Glass fabric substrate epoxy resin laminate
Well-balanced GFRP with electrical insulation, heat resistance, mechanical strength, and chemical resistance.
In addition to excellent electrical insulation properties, it possesses heat resistance, mechanical strength, and chemical resistance, despite being made of plastic. Utilizing these characteristics, it is often machined into parts that require mechanical strength and installed in places where metals would be unsuitable, such as areas needing electrical insulation, thermal insulation, rust prevention, corrosion (electrolysis) prevention, and magnetization prevention. Given its reasonable price, it offers a well-balanced combination of excellent properties, allowing for potential improvements in functionality and cost reduction by replacing other materials previously used, depending on the application. Furthermore, with a specific gravity of about 1.8, for example, in situations where stainless steel (specific gravity ≈ 8.0) parts are used for rust and corrosion prevention, replacing them with this material can achieve nearly 80% weight reduction.
basic information
Glass fabric substrate epoxy resin laminated sheets are made by stacking a predetermined number of substrates (called prepreg) that have been impregnated with epoxy resin into glass fabric, and then pressing them at high pressure while applying high temperatures. This results in glass fiber reinforced plastic (GFRP: Glass Fiber Reinforced Plastic). 【Features】 〇 It has excellent mechanical strength, with a bending strength of 450 megapascals and a tensile strength of 350 megapascals for a 1mm thick specimen (JIS K 6911). 〇 The heat resistance temperature is 130°C. Even after heat treatment at 180°C for 2 hours, there are no significant changes in strength or dimensions. 〇 It has excellent electrical insulation properties, with an insulation resistance of 28,000 volts per 1mm of material (JIS K 6911). 〇 It is a plastic with extremely low discoloration and dimensional changes due to aging. 〇 It has excellent chemical resistance to oils, solvents, acids, and alkalis. 【Sizes】 〇 The thickness varies depending on the type. 〇 Surface polishing can be done to meet thickness precision requirements. 〇 The standard size is 1000×1000mm, but longer sizes such as 1200mm, 1500mm, and 2000mm can be accommodated depending on the type. 〇 It is also possible to cut and deliver to your desired size.
Price range
Delivery Time
Model number/Brand name
Rishoraito
Applications/Examples of results
Insulation boards and insulation supports for indoor distribution boards, insulation spacers for transformers and generators, insulation bolts & nuts, washers, insulation collars, etc. There are also products that have passed the "Material Combustion Test for Railway Vehicles" by the Japan Railway Machinery Association (JRMA).
Detailed information
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Bending strength test based on JIS K 6911.
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Bending strength The bending strength of a 1mm thick specimen is 450 megapascals. Many GFRP products are molded products based on thermoplastic resins. In contrast, glass fabric-based epoxy resin laminates are made by applying high heat to a substrate based on thermosetting resins while pressing at high pressure, resulting in excellent mechanical strength.
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Examples of insulation used around coils (image) are often adopted in a way that they are machined into parts requiring mechanical strength and installed in places where metal would be inconvenient.
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Examples of processing into insulating spacers Many GFRP products are molded using molds, but products made from glass fabric-based epoxy resin are obtained by "machining" from the material to achieve the desired shape.
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We also offer laminated pipes made of epoxy resin with a glass fabric substrate in a pipe shape.
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Industrial winding core This is a hollow structure winding core that is coupled via a flange to a tube that matches the chuck of the winding machine and a tube that is optimal in size for winding. To address wrinkles, it is necessary to increase the size of the winding core, but the increase in weight becomes a problem. With a glass epoxy winding core, these issues can be resolved simultaneously.
Line up(6)
Model number | overview |
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ES-3230 | 〇A representative glass fabric substrate epoxy resin laminate that meets ANSI standard G-10. 〇Demonstrates top-level performance in heat resistance, electrical properties, and mechanical strength. 〇In terms of chemical resistance, it excels particularly in alkali resistance. 〇Thickness can be manufactured from 0.1 to 50 mm. |
ES-3350N | 〇A flame-retardant type that meets ANSI standard FR-4.0. 〇UL flame class (flame retardant) is 94V-0. 〇Used as an insulating material in home appliances where safety is a priority, such as rice cookers and ovens. 〇Thickness can be manufactured from 0.1 to 50 mm. |
ES-3250J | 〇A black type of ES-3230. 〇Highly regarded as a material with minimal degradation over long periods at high temperatures. 〇There are examples of its use in applications requiring light shielding, taking advantage of its black appearance. 〇There is also a flame-retardant type (FR-4.0) called ES-3550J. |
ES-3260 | 〇The highest quality product equivalent to ANSI grade G-11, heat resistance class H (180℃). 〇Has minimal strength degradation due to heating and is used in heat-resistant spacers and insulation materials. |
ES-3440 | 〇A composite material uniquely structured by Rishou, alternating glass roving fabric and glass non-woven fabric, further blended with functional fillers. 〇Excellent arc resistance and tracking resistance. 〇Flame-retardant certified material for railway vehicles (3mm). 〇Does not use halogen-based flame retardants. |
ES-3753K | 〇A composite material combining glass fabric and glass non-woven fabric. 〇Electrical properties are equivalent to glass fabric substrate laminates, and mechanical properties maintain 70% of those of glass fabric substrate laminates. 〇Excellent processability for cutting and punching. 〇Flame-retardant certified material for railway vehicles (3mm). 〇There is also ES-3711, which consists solely of glass non-woven fabric. |