Curved reflective mirror and manufacturing method thereof

US9541683B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9541683-B2
Application numberUS-201113995029-A
CountryUS
Kind codeB2
Filing dateOct 12, 2011
Priority dateDec 17, 2010
Publication dateJan 10, 2017
Grant dateJan 10, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A curved reflective mirror includes a flat glass structure, an intermediate adhesive layer, and a flat glass mirror. The intermediate adhesive layer is positioned between the flat glass structure and the flat glass mirror. The flat glass structure, the intermediate adhesive layer, and the flat glass mirror are curved and deformed in a mechanical manner with the support of a mold. The curved and deformed flat glass structure, intermediate adhesive layer, and flat glass mirror are solidified and bonded together in a heating and/or ultraviolet (UV) light radiation and/or room temperature solidification manner to form a composite curved structure. Also provided is a method for manufacturing a curved reflective mirror. The curved reflective mirror can be widely applied in the fields of solar thermal collection and concentration and solar thermal power generation.

First claim

Opening claim text (preview).

What is claimed is: 1. A curved reflective mirror, comprising a flat glass structure, an intermediate adhesive layer, and a flat glass mirror, wherein the intermediate adhesive layer is positioned between the flat glass structure and the flat glass mirror, so that the flat glass structure, the intermediate adhesive layer, and the flat glass mirror are curved and deformed in a mechanical manner with support of a mold, and the curved and deformed flat glass structure, intermediate adhesive layer, and flat glass mirror are solidified and bonded together in a heating and/or ultraviolet (UV) light radiation and/or room temperature solidification manner to form a composite curved surface structure, wherein the intermediate adhesive layer comprises an adhesive and a reinforcement shaper, and wherein the reinforcement shaper reduces liquidity of the adhesive, and causes the adhesive to be uniformly distributed between the flat glass structure and the flat glass mirror. 2. The curved reflective mirror according to claim 1 , wherein the UV light radiation manner is a UV lamp radiation or outdoor sunshine radiation manner. 3. The curved reflective mirror according to claim 1 , wherein the intermediate adhesive layer is a hot melt glue sheet. 4. The curved reflective mirror according to claim 3 , wherein the hot melt glue sheet is ethylene-vinyl acetate copolymer (EVA) or polyvinyl butyral (PVB). 5. The curved reflective mirror according to claim 1 , wherein the intermediate adhesive layer comprises a hot melt glue sheet and the reinforcement shaper, and the hot melt glue sheet is positioned on the reinforcement shaper. 6. The curved reflective mirror according to claim 1 , wherein the intermediate adhesive layer comprises liquid light solidification glue and the reinforcement shaper, and the liquid light solidification glue is coated on the reinforcement shaper. 7. The curved reflective mirror according to claim 6 , wherein the liquid light solidification glue is a UV binder. 8. The curved reflective mirror according to claim 1 , wherein the intermediate adhesive layer comprises an ordinary chemical adhesive. 9. The curved reflective mirror according to claim 8 , wherein the ordinary chemical adhesive is a single-component, two-component, or multi-component adhesive. 10. The curved reflective mirror according to claim 1 , wherein the intermediate adhesive layer comprises an ordinary chemical adhesive and the reinforcement shaper, and the chemical adhesive is coated on the reinforcement shaper. 11. The curved reflective mirror according to claim 1 , wherein the reinforcement shaper is glass fiber fabric or non-woven fabric. 12. The curved reflective mirror according to claim 1 , wherein an end edge of the curved reflective mirror or the entire curved reflective mirror is placed on a mirror holder and the mirror holder is used for fixing the curved reflective mirror. 13. The curved reflective mirror according to claim 1 , wherein the flat glass structure is toughened glass, and the flat glass mirror is a toughened glass mirror. 14. The curved reflective mirror according to claim 1 , wherein the flat glass structure is non-toughened glass, and the flat glass mirror is a non-toughened glass mirror. 15. The curved reflective mirror according to claim 14 , wherein the intermediate adhesive layer is 0.1 millimeters to 2 millimeters thick. 16. The curved reflective mirror according to claim 1 , wherein the flat glass structure is 2 millimeters to 5 millimeters thick, and the flat glass mirror is 0.5 millimeters to 3.2 millimeters thick. 17. The curved reflective mirror according to claim 1 , wherein the curved reflective mirror is a concave mirror or a convex mirror. 