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Aeronautical Engineering: ANZSCO 233911
Aeronautical Engineers work with airplanes. They are included principally in planning airplane and impetus frameworks and contemplating the streamlined exhibition of airplane and development materials. They work with the hypothesis, innovation, and practice of trip inside the Earth's climate.
Competency Demonstration Report (CDR) Sample for Aeronautical Engineers
The Competency Demonstration Report Sample for Aeronautical Engineer includes all the necessary reports such as Three Career Episodes, Continuing Professional Development, Summary Statement, and Curriculum Vitae. The Content of the Sample is as follow
Aeronautical Engineer Career Episode Report Sample – 1
“Design of Custom Engine Mount”- 1850 words.
Aeronautical Engineer Career Episode Report Sample – 2
“Design and Manufacturing of Cellular Lattice Structure of Gyroid Type”- 2700 words.
Aeronautical Engineer Career Episode Report Sample – 3
“Development and Characterization of plastic/wood Composite Materials from Furniture Industry Waste”- 2550 words.
Aeronautical Engineer Summary Statement Sample
Detail explanation of all the competency element- 2400 words.
Aeronautical Engineer Career Episode Report Samples
The career episode must be written on your own based on your recent work experience and must be in the English language. Each career episode should highlight the problems faced in your project and the steps taken to overcome them. It would be best if you numbered each paragraph of your career episodes as `` Career episode 1 (paragraphs 1.1, 1.2, 1.3, etc.) ``. The primary four components are as follows:
In the first career episode, the author describes the project he did when he was working as a manufacturing engineer/ product design engineer at Rotec Aerosport Pvt Ltd. The project’s name was “Design of Custom Engine Mount”. The responsibilities of the author were:
To design parts of the engine
To re-design the parts which were previously designed
Project Name: Design and Manufacturing of Cellular Lattice Structure of Gyroid Type
In the second Career Episode, the author explains the engineering skills he used in the project work for partial fulfillment of the requirements for the degree of Masters of Engineering Science. His duties and responsibilities in the project “Design and Manufacturing of Cellular Lattice Structure of Gyroid Type” were:
To design and manufacture the cellular lattice structure of Gyroid Type using rapid prototyping technology
To create a model by periodic repetition of its unit cell with different cell size and volume fraction
To study the effect of such variation in their compression properties
To select appropriate material among available thermoplastics to use as a material to build cellular lattice structure
To use Fused Deposition Modelling (FDM) to test the manufacturability of the cellular lattice models
To conduct post-processing on the 3D printed model and make necessary arrangement to run a compression test
To run Compression Test to study the behavior of the Gyroid cellular lattice structure under compressive loads and obtain the stress-strain curve and determine other compressive properties such as Relative Density, Porosity, compression Strength, Young’s modulus of the structure
To prepare a well-documented project report fulfilling the requirement of the project
Project Name: Development and Characterization of plastic/wood Composite Materials from Furniture Industry Waste
In the third Career Episode, the author demonstrates the final project work that he did as his graduation thesis at the Swinburne University of Technology. The Project was “Development and Characterization of plastic/wood Composite Materials from Furniture Industry Waste”. The key responsibility of the writer was:
To study the twin-screw extruder
To prepare a proper formulation of the composite material
To carry out the necessary post-processing of the composite materials
To prepare the test sample using an injection molding technique
To conduct Flexural test, tensile test, impact test, differential scanning calorimetry (DSC), and Simultaneous differential technique (SDT) to investigate mechanical, thermal, and rheological properties
To analyze the result obtained from the above test
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