KMKZ WINDOW COAT 2.0
KMKZ WINDOW COAT 2.0
Instructions
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Perfectly polish and clean the window glass to be coated.
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Degreasing with IPA (isopropyl alcohol, etc.) is recommended before application.
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Apply an appropriate amount to the applicator.
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Apply from top to bottom in straight lines. Apply generously.
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Wait 5-10 minutes for the liquid to dry.
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For winter application, warm the windshield with heating and defroster.
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For winter application, expose the treated surface to sunlight after application to increase its temperature.
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After drying, wipe with a firmly wrung-out microfiber cloth.
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Wipe with a dry microfiber cloth.
Do not expose the treated surface to water for 3 hours after application.
Product Name: KMKZ WINDOW COAT 2.0
Product Use: Window Coating
Ingredients: Special Silicone, Fluoroalkylsilane, Alcohol, Boron Nitride, Carbon Nanotubes, Borophene, Special Additives
Volume: 50ml
Country of Origin: Japan
Precautions: Do not ingest. This product is harmful if swallowed. Keep out of reach of children. Avoid using in direct sunlight or extreme heat. Use in a well-ventilated area.
Highly Flammable: Keep away from fire and open flames.
KMKZ BOROPHENE POWER!
2025 New Kamikaze Collection: New Material Concept
Experience a hard and unique texture achieved with the latest nanomaterials.
New Formula: Borophene + Boron Nitride
We wanted to concentrate KMKZ's newest technology into this new product. Borophene is incorporated to provide strong conductivity and bonding strength.
While "graphene," a next-generation nanomaterial, is a carbon-based nanomaterial formed into a honeycomb sheet of carbon, "borophene" is a metal-based nanomaterial structured in a near-honeycomb arrangement of boron, not carbon. Compared to graphene, borophene possesses even higher conductivity due to its metallic properties and has a flexible nature. It is gaining attention as a novel material for Tesla battery components and various nano-industries. Only seven companies worldwide are capable of manufacturing it.
We collaborated with a factory specializing in water and solvent dispersion and achieved stable dispersion of borophene, surpassing carbon-based nanomaterials in our tests. This led to its adoption due to the resulting anti-static properties and improved surface lubricity.
In addition to borophene, we've included multiple nanomaterials, including boron nitride.
Kamikaze's Water Repellency, Maximized
The "non-streaking" superhydrophobicity has been further enhanced compared to the previous version. The surface coating of this product has been developed so that special fluorine molecules are uniformly arranged on the surface layer. While the term "hybrid" might be appropriate in this case, the thick film of concentrated polymer silicone exhibits water repellency beyond our expectations.
The water repellency easily exceeds 110 degrees, measurable by standard water contact angle instruments. Water droplets roll off the glass surface in a "straight" line with minimal "meandering." A key characteristic is the remarkably small size of each water droplet.
Durability of 1 Year or More, and Re-application Possible
Laboratory water repellency tests under sunshine weather conditions showed durability of approximately two years. However, this often doesn't reflect real-world usage. Side surfaces maintain durability for over a year, but the front wiper operating area is subject to abrasion, reducing the coating's effectiveness.
Recommended for Vehicles Prone to Wiper Chatter
During development, we conducted monitor installations. Unexpectedly, we received almost no complaints or reports of wiper chatter, even on European cars, which are generally susceptible to it. While proper results are not guaranteed with deteriorated wipers or without proper surface preparation, we encourage those experiencing wiper chatter to try this product. We believe the thick film reduces surface resistance and friction, mitigating chatter.
Increased Volume: 30ml to 50ml
The volume has been increased, enabling more generous application or a second coat. The price remains the same as the previous version.