Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants

Product Details
Customization: Available
CAS No.: 2921199090
Formula: Inapplicability
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  • Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
  • Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
  • Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
  • Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
  • Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
  • Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
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Basic Info.

Model NO.
SPR-1110ESD
Color
Can Be Selected From The Color Card
Appearance
Liquid
Main Raw Material
Epoxy
Method
Brush
Level
Primer+Middle+Topcoat
Drying Method
Drying
Certification
ISO14001, CCC, RoHS, ISO9001
Substrate
Epoxy Resin
Components
Epoxy Resin
Formation Mechanism
Conversion Type
Wear-Resistant
High
Dust-Proof
High
Chemical-Resistant
High
Anti-Slip
High
Period of Service
Long
Easy to Clean
High
Transport Package
Box
Specification
30KG(25KG+5KG)
Trademark
SPR
Origin
Nanxiong
HS Code
2921199090
Production Capacity
100000

Product Description

Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
 
Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants
Impact-Resistant Waterborne Epoxy Resin Anti-Static Floor for Microelectronics Plants

Impact-resistant Waterborne Epoxy Resin Anti-static Floor for Microelectronics Plants

Product Overview

In the microelectronics industry, where precision and reliability are paramount, the choice of flooring materials plays a critical role in ensuring the safety and efficiency of operations. The Impact-resistant Waterborne Epoxy Resin Anti-static Floor is specifically designed to meet the stringent requirements of microelectronics plants, offering a unique combination of impact resistance, anti-static properties, and environmental friendliness.

Key Features

1. Exceptional Impact Resistance

This flooring system is engineered to withstand heavy loads and high-impact forces. With an impressive impact resistance rating, it can effectively protect the underlying substrate from damage caused by dropped tools, equipment, or other heavy objects. In microelectronics plants, where sensitive equipment and delicate components are handled, this feature is crucial to prevent disruptions to production processes and costly repairs. The robust construction of the waterborne epoxy resin ensures that the floor remains intact even under high-stress conditions, providing a stable and reliable surface for daily operations.

2. Superior Anti-static Performance

Static electricity poses a significant threat in microelectronics environments, as it can damage sensitive electronic components and disrupt manufacturing processes. The Impact-resistant Waterborne Epoxy Resin Anti-static Floor is formulated with advanced conductive materials that effectively dissipate static charges, maintaining a surface resistance within the range of 10E5 - 10E8 ohms. This ensures that the floor remains within the required anti-static standards, preventing electrostatic discharge (ESD) incidents that could compromise the quality and functionality of electronic products.

3. Environmental Friendliness

In today's eco-conscious world, the use of waterborne epoxy resin is a significant advantage. Waterborne resins use water as a solvent, reducing the content of volatile organic compounds (VOCs) to close to zero. This not only makes the flooring system compliant with stringent environmental regulations but also contributes to a healthier indoor air quality for plant personnel. The low toxicity and flammability of waterborne resins further enhance their safety and sustainability.

4. Long-lasting Durability

The flooring system is designed for long-term performance, with a service life that can exceed the typical expectations of conventional flooring materials. Its high adhesive strength, measured at 230N/c, ensures a secure bond with the substrate, preventing delamination and ensuring the floor's integrity over time. The floor also exhibits excellent wear resistance, with a wear loss of only 15mg under standard testing conditions (CS-17 wheel, 1,000gf {9.8N} rotation number 1,000 revolutions), making it suitable for high-traffic areas in microelectronics plants.

5. Easy Maintenance and Aesthetic Appeal

The smooth and glossy surface of the floor not only enhances its aesthetic appeal but also simplifies maintenance. Regular cleaning with appropriate anti-static cleaning agents can keep the floor looking pristine and functioning optimally. The floor's resistance to stains and chemicals further reduces the need for frequent and intensive cleaning, saving time and resources.

Technical Specifications

 

Property Specification
Surface Resistance 10E5 - 10E8 ohms
Volume Resistance 10E5 - 10E8 ohms
Static Decay Time < 0.3 seconds
Induced Voltage < 70 volts
Solid Content 26% ± 0.5%
pH Value 7.0 - 9.0
Adhesive Strength 230N/c
Impact Resistance 1 kgw/1mh
Hardness 2 - 3H
Wear Resistance 15mg (CS-17 wheel, 1,000gf {9.8N} rotation number 1,000 revolutions)
VOC Content Close to zero
Service Life Exceeds typical expectations

Application Areas

The Impact-resistant Waterborne Epoxy Resin Anti-static Floor is ideal for various areas within microelectronics plants, including:

  • Manufacturing Areas: Where sensitive electronic components are assembled and tested.
  • Cleanrooms: Where stringent environmental controls are required.
  • Storage Areas: For the safe storage of electronic materials and components.
  • Laboratories: Where research and development of new electronic technologies take place.

Installation Process

The installation of the Impact-resistant Waterborne Epoxy Resin Anti-static Floor is a meticulous process that ensures optimal performance and longevity. The steps typically include:

  1. Surface Preparation: The existing floor surface is thoroughly cleaned and prepared, which may involve grinding, shot blasting, or acid etching to remove contaminants and create a suitable profile for bonding.
  2. Primer Application: A primer coat is applied to enhance adhesion between the substrate and the epoxy resin.
  3. Conductive Layer Installation: A conductive layer is installed to provide the necessary anti-static properties. This may involve the use of conductive paints, coatings, or the installation of a conductive grid system.
  4. Epoxy Resin Application: The waterborne epoxy resin is applied in multiple layers, with each layer allowed to cure before the next is applied. The number of layers required depends on the desired thickness and performance characteristics of the floor.
  5. Topcoat Application: A clear topcoat is applied to protect the epoxy resin from wear and tear, and to enhance the floor's appearance.

Maintenance Guidelines

To ensure the continued performance of the Impact-resistant Waterborne Epoxy Resin Anti-static Floor, regular maintenance is essential. This includes:

  • Daily Cleaning: Use appropriate cleaning agents that are compatible with the epoxy resin to remove dirt, dust, and spills.
  • Periodic Inspection: Check for signs of wear, damage, or contamination, and address any issues promptly.
  • Recoating: Depending on the usage and environmental conditions, the floor may require periodic recoating to maintain its performance and appearance.

Conclusion

The Impact-resistant Waterborne Epoxy Resin Anti-static Floor is a cutting-edge solution for microelectronics plants, offering a range of benefits that are essential for the industry's demanding requirements. Its exceptional impact resistance, superior anti-static properties, environmental friendliness, and long-lasting durability make it an ideal choice for creating a safe, efficient, and aesthetically pleasing work environment. By choosing this flooring system, microelectronics plants can ensure the reliability and safety of their operations, while also contributing to a more sustainable future.

 

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