Resin composition used for preparing glass fiber reinforced plastic rod and preparation method for resin composition
A technology of resin composition and reinforced plastic, which is applied in the field of resin composition and its preparation for the preparation of glass fiber reinforced plastic rods, can solve the problems of low yield, poor mechanical properties, low curing degree, etc., and achieve improved product curing The effect of high-speed, high-speed, large-scale output, and simple preparation process
Inactive Publication Date: 2014-12-10
巨野兆迅复合材料有限公司
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Problems solved by technology
However, the glass fiber reinforced plastic rods currently on the market have a series of problems such as low curing degree, low product yield and poor mechanical properties.
Method used
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Embodiment 1
[0012] 100 parts of epoxy vinyl resin, 9 parts of internal release agent, initiator: 12 parts of TBPB, crosslinking agent: 15 parts of BPO, filler: 6 parts of aluminum hydroxide or calcium carbonate.
Embodiment 2
[0014] Epoxy vinyl resin 100 parts, internal release agent 12 parts, initiator: TBPB 10 parts, cross-linking agent: BPO 10 parts, filler: aluminum hydroxide or calcium carbonate 12 parts.
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Abstract
The invention relates to a resin composition used for preparing a glass fiber reinforced plastic rod and a preparation method for the resin composition. The resin composition comprises 100 parts of epoxy vinyl resin, 3-16 parts of an internal releasing agent, 5-18 parts of an initiating agent, 5-20 parts of a cross-linking agent and 4-15 parts of filler. The resin composition uses the proper base materials and the scientific formula, improves the solidification effect of FRP, increases the product yield, and effectively improves the mechanical property of the product.
Description
Technical field [0001] The application relates to a resin composition for preparing glass fiber reinforced plastic rods and a preparation method thereof. Background technique [0002] Optical cable is the main transmission tool of various information networks in today's information society. In 1976, the Bell Institute of the United States built the first optical fiber communication experimental system in Atlanta. In 1988, the first transatlantic submarine cable connecting the United States and Britain and France was successfully laid, and soon the first transpacific submarine cable was built. As for the submarine optical cable, China developed its own communication optical cable in 1978 and gradually used it for long-distance lines after 1984. Driven the rapid rise of the optical cable manufacturing industry, the technical research and development of the optical cable field has continuously achieved new results, and new products have been released continuously. The copper reinfo...
Claims
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Patent Timeline
Login to View More IPC IPC(8): C08L101/06C08K3/22C08K3/26C08K5/14C08J5/04
Inventor 徐龙现赵忠良苑翠玲
Owner 巨野兆迅复合材料有限公司
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