Conductive Silicone

Conductive Silicone

Conductive Silicone enables interaction between printed materials and smart touchscreens. Conductive Silicone's electrical conductivity is similar to that of human skin. For example, when printed on gloves, one can operate a mobile phone while wearing the gloves without direct hand contact.
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Description

Product Introduction

 

Conductive Silicone

Conductive Silicone enables interaction between printed materials and smart touchscreens. Conductive Silicone's electrical conductivity is similar to that of human skin. For example, when printed on gloves, one can operate a mobile phone while wearing the gloves without direct hand contact. Before use, a layer of transparent ordinary high - density silicone should be applied to the fabric as a base, which can achieve better results. Selecting a screen with 80 - 120 meshes can ensure clear patterns, uniform material distribution, and stable electrical conductivity. A drying temperature of 120 - 150°C is most suitable. Conductive Silicone can dry quickly, improve productivity, without damaging the fabric, and maintain the elasticity and viscosity of the colloid. The finished product is durable and easy to use.

 

Product Advantages

 

The core advantage is Conductive Silicone's human - skin - like electrical conductivity, which enables the interaction between printed materials and smart touchscreens, expanding the functional boundaries of printing. For example, in the scenario of operating electronic devices with gloves. The design of requiring a base of ordinary high - density silicone improves electrical conductivity and adhesion stability. An 80 - 120 - mesh screen ensures clear patterns, uniform material distribution, and stable electrical conductivity. A drying temperature of 120 - 150°C is reasonable. Conductive Silicone dries quickly, improves efficiency, and does not damage the fabric and colloid properties. The finished product is durable and suitable for practical scenarios that require conductive functions.

 

Product Operation Process

 

1. Use an electronic scale, take an appropriate amount of Conductive Silicone, add it to the mixture with a ratio of 10% (or 2%) using Curing Catalyst, and add an appropriate amount of Liquid Silicone Rubber Thinner according to the printing requirements, stir evenly.

 

2. Pour the prepared silicone mixture into the mesh plate and use a scraper to apply it.

 

3. First, print the Nomal High Density Silicone substrate. After the substrate is dry, print the Conductive Silicone. Use moderate force to scrape it 3 - 4 times from top to bottom. After each printing, it must be dried before the next printing.

 

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