WO2010069256A1 - 数码立体成像光栅和感光材料感光装置及其方法 - Google Patents

数码立体成像光栅和感光材料感光装置及其方法 Download PDF

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Publication number
WO2010069256A1
WO2010069256A1 PCT/CN2009/075656 CN2009075656W WO2010069256A1 WO 2010069256 A1 WO2010069256 A1 WO 2010069256A1 CN 2009075656 W CN2009075656 W CN 2009075656W WO 2010069256 A1 WO2010069256 A1 WO 2010069256A1
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Prior art keywords
photosensitive
grating
platform
photosensitive material
lens
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PCT/CN2009/075656
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English (en)
French (fr)
Inventor
顾金昌
Original Assignee
Gu Jinchang
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Application filed by Gu Jinchang filed Critical Gu Jinchang
Priority to RU2011129202/28A priority Critical patent/RU2011129202A/ru
Priority to JP2011541071A priority patent/JP5624991B2/ja
Priority to EP09832938.6A priority patent/EP2378358A4/en
Priority to US13/140,339 priority patent/US8705011B2/en
Publication of WO2010069256A1 publication Critical patent/WO2010069256A1/zh

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    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B27/00Photographic printing apparatus
    • G03B27/32Projection printing apparatus, e.g. enlarger, copying camera
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03FPHOTOMECHANICAL PRODUCTION OF TEXTURED OR PATTERNED SURFACES, e.g. FOR PRINTING, FOR PROCESSING OF SEMICONDUCTOR DEVICES; MATERIALS THEREFOR; ORIGINALS THEREFOR; APPARATUS SPECIALLY ADAPTED THEREFOR
    • G03F7/00Photomechanical, e.g. photolithographic, production of textured or patterned surfaces, e.g. printing surfaces; Materials therefor, e.g. comprising photoresists; Apparatus specially adapted therefor
    • G03F7/26Processing photosensitive materials; Apparatus therefor
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B25/00Viewers, other than projection viewers, giving motion-picture effects by persistence of vision, e.g. zoetrope
    • G03B25/02Viewers, other than projection viewers, giving motion-picture effects by persistence of vision, e.g. zoetrope with interposed lenticular or line screen
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B27/00Photographic printing apparatus
    • G03B27/32Projection printing apparatus, e.g. enlarger, copying camera
    • G03B27/52Details
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B35/00Stereoscopic photography
    • G03B35/14Printing apparatus specially adapted for conversion between different types of record
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03DAPPARATUS FOR PROCESSING EXPOSED PHOTOGRAPHIC MATERIALS; ACCESSORIES THEREFOR
    • G03D15/00Apparatus for treating processed material
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03DAPPARATUS FOR PROCESSING EXPOSED PHOTOGRAPHIC MATERIALS; ACCESSORIES THEREFOR
    • G03D3/00Liquid processing apparatus involving immersion; Washing apparatus involving immersion
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03FPHOTOMECHANICAL PRODUCTION OF TEXTURED OR PATTERNED SURFACES, e.g. FOR PRINTING, FOR PROCESSING OF SEMICONDUCTOR DEVICES; MATERIALS THEREFOR; ORIGINALS THEREFOR; APPARATUS SPECIALLY ADAPTED THEREFOR
    • G03F7/00Photomechanical, e.g. photolithographic, production of textured or patterned surfaces, e.g. printing surfaces; Materials therefor, e.g. comprising photoresists; Apparatus specially adapted therefor
    • G03F7/0037Production of three-dimensional images
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03CPHOTOSENSITIVE MATERIALS FOR PHOTOGRAPHIC PURPOSES; PHOTOGRAPHIC PROCESSES, e.g. CINE, X-RAY, COLOUR, STEREO-PHOTOGRAPHIC PROCESSES; AUXILIARY PROCESSES IN PHOTOGRAPHY
    • G03C7/00Multicolour photographic processes or agents therefor; Regeneration of such processing agents; Photosensitive materials for multicolour processes

