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    • 6. 发明申请
    • Device And Method For Processing Light-Polymerizable Material For Building Up An Object In Layers
    • 用于加工可聚合材料的装置和方法,用于在层中建立物体
    • US20110310370A1
    • 2011-12-22
    • US13124619
    • 2008-10-20
    • Gottfried RohnerWolfgang WachterChristoph AppertJohannes PatzerJürgen Stampfl
    • Gottfried RohnerWolfgang WachterChristoph AppertJohannes PatzerJürgen Stampfl
    • G03B27/42
    • B29C67/0051A61C13/0013B29C64/124B33Y10/00B33Y30/00B33Y40/00
    • A method and a device for processing light-polymerizable material for the assembly of a mold, utilizing a lithography-based generative manufacturing technique wherein a layer of a light-polymerizable material, the material being located in at least one trough (4) having a particularly light-transmissive, horizontal bottom (6), is polymerized by illumination on at least one horizontal platform (12), the platform having a prespecified geometry and projecting into a trough (4), in an illumination field, wherein the platform (12) is displaced vertically to form a subsequent layer, light-polymerizable material is then added to the most recently formed layer, and repetition of the foregoing steps leads to the layered construction of the mold in the desired form, which arises from the succession of layer geometries. The invention is characterized in that the trough (4) can be shifted horizontally to a supply position, and the supply device (8) brings light-polymerizable material at least to an illumination field of the trough bottom (6), before the at least one trough (4) is shifted to an illumination position in which the illumination field is located below the platform (12) and above the illumination unit (10), and illumination is carried out.
    • 一种用于处理用于组装模具的可光聚合材料的方法和装置,利用基于光刻的生成制造技术,其中可光聚合材料层,该材料位于至少一个槽(4)中,其具有 特别是透光的水平底部(6)通过照明在至少一个水平平台(12)上聚合,所述平台具有预先指定的几何形状并且在照明场中突出到槽(4)中,其中平台(12 )垂直位移以形成后续层,然后将可光聚合材料加入到最近形成的层中,并且重复上述步骤导致模具的分层结构,其由所述层的连续性产生, 几何形状。 本发明的特征在于,槽(4)可以水平地移动到供应位置,并且供应装置(8)至少在至少在槽底部(6)的照明场之前使可聚光材料至少 一个槽(4)移动到其中照明场位于平台(12)下方和照明单元(10)的上方的照明位置,并且进行照明。
    • 8. 发明授权
    • Device and method for processing light-polymerizable material for building up an object in layers
    • 用于加工用于层叠物体的可聚光材料的装置和方法
    • US08623264B2
    • 2014-01-07
    • US13124619
    • 2008-10-20
    • Gottfried RohnerWolfgang WachterChristoph AppertJohannes PatzerJürgen Stampfl
    • Gottfried RohnerWolfgang WachterChristoph AppertJohannes PatzerJürgen Stampfl
    • B29C35/04
    • B29C67/0051A61C13/0013B29C64/124B33Y10/00B33Y30/00B33Y40/00
    • A method and a device for processing light-polymerizable material for the assembly of a mold, utilizing a lithography-based generative manufacturing technique wherein a layer of a light-polymerizable material, the material being located in at least one trough (4) having a particularly light-transmissive, horizontal bottom (6), is polymerized by illumination on at least one horizontal platform (12), the platform having a prespecified geometry and projecting into a trough (4), in an illumination field, wherein the platform (12) is displaced vertically to form a subsequent layer, light-polymerizable material is then added to the most recently formed layer, and repetition of the foregoing steps leads to the layered construction of the mold in the desired form, which arises from the succession of layer geometries. The invention is characterized in that the trough (4) can be shifted horizontally to a supply position, and the supply device (8) brings light-polymerizable material at least to an illumination field of the trough bottom (6), before the at least one trough (4) is shifted to an illumination position in which the illumination field is located below the platform (12) and above the illumination unit (10), and illumination is carried out.
    • 一种用于处理用于组装模具的可光聚合材料的方法和装置,利用基于光刻的生成制造技术,其中可光聚合材料层,该材料位于至少一个槽(4)中,其具有 特别是透光的水平底部(6)通过在至少一个水平平台(12)上的照明进行聚合,所述平台具有预先指定的几何形状并且在照明场中突出到槽(4)中,其中平台(12 )垂直位移以形成后续层,然后将可光聚合材料加入到最近形成的层中,并且重复上述步骤导致模具的分层结构,其由所述层的连续性产生, 几何形状。 本发明的特征在于,槽(4)可以水平地移动到供应位置,并且供应装置(8)至少在至少在槽底部(6)的照明场之前使光可聚合材料至少 一个槽(4)移动到其中照明场位于平台(12)下方和照明单元(10)的上方的照明位置,并且进行照明。