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- 2022.08.02.
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Free Download nTopology 4.16.3 | 1.6 Gb
The Team nTopology is pleased to announce the availability ofnTopology 4.16.3. This release features improvements to viewing Table Data and our new Demold Constraint (Beta) block used in Topology Optimization to create parts manufactured with molds.
Owner:nTopology
Product Name:nTopology
Version:4.16.3
Supported Architectures:x64
Website Home Page :www.ntop.com
Languages Supported:english
System Requirements:Windows *
Size:1.6 Gb
View Table Data
- Any blocks that output a Table or Column type can now be viewed directly in nTop in the Bottom Panel. Additionally, You can view any block that outputs a Scalar List, Integer List, Text List, or Point List type more intuitively in the Bottom Panel. Each open tab will remain in the bottom panel until it is closed.
- Location: Right Side Panel > Display > View Data
Cartesian Product
The Cartesian Product block creates combinations using input Columns. You can create a Cartesian product from any number of columns that contain rows of different sizes.
- You can use the Cartesian Product block to generate the combinations needed to run parameter sweeps directly in nTop. This block helps you explore designs for applications such as heat exchangers and architected materials.
- Block Name: Cartesian Product
- Location: Utilities > General
- Description: Creates a Table of all possible combinations from a set of Columns.
- Columns: List of Columns to generate combinations from.
Demold Constraint (Beta)
The Demold Constraint block is a constraint for Topology Optimization to generate parts that are moldable/castable. The constraint can ensure that the topology optimization results have an optimum 3D parting line/surface and will avoid any undercuts with respect to the pull direction(s). In addition to optimizing the parting surface, users can define their own surface and use the constraint for single-draw methods. You can now generate parts manufactured with molds using this block alongside other optimization objectives and constraints.
- Block Name: Demold Constraint
- Location: Beta > Topology Optimization
- Description: Define a demold constraint for a topology optimization process. The constraint ensures no undercuts in the optimized result, enabling mold release in the specified demold direction.
- Demold Direction: The mold pull direction.
- Auto Split Surface: Optimize the parting surface. If selected, the optimization will result in a part intended for a split mold manufacturing process, where you optimize the mold splitting surface during the topology optimization. If unselected, the resulting part will assume a single-draw mold.
- Region: Region where the demold constraint is applied. If left blank, the constraint is applied to the entire model.
- Output: Optimization Constraint
Usage Improvements
- The Information tab of the Right Side Panel will now automatically scroll to the corresponding selected input, even if it's out of view.
nTopologyintroduced the concept of implicit modeling for mechanical design, which is an innovative, modern, and scalable way define parts and products. It has many benefits to end-users and companies, such as the elimination of model failures, speed of changes or iterations, and scalability to name a few. But implicit modeling enables so much more. In this informational session, we'll explore a topic that is redefining product development - field-driven design. In short, field-driven design is a way for design, analysis, and manufacturing teams to overlay information into one engineering model. This approach enables orders of magnitude increase in design iteration speed and greatly improves collaboration between teams.
How Field-Driven Design Allows Engineers to Design for Additive Manufacturing
Watch this information session where we'll define field-driven design, show examples of how it enables better knowledge sharing, and show how it promotes the development of more sophisticated, highly engineered products. You'll also better understand how nTopology is addressing today's engineering problems through its nTop Platform product.
nTopologywas founded in 2015 to enable engineers and designers to create any geometry - no matter how complex - and meet the requirements of high-performance products.
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