Examples of using Topology optimization in English and their translations into Vietnamese
{-}
-
Colloquial
-
Ecclesiastic
-
Computer
For instance, take topology optimization.
Topology Optimization result when filtering is used.
There are several commercial topology optimization software on the market.
SCDM makes it easy to edit andoptimize complex models that often result from topology optimization.
Asotech engineers then executed the topology optimization, which ran for six hours.
A topology optimization problem can be written in the general form of an optimization problem as.
Several techniques are used today,such as generative design, topology optimization or the creation of lattice structures.
Topology Optimization has a wide range of applications in aerospace, mechanical, bio-chemical and civil engineering.
Based on these results, engineers ran another cycle of topology optimization that further reduced the weight of the part slightly.
KSR plans to use topology optimization in the future to achieve substantial weight savings without having to invest significant engineering resources.
The current proliferation of 3D Printer technology has allowed designers andengineers to take advantage of topology optimization techniques when designing new products.
When in need of topology optimization, a new design can have a lot of benefits and could really be good for your business.
Siemens NX 12 is a seamlessend to end solution starting with design, via topology optimization and process simulation to print preparation in one user interface.
Most of them use topology optimization as a hint how the optimal design should look like, and manual geometry re-construction is required.
ParaMatters Inc., is California based company, is able to generatevery high performance structures using topology optimization with smooth surfaces and ready for manufacturing without a need to reconstruct geometry.
Topology optimization, on the other hand, redesigns a part to minimize its weight while meeting loading and other requirements specified by design engineers.
Asotech engineers addressed this challenge by using ANSYS topology optimization, which is integrated with ANSYS Mechanical structural software.
Topology optimization(TO) is a mathematical method that optimizes material layout within a given design space, for a given set of loads, boundary conditions and constraints with the goal of maximizing the performance of the system.
However, the complex optimized shapes obtained from topology optimization are always a headache for traditional manufacturing processes such as CNC machining.
Newly integrated topology optimization technology, combined with Siemens' exclusive Convergent Modeling™ technology, enables designers to dramatically improve product design efficiency and streamlines the ability to work with imported geometry.
However, it should be noticed, some manufacturing constraints such as minimal feature size also need tobe considered during the topology optimization process.[6] Since the topology optimization can help designers to get an optimal complex geometry for additive manufacturing, this technique can be considered one of DFAM methods.
Typical DFAM methods or tools includes topology optimization, design for multiscale structures(lattice or cellular structures), multi-material design, mass customization, part consolidation, and other design methods which can make use of AM-enabled features.
Asotech engineers used ANSYS Mechanical topology optimization to develop an optimized design while changing both the basic shape and dimensions of the part to reduce its weight by 56 percent.
The weight savings that were achieved by using topology optimization were much greater than what could be achieved by changing design parameters with either manual or automated optimization. .
Compared to conventional design methods,digital exploration using topology optimization reduced structural optimization time from 7 to 2 days while achieving a 21 percent weight savings, which is considerably more than could have been accomplished using conventional methods.
Discrete geometry has a large overlap with convex geometry and computational geometry, and is closely related to subjects such as finite geometry,combinatorial optimization, digital geometry, discrete differential geometry, geometric graph theory, toric geometry, and combinatorial topology.