Sound-absorption structured composite material and preparation method thereof

A composite material and microporous channel technology, applied in chemical instruments and methods, synthetic resin layered products, layered products, etc., can solve the problems of sound-absorbing layer peeling failure, low-frequency sound absorption coefficient, and increased process links, etc. Achieve the effect of high product dimensional stability, high hole dimensional accuracy, and no need for auxiliary processing

Active Publication Date: 2014-07-30
TAICANG PAIOU TECH CONSULTING SERVICE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] However, the sound-absorbing materials mentioned in the above-mentioned patents are all used as a single sound-absorbing layer or decorative layer. In actual use, structural materials are required to bear external forces, and the sound-absorbing layer is prone to peeling off and failure due to increased process links. high cost
Resonant sound-absorbing structural materials have high low-frequency sound absorption coefficients, but poor processing performance. At present, the most widely used porous sound-absorbing materials have low low-frequency sound absorption coefficients. The preparation process of foam metal sound-absorbing materials is complicated, and molding difficulties restrict its development; foam rubber Inorganic fibers in plastic composite sound-absorbing materials such as rock wool, glass wool, and aluminum silicate fiber cotton are brittle and easy to break, and the sound-absorbing performance decreases seriously when they are damp, which is easy to cause harm to the environment

Method used

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  • Sound-absorption structured composite material and preparation method thereof
  • Sound-absorption structured composite material and preparation method thereof
  • Sound-absorption structured composite material and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] (1) Clean and preheat the mold, and apply a release agent;

[0030] (2) impregnating pre-woven glass fibers with a content of 46% to form a prepreg with epoxy resin;

[0031] (3) Three layers of the above-mentioned prepreg layers are stacked in the mold, and 20 prefabricated long straight copper pipes are placed in parallel between the layers. The diameter of the pipes is 1 mm, and the length is sufficient to protrude from both ends of the formed resin-based composite material;

[0032] (4) Mold clamping and fixing, injection of epoxy resin, molding by molding process;

[0033] (5) curing demoulding, trimming the glass fiber reinforced epoxy resin matrix composite material that makes;

[0034] (6) Prepare the power supply, wires, etc., use dilute hydrochloric acid with coupling agent as the corrosion solution, use the carbon material as the cathode, and the resin-based composite material as the anode to lap the corrosion circuit. The lower half of the resin-based compo...

Embodiment 2

[0037] (1) Clean and preheat the mold, and apply a release agent;

[0038] (2) pre-weaving carbon fiber with a content of 22% and glass fiber with a content of 38% and impregnated with epoxy resin to form a prepreg;

[0039] (3) Place 6 layers of the above-mentioned prepreg layers in the mold, place 40 prefabricated long straight aluminum pipes in parallel between the layers, the diameter of the pipes is 100 μm, and the length is sufficient to protrude from both ends of the formed resin-based composite material;

[0040] (4) Mold clamping and fixing, injection of epoxy resin, molding by molding process;

[0041] (5) curing and demoulding, trimming the obtained high-performance fiber reinforced epoxy resin-based composite material;

[0042] (6) Prepare power supply, wires, etc., use ammonia water with coupling agent as corrosive solution, carbon material as cathode, and resin-based composite material as anode to lap the corrosion circuit, and the lower half of the resin-based ...

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Abstract

The invention relates to a sound-absorption structured composite material. The sound-absorption structured composite material is composed of a resin matrix, a high-performance fiber-reinforced body and a plurality of layers of through micro-porous passages; the composite material is of a plate shape, planes formed by the plurality of layers of through micro-porous passages in the plate are parallel with one other and are parallel to the upper surface and the lower surface of the plate, a plurality of through micro-porous passages in each layer are parallel with one another and the trends of the micro-porous passages of each two adjacent layers are orthogonally overlaid in space; the diameter of each micro-porous passage is 1001microns-1mm, and the distance of the center lines of each two adjacent micro-porous passages is 1mm-2mm. A preparation method of the sound-absorption structured composite material comprises the steps of laying multiple layers of high-performance fiber prepregs impregnated with epoxy resin, arranging prefabricated straight metal pipelines among the layers, laminating, fixing, compositely forming with an epoxy resin matrix by a molding process, and then carrying out electrochemical corrosion on the prefabricated straight metal pipelines. The sound-absorption structured composite material integrates a structure material and a sound absorption property, the construction process is simplified, the cost is reduced, and the sound-absorption structured composite material has the excellent performance of good sound-absorption effect, corrosion resistance, environment protection, light weight, high strength and the like.

Description

technical field [0001] The invention relates to a composite material and a preparation method thereof, in particular to a sound-absorbing structure composite material and a preparation method thereof. Background technique [0002] With the development of science and technology and modern industry, noise pollution has become a worldwide problem. At the same time, with the enhancement of environmental awareness, people's requirements for the sound environment are getting higher and higher. Sound absorption and noise reduction has gradually evolved into an important issue that needs to be solved in the coordinated development of high technology, the environment, and human beings, such as the absorption and isolation of noise and vibration generated by high-speed trains, especially the "hidden sound" technology of submarines. Submarines are characterized by concealment and surprise attack. In the era of highly developed modern anti-submarine technology, whether a submarine has ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B32B27/06B29C70/34
Inventor 陈照峰王璐
Owner TAICANG PAIOU TECH CONSULTING SERVICE
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