INTEGRATING COMPONENTS INTO 3D PRINTED OBJECTS
    11.
    发明申请
    INTEGRATING COMPONENTS INTO 3D PRINTED OBJECTS 有权
    将组件集成到3D打印对象中

    公开(公告)号:US20150287247A1

    公开(公告)日:2015-10-08

    申请号:US14671938

    申请日:2015-03-27

    Applicant: Autodesk, Inc.

    Abstract: Methods, systems, and apparatus, including computer programs encoded on a storage medium, for integrating components into objects that are to be 3D printed. One of the methods includes obtaining a three-dimensional model of a first object; receiving an input identifying an additional component; generating a digital representation of the additional component; integrating the digital representation of the additional component with the three-dimensional model; and providing the three-dimensional model with the integrated digital representation to a 3D printer for fabrication.

    Abstract translation: 方法,系统和装置,包括在存储介质上编码的计算机程序,用于将组件集成到要被3D打印的对象中。 方法之一包括获得第一对象的三维模型; 接收识别附加组件的输入; 生成附加组件的数字表示; 将附加组件的数字表示与三维模型集成; 并将3D集成数字表示的三维模型提供给3D打印机进行制造。

    3D printed auxetic structures
    13.
    发明授权

    公开(公告)号:US09908295B2

    公开(公告)日:2018-03-06

    申请号:US14699916

    申请日:2015-04-29

    Applicant: Autodesk, Inc.

    Abstract: Methods, systems, and apparatus, including medium-encoded computer program products, facilitate the design and use of 3D printed auxetic structures. In one aspect, a system includes one or more computer storage media having instructions stored thereon; and one or more data processing apparatus configured to execute the instructions to perform operations including (i) receiving an input specifying a three dimensional (3D) model of a 3D structure that includes at least two different materials having a predefined arrangement with respect to each other to give the 3D structure a negative Poisson ratio, (ii) receiving an input regarding a change for the 3D structure, and (iii) modifying the predefined arrangement of the at least two different materials with respect to each other in response to the input regarding the change.

    ELECTRO-MECHANICAL 3D PRINTING DESIGN SYSTEM
    14.
    发明申请

    公开(公告)号:US20170348916A1

    公开(公告)日:2017-12-07

    申请号:US15677943

    申请日:2017-08-15

    Applicant: Autodesk, Inc.

    Inventor: Karl Willis

    CPC classification number: B29C64/393 B33Y50/00 B33Y50/02 G06F17/5086

    Abstract: A computer-implemented layout tool includes a mechanical design engine for configuring mechanical design components to be included in a design, an electrical design engine for configuring electrical components to be included in the design, a constraint engine for identifying a 3D printer to be used to print the design and to provide design constraints including feedback for inoperative or impermissible configurations of one or more mechanical components or electrical pathways associated with the design; and a simulation engine for simulating, at least, electrical performance of the design based on one or more electrical components added to the design after printing and proposed electrical pathways.

    DYNAMIC REAL-TIME SLICE ENGINE FOR 3D PRINTING
    15.
    发明申请
    DYNAMIC REAL-TIME SLICE ENGINE FOR 3D PRINTING 有权
    用于3D打印的动态实时液晶发动机

    公开(公告)号:US20150328839A1

    公开(公告)日:2015-11-19

    申请号:US14711654

    申请日:2015-05-13

    Applicant: Autodesk, Inc.

    Abstract: Methods, systems, and apparatus include computer programs encoded on a computer-readable storage medium, including a method for 3D printing without preprocessing a CAD model before delivery to a 3D printer. The CAD model for a design to be printed is received by a 3D printer. Instructions are generated for printing the first slice. While the instructions are used to start printing the CAD model, dynamic real-time slicing is performed on a remaining portion of the CAD model. Preprocessed data, model analysis information or real-time feedback is received during the printing of a respective slice. A next slice is identified, and slicing parameters are adjusted, including adjusting a slicing parameter for the next slice. Instructions for printing the next slice are generated. The next slice is printed based on the generated instructions. Dynamic real-time slicing is repeated to generate a then next slice and associated printing instructions.

    Abstract translation: 方法,系统和装置包括在计算机可读存储介质上编码的计算机程序,包括在传送到3D打印机之前不进行CAD模型的3D打印的方法。 要打印的设计的CAD模型由3D打印机接收。 生成用于打印第一个切片的说明。 当使用说明开始打印CAD模型时,在CAD模型的其余部分执行动态实时切片。 在打印各个切片期间接收预处理的数据,模型分析信息或实时反馈。 识别下一个切片,并调整切片参数,包括调整下一个切片的切片参数。 生成打印下一个切片的说明。 根据生成的指令打印下一个切片。 重复动态实时切片以产生下一个切片和相关联的打印指令。

    ELECTRO-MECHANICAL 3D PRINTING DESIGN SYSTEM
    16.
    发明申请
    ELECTRO-MECHANICAL 3D PRINTING DESIGN SYSTEM 有权
    电子机械3D打印设计系统

    公开(公告)号:US20150283760A1

    公开(公告)日:2015-10-08

    申请号:US14243274

    申请日:2014-04-02

    Applicant: Autodesk, Inc.

    Inventor: Karl Willis

    CPC classification number: B29C64/393 B33Y50/00 B33Y50/02 G06F17/5086

    Abstract: A computer-implemented layout tool includes a mechanical design engine for configuring mechanical design components to be included in a design, an electrical design engine for configuring electrical components to be included in the design, a constraint engine for identifying a 3D printer to be used to print the design and to provide design constraints including feedback for inoperative or impermissible configurations of one or more mechanical components or electrical pathways associated with the design; and a simulation engine for simulating, at least, electrical performance of the design based on one or more electrical components added to the design after printing and proposed electrical pathways.

    Abstract translation: 计算机实现的布局工具包括用于配置要包括在设计中的机械设计组件的机械设计引擎,用于配置要包括在设计中的电气部件的电气设计引擎,用于识别要用于3D设备的3D打印机的约束引擎 打印设计并提供设计约束,包括对与设计相关联的一个或多个机械部件或电路径的不可操作或不允许的配置的反馈; 以及用于在打印和所提出的电路之后基于添加到设计中的一个或多个电气部件来模拟至少电气性能的模拟引擎。

Patent Agency Ranking