3D printing with small geometric offsets to affect surface characteristics
    1.
    发明授权
    3D printing with small geometric offsets to affect surface characteristics 有权
    具有小几何偏移的3D打印以影响表面特性

    公开(公告)号:US09498919B2

    公开(公告)日:2016-11-22

    申请号:US14155202

    申请日:2014-01-14

    Abstract: This document describes techniques and apparatuses for 3D printing with small geometric offsets to affect surface characteristics. These techniques are capable of enabling fused-deposition printers to create 3D objects having desired surface characteristics, such as particular colors, images and image resolutions, textures, and luminosities. In some cases, the techniques do so using a single filament head with a single filament material. In some other cases, the techniques do so using multiple heads each with different filaments, though the techniques can forgo many switches between these heads. Each printing layer may use even a single filament from one head, thereby enabling surface characteristics while reducing starts and stops for filaments heads, which enables fewer artifacts or increases printing speed.

    Abstract translation: 本文档描述了具有小几何偏移的3D打印以影响表面特性的技术和装置。 这些技术能够使熔融沉积打印机能够创建具有期望的表面特性(例如特定颜色,图像和图像分辨率,纹理和光度)的3D物体。 在某些情况下,这些技术使用具有单丝材料的单丝头。 在其他一些情况下,这些技术使用多个具有不同长丝的头,但这些技术可以在这些头之间放弃许多开关。 每个印刷层可以使用来自一个头部的单个细丝,从而使得能够减少表面特性,同时减少长丝头的开始和停止,这使得更少的伪像或增加打印速度。

    3D Printing with Small Geometric Offsets to Affect Surface Characteristics
    2.
    发明申请
    3D Printing with Small Geometric Offsets to Affect Surface Characteristics 有权
    使用小几何偏移进行3D打印以影响表面特性

    公开(公告)号:US20150197060A1

    公开(公告)日:2015-07-16

    申请号:US14155202

    申请日:2014-01-14

    Abstract: This document describes techniques and apparatuses for 3D printing with small geometric offsets to affect surface characteristics. These techniques are capable of enabling fused-deposition printers to create 3D objects having desired surface characteristics, such as particular colors, images and image resolutions, textures, and luminosities. In some cases, the techniques do so using a single filament head with a single filament material. In some other cases, the techniques do so using multiple heads each with different filaments, though the techniques can forgo many switches between these heads. Each printing layer may use even a single filament from one head, thereby enabling surface characteristics while reducing starts and stops for filaments heads, which enables fewer artifacts or increases printing speed.

    Abstract translation: 本文档描述了具有小几何偏移的3D打印以影响表面特性的技术和装置。 这些技术能够使熔融沉积打印机能够创建具有期望的表面特性(例如特定颜色,图像和图像分辨率,纹理和光度)的3D物体。 在某些情况下,这些技术使用具有单丝材料的单丝头。 在其他一些情况下,这些技术使用多个具有不同长丝的头,但这些技术可以在这些头之间放弃许多开关。 每个印刷层可以使用来自一个头部的单个细丝,从而使得能够减少表面特性,同时减少长丝头的开始和停止,这使得更少的伪像或增加打印速度。

    3D Printing with Small Geometric Offsets to Affect Surface Characteristics
    3.
    发明申请
    3D Printing with Small Geometric Offsets to Affect Surface Characteristics 审中-公开
    使用小几何偏移进行3D打印以影响表面特性

    公开(公告)号:US20170043532A1

    公开(公告)日:2017-02-16

    申请号:US15334527

    申请日:2016-10-26

    Abstract: This document describes techniques and apparatuses for 3D printing with small geometric offsets to affect surface characteristics. These techniques are capable of enabling fused-deposition printers to create 3D objects having desired surface characteristics, such as particular colors, images and image resolutions, textures, and luminosities. In some cases, the techniques do so using a single filament head with a single filament material. In some other cases, the techniques do so using multiple heads each with different filaments, though the techniques can forgo many switches between these heads. Each printing layer may use even a single filament from one head, thereby enabling surface characteristics while reducing starts and stops for filaments heads, which enables fewer artifacts or increases printing speed.

    Abstract translation: 本文档描述了具有小几何偏移的3D打印以影响表面特性的技术和装置。 这些技术能够使熔融沉积打印机能够创建具有期望的表面特性(例如特定颜色,图像和图像分辨率,纹理和光度)的3D物体。 在某些情况下,这些技术使用具有单丝材料的单丝头。 在其他一些情况下,这些技术使用多个具有不同长丝的头,但这些技术可以在这些头之间放弃许多开关。 每个印刷层可以使用来自一个头部的单个细丝,从而使得能够减少表面特性,同时减少长丝头的开始和停止,这使得更少的伪像或增加打印速度。

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