Definitions

  • the present invention relates to a digital stereoscopic imaging grating and a photosensitive material photosensitive device and a method thereof.
  • the method of making stereoscopic images using silver halide dielectric materials on the market has been using the traditional techniques of the early years, that is, the gratings and the photosensitive materials are synthesized first, then the photosensitive images are projected and washed to form a stereoscopic image, and there are two disadvantages in this way.
  • the photosensitive material used is that the grating and the photosensitive material are synthesized first, and then the light is projected and washed. Because the grating material is thick, it cannot be folded and washed, and a very large plate washing device of ten meters long is required to be flushed.
  • the technical problem to be solved by the present invention is to overcome the above-mentioned drawbacks of the prior art, and to provide a digital stereoscopic imaging grating and a photosensitive material photosensitive device and a method thereof.
  • a digital stereoscopic imaging grating and a photosensitive material photosensitive device characterized in that the digital stereoscopic imaging grating and the photosensitive material photosensitive device comprise: [6] a photosensitive platform, the photosensitive platform is connected to a base through a platform moving mechanism;
  • the present invention also provides a method for digital stereo imaging using the above-described digital stereoscopic imaging grating and photosensitive material photosensitive device, which is characterized in that it comprises the following steps:
  • step S6 the photosensitive material washed in step S6 is combined with the grating.
  • the positive progress of the present invention is as follows:
  • the digital stereoscopic imaging grating and the photosensitive material photosensitive device of the present invention can separate the photosensitive material from the grating after the projection is photosensitive, so that the general washing device can be washed, and then, the photosensitive device.
  • the material can be used in general ordinary silver halide photographic materials, and the price is low, and it is easy to popularize and popularize.
  • the projection sensitization method uses a conventional synthetic photographic material method to reduce the brightness of the projection film by a double-sided film, the color contrast of the stereo image is better than that of the conventional grating and the photographic material. The image quality of the method.
  • DRAWINGS 1 is a digital stereoscopic imaging grating and a photosensitive material photosensitive device in the present invention.
  • FIG. 2 is a flow chart of a digital stereo imaging method in the present invention.
  • FIG. 1 is a side cross-sectional view showing a digital stereoscopic imaging grating and a photosensitive material photosensitive device in the present invention.
  • the light source device 1 is projected on the grating 5 and the photosensitive material 6 through the liquid crystal display 2 and the lens 4 to perform light sensing. Since the image taken by the stereo camera is at least two, each time the captured image is subjected to projection and light sensing, the photosensitive platform 8 and The lens 4 is moved in the same direction in proportion to the next projection.
  • the distance that the lens 4 moves is mainly determined according to the different viewing angles of the camera in which the stereoscopic image is taken, and the larger the viewing angle is, the larger the moving distance is.
  • the photosensitive platform 8 is fixedly fixed on the mounting surface by a platform moving mechanism.
  • the movable platform moving mechanism includes a motor 9 connected to the screw 10 through the movable connector 11 , and the bottom of the photosensitive platform 8 is provided with a sliding joint with the lead screw 10 .
  • the block drives the lead screw 10 through the motor 9 to move the photosensitive platform 8, and the photosensitive platform 8 moves to ensure that the light emitted from the moved lens 4 can cover the entire area to be projected again.
  • the liquid crystal display 2 performs image switching after each movement of the lens 4 and the photosensitive platform 8 by computer control, so that the lens 4 displays the image on the next liquid crystal display 2, and the movement of the lens 4 is performed by the lens shifting mechanism 3.
  • the moving mechanism can be a gear transmission or a screw drive or the like.
  • the pressing mechanism 7 mounted on the photosensitive platform 8 fixes the grating 5 and the photosensitive material 6 on the photosensitive platform 8, keeping the photosensitive material 6 and the grating 5 flat so that the projection area is completely adhered to the photosensitive platform 8 to ensure the projection effect.
  • the second image is sensitized, and the lens 4 and the photosensitive platform 8 are moved once in the same direction for each photosensitive exposure, and how many times the stereo image needs to be moved. In this way, a photograph is taken on the photosensitive material to project different viewing angles of the same scene.
  • the photosensitive material after the photosensitive is washed, dried, and then combined to form a stereoscopic image.
  • the grating is placed between the photosensitive platform and the pressing mechanism, and then the photosensitive material is placed between the grating and the photosensitive platform, and the grating and the photosensitive material are automatically pressed against the photosensitive platform by the pressing mechanism. Then, the photosensitive material is projected and exposed. After the sensitization is completed, the compacting mechanism grating is separated from the photosensitive material, and the photosensitive material is detached. After the photographic material is washed. The washed photograph is dried, and the dried photograph is combined with the grating film to form a stereoscopic image.
  • the above steps of projecting the photosensitive material to the photosensitive material include:
  • Step 1 A grating is fixedly placed between the photosensitive platform and the pressing mechanism, and the photosensitive material is sent between the photosensitive platform and the grating, and the grating and the photosensitive material are pressed by a pressing mechanism. On the photosensitive platform.
  • Step 2 Display the image of one viewing angle taken by the camera from the liquid crystal display, and use the lens to project the photosensitive material for the first projection.
  • Step 3 After the first projection is over, the computer replaces another photo with different viewing angles. The lens moves a distance, and then the photosensitive platform moves in the same direction as the photosensitive lens until the photosensitive platform The photosensitive area is again covered by the light emitted by the lens, and then the second projection is performed.
  • Step 4 Repeat step 3 until all photos taken at different viewing angles are illuminated. Among them, the number of times of projection light sensing is determined according to the number of stereoscopic images of a plurality of different viewing angles taken by the stereo camera.
  • Step 5 Release the pressing mechanism to separate the grating from the photosensitive material.
  • Step 6. Rinse the photosensitive material.
  • Step 7 Combine the photographic material washed in step 6 with the grating.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Studio Devices (AREA)
  • Stereoscopic And Panoramic Photography (AREA)
  • Diffracting Gratings Or Hologram Optical Elements (AREA)
  • Projection-Type Copiers In General (AREA)

