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Supplier: Accuris
Description: EPOXY VINYL ESTER, (EVE), MATRIX, 32 % GLASS FIBER REINFORCED, HIGH MODULUS SHEET MOLDING COMPOUND
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Supplier: Total Plastics, Inc.
Description: PEEK with the addition of glass fibers significantly reduces the expansion rate and increases the flexural modulus. This grade is ideal for structural applications that require improved strength, stiffness or stability, especially at temperatures above 300 °F (148.8 °C).
- Filler: Fiber Glass
- Chemical System: PEEK
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Supplier: Norplex-Micarta
Description: NP512 combines a woven glass fabric and an epoxy resin system. The product provides high flexural, impact, and tensile strength at room temperatures along with a very high flexural modulus. NP512 is suitable for applications requiring enhanced flexural modulus and
- Use Temperature: 284 F
- Water Absorption: 0.1 %
- Tensile Strength (Break): 32,000 to 40,000 psi
- Dielectric Strength: 750.0000000000013 to 799.9999999999995 kV/in
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Supplier: Creative Composites Group
Description: CPI manufactures custom pultruded carbon fiber pultrusion to fit your strength, stiffness and geometric requirements. Carbon pultrusions are typically utilized for high stiffness applications that require a modulus of elasticity above that of typical E-glass. Applications
- Industry: Aerospace, General Industrial, Military / Government (MIL-SPEC)
- Filler: Carbon / Graphite
- Form / Shape: Pultruded Profile
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Supplier: ASTM International
Description: 1.1 This test method covers the procedure for the determination of the dry or wet (moisture conditioned) glass transition temperature (Tg) of polymer matrix composites containing high-modulus, 20 GPa (> 3 × 106 psi), fibers using a dynamic mechanical analyzer (DMA) under
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Supplier: MCA - Advanced Materials Division
Description: Ketron® CM GF30 Polyetheretherketone PEEK is a compression molded, 30% glass fiber reinforced grade with excellent dimensional stability and outstanding chemical, corrosion, and creep resistance. With the addition of glass fibers, Ketron® CM GF30 PEEK has a significantly
- Tensile Strength (Break): 11,000 psi
- Tensile Modulus: 850 ksi
- Use Temperature: 482 F
- Features: Other, Thermoplastic
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Supplier: MCA - Advanced Materials Division
Description: Ketron® GF30 Polyetheretherketone PEEK is a 30% glass fiber reinforced grade with excellent dimensional stability and outstanding chemical, corrosion, and creep resistance. With the addition of glass fibers, Ketron® GF30 PEEK has a significantly low expansion rate and
- Overall Width / O.D.: 0.375 to 4 inch
- Tensile Strength (Break): 14,000 psi
- Tensile Modulus: 1,000 ksi
- Use Temperature: 480 F
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Supplier: BNB INT. Co., Ltd.
Description: hydrothermal and steam without any physical changes. When glass fiber is added to PEEK GF, the expansion rate is lowered and the flexural modulus is increased. Because glass fibers can be worn when used on mating surfaces, their use is limited to applications
- Features: Corrosion Resistant, Dielectric / Electrically Insulating, Nonmagnetic, Plastic, Specialty / Other
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Supplier: ASTM International
Description: glass-fiber filled materials in mat form, and has good electrical properties; and Type 6 - high-impact glass-fiber filled materials in putty form. Sampled specimens shall be tested and conform accordingly to material requirements such as specific gravity, flexural
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Supplier: Master Bond, Inc.
Description: Supreme 121AO combines a high glass transition temperature along with an element of toughness, making it less rigid than typical higher temperature resistant epoxies. Supreme 121AO bonds to a wide variety of substrates including metals, composites, glass, and many rubbers and
- Viscosity: 10,000 to 25,000 cP
- Use Temperature: -80 to 550 F
- Thermal Conductivity: 0.5769116 to 0.7211395 W/m-K
- Tensile Strength (Break): 5,300 to 7,500 psi
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Supplier: Thermal Ceramics
Description: MORSIL nitride bonded silicon carbide. Key Properties of Nitride bonded Silicon Carbide High strength, even at high temperatures, High wear resistance, High decomposition temperature, Oxidation resistance even at very high temperatures, Corrosion resistance,
- Features: Specialty / Other
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Supplier: ASTM International
Description: 1.1 This practice describes procedures for shearography of polymer matrix composites and sandwich core materials made entirely or in part from fiber-reinforced polymer matrix composites. The composite materials under consideration typically contain continuous high modulus
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Supplier: ASTM International
Description: modulus (greater than 20 GPa (3106 psi)) fibers, but may also contain discontinuous fiber, fabric, or particulate reinforcement. 1.2 This practice describes established shearography procedures that are currently used by industry and federal agencies that have demonstrated
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proven that the dust capacity of the pre-filtered glass fiber bag filter media is 20% to 30% higher than its traditional counterparts. 1.Carries stable electret and high temperature resistance 2. Uniform fiberdistribution and filtering efficiency 3.Low resistance and (read more)
Browse Filter Elements Datasheets for Harbory Filtration -
