Computer-aided manufacturing feature

  • What are the capabilities of CAD?

    It helps users create designs both .

    1. D and
    2. D designs to better visualize construction.
    3. CAD enables the development, modification, and optimization of the design process.
      Engineers can make more accurate representations and modify them easily to improve design quality.

  • What are the key features of CAD CAM?

    Intuitive modeling, scalable component libraries, associative design, real time feature, and digital chain continuity: five necessary and non-negotiable essentials for your furnishing CAD/CAM software..

  • What does computer-aided manufacturing offer?

    Greater speed in producing components.
    Greater accuracy and consistency, with each component or finished product exactly the same.
    Greater efficiency as computer controlled machines do not need to take breaks.
    High sophistication in terms of following complex patterns like tracks on circuit boards.Jun 27, 2018.

  • What is computer aided manufacturing?

    The CAM system works by substituting hand-made jigs with software that defines the actions and processes of a machine directly.
    Computer-aided manufacturing software translates drawings and data into detailed instructions that drive automated tools/machines.Aug 5, 2019.

  • As its name implies, CAM does this by controlling machine tools in the production of goods.
    CAM software also plans, manages, and controls the manufacturing plant's operations through direct or indirect computer interfaces, along with the plant's production resources.
The term feature implies different meanings in different engineering disciplines.
This has resulted in many ambiguous definitions for feature.
A feature, in computer-aided design (CAD), usually refers to a region of a part with some interesting geometric or topological properties.
These are more precisely called form features.
Form features contain both shape information and parametric information of a region of interest.
They are now ubiquitous in most current CAD software, where they are used as the primary means of creating 3D geometric models.
Examples of form features are extruded boss, loft, etc.
Form feature is not the only type of feature that is discussed in CAD literature.
Sometimes a part's functional or manufacturing features of the subject of attention.
Although it is quite possible to see form features and manufacturing features are called by the same name, they are not exactly the same concepts.
For example, one may either use the name pocket to refer to a swept cut on the boundary of a part model, or to refer to a trace left on the part boundary by a specific machining operation.
The former is exclusively concerned with a geometric shape whereas the latter is concerned with both the geometric shape and a manufacturing operation, needing more parameters in its definition.
As such, a manufacturing feature can be minimally defined as a form feature, but not necessarily vice versa.
Machining features are an important subset of manufacturing features.
A machining feature can be regarded as the volume swept by a cutting
tool, which is always a negative (subtracted) volume.
Finally, there is also the concept of assembly feature, which encodes the assembly method between connected components.

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