Description

说明书
Title of Invention:数码立体成像光栅和感光材料感光装置及其方法 技术领域
技术领域
[1] 本发明涉及一种数码立体成像光栅和感光材料感光装置及其方法。
背景技术
背景技术
[2] 目前市场上釆用卤化银介质材料制作立体图像的方法至今沿用早年传统工艺, 就是先将光栅与感光材料合成好再投影感光、 冲洗形成立体图像, 而这种方式 存在两方面的不足, 其一是由于使用的感光材料是先将光栅和感光材料合成好 , 再投影感光和冲洗, 因光栅材料较厚, 无法折叠冲洗, 要生产很庞大的十几 米长的平板冲洗设备来配套冲洗, 对冲洗带来极大的不便, 且要耗用大量的冲 洗药水向上进行强行喷淋冲洗, 而耗药、 耗吋, 且要占用很大的场地, 还要污 染环境, 操作麻烦, 成功率低, 效力又差, 加之由于釆用先行复合好的光栅和 感光材料中间有一层双面膜, 所以投影感光的透射度有所减弱影响了立体图像 的反差和透射效果; 其二由于使用的载体是光栅与感光材料合成后的感光材料 , 要依赖进口, 且其材料价格非常昂贵, 因此成本高, 至今立体影像市场未能 推广和普及。
对发明的公开
技术问题
[3] 本发明要解决的技术问题是为了克服现有技术的上述缺陷, 提供一种数码立体 成像光栅和感光材料感光装置及其方法。
技术解决方案
[4] 本发明是通过下述技术方案来解决上述技术问题的:
[5] —种数码立体成像光栅和感光材料感光装置, 其特点在于, 该数码立体成像光 栅和感光材料感光装置包括: [6] 一感光平台, 该感光平台通过一平台移动机构与一底座连接;
[7] 一设于该感光平台上的压紧机构, 该压紧机构上放置一光栅;
[8] —悬设于该感光平台上方的液晶显示器;
[9] 一通过一镜头移动机构悬设于该感光平台上方的镜头, 该镜头位于该液晶显示 器下方。
[10] 本发明还提供一种釆用上述数码立体成像光栅和感光材料感光装置进行数码立 体成像的方法, 其特点在于, 其包括如下步骤:
[11] Sl、 将一光栅固定安放在该感光平台与该压紧机构之间, 将该感光材料送至该 感光平台与该光栅之间, 通过压紧机构将该光栅和感光材料压紧在该感光平台 上;
[12] S2、 将相机所拍摄的一视角度的图像由液晶显示器显示, 并通过该镜头透过光 栅投影在感光材料上进行第一次投影感光;
[13] S3、 第一次投影感光结束后, 计算机更换另一张不同视角度的照片, 该镜头移 动一段距离, 然后该感光平台与该感光镜头同向移动一段距离直至该感光平台 上的需感光区域再次被由该镜头射出的光线覆盖, 再进行第二次投影感光; [14] S4、 重复步骤 S3直至所有不同视角度拍摄的照片均投影感光完毕; 其中, 根据 立体相机所拍摄数张不同视角度的立体图像的数量来确定投影感光的次数; [15] S5、 松开压紧机构该光栅和该感光材料分离;
[16] S6、 对感光材料进行冲洗;
[17] S7、 将步骤 S6中冲洗完的感光材料与该光栅进行加膜复合。
有益效果
[18] 本发明的积极进步效果在于: 釆用本发明中的数码立体成像光栅和感光材料感 光装置可以在投影感光后将感光材料与光栅分开, 因此一般普通冲洗设备就可 以冲洗, 其次, 感光材料可釆用一般普通卤化银感光材料, 价格低廉, 易于推 广普及使用。 更进一步的, 因投影感光吋比使用传统合成好的感光材料方法在 投影感光吋少了一层双面膜, 立体图像的色彩反差优于釆用传统的先把光栅与 感光材料先行复合再投影的方法的图像质量。
附图说明 [19] 图 1为本发明中的数码立体成像光栅与感光材料感光装置。
[20] 图 2为本发明中的数码立体成像方法的流程图。
本发明的最佳实施方式