GF series pleated filter cartridge is made of high porosity glass fiber (GF)membrane and polypropylene components under the associated controlled clean environment, without any adhesives or surfactants. It features high flux, high dirt holding resistance, high interception (read more)
Browse Filter Elements Datasheets for Harbory Filtration -
Oil repellency and water repellency glass fiber filter media is using ultra-fine glass microfiber as the main media and is formed by wet process. Featuring excellent oil repellency and water repellency, uniformed fiber distribution, pleatability, large dust capacity, high efficiency, high (read more)
Browse Filter Media Datasheets for Harbory Filtration -
Glass fiber filter media is using ultra-fine glass microfiber as the main media and is formed by wet process.Featuring uniformed fiber distribution, pleatability,large dust capacity, high efficiency, high strength and high stiffness. It covers primary and medium efficiency (ASHRAE),high (read more)
Browse Filter Media Datasheets for Harbory Filtration -
bearings. Combining the excellent lubricating properties of filled PTFE (polytetrafluoroethylene) with the high strength and stability of epoxy-impregnated, wound glass fibers, this tough, high strength line of bearings provide the radial and axial strength required to support high bearing loads (read more)
Browse Plain Bearings and Sleeve Bearings Datasheets for GGB -
Machinable: Can be cut, milled, drilled, and tapped using standard metal tools for high-precision complex parts (read more)
Browse Industrial Ceramic Materials Datasheets for Shenzhen Great Precision Ceramic CO., LTD. -
helps to precisely control the direction of propagation of the beam and the position of the focal point, thus increasing the precision of laser processing and measurement. 3. Optical communication: in fiber optic communication systems, half ball lenses can be used for coupling and separating (read more)
Browse Optical Lenses Datasheets for Changchun Yutai Optics Co., Ltd. -
pitch precursors; Upgradable for rayon and high-modulus carbon fibers; Internals designed with high degree of corrosion resistance for alternative precursors - Designed for 3k to 80k tows and web up to 300mm wide x 12.7mm loft (read more)
Browse Furnaces (industrial) Datasheets for Harper International Corporation -
affordability. Suitable for water treatment, solvents, and acidic/alkaline fluids. PES or Glass Fiber: Opt for PES membranes for high-temperature sterilization (up to 121°C) or glass fiber for viscous/colloidal liquids in petrochemical or pharmaceutical industries (read more)
Browse Filter Elements Datasheets for Harbory Filtration -
Conduct Research Top
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Making Sense of High-Temperature Thermoplastics
the most commonly used. high-temperature thermoplastics, this article. defines these polymers as those having. a heat deflection temperature (HDT). of more than 400°F when reinforced with. 30 percent glass-fiber. (Heat deflection temperature. is the deformation temperature. of an injection-molded
More Information Top
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Fiberglass and Glass Technology
F. T. Wallenberger and S. D. Brown, High modulus glass fibers for new transportation and infrastructure composites and for new infrared uses, Compos.
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High‐Performance Glass Fiber Development for Composite Applications
S. Vennam, J. C. Serrano, and C. A. Richards, “ High Modulus Glass Fibers for Next Generation Wind Blades,” SAMPE 2013 Proceedings, Con- ference on Education & Green Sky – Materials Technology for a Better World, Long Beach, CA, May 6–9…
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Mechanical and dynamic mechanical analysis of hybrid composites molded by resin transfer molding
The high modulus glass fibers introduce con- straints on the segmental mobility of the polymeric molecules at the relaxation temperatures, but, .
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Processing, Mechanical Characterization, and Alkali Resistance of SiliconBoronOxycarbide ( SiBOC ) Glass Fibers
2 D. R. Messier and P. J. Patel, “ High Modulus Glass Fibers ,” J. Non-Cryst.
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Effect of soapstone filler on dry sliding wear behaviour of fiber reinforced polymeric composite
In the latter stages, the disc was in contact with the high modulus glass fibres .
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Polymer Composites, Volume 1, Macro - and Microcomposites
M-glass (M ¼ modulus): M-glass or YM-31A is a high modulus glass fiber , showing higher mechanical stiffness properties than E-glass.
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Influence of interfacial adhesion on the structural and mechanical behavior of PP‐banana/glass hybrid composites
BSGRP with and without MAPP revealing higher stress than its BFRP counterpart primarily due to the replacement of low modulus banana fiber by high modulus glass fiber .
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Study to determine and analyze the strength of high modulus glass in epoxy-matrix composites
The fibers resulting from the composition program were then used to produce fiber reinforced-epoxy resin composites which were compared with composites reinforced by commercial high modulus glass fibers , Thornel S graphite fiber, and hybrids where the external quarters were reinforced with…
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Study on short glass fiber‐reinforced poly(3‐hydroxybutyrate‐ co ‐4‐hydroxybutyrate) composites
This shows that the high modulus glass fiber makes the composite more rigid.
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Advanced Research on Material Engineering and its Application
As early as the 60’s, Shanghai FRP Research Institute had produced FRP struts by using high modulus glass fiber .
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