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Improvements in or relating to projection screens for the production of pictures with stereoscopic effect

机译:投影屏幕的改进或与之相关的用于产生具有立体效果的图片的屏幕

摘要

541,751. Projection, screens. GABOR, D May 3, 1940, No. 7981. [Class 97 (i)] A screen for front projection comprises a base plate having vertical, or substantially vertical, cylindrical lenticulations on its front surface, the foci being on the rear; and diffusely reflecting surface; such a screen produces a multiplicity of images of the light aperture of the projector in a substantially vertical plane, and one or more arrays of plane mirrors, each array arranged in the manner of a Venetian blind, may be located in front of the base plate to reflect this plane into coincidence with one or more spectator planes. The screen may be used in conjunction with ordinary films, with films bearing images having a real relief, or with films, such as lenticular panoramagrams, appearing in relief and prepared, for example, as described in Specifications 410,515 or 541,752. Fig. 1 shows the functions of a screen 1 according to the invention, bands of non-overlapping images aSP1/SP, bSP1/SP, aSP11/SP, bSP11/SP ... of a projector aperture in the form of a slit AB being formed in the plane 2 occupied by the eyes of the spectators m a theatre pit, and, if desired, in the corresponding gallery plane 3. The length of each image is equal to that of the slit AB, and is such that the bands formed by them are wide enough to permit a spectator to move his head while still retaining both eyes in the band; the spectators' seats are arranged in the bands and either one behind the other or relatively staggered in successive rows. Figs. 8 and 8A show a screen base 5 embossed with cylindrical lenticulations 6 which are too small to be individually visible to a spectator and have their foci in the rear surface 10. The surface 10 may be frosted and covered with a reflecting metallic layer; if the base is used alone, the spectators must all be in a plane parallel to the screen passing through the projector. If the spectators are in a plane AC containing the projector A, the rear surface 10 may be formed of prismastic ledges, Fig. 9, having silvered concave or convex surfaces 15, and flat, unsilvered, surfaces 14, and a sheet 11, having an array of strip mirrors 12 therein, may be in optical contact with the lenticulations. The mirrors 12 &c. produce ray paths as shown from the projector to the plane AC, fine, closely-spaced lines or grooves may be ruled vertically across the surfaces 15 to produce horizontal diffusion. The mirror arrays may be produced by sheets 17, 18, Fig. 11, of plastic material moulded so as to leave gaps 20 when assembled, the gaps causing internal reflection of rays, having a large angle of incidence, and permitting passage of other rays. Screens comprising mirror arrays for use when the projector is not in a spectator plane, and for use with two spectator planes, are described in detail. Fig. 24 shows such a screen for two spectator planes, with the projector in neither of them, having a base plate 5 formed with small toroidal surface 26, compound lenticules 27 between sheets 28, 29 preferably having the same refractive index as the base 5, three mirror arrays 31, 32, 33, formed by gaps between separately moulded sheets, and prismatic ledges 42 on a front sheet. The ledges 42 cause any mirror image of the projector produced by the front surface of the screen to be unseen from the spectator planes ; the screen may be curved about a horizontal axis for the same purpose. Reflections due to differences of refractive indices of contacting sheets may be prevented by a transition layer between them wherein the refractive index gradually changes from one value to the other, the layer being at least a few light wave lengths thick. The layer may be produced by assembling the sheets with a suitable solvent between them, or by controlling the spraying of solutions of the two materials of the sheets. Lenticles enclosed between two sheets, as shown in Fig. 24, may be simple or compounds and the sheets may have a refractive index higher than that of the mirror array sheets. The base plate may be of wedge-shaped section having its edge coincident with the line of intersection of the spectator planes. Consequent variation of the focal length of the lenticles need not be continuous, but may be attained by the use of different sheets in building up the screen. Specifications 390,508 and 410,518 are referred to.
机译:541,751。投影,屏幕。 GABOR,D,1940年5月3日,第7981号。[Class 97(i)]一种用于前投影的屏幕,包括一块基板,该基板的前表面具有垂直或基本垂直的圆柱状透镜,焦点位于背面。和漫反射表面;这样的屏幕在基本垂直的平面上产生投影仪的光圈的多个图像,并且平面镜的一个或多个阵列(每个阵列以百叶窗的形式布置)可以位于基板的前面。使该平面与一个或多个观众平面重合。屏幕可以与普通胶片,带有真实浮雕图像的胶片一起使用,也可以与浮雕出现的胶片(如双凸透镜全景图)结合使用,例如,如规格410,515或541,752中所述。图1示出了根据本发明的屏幕1的功能,非重叠图像的条带a 1 ,b 1 ,a 11 ,b 11 ...的形式为狭缝AB的投影机光圈形成在观众院眼中所占据的平面2中,如果需要,还可以在相应的画廊中形成平面3。每个图像的长度等于狭缝AB的长度,并且这样使得它们形成的束带足够宽,以允许观众移动其头部,同时仍将两只眼睛保持在束带中;观众的座位排列在乐队中,一个在另一个后面,或者相对交错地排成一排。无花果图8和8A示出了浮雕有圆柱形微透镜6的屏幕底座5,该圆柱形微透镜6太小而不能被观众单独看到,并且其焦点位于后表面10中。表面10可以是磨砂的并且覆盖有反射金属层;表面10可以是透明的。如果单独使用底座,则观众必须都在与穿过投影机的屏幕平行的平面上。如果观众位于包含投影仪A的平面AC中,则后表面10可以由棱柱形的壁架形成,图9具有银色的凹面或凸面15,以及平坦的,未镀银的表面14和片材11,其具有其中的带状反射镜阵列12可以与微透镜光学接触。镜子12&c。为了产生从投影仪到平面AC的光线路径,可以在表面15上垂直地划出细小,紧密间隔的线或凹槽以产生水平扩散。反射镜阵列可以由图11的塑料片材17、18制成,该片材被模制成在组装时留下间隙20,该间隙引起光线的内部反射,具有大的入射角,并允许其他光线通过。 。详细描述了包括反射镜阵列的屏幕,该屏幕用于当投影仪不在观众平面内时使用,以及与两个观众平面一起使用。图24示出了用于两个观众平面的这种屏幕,投影仪都不在其中,其具有形成有小的环形表面26的基板5,在片28、29之间的复合微透镜27,优选地具有与基板5相同的折射率。由分别模制的板之间的间隙形成的三个反射镜阵列31、32、33,以及在前板上的棱形壁架42。壁架42使得从屏幕的前表面看不到由屏幕的前表面产生的投影仪的任何镜像。为了相同的目的,屏幕可以绕水平轴弯曲。可以通过在它们之间的过渡层来防止由于接触片的折射率的不同而引起的反射,其中,折射率从一个值逐渐变化到另一个值,该层的厚度至少为几个光波长。该层可以通过用合适的溶剂在它们之间组装片材或通过控制片材的两种材料的溶液的喷雾来生产。如图24所示,包围在两片之间的透镜可以是简单的,也可以是复合的,并且这些片的折射率可以高于反射镜阵列片的折射率。基板可以是楔形截面的,其边缘与观众平面的相交线重合。透镜的焦距的相应变化不必是连续的,而是可以通过在构建屏幕时使用不同的薄片来实现。参考规格390,508和410,518。

著录项

  • 公开/公告号GB541751A

    专利类型

  • 公开/公告日1941-12-10

    原文格式PDF

  • 申请/专利权人 DENNIS GABOR;

    申请/专利号GB19400007981

  • 发明设计人

    申请日1940-05-03

  • 分类号G03B21/60;

  • 国家 GB

  • 入库时间 2022-08-24 04:02:00

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