CAD, 3D Modeling, Engineering Analysis, and Prototype by Jeremy Zheng Li

By Jeremy Zheng Li

This succinct booklet specializes in machine aided layout (CAD), three-D modeling, and engineering research and the methods they are often utilized successfully in learn and business sectors together with aerospace, security, car, and patron items. those effective instruments, deployed for R&D within the laboratory and the sphere, practice successfully third-dimensional modeling of complete items, render advanced geometrical product designs, facilitate structural research and optimum product layout, produce photograph and engineering drawings, and generate creation documentation. Written with an eye fixed towards eco-friendly strength installations and novel production amenities, this concise quantity allows clinical researchers and engineering pros to profit layout ideas, keep an eye on latest and complicated concerns, proficiently use CAD instruments, visualize technical basics, and achieve analytic and technical skills.

This publication also:

· Equips practitioners and researchers to address robust instruments for engineering layout and research utilizing many particular illustrations

· Emphasizes vital engineering layout rules in introducing readers to various techniques

· comprises tutorials offering readers with acceptable scaffolding to speed up their studying process

· Adopts a product improvement, cost-consideration standpoint during the book’s many examples

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Extra info for CAD, 3D Modeling, Engineering Analysis, and Prototype Experimentation: Industrial and Research Applications

Example text

00507 in. is within material allowable deformation limit. 42 Fig. 3 Solar panel Fig. 4 Stress profile in solar panel 4 Solar Panel Tracking System Fig. 5 Deflection profile in solar panel Fig. 6 Solar panel frame Fig. 7 Stress profile in panel frame Fig. 2 Computer-Aided Simulation of Solar Panel Tracking System Fig. 9 Lateral channel beam Fig. 10 Stress profile in lateral channel beam 45 46 Fig. 11 Deflection profile in lateral channel beam Fig. 12 Longitudinal channel beam 4 Solar Panel Tracking System Fig.

17 present the stress and deflection profiles of orientation adaptor in newly designed solar panel system. 00017 in. is within material allowable deformation limit. 56 4 Solar Panel Tracking System The computer-aided simulation and analysis in Figs. 20 indicate the stress and deflection profiles of orientation rack in newly designed solar panel system. 0511 in. is within material allowable deformation limit. The computer-aided simulation and analysis in Figs. 23 display the stress and deflection profiles of orientation base in newly designed solar panel system.

9 by computer-aided modeling and numerical simulation. 3 expresses the experimental results of maximum stress and maximum deflection of wind power turbine energy system 2. 0128 in. 0124 in. that are depicted, respectively, in Figs. 11 by computer-aided modeling and numerical simulation. 4 Discussion and Future Improvement on Wind Power Turbine System In the near future, wind energy will become one of the most cost-effective and environment-friendly sources of electrical power. In wind power energy system, a turbine is connected to a mechanical electrical generator so that the electricity can be generated by natural wind energy.

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