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3D Modelling AutoCAD CAD/CAM Mechanical Engineering Solidworks
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$30 USD / heure
Drapeau de BOSNIA AND HERZEGOVINA
$30 USD / heure
Il est actuellement 8:27 AM ici
Membre depuis le mai 14, 2013
6 Recommandations

Asim C.

@asimcosic

annual-level-three.svgverified.svg
4,9 (48 commentaires)
6,7
6,7
$30 USD / heure
Drapeau de BOSNIA AND HERZEGOVINA
$30 USD / heure
98 %
Travaux complétés
100 %
Suivant le budget
100 %
Dans les temps
25 %
Taux de réembauche

Mechanical engineering

A highly accomplished, astute and results-oriented professional with years of comprehensive experience in CAD development. An articulate individual equipped with a powerful blend of exceptional skills and high-quality performance in brainstorming, 3D modeling, FEA analysis, and design for manufactory analysis (DFM), 2D drawings (GD&T) and prototyping with focus on manufacturability and quality. A versatile individual possessing an acute awareness of practical issues and trends, particularly accessibility, usability and emerging technologies. Proven success in applying innovative concepts to improve efficiency while ensuring flawless operations through excellent delivery of services. My specialities are : 1. 3D modeling, Rendering (Solidworks, Inventor ) 2. 2D Drawings 3. Shop drawings 4. Mechanical design 5. Mechanical engineering 6. FEA analyssis 7. CFD 8. Prototyping 9. Rapidprotoyping 10. CNC machining 11. 3D printing I would love to hear from you.
Freelancer 3D Modellers Bosnia and Herzegovina

Contactez Asim C. concernant votre emploi

Connectez-vous pour discuter des détails via la messagerie.

Éléments du portfolio

Types of analysis (FEA):
Linear and non-linear static: Response of structure to critical loads and modeling of contact (allowing analysis of assemblies), non-linear material behavior and large deformations
Buckling: Critical compression static load or combination of loads that results in instability
Normal modes, frequency response and response spectrum: Response to vibrations and frequency driven excitations.
Random response: Response of structure to excitations defined with probabilistic magnitude (spectral density function)
Transient, dynamic, vibration and seismic response: Response of structure through time with variations of boundary conditions
Impact (implicit and explicit solvers): Response of structure following collision (crash tests and drop tests)
Steady state and transient heat transfer: Temperature distribution within a solid body
Thermal stress: Stress induced by temperature distribution
Fatigue analysis (multi axial and vibration fatigue):
FEA/FEM Analysis
Types of analysis (FEA):
Linear and non-linear static: Response of structure to critical loads and modeling of contact (allowing analysis of assemblies), non-linear material behavior and large deformations
Buckling: Critical compression static load or combination of loads that results in instability
Normal modes, frequency response and response spectrum: Response to vibrations and frequency driven excitations.
Random response: Response of structure to excitations defined with probabilistic magnitude (spectral density function)
Transient, dynamic, vibration and seismic response: Response of structure through time with variations of boundary conditions
Impact (implicit and explicit solvers): Response of structure following collision (crash tests and drop tests)
Steady state and transient heat transfer: Temperature distribution within a solid body
Thermal stress: Stress induced by temperature distribution
Fatigue analysis (multi axial and vibration fatigue):
FEA/FEM Analysis
Types of analysis (FEA):
Linear and non-linear static: Response of structure to critical loads and modeling of contact (allowing analysis of assemblies), non-linear material behavior and large deformations
Buckling: Critical compression static load or combination of loads that results in instability
Normal modes, frequency response and response spectrum: Response to vibrations and frequency driven excitations.
Random response: Response of structure to excitations defined with probabilistic magnitude (spectral density function)
Transient, dynamic, vibration and seismic response: Response of structure through time with variations of boundary conditions
Impact (implicit and explicit solvers): Response of structure following collision (crash tests and drop tests)
Steady state and transient heat transfer: Temperature distribution within a solid body
Thermal stress: Stress induced by temperature distribution
Fatigue analysis (multi axial and vibration fatigue):
FEA/FEM Analysis
Types of analysis (FEA):
Linear and non-linear static: Response of structure to critical loads and modeling of contact (allowing analysis of assemblies), non-linear material behavior and large deformations
Buckling: Critical compression static load or combination of loads that results in instability
Normal modes, frequency response and response spectrum: Response to vibrations and frequency driven excitations.
Random response: Response of structure to excitations defined with probabilistic magnitude (spectral density function)
Transient, dynamic, vibration and seismic response: Response of structure through time with variations of boundary conditions
Impact (implicit and explicit solvers): Response of structure following collision (crash tests and drop tests)
Steady state and transient heat transfer: Temperature distribution within a solid body
Thermal stress: Stress induced by temperature distribution
Fatigue analysis (multi axial and vibration fatigue):
FEA/FEM Analysis
Computational Fluid Dynamics (CFD)

