Design and Motion Analysis of a Piston-Crank Assembly Problem Statement:

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Assignment Question 1: Advanced Motion Study with Gear Mates

Task:
Create an assembly with three interlinked spur gears. Each gear must rotate when the first gear is driven by a motor. Use proper gear mates and conduct a motion study to analyze angular velocity over 5 seconds.

Expert Solution:
Our expert began by modeling three spur gears using the Toolbox utility and aligning them properly on the assembly workspace. Gear mates were applied between Gear A and B, and then Gear B and C, ensuring accurate torque transmission.

The motor was added to Gear A with a constant rotational speed of 100 RPM. Using the Motion Study tool, the simulation was run for a duration of 5 seconds. The study generated an angular velocity graph showing that each subsequent gear rotated in the opposite direction, with corresponding speeds adjusted for gear ratio (2:1 and 3:1).

Outcome:

  • Precise kinematic simulation

  • Graphs showing real-time angular velocity

  • Screenshots of properly meshed gears

  • Fully annotated CAD files submitted

This solution not only demonstrated high technical competency but also met all academic formatting and documentation standards.


Assignment Question 2: Thermal Analysis of an Aluminum Heat Sink

Task:
Model a finned heat sink used in electronic devices and perform thermal analysis to determine temperature distribution under steady-state conditions. Assume constant heat flux at the base and natural convection on all other surfaces.

Expert Solution:
The heat sink was modeled with extended pin-type fins and assigned aluminum 6061 material properties. Heat flux was set to 5000 W/m² at the base using the Simulation add-in. A thermal study was initiated with convection coefficient set to 25 W/m²K for ambient air.

The mesh was refined for better resolution around the fins. The solver was run under steady-state conditions, and the final results included:

  • A temperature gradient showing maximum heat near the base and cooling along the fins

  • Tabulated data of node temperatures

  • Thermal efficiency of the fin system

Outcome:

  • Accurate 3D temperature distribution plot

  • Complete simulation report in PDF

  • Source files provided in .SLDPRT and .SLDASM formats

Our SolidWorks Assignment Help team ensured this high-complexity problem was solved with academic precision, demonstrating real-world applications in electronics cooling.


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