This paper describes a preliminary study of the application of structural optimization techniques to the design of additively manufactured components, using load testing to failure to establish true load carrying capacity. The cantilever component specimens fabricated were designed to resist a tip load and comprised one conventional benchmark design and two designs developed using layout optimization (LO) techniques. The designs were fabricated from Titanium Ti-6Al-4V and then scanned for internal defects using X-Ray Computed Tomography (XCT). All three specimens failed below the design load during testing. Several issues were identified in both the design optimization and fabrication phases of the work, contributing to the prematur...
This work focuses on optimal structural systems, which can be modeled using discrete elements (e.g. ...
Topology optimization is one of the most powerful tool that designers use to reduce weight and cost ...
Additive Manufacturing offers a great potential for the optimization of products. Therefore differen...
This paper describes a preliminary study of the application of structural optimization techniques t...
Additive manufacturing (`3D printing') techniques provide engineers with unprecedented design freedo...
Additive manufacturing (‘3D printing’) techniques provide engineers with unprecedented design freedo...
<p>The ability to accurately quantify the performance an additively manufactured (AM) product is imp...
The recent advances in additive manufacturing (AM) of metals have now improved the state-of-the-art ...
The advances in additive manufacturing (AM) have opened new possibilities in design and manufacturin...
This study investigates the application of topological optimization in conjunction with additive ma...
The goal of this project is to study the performance of a 3D printed mechanical part subjected to to...
Additive Manufacturing technology offers almost unlimited capacity when manufacturing parts with com...
The common question that many mechanical engineers have tried to answer is “how to maximize strength...
Other departments or research groups involved in the research: Centre for Additive Manufacturing - ...
Conventional methods are not simple or are close to impossible to be used to fabricate topology opti...
This work focuses on optimal structural systems, which can be modeled using discrete elements (e.g. ...
Topology optimization is one of the most powerful tool that designers use to reduce weight and cost ...
Additive Manufacturing offers a great potential for the optimization of products. Therefore differen...
This paper describes a preliminary study of the application of structural optimization techniques t...
Additive manufacturing (`3D printing') techniques provide engineers with unprecedented design freedo...
Additive manufacturing (‘3D printing’) techniques provide engineers with unprecedented design freedo...
<p>The ability to accurately quantify the performance an additively manufactured (AM) product is imp...
The recent advances in additive manufacturing (AM) of metals have now improved the state-of-the-art ...
The advances in additive manufacturing (AM) have opened new possibilities in design and manufacturin...
This study investigates the application of topological optimization in conjunction with additive ma...
The goal of this project is to study the performance of a 3D printed mechanical part subjected to to...
Additive Manufacturing technology offers almost unlimited capacity when manufacturing parts with com...
The common question that many mechanical engineers have tried to answer is “how to maximize strength...
Other departments or research groups involved in the research: Centre for Additive Manufacturing - ...
Conventional methods are not simple or are close to impossible to be used to fabricate topology opti...
This work focuses on optimal structural systems, which can be modeled using discrete elements (e.g. ...
Topology optimization is one of the most powerful tool that designers use to reduce weight and cost ...
Additive Manufacturing offers a great potential for the optimization of products. Therefore differen...