[21]
本发明的实施方式
[22] 下面结合附图给出本发明较佳实施例, 以详细说明本发明的技术方案。
[23] 图 1为本发明中的数码立体成像光栅和感光材料感光装置的侧面剖析图。 将光 源设备 1通过液晶显示器 2和镜头 4投影在光栅 5和感光材料 6上进行感光, 由于通 过立体相机拍摄的图像最少为二个, 每次拍摄的图像经过投影感光后, 将感光 平台 8和镜头 4进行按比例同方向移动后再进行下一次投影感光。 该镜头 4移动的 距离主要根据在拍摄立体图像吋相机不同的拍摄视角度来确定感光角度的大小 , 视角度变化越大移动的距离就越大。 感光平台 8通过一平台移动机构活动固定 在安装面上, 该活平台移动机构包括一电机 9, 其通过动连接器 11和丝杆 10连接 , 感光平台 8底部设有与丝杠 10配合的滑块, 通过电机 9驱动丝杆 10带动感光平 台 8移动, 感光平台 8移动是为了确保从移动后的镜头 4中射出的光线能再次覆盖 整个需要投影的区域。 这吋候液晶显示器 2通过计算机控制在镜头 4和感光平台 8 每次移动后都进行图像切换, 这样镜头 4就显示了下一个液晶显示器 2上的图像 , 镜头 4的移动通过镜头移动机构 3来完成, 该移动机构可以为齿轮传动装置或 者丝杠传动装置等。 安装在感光平台 8上的压紧机构 7将光栅 5和感光材料 6固定 在感光平台 8上, 保持感光材料 6和光栅 5的平整使需投影区域完全紧贴于感光平 台 8上确保投影效果。 经过移动后, 再进行第二个图像感光, 每感光一次都要进 行镜头 4和感光平台 8按比例同步同方向移动一次, 有多少立体图像就需要进行 多少次移动。 这样在感光材料上就形成投射了同一景物不同拍摄视角度的照片 , 最后将感光后的感光材料通过冲洗、 烘干后再加膜复合就形成了立体图像。
[24] 图 2为本发明中数码立体成像的方法, 其包括如下步骤:
[25] 先将光栅放在感光平台和压紧机构之间, 然后将感光材料放置到该光栅和感光 平台之间, 通过压紧机构自动将光栅和感光材料压紧在该感光平台上。 然后对 感光材料进行投影感光。 感光完成后松开压紧机构光栅与感光材料分离, 感光 后的感光材料进行冲洗。 将冲洗后的照片进行烘干, 烘干后的照片与光栅加膜 复合形成立体图像。
[26] 上述对感光材料进行投影感光的步骤包括:
[27] 步骤 1, 将一光栅固定安放在该感光平台与该压紧机构之间, 将该感光材料送 至该感光平台与该光栅之间, 通过压紧机构将该光栅和感光材料压紧在该感光 平台上。
[28] 步骤 2, 将相机所拍摄的一视角度的图像由液晶显示器显示, 并通过该镜头透 过光栅投影在感光材料上进行第一次投影感光。
[29] 步骤 3, 第一次投影感光结束后, 计算机更换另一张不同视角度的照片, 该镜 头移动一段距离, 然后该感光平台与该感光镜头同向移动一段距离直至该感光 平台上的需感光区域再次被由该镜头射出的光线覆盖, 再进行第二次投影感光
[30] 步骤 4, 重复步骤 3直至所有不同视角度拍摄的照片均投影感光完毕。 其中, 根 据立体相机所拍摄数张不同视角度的立体图像的数量来确定投影感光的次数。
[31] 步骤 5, 松开压紧机构该光栅和该感光材料分离。
[32] 步骤 6 , 对感光材料进行冲洗。
[33] 步骤 7, 将步骤 6中冲洗完的感光材料与该光栅进行加膜复合。
[34] 虽然以上描述了本发明的具体实施方式, 但是本领域的技术人员应当理解, 这 些仅是举例说明, 在不背离本发明的原理和实质的前提下, 可以对这些实施方 式做出多种变更或修改。 因此, 本发明的保护范围由所附权利要求书限定。 工业实用性
[35]
序列表自由内容
[36]