18. The curved reflective mirror according to claim 1 , wherein the flat glass structure is multi-layer flat glass, and the multiple layers of the flat glass are molded and fixed through a continuous adhesive layer of a large size. 19. The curved reflective mirror according to claim 1 , wherein the flat glass structure is two-layer flat glass, first flat glass is close to the flat glass mirror, and second flat glass arranged at the bottom is greater than the first flat glass in size. 20. The curved reflective mirror according to claim 1 , wherein the flat glass mirror and first flat glass are arranged in a misaligned manner on second flat glass along an axial direction to form a large-sized curved reflective mirror. 21. The curved reflective mirror according to claim 1 , wherein second flat glass, first flat glass, and the flat glass mirror are consistent in size, and are arranged in a staggered manner along an axial direction and are molded through solidification. 22. The curved reflective mirror according to claim 1 , wherein the intermediate adhesive layer comprises an adhesive layer and the reinforcement shaper in direct contact with the adhesive layer. 23. A curved reflective mirror according to claim 1 , wherein the reinforcement shaper comprises a fabric support structure that supports the adhesive between the flat glass structure and the flat glass mirror. 24. A method of manufacturing a curved reflective mirror, comprising: arranging a flat glass mirror, an intermediate adhesive layer, and a flat glass structure in sequence on a curved surface supporting apparatus, wherein the intermediate adhesive layer comprises an adhesive and a reinforcement shaper; curving and deforming the flat glass mirror, the intermediate adhesive layer, and the flat glass structure in a mechanical manner with the support of a mold; and solidifying and pressing together the curved and deformed flat glass structure, intermediate adhesive layer, and flat glass mirror in a heating and/or ultraviolet (UV) light radiation and/or room temperature solidification manner to form a composite curved reflective mirror, wherein the reinforcement shaper reduces liquidity of the adhesive, and causes the adhesive to be uniformly distributed between the flat glass structure and the flat glass mirror. 25. The method of manufacturing a curved reflective mirror according to claim 24 , wherein before the solidification and pressing step, the method comprises a step of preliminarily pressing the flat glass mirror and the flat glass structure onto the curved surface supporting apparatus by using the elasticity of the flat glass mirror. 26. The method of manufacturing a curved reflective mirror according to claim 24 , wherein before the step of arranging the flat glass mirror, the intermediate adhesive layer, and the flat glass structure in sequence on the curved surface supporting apparatus, the method comprises a step of manufacturing the curved surface supporting apparatus. 27. The method of manufacturing a curved reflective mirror according to claim 26 , wherein the curved surface supporting apparatus comprises a base and a curved surface supporting member, curvature of the curved surface supporting member is greater than that of the demanded curved reflective mirror, so as to compensate for a recurrent magnitude of the finished curved reflective mirror. 28. The method of manufacturing a curved reflective mirror according to claim 24 , wherein after the solidification and pressing step, the method comprises a step of trimming and detecting the composite curved reflective mirror. 29. The method of manufacturing a curved reflective mirro

Assignees

Inventors

Classifications

  • with the aid of adhesive specially adapted for that purpose · CPC title

  • with trough-shaped or cylindro-parabolic reflective surfaces · CPC title

  • Metallic coatings · CPC title

  • PV systems with concentrators · CPC title

  • to form dished or receptacle-like product · CPC title

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Frequently asked questions

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What does patent US9541683B2 cover?
A curved reflective mirror includes a flat glass structure, an intermediate adhesive layer, and a flat glass mirror. The intermediate adhesive layer is positioned between the flat glass structure and the flat glass mirror. The flat glass structure, the intermediate adhesive layer, and the flat glass mirror are curved and deformed in a mechanical manner with the support of a mold. The curved and…
Who is the assignee on this patent?
Liu Yang, Terasolar Photothermal Tech Co Ltd
What technology area does this patent fall under?
Primary CPC classification G02B5/10. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jan 10 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).