发明名称 Method for manufacturing a reflective optical film
摘要 A reflective optical film includes a reflective light-polarizing unit including a multilayer reflective sheet composed of a plurality of polymer films stacked on top of one another. Each polymer film has a thickness, every two adjacent polymer films are two different materials, and the thicknesses of the polymer films are gradually decreased from two outmost sides of the multilayer reflective sheet to a middle of the multilayer reflective sheet. At least one of the polymer films is a birefringence material layer that conforms to the condition of NX≠NY≠NZ, where NX is the index of refraction of light at X direction of the multilayer reflective sheet, NY is the index of refraction of light at Y direction of the multilayer reflective sheet, and NZ is the index of refraction of light at Z direction of the multilayer reflective sheet.
申请公布号 US9606280(B2) 申请公布日期 2017.03.28
申请号 US201615143564 申请日期 2016.04.30
申请人 EXTEND OPTRONICS CORP. 发明人 Chang Jen-Huai
分类号 G02B5/30;B29C55/02;B29D11/00;G02B5/08;G02B5/02;G02F1/1335;G02F1/13363;B29C70/64;B29C47/70;B29C47/06;B29C47/00;B29K67/00;B29K105/16;B29C47/56 主分类号 G02B5/30
代理机构 Li & Cai Intellectual Property (USA) Office 代理人 Li & Cai Intellectual Property (USA) Office
主权项 1. A method of manufacturing a reflective optical film, comprising: feeding materials to a feedblock multiplier with thickness-gradient variation, wherein the feedblock multiplier includes a feedblock section, a plurality of channels, a segmenting section, at least two channel-switching sections, a multiplier section, and an extruding section; transporting the materials to the feedblock section for splitting the materials into a plurality of fluids over the channels; transporting the fluids over the channels to the segmenting section defining a bevel or a curved cross section configured to define a multiple of layers and render the thickness-gradient variation, and segmenting the fluids over the channels into at least two fluid segments by the bevel or the curved cross section of the segmenting section, wherein each fluid segment includes fluids segmented over the plurality of channels; respectively flowing the at least two fluid segments over the at least two channel-switching sections for combining the at least two fluid segments in the multiplier section, wherein the at least two channel-switching sections are used to switch a relative transportation position of the channels in each channel-switching section, and the thicknesses of the channels over the channel-switching sections have gradient variation; stacking up the fluids over the channels comprised in each fluid segment at the multiplier section; outputting the fluids over the channels stacked at the multiplier section at the extruding section for producing a multilayer reflective sheet, wherein the multilayer reflective sheet is composed of a plurality of polymer films stacked on top of one another and each polymer film has a thickness, every two adjacent polymer films are two different materials, the thicknesses of the polymer films are gradually decreased from two outmost sides of the multilayer reflective sheet to a middle of the multilayer reflective sheet, at least one of the polymer films is a birefringence material layer that conforms to the condition of NX≠NY≠NZ, wherein NX is the index of refraction of light at X direction of the multilayer reflective sheet, NY is the index of refraction of light at Y direction of the multilayer reflective sheet, and NZ is the index of refraction of light at Z direction of the multilayer reflective sheet; and extending the multilayer reflective sheet.
地址 Taoyuan County TW