BIPV Building-integrated color junction BIPV manufacturing method with power drop prevention function
The present invention relates to a method for manufacturing a laminated glass for sunlight, wherein the control of a penetration ratio of a color is implemented by using a micro-dot pattern with a self-purifying property with a coated nano-inorganic material. The method for manufacturing building-in...
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Format: | Patent |
Sprache: | eng ; kor |
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Zusammenfassung: | The present invention relates to a method for manufacturing a laminated glass for sunlight, wherein the control of a penetration ratio of a color is implemented by using a micro-dot pattern with a self-purifying property with a coated nano-inorganic material. The method for manufacturing building-integrated color junction BIPV is configured to maintain 10 um to 33 um of a coating thickness by mixing 5 to 30% of a color raw material to Pb-free low-melting frit to be fused and color-developed on a glass surface by reaching a heat drying temperature of 500° to 800℃, so it is possible to manufacture various colors by an NMYK color system, which is a Korea industrial standard, and can implement color and penetration ratio control by using a dot-shaped micro pattern as a nano-ceramic material that can be used as an external building material due to its excellent weather resistance, chemical resistance, and mechanical properties.
본 발명은 나노 무기소재 코팅으로 자정작용 특성을 갖는 마이크로 도트 패턴을 이용하여 칼라(색상)의 투과율 제어가 실현되는 태양광용 접합유리 제조 방법에 관한 것으로 무연(Pb free) 저 융점 후릿트에 5-30% 정도의 칼라 원료를 혼합하여 도막두께 10~33um 를 유지하며, 500~800 ℃ 소부온도에 이르게 하여 유리표면에 융착발색되도록 하는 것으로 한국 공업표준 규격인 CMYK 조색시스템에 의해 다양한 색상으로 조색이 가능하며, 내후성과 내화학성, 기계적 물성이 우수하여 외장재로 사용이 가능한 나노 세라믹 소재로서 도트형태의 마이크로 패턴을 이용하여 칼라(색상)와 투과율 제어를 구현시키는 건물일체형 컬러접합 BIPV제조방법에 관한 것이다. |
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