust Physical Properties and Safety Features

• High Pressure Resistance:

Designed to endure 500–800 compression cycles without losing structural integrity, making it ideal for high-pressure applications like lithium battery pressing, PCB lamination, and CCL production.

Maintains consistent thickness and performance, ensuring stable compression shrinkage and preventing defects such as uneven plate thickness or bubble formation.

• Flame Retardant:

Engineered with flame-retardant properties to enhance safety in high-temperature environments, reducing the risk of fire hazards.

Complies with stringent safety standards, making it suitable for use in industries like electronics and energy storage.

• Non-Toxic and Odorless:

Free from harmful chemicals and toxins, ensuring a safe working environment for operators.

Odorless formulation eliminates unpleasant smells during use, improving workplace comfort and compliance with environmental regulations.



Special cushion for pressing

Pressed cushion

Special cushion for pressing

Pressed cushion

Special cushion for pressing





4.Product structure

Pressed cushion


It is suitable for middle layer physical buffering and multiple sheet replacement manual operation. It is also suitable for automation. Single sheet replaces multiple kraft paper on the surface layer.

 

5.Comparison of products with kraft paper


Compare Item 1
Navies padBullskin paperCompare Item 2Navies padBullskin paper
Chi AnHeat preservation effect
LifeHomogeneity of dielectric layer
Pressure bufferingImpedance controllability
Pressure uniformityPlate thickness uniformity
Pressure transfer stabilityThick copper adaptability
Heat bufferingChip cost
Heat transfer uniformityStorage convenience
Heat conduction efficiencyOperation convenience
Processing efficiencyCleanliness
Heat resistanceRecycling and reuse
Moisture resistanceCost-effective

◎:Excellent             :Good             ▲:Poor


6.Competitive Edge Over Traditional Materials

vs. Kraft Paper:

5x longer lifespan (500+ cycles vs. 100 cycles).

Flame-retardant and non-toxic, unlike papers flammability and dust generation.

vs. Silicone Pads:

Superior heat resistance.

No off-gassing or residue, ensuring cleanroom compatibility.

 

This combination of thermal resilience, precision engineering, and process optimizationpositions the product as an indispensable solution for industries demanding reliability, efficiency, and cost savings in high-stress manufacturing environments.


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