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Image Search Results
Journal: Materials
Article Title: Dynamic Analysis and Vibration Control of Additively Manufactured Thin-Walled Polylactic Acid Polymer (PLAP) and PLAP Composite Beam Structures: Numerical Investigation and Experimental Validation
doi: 10.3390/ma17225478
Figure Lengend Snippet: Modeling beam structures oriented at 0°|0°: ( a ) approach for PLAP and SCFR|PLAP beam structures and ( b ) approach for CCFR|PLAP.
Article Snippet: Initially, the finite element modeling (FEM) of
Techniques:
Journal: Materials
Article Title: Dynamic Analysis and Vibration Control of Additively Manufactured Thin-Walled Polylactic Acid Polymer (PLAP) and PLAP Composite Beam Structures: Numerical Investigation and Experimental Validation
doi: 10.3390/ma17225478
Figure Lengend Snippet: Natural frequencies of 0°|0°-oriented beam structures with and without MFC: experiments and numerical simulation results.
Article Snippet: Initially, the finite element modeling (FEM) of
Techniques:
Journal: Materials
Article Title: Dynamic Analysis and Vibration Control of Additively Manufactured Thin-Walled Polylactic Acid Polymer (PLAP) and PLAP Composite Beam Structures: Numerical Investigation and Experimental Validation
doi: 10.3390/ma17225478
Figure Lengend Snippet: Initial four bending modes of MFC-integrated 0°|0°-oriented beam structures: ( a ) bending modes _0°|0° PLAP, ( b ) bending modes _0°|0° SCFR|PLAP, and ( c ) bending modes _0°|0° CCFR|PLAP.
Article Snippet: Initially, the finite element modeling (FEM) of
Techniques:
Journal: Materials
Article Title: Dynamic Analysis and Vibration Control of Additively Manufactured Thin-Walled Polylactic Acid Polymer (PLAP) and PLAP Composite Beam Structures: Numerical Investigation and Experimental Validation
doi: 10.3390/ma17225478
Figure Lengend Snippet: Numerical natural frequencies of 0°|0°-oriented beam structures with amplitudes.
Article Snippet: Initially, the finite element modeling (FEM) of
Techniques: