Ahmed Elnour Mohammed Mozamel profile | Linquip

Ahmed Elnour Mohammed Mozamel

Linquip Level: Expert

Ankara, Turkey

PhD in Manufacturing & Construction

Viewers: 103Followers: 19Followings: 33

About:

As a Mechanical Engineer, I have a solid educational base and professional skills in manufacturing processes including a well understanding of additive manufacturing technology (3D Printing), CATIA-5, SolidWorks, NX Siemens, CAD/CAM, AnsysMaxwell and Matlab. Moreover, I do prefer works where advance technology such as SL, SLS, SDL, DLP, FDM, DMD and PLA are involved as well as research and development.

Expertise:

Skills:

3d printing
CAD/CAM
CNC MACHINING
Manufacturing
Mechanical design

Projects:

Mechanical Engineer

Owner: N/A

27 Feb 2021 - 27 Feb 2021. less than a minute
1 Device

I am interested in working where advance technology such as SL, SLS, SDL, DLP, FDM, DMD and PLA are involved as well as research and development.

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Activities:

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Non-destructive Simulations has extensive experience in performing failure analysis on a wide range of parts and products and offers a wide range of capability to identifying failure signs.

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The essential point here is that, if the maximum value of Von Mises stress induced in the material is more than strength of the material the design will undoubtedly fail.

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Design considerations differ greatly for each method of production technology for the same part.

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The powder-metallurgy (PM) process and Metal diffusion processes can be used to produce parts characterized by weight less than 2.3 kg free of porosity.

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3D printing as an intelligent manufacturing techniques, cloud offering new opportunities to save our resources much more efficient. I hope to achieve cross-industry integration, strengthen and cooperation with innovative ideas, burst out new technological chances, and generate new business formats.

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Applicable for thickness ranges of 1 to 12 mm sheet-metal plates.

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The job is ready for Laser cutting operations

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Injector Cooling Plate V5 250 Ibf

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Injector Cooling Plate V5 250 Ibf

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Rocket Injector (V5 LOX) upper cap, performed by 2.5D machining operations.

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Welcome to the latest edition of my 3D printing Rocket engine nozzle part, which is designed to works under 3050K. Suppose the FDM technology was used to produce the job.

What are the possible opportunities to generate cooling channels inside the Nozzle body?

Where is the expected critical region that affected by the highest degree of temperature?

Are there any effect of the combustion chamber temperature on controlling propellant flow?

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Discover How additive manufacturing technology can helps to produce such a part without wasting money and time

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Stay updated and manage your design time.