At present, a complete set of processing application technology - UG CAM has been greatly improved. In the past, UG's main function was to provide tools for generating NC code and post-loading tasks, which will continue to be provided to users. The latest improvements in these areas include new machining and cutting technologies such as high-speed machining, spline interpolation and digital inspection. Confirm that these are greatly improving the productivity of users. The knowledge-based processing method is based on UG's knowledge fusion, which is used to provide tools to introduce the best processing experience into reusable processes for high-volume automated production.

In addition to traditional functions, the current added solutions include planning, managing and distributing solutions for processing data, utilizing and providing the company's processes and best practices to provide a central data structure within a company and even globally. Sharing information in several processing systems within the scope is the most important step.

·I-deas

Imageware (reverse engineering)

Imageware is the original SDRC product that provides a unique, integrated free-form surface construction and inspection tool for applications ranging from early concept development to product and manufacturing inspection. The product will evolve toward modularity and focus on four key core competencies: 3D inspection, advanced surfaces, polygon modeling and reverse engineering.

Imageware Foundation Module: Contains such things as file access, display control, and data structures.

Imageware Point Processing Module: A tool that contains point cloud data obtained by the scanner. The following is a typical operation of this feature. This is a very unique capability, and Imageware's optimized processing method can handle large data volume problems very well. Operating point data, especially in the first task of reverse engineering or inspection, is very important to the user. Users have complete freedom to choose from a wide range of tools to clean, sparse and check point clouds.

Imageware Assessment Model: A tool that qualitatively and quantitatively assesses the overall quality of a model.

Imageware Surface Model Nugget: A tool that provides complete curve and surface creation and modification. This includes surface creation commands such as fillet, flanging, and offset for sweeping, lofting, and local operations. Geometric editing can be done in a variety of ways. The first is by directly editing the control points of the curves and surfaces. This is useful for initial black screen design, input legacy data, or situations where there are minor changes that need to be made. In addition to the control point editing tool, a new three-dimensional constraint solver for curve networks and related structures has been added. These tools capture the relationship between objects that cause automatic updates. This will quickly improve the efficiency of the designer.

The Imageware Surface Module also provides powerful surface matching capabilities. This will allow adjacent patches to be processed continuously at the boundary, tangency, and curvature of the boundary or interior points. A rich selection of matching options is also available to precisely control the geometry of the results.

Imageware polygon modeling module: Perfect for the processing of chess pieces and triangle data. As a stand-alone module, it provides the ability to work with polygon models of any size. For example, fast packet analysis by scan data processing - saving a lot of time compared to current processes (such as from reverse engineering to generating Nurbs surfaces). Combined with point processing and surface modules, this will create a powerful conceptual modeling tool that is extremely competitive on the market.

Imageware inspection module: Verification of inspections, especially for complex digital shapes and 3D models of physical prototypes. Dense point clouds are obtained by different types of scanning measurement equipment for comparison with digital descriptions and CAD models.

Digital Simulation

The I-deas CAE tool guides design by simulating full product performance in the early stages of product development, improving product quality, validating and optimizing detail designs, minimizing the number of repetitive physical prototypes, and reducing the number of iterations of subsequent processing. The reasons for the quality problems of existing products, the development of trading plans, the best balance between product prices and performance.

I-deas Mechanism Design

The I-deas mechanism is designed to integrate structural motion with complex motion pairs. The assembly results from the I-deas assembly, the motion constraint pair and the contact area are used to calculate the motion results based on the initial motion conditions. An embedded ADAMS dynamic solver is used to help you understand the motion of the mechanism from the initial conceptual design phase, including the position, velocity and acceleration of the mechanism. Allows you to make more choices to get better, more accurate design results.

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