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Lar Série de interferência

Pó de pérola de pigmento perolado série de interferência

Pó de pérola de pigmento perolado série de interferência

Ao controlar com precisão a espessura do revestimento de dióxido de titânio, a série de interferência produz cores douradas, vermelhas, roxas, azuis, verdes e outras cores que alteram a interferência, semelhantes ao arco-íris, que conferem brilho. A cor desta série de produtos é totalmente causada pela interferência da luz física. A diferença do caminho óptico entre a luz refletida do dióxido de titânio de alto índice de refração e a luz refletida da mica de baixo índice de refração interfere nas cores diferentes.

  • Tamanho da partícula :

    5-25μm,10-60μm,10-100μm
  • Pedido (quantidade mínima) :

    25kg
  • Pagamento :

    TT, LC,paypal, DP
  • Marca :

    TUOCAI
  • Porto de embarque :

    Shanghai
  • Tempo de espera :

    3-7days
ModeloCorTamanho da partículaMicaTiO2SnO2
TC2001Cetim dourado5-25μm
TC2011Cetim vermelho5-25μm
TC223Cetim roxo5-25μm
TC231Cetim verde5-25μm
TC249Ouro instantâneo10-100μm
TC289Flash azul10-100μm
TC205Pérola de ouro10-60μm
TC215Pérola vermelha10-60μm
TC217Pérola Laranja10-60μm
TC219Prata roxa10-60μm
TC225Pérola azul10-60μm
TC235Pérola verde10-60μm

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Pó de pérola de pigmento perolado série de interferência

Ao controlar com precisão a espessura do revestimento de dióxido de titânio, a série de interferência produz cores douradas, vermelhas, roxas, azuis, verdes e outras cores que alteram a interferência, semelhantes ao arco-íris, que conferem brilho. A cor desta série de produtos é totalmente causada pela interferência da luz física. A diferença do caminho óptico entre a luz refletida do dióxido de titânio de alto índice de refração e a luz refletida da mica de baixo índice de refração interfere nas cores diferentes.

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TC2001 Interference series pearlescent pigment pearl powder

By precisely controlling the coating thickness of titanium dioxide,interference series produces gold, red, purple, blue, green and other rainbow-like interference-changing colors that impart luster. The color of this series of products is completely caused by the interference of physical light. The optical path difference between the reflected light of high refractive index titanium dioxide and the reflected light of low refractive index mica interferes with different colors.

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