nTopology 5.53.2 (x64)

nTopology 5.53.2 (x64) | Size: 1.5 GB
Language: English
nTop has released nTop 5.53.2 is a computational design software platform that enables engineers to create, analyze, and optimize complex geometry using implicit modeling and field-driven design methodologies.
nTop 5.53 - What's New
This release adds the new Spline Distance Field and Extend Curve blocks .
Spline Distance Field
- The Spline Distance Field block creates an implicit Spline curve. The signed distance of a planar Spline curve is returned.
- Commonly used for creating implicit profiles, for applications such as turbine blades.
- Location: Create > Primitives
. Control Points: List of control points of the Spline curve.
. Degree: Degree of the Spline.
. Coordinate Space: Vector Field representing the basis in which to evaluate the curve.
. Output: Implicit Body
Extend Curve
- The Extend Curve block extends a curve by a given distance from one or both of its ends, returning the extended curve as a Polycurve.
- Commonly used for general curve construction and freeform surfacing.
- Location: Create > Curves
. Curve: Curve to extend.
. Distance: Distance by which to extend the curve.
. Extend From: End or ends of the curve to extend from.
. Extension Type: Method of extension. Linear (G1) appends a straight line along the end tangent. Curvature (G2) extends along a circular arc matching the end tangent and curvature; always well-behaved. Natural (G-infinity) analytically continues the curve's own equation for an infinitely smooth junction, capping the analytic part before it can fold back on itself and continuing with an arc.
. Output: Polycurve
nTop introduced 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.
nTop, formerly known as nTopology, is a leading computational design software company founded in 2015. The company specializes in empowering engineers across industries to innovate without the limitations of traditional CAD tools. Built on proprietary technologies, nTop enables the creation of complex geometries, instantaneous optimization, and automated workflows, making it ideal for applications such as additive manufacturing and advanced product development.
Сopyright holder \ Distributor: nTop
Product Name: nTop
Version: 5.53.2
Supported Architectures: x64 Languages Supported: english
System Requirements: Windows *
HOMEPAGE:
http://www.ntop.com
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