Steady state and transient CFD simulations of internal/external liquid and gas flows
Analysis, design and optimization of immersed or surrounding components
Optimal turbulence modeling approaches: RANS, URANS, RSM, LES, DES
Incompressible, transonic and compressible flows
Rotating equipment and moving bodies
Multiple reference frames, rotating and sliding interfaces, deformable meshes
Fluid-structure interaction
Heat transfer and thermal modeling
Multiphase and free surface flows
Flow mixing
CFD Analysis
Computational Fluid Dynamics (CFD)

Steady state and transient CFD simulations of internal/external liquid and gas flows
Analysis, design and optimization of immersed or surrounding components
Optimal turbulence modeling approaches: RANS, URANS, RSM, LES, DES
Incompressible, transonic and compressible flows
Rotating equipment and moving bodies
Multiple reference frames, rotating and sliding interfaces, deformable meshes
Fluid-structure interaction
Heat transfer and thermal modeling
Multiphase and free surface flows
Flow mixing
CFD Analysis
Computational Fluid Dynamics (CFD)

Steady state and transient CFD simulations of internal/external liquid and gas flows
Analysis, design and optimization of immersed or surrounding components
Optimal turbulence modeling approaches: RANS, URANS, RSM, LES, DES
Incompressible, transonic and compressible flows
Rotating equipment and moving bodies
Multiple reference frames, rotating and sliding interfaces, deformable meshes
Fluid-structure interaction
Heat transfer and thermal modeling
Multiphase and free surface flows
Flow mixing
CFD Analysis
3D scanning is not the “easy button” that many think it is. The most critical step in the reverse engineering process is the modeling bridge performed by the applications engineers. Consequently, the reverse engineering process can be quite complex and is very dependent on the skill and expertise of both the engineers doing the work and those managing the project. The better the engineers, the better the results.

We have a lot of experience in 3D digitization and reverse engineering for 3D CAD model generation. Our engineers have expertise with quick surfacing and can provide complete reverse engineering solutions to clients with all available class surfaces which also include A-class surfaces.

Parametric 3D modeling in generic and native formats
Hybrid modeling (2D and 3D scan data)
Reconstruction from 3D scanning data, probing, 2D drawings, sketches, etc.
Design modification from actual objects
Data preparation for digital simulation
3D modeling of objects of all sizes
Reverse engineering
3D scanning is not the “easy button” that many think it is. The most critical step in the reverse engineering process is the modeling bridge performed by the applications engineers. Consequently, the reverse engineering process can be quite complex and is very dependent on the skill and expertise of both the engineers doing the work and those managing the project. The better the engineers, the better the results.

We have a lot of experience in 3D digitization and reverse engineering for 3D CAD model generation. Our engineers have expertise with quick surfacing and can provide complete reverse engineering solutions to clients with all available class surfaces which also include A-class surfaces.

Parametric 3D modeling in generic and native formats
Hybrid modeling (2D and 3D scan data)
Reconstruction from 3D scanning data, probing, 2D drawings, sketches, etc.
Design modification from actual objects
Data preparation for digital simulation
3D modeling of objects of all sizes
Reverse engineering
3D scanning is not the “easy button” that many think it is. The most critical step in the reverse engineering process is the modeling bridge performed by the applications engineers. Consequently, the reverse engineering process can be quite complex and is very dependent on the skill and expertise of both the engineers doing the work and those managing the project. The better the engineers, the better the results.

We have a lot of experience in 3D digitization and reverse engineering for 3D CAD model generation. Our engineers have expertise with quick surfacing and can provide complete reverse engineering solutions to clients with all available class surfaces which also include A-class surfaces.

Parametric 3D modeling in generic and native formats
Hybrid modeling (2D and 3D scan data)
Reconstruction from 3D scanning data, probing, 2D drawings, sketches, etc.
Design modification from actual objects
Data preparation for digital simulation
3D modeling of objects of all sizes
Reverse engineering
Mold development is initiated on a 3D CAD input and the Base development is undertaken as per DME, HASCO, LKM or any other such standards. Design of Core and Cavity inserts, Moving Cores, Slides and other Components are based on Automatic Parting Line Development. Runners, Gates and Waterlines are positioned as per the material flow analysis.

