ROBDOG

ROBDOG

ROBDOG

ROBDOG

FREELANCE · 2022 · Fusion 360

FREELANCE · 2022 · Fusion 360

FREELANCE · 2022 · Fusion 360

FREELANCE · 2022 · Fusion 360

RobDog is a robotic quadruped concept developed for a robotics program pitch. I worked through the design from initial sketches and form development to detailed CAD modelling, assembly, and joint setup to demonstrate the proposed functionality.


From Sketches to a 3D Concept

The process began with initial sketches exploring the overall form and proportions of the robotic dog. These ideas were then translated into Fusion 360, establishing the individual components and overall structure of the concept.

RobDog is a robotic quadruped concept developed for a robotics program pitch. I worked through the design from initial sketches and form development to detailed CAD modelling, assembly, and joint setup to demonstrate the proposed functionality.


From Sketches to a 3D Concept

The process began with initial sketches exploring the overall form and proportions of the robotic dog. These ideas were then translated into Fusion 360, establishing the individual components and overall structure of the concept.

RobDog is a robotic quadruped concept developed for a robotics program pitch. I worked through the design from initial sketches and form development to detailed CAD modelling, assembly, and joint setup to demonstrate the proposed functionality.


From Sketches to a 3D Concept

The process began with initial sketches exploring the overall form and proportions of the robotic dog. These ideas were then translated into Fusion 360, establishing the individual components and overall structure of the concept.

RobDog is a robotic quadruped concept developed for a robotics program pitch. I worked through the design from initial sketches and form development to detailed CAD modelling, assembly, and joint setup to demonstrate the proposed functionality.


From Sketches to a 3D Concept

The process began with initial sketches exploring the overall form and proportions of the robotic dog. These ideas were then translated into Fusion 360, establishing the individual components and overall structure of the concept.

Once the primary forms were established, additional mechanical and surface details were introduced to give the robot more definition. Materials and appearances were also applied to help communicate the intended construction and make the concept easier to visualize.

Once the primary forms were established, additional mechanical and surface details were introduced to give the robot more definition. Materials and appearances were also applied to help communicate the intended construction and make the concept easier to visualize.

Once the primary forms were established, additional mechanical and surface details were introduced to give the robot more definition. Materials and appearances were also applied to help communicate the intended construction and make the concept easier to visualize.

Once the primary forms were established, additional mechanical and surface details were introduced to give the robot more definition. Materials and appearances were also applied to help communicate the intended construction and make the concept easier to visualize.

The individual components were assembled in Fusion 360 to create the complete robotic dog. Assembly relationships and joints were introduced to connect the moving components and establish how the different parts would interact.

The individual components were assembled in Fusion 360 to create the complete robotic dog. Assembly relationships and joints were introduced to connect the moving components and establish how the different parts would interact.

The individual components were assembled in Fusion 360 to create the complete robotic dog. Assembly relationships and joints were introduced to connect the moving components and establish how the different parts would interact.

The individual components were assembled in Fusion 360 to create the complete robotic dog. Assembly relationships and joints were introduced to connect the moving components and establish how the different parts would interact.

Joints were configured around the robot's limbs to demonstrate their intended range of movement. This allowed the assembled CAD model to be manipulated as a functional system rather than simply presented as a static model.

Joints were configured around the robot's limbs to demonstrate their intended range of movement. This allowed the assembled CAD model to be manipulated as a functional system rather than simply presented as a static model.

Joints were configured around the robot's limbs to demonstrate their intended range of movement. This allowed the assembled CAD model to be manipulated as a functional system rather than simply presented as a static model.

Joints were configured around the robot's limbs to demonstrate their intended range of movement. This allowed the assembled CAD model to be manipulated as a functional system rather than simply presented as a static model.

RobDog was developed as an initial concept for a robotics program pitch. The project subsequently evolved in a different direction, with the later agreed design differing considerably from this version. This model therefore represents the early concept and design exploration stage of the project.

RobDog was developed as an initial concept for a robotics program pitch. The project subsequently evolved in a different direction, with the later agreed design differing considerably from this version. This model therefore represents the early concept and design exploration stage of the project.

RobDog was developed as an initial concept for a robotics program pitch. The project subsequently evolved in a different direction, with the later agreed design differing considerably from this version. This model therefore represents the early concept and design exploration stage of the project.

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