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CDR Sample for Mechanical Engineer

CDR Sample for Mechanical Engineer

You can get 100% genuine CDR sample for Mechanical Engineer written by our professional and skilled engineering writers. The samples we provide are the report which have already been submitted and positively assessed by the Engineers Australia for Skilled Migration Visa. Please use the sample for reference purpose only and do not copy and paste from the sample.

CDR Report Sample: Mechanical Engineer ANZSCO Code: 233512

CDR Sample for Mechanical Engineer includes all the necessary reports such as Three Career EpisodesContinuing Professional DevelopmentSummary Statement and Curriculum Vitae. The Content of the CDR Report Sample is as follows:

  • Curriculum Vitae: Resume based on a professional template.
  • Continuing Professional Development Sample: CPD Sample clearly explains the author’s Engineering Knowledge- 645 words.
  • Mechanical Engineer Career Episode Sample – 1:“Design and Comparison of Automatic, Conventional & Conformal Cooling Channels for Injection molding Plastic Lid in Autodesk Mold flow Insight”- 1950 words.
  • Mechanical Engineer Career Episode Sample – 2: “Determination of a relative equation to find wettability of the material through water contact angle”- 1870 words.
  • Mechanical Engineer Career Episode Sample – 3: “Improvement of productivity in Shot Blasting Machine”- 1641 words.
  • Mechanical Engineer Summary Statement Sample: Detail explanation of all the competency element- 3477 words.

Mechanical Engineer Career Episode Report: Sample 1

Project Name: Design and Comparison of Automatic, Conventional & Conformal Cooling Channels for Injection molding Plastic Lid in Autodesk Mold flow Insight

In first career episode, the author describes the project he carried as a coursework for the completion of the undergraduate degree of Mechanical Engineering. The project’s name was “Design and Comparison of Automatic, Conventional & Conformal Cooling Channels for Injection molding Plastic Lid in Autodesk Mold flow Insight”. The responsibilities of the author were:

  • To execute designing injection molded plastic part specifically dustbin lid
  • To perform selection of materials for the fabrication purpose
  • To analyze, simulate and validate the designed part to find different features under three different cooling channels
  • To analyze the outcome attained from simulation of the designed part
  • To draw conclusions from the analyzed design results.

Mechanical Engineer Career Episode Report: Sample 2

Project Name: Determination of a relative equation to find wettability of the material through water contact angle

In second Career Episode, the author explains the engineering skills he used in the project he carried out in the Commonwealth Scientific and Industrial Research Organization (CSIRO) for the degree in Masters of Engineering Science (Advanced Manufacturing Technology). His duties and responsibilities in the project “Determination of a relative equation to find wettability of the material through water contact angle” were:

  • To study the parameters affecting the contact angle and its wettability on various materials like glass, etc.
  • To study various methodologies in measuring the contact angle
  • To select the material to be used and the fluid used for the testing process
  • To carry out the measurement process for determining the surface area of the droplet
  • To create a trend line of the smooth curve from which the polynomial equation was derived

Mechanical Engineer Career Episode Report: Sample 3

Project Name: Improvement of productivity in Shot Blasting Machine

In third Career Episode, the author explains the engineering skills he used in the project that he was engaged in as a mandatory task for the completion of the undergraduate degree. His duties and responsibilities in the project “Improvement of productivity in Shot Blasting Machine” were:

  • To study about shot blasting machine. its working and operation
  • To identify the scope of the project, study the problem and suggest the solution to it
  • To identify ball wheel tolerance and calculate operation timing and loss at wheels

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