Functional validation is carried out by animation of the assembly.Design of the mould is fully integrated with the manufacturing environment.
Mold/Tool design
Mold development is initiated on a 3D CAD input and the Base development is undertaken as per DME, HASCO, LKM or any other such standards. Design of Core and Cavity inserts, Moving Cores, Slides and other Components are based on Automatic Parting Line Development. Runners, Gates and Waterlines are positioned as per the material flow analysis.

Functional validation is carried out by animation of the assembly.Design of the mould is fully integrated with the manufacturing environment.
Mold/Tool design
Mold development is initiated on a 3D CAD input and the Base development is undertaken as per DME, HASCO, LKM or any other such standards. Design of Core and Cavity inserts, Moving Cores, Slides and other Components are based on Automatic Parting Line Development. Runners, Gates and Waterlines are positioned as per the material flow analysis.

Functional validation is carried out by animation of the assembly.Design of the mould is fully integrated with the manufacturing environment.
Mold/Tool design
Mold development is initiated on a 3D CAD input and the Base development is undertaken as per DME, HASCO, LKM or any other such standards. Design of Core and Cavity inserts, Moving Cores, Slides and other Components are based on Automatic Parting Line Development. Runners, Gates and Waterlines are positioned as per the material flow analysis.

Functional validation is carried out by animation of the assembly.Design of the mould is fully integrated with the manufacturing environment.
Mold/Tool design
Conveyor with robotic arms
3.0 Conveyor
Prototype of cable reel for European market
2.0 Cable Reel

Commentaires

Modifications enregistrées
Montre1 - 5 sur 48 commentaires
Filtrer les commentaires par : 5,0
€500,00 EUR
Wery profesional and good quality.
CAD/CAM Solidworks Mechanical Engineering Manufacturing Design 3D Modelling
D
Drapeau de Damjan S. @damjansumak
il y a 5 ans
5,0
$2 000,00 USD
It was good to work with Asim. He took my rough drawings and models and brought them up to a higher quality package to release to vendors. None of the vendors had issues with the 3D models since he already add proper draft angles. He did both sheet metal and 3D model for my mechanical interface. On the sheet metal work he added features for extra strength which I had not previously considered.
K
Drapeau de Kelly C. @kellycoffey
il y a 5 ans
5,0
€35,00 EUR
Excellent work Will use again
CAD/CAM 3D Rendering Solidworks Mechanical Engineering 3D Modelling
+1 de plus
B
Drapeau de Bernard B. @BryceBernard
il y a 5 ans
5,0
€44,00 EUR
Great Job, Prompt, with Clear communication, made the job easy.
CAD/CAM 3D Rendering Solidworks Mechanical Engineering 3D Modelling
+1 de plus
B
Drapeau de Bernard B. @BryceBernard
il y a 5 ans
5,0
£100,00 GBP
Asim has done a great job and delivered much quicker than expected.
S
Drapeau de Mariano C. @SimbiosisBI
il y a 5 ans

Expérience

Head Engineer

ARGERR d.o.o.
oct. 2015 - Jusqu'à présent
ARGERR d.o.o. is company which work in field of mechanical engineering, reverse engineering and architectural design.

Solidworks designer

BIHkey Production
janv. 2013 - janv. 2015 (2 ans)
Prototyping, design, 3D modeling

Éducation

Master degree

Univerzitet u Sarajevu, Bosnia and Herzegovina 2012 - 2015
(3 ans)

Bachelor\'s Degree

Univerzitet u Sarajevu, Bosnia and Herzegovina 2009 - 2012
(3 ans)

Publications

Super Bike

www.radiosarajevo.ba
http://radiosarajevo.ba/novost/158647/evo-kako-izgleda-pinki-superbrzi-motocikl-koji-razvijaju-sarajevski-studenti-fotovideo

Pinki super bike

http://www.klix.ba
http://www.klix.ba/scitech/tehnologija/pogledajte-kako-izgleda-superbrzi-motocikl-sarajevskih-studenata/140714101

Contactez Asim C. concernant votre emploi

Connectez-vous pour discuter des détails via la messagerie.

Vérifications

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Certifications

preferredfreelancer-1.png Preferred Freelancer Program SLA 1 92% numeracy_1.png Basic Numeracy 1 88% us_eng_1.png US English 1 75%

Meilleures compétences

3D Modelling 37 Solidworks 26 Mechanical Engineering 17 CAD/CAM 12 AutoCAD 12

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