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Efficient Thin Layer Silicone Plate

    Efficient Thin Layer Silicone Plate

    A thin layer silicone plate is a versatile, flexible material made primarily of silicone rubber, often processed into thin sheets or layers. Silicone itself is a synthetic polymer made from silicon, oxygen, and other elements. The thinness of the plate allows it to be used in a variety of applications where space constraints or lightweight materials are essential. Despite their thin nature, silicone plates exhibit remarkable mechanical properties, including high heat resistance, excellent electrical insulation, and outstanding durability against environmental stresses.
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  Our company's Recycled Rubber includes latex recycled rubber and butyl recycled rubber. Latex recycled rubber can be used separately in rubber products to produce various light white products such as light colored car tires, natural inner tubes, light colored conveyor belts, colored sports shoe soles, colored cables, colored rubber flooring, rubber hoses, ball bladder, tape, etc. Both extruded and molded rubber products can be used. The company's butyl reclaimed rubber has the characteristics of high fineness, strong airtightness, and rich tactile elasticity.

  Silicone plate is made of high-quality thin-layer chromatography silica gel as raw material. Thin layer chromatography Silica Gel Plate is made by mixing appropriate adhesive with thin-layer chromatography silica gel and coating it on a glass substrate, with specified pore volume, specific surface area, and pore distribution.

  Activity: (Separation of Indigo, Sudan Red, and Dimethyl Yellow) Three color separation.

  Characteristics of silicone board

  1. Good separation effect and high number of trays.

  2. The sampling spots are small, making it easy for series analysis.

  3. Short separation time.

  4. High sensitivity, clear spots, and no diffusion.

  Silicone board classification

  1. The thickness of the silicone plate coating can be divided into:

  Analysis board: 0.2 mm

  Preparation of plates: 0.3-0.4mm, 0.4-0.6mm, 0.6-1mm

  2. According to specifications, it can be divided into:

  G-type H-type GF254 HF254

  H is the abbreviation for Hard

  G is the abbreviation for Glutinous

  F is the abbreviation for Fluorescence

  Silicone H: no adhesive, no fluorescent agent;

  Silicone G: does not contain fluorescent agents, but contains calcined gypsum adhesive.

  A Thin Layer Silicone Plate is a versatile, flexible material made primarily of silicone rubber, often processed into thin sheets or layers. Silicone itself is a synthetic polymer made from silicon, oxygen, and other elements. The thinness of the plate allows it to be used in a variety of applications where space constraints or lightweight materials are essential. Despite their thin nature, silicone plates exhibit remarkable mechanical properties, including high heat resistance, excellent electrical insulation, and outstanding durability against environmental stresses.

  Key Benefits of Thin Layer Silicone Plates

  Heat Resistance

  One of the standout features of silicone is its excellent heat resistance. Thin layer silicone plates can withstand temperatures ranging from -60°C to 230°C (-76°F to 446°F), making them ideal for high-temperature environments. This heat resistance ensures that silicone plates can be used in electronics, automotive components, and industrial machinery without degrading over time. Whether exposed to extreme heat or cold, thin layer silicone plates maintain their structural integrity.

  Electrical Insulation

  Silicone's inherent dielectric properties make it an excellent electrical insulator. Thin layer silicone plates are frequently used in applications requiring high electrical insulation, such as circuit boards, transformers, and other electronic components. Their ability to prevent electrical conduction and protect sensitive components ensures reliable and safe operation in various devices.

  Chemical Resistance

  Thin layer silicone plates exhibit impressive resistance to a wide range of chemicals, oils, and solvents. This chemical resilience makes them suitable for use in industries such as automotive, food processing, and pharmaceuticals. Silicone’s inert nature means that it does not react with most chemicals, ensuring long-lasting performance even in harsh environments.

  Flexibility and Durability

  Despite their thin design, silicone plates retain exceptional flexibility, making them ideal for applications where bending or stretching is required. Whether used as gaskets, seals, or insulating sheets, the thin layer silicone plates maintain their functionality under mechanical stress. Their durability ensures that they can withstand repeated use without cracking, tearing, or losing performance over time.

  Applications of Thin Layer Silicone Plates

  Electronics and Electrical Components

  In the electronics industry, thin layer silicone plates are used as insulating layers in circuit boards, transformers, and cables. Their ability to prevent electrical short circuits and heat damage makes them an essential component in the design and manufacturing of electronic devices. Additionally, their flexibility allows for easy integration into compact and intricate electronic systems.

  Automotive Industry

  The automotive industry relies heavily on silicone plates for a range of applications, from gaskets to seals. Thin layer silicone plates are commonly used in engine compartments, as they can withstand high temperatures and exposure to chemicals such as oils, fuels, and coolants. Silicone seals help prevent leaks and improve the overall efficiency and safety of automotive systems.

  Medical Devices

  In the medical field, silicone plates are often used in devices that require biocompatibility and flexibility. From gaskets in medical equipment to components in prosthetics, thin layer silicone plates offer a safe and effective solution for various healthcare applications. The material’s non-reactivity with human tissues and fluids ensures that it can be safely used in medical environments without causing adverse reactions.

  Food Industry

  The food processing industry also benefits from the use of thin layer silicone plates. These plates are used as liners, baking mats, and seals in food processing machines. Silicone’s non-toxic nature and resistance to high temperatures make it an ideal material for applications in direct contact with food. It ensures that products remain safe for consumption while maintaining high hygiene standards.


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