Topology optimization for compliant wing leading edge based on multi-material combination
Jing Li
Abstract
Jing Li
Abstract
Compliant mechanism applied to variable curvature adaptive wing will achieve the wing shape changing continuously with different flying conditions,which has good application prospects.In this paper,by considering the material properties of the compliant mechanism and based on genetic algorithm which introduces the load path ideas,the topology optimization for a leading edge from a single material component and multi-material combination was carried out,and the result is simulated in ANSYS.Through comparative analysis,it indicates that locally changing the material properties by using multi-material combination in the optimization of compliant mechanism can achieve much better deformation requirement than that of just single material.The effect of topology optimization can also be optimized by seeking for a much wider range of material combination.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Compliant mechanism applied to variable curvature adaptive wing will achieve the wing shape changing continuously with different flying conditions,which has good application prospects.In this paper,by considering the material properties of the compliant mechanism and based on genetic algorithm which introduces the load path ideas,the topology optimization for a leading edge from a single material component and multi-material combination was carried out,and the result is simulated in ANSYS.Through comparative analysis,it indicates that locally changing the material properties by using multi-material combination in the optimization of compliant mechanism can achieve much better deformation requirement than that of just single material.The effect of topology optimization can also be optimized by seeking for a much wider range of material combination.
Key concepts: Topology optimization, Compliant mechanism, Topology (electrical circuits), Wing, Path (computing), Curvature, Mechanism (biology), Enhanced Data Rates for GSM Evolution