Method for topological optimization design of cantilever beam structure based on shape-preserved constraints
A topology optimization and design method technology, applied in computing, special data processing applications, instruments, etc., can solve problems such as poor precision, and achieve the effects of suppressing self-deformation, warping deformation suppression, and structural shape assurance
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[0022] Reference Figure 1-6 . The specific steps of the cantilever beam structure topology optimization design method based on the conformal constraint of the present invention are as follows:
[0023] (a) Establish a cantilever beam topology optimization model. The cantilever beam structure 1 has a length of 100mm and a height of 70mm; the center is a rectangular conformal area 2 with a rectangular length of 20mm and a width of 20mm. The thickness is 10mm. A concentrated load 3 is applied to the lower right corner of the cantilever beam structure 1, the size is F=100N, and the direction is vertical downward; the left end is the fixed boundary 4.
[0024] (b) Define the cantilever beam structure 1 as the design domain of topology optimization Ω d , The Young's modulus of the design domain material is 100GP; define conformal area 2 as the non-design domain, and the Young's modulus of the non-design domain material is 10GPa. The Poisson's ratio is μ = 0.3. Design domain Ω d Disc...
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