Claims

权利要求书
[Claim 1] 一种数码立体成像光栅和感光材料感光装置, 其特征在于, 该数 码立体成像光栅和感光材料感光装置包括: 一感光平台, 该感光平台通过一平台移动机构与一底座连接; 一设于该感光平台上的压紧机构, 该压紧机构上放置一光栅; 一悬设于该感光平台上方的液晶显示器;
一通过一镜头移动机构悬设于该感光平台上方的镜头, 该镜头位 于该液晶显示器下方。
[Claim 2] 一种釆用权利要求 1所述的数码立体成像光栅和感光材料感光装置 进行数码立体成像的方法, 其特征在于, 其包括如下步骤:
51、 将一光栅固定安放在该感光平台与该压紧机构之间, 将该感 光材料送至该感光平台与该光栅之间, 通过压紧机构将该光栅和 感光材料压紧在该感光平台上;
52、 将相机所拍摄的一视角度的图像由液晶显示器显示, 并通过 该镜头透过光栅投影在感光材料上进行第一次投影感光;
53、 第一次投影感光结束后, 计算机更换另一张不同视角度的照 片, 该镜头移动一段距离, 然后该感光平台与该感光镜头同向移 动一段距离直至该感光平台上的需感光区域再次被由该镜头射出 的光线覆盖, 再进行第二次投影感光;
54、 重复步骤 S3直至所有不同视角度拍摄的照片均投影感光完毕
55、 松开压紧机构该光栅和该感光材料分离;
56、 对感光材料进行冲洗;
57、 将步骤 S6中冲洗完的感光材料与该光栅进行加膜复合。
PCT/CN2009/075656 2008-12-17 2009-12-16 数码立体成像光栅和感光材料感光装置及其方法 WO2010069256A1 (zh)

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