有限要素解析(FEA) Jobs
Finite Element Analysis (FEA) is a procedure used to identify and solve engineering problems that can have a wide range of complexities. It’s a type of engineering simulation that uses a set of mathematical equations to analyze and solve various engineering problems. A Finite Element Analysis Engineer is the person who will interpret the results and make recommendations for the best engineering solution. In order for FEA to be performed correctly and accurately, professional engineers must use special software written for FEA purposes.
FEA works by breaking down complex architecture or components into smaller sections to simulate how the entire structure or object will behave under real life circumstances or scenarios. Through this method, FEA engineers are able to provide their clients with valuable insights about potential failures or defects that can be identified and corrected before it’s too late and expensive.
Here’s some projects that our expert Finite Element Analysis Engineer made real:
- Soothed residual stress issues in a laminated structure casting
- Optimized support structure in geometry models
- Analyzed output data from 3 point bending tests
- Calculated forces while studying fire tests with ASTM E119
- Performed various hard complex analysis involving ANSYS models
- Evaluated and calculated stress levels, deflection points, and vibrations in structures and components.
The analysis of complex architecture can be extremely time consuming, however through FEA simulations, engineers are capable of quickly identifying weak points and then immediately take action to optimize it. Clients who have access to experienced Finite Element Analysis Engineer can save time, money and energy while carrying out their projects because they know exactly how their structure behaves before it’s even built. That’s why we invite you to use Freelancer.com for your project so you can hire an expert engineer in FEA that can provide you with the best engineering solution for your needs.
16,046レビューから、クライアントは Finite Element Analysis Engineers 4.81/5個の星で評価します。Finite Element Analysis Engineers を採用する
Finite Element Analysis (FEA) is a procedure used to identify and solve engineering problems that can have a wide range of complexities. It’s a type of engineering simulation that uses a set of mathematical equations to analyze and solve various engineering problems. A Finite Element Analysis Engineer is the person who will interpret the results and make recommendations for the best engineering solution. In order for FEA to be performed correctly and accurately, professional engineers must use special software written for FEA purposes.
FEA works by breaking down complex architecture or components into smaller sections to simulate how the entire structure or object will behave under real life circumstances or scenarios. Through this method, FEA engineers are able to provide their clients with valuable insights about potential failures or defects that can be identified and corrected before it’s too late and expensive.
Here’s some projects that our expert Finite Element Analysis Engineer made real:
- Soothed residual stress issues in a laminated structure casting
- Optimized support structure in geometry models
- Analyzed output data from 3 point bending tests
- Calculated forces while studying fire tests with ASTM E119
- Performed various hard complex analysis involving ANSYS models
- Evaluated and calculated stress levels, deflection points, and vibrations in structures and components.
The analysis of complex architecture can be extremely time consuming, however through FEA simulations, engineers are capable of quickly identifying weak points and then immediately take action to optimize it. Clients who have access to experienced Finite Element Analysis Engineer can save time, money and energy while carrying out their projects because they know exactly how their structure behaves before it’s even built. That’s why we invite you to use Freelancer.com for your project so you can hire an expert engineer in FEA that can provide you with the best engineering solution for your needs.
16,046レビューから、クライアントは Finite Element Analysis Engineers 4.81/5個の星で評価します。Finite Element Analysis Engineers を採用する
I need an Aspen simulation that focuses on full process design of a heat exchanger network. The goal is to build an accurate model and deliver a detailed thermal performance evaluation: temperatures, duties, pinch points, approach temperatures, and any bottlenecks that appear once the network is integrated into the overall process flow. You may work in Aspen Plus or HYSYS for the main flowsheet and use Exchanger Design & Rating (EDR) or Energy Analyzer for the network itself—whichever produces the most reliable convergence and reporting. Please document every assumption (fluid properties, fouling factors, pressure drops) directly in the model notes so I can reproduce your results. Acceptance criteria • Complete Aspen file(s) with all units converged • Thermal perfor...
I’m working on the next-generation gear systems that will drive our CNC turning centres, vertical machining centres, and multi-axis machines. What I need right now is a fresh, precise mechanical design for those individual gear components—everything from tooth profile definition through tolerance-ready manufacturing drawings. Here’s what the collaboration looks like: • Scope ‑ Purely mechanical design: no electronics or control work this round. ‑ Component-level focus: shafts, pinions, spur/helical gears and their mating relations inside the gearbox. ‑ The design must integrate smoothly with our existing machine envelopes and lubrication layouts at JYOTI CNC Automation Ltd. • Typical workflow 1. You receive my baseline requirements, speed/torq...
I need a complete modal and vibration study in ANSYS Student version 2026 that mirrors the methodology and numerical results reported in the research paper I will share. The structure is fixed at one end, no external forces or pressure are applied, and the material throughout is Nitinol (shape-memory alloy). My primary interest is in the natural frequencies; matching mode shapes would be a bonus, but frequency accuracy comes first. Please aim for results that are either identical to the paper or within a tight engineering tolerance—if you can document any unavoidable deviations, that is acceptable. All modelling, meshing and post-processing must be done inside the Student edition so I can reproduce everything on my own machine later. I EVEN WANT VIDEO OF HOW U MADE AND GOT RESULTS...
Project Title: Bio-Inspired Disc Brake Design with Dust Collection System (ANSYS Analysis) Project Description: I am a final-year engineering student working on a disc brake project. The main aim is to reduce the formation of the third body layer (dust and debris) on the brake disc by improving airflow and adding a dust collection system. We have already: Designed a basic disc brake model Tried different groove patterns (including Tesla valve-inspired shapes) Studied airflow behavior for dust movement Now, we want to develop a final improved design using bio-inspired groove patterns that can help create unidirectional airflow, pushing dust towards the collection system. What I Need Help With: I am looking for an experienced engineer who can guide and assist with: Suggesting bio-inspired gr...
I’m building a finite-element model in Abaqus to replicate a push-out test where steel beams are connected to CLT slabs. The sole objective is to capture and understand the deformation behaviours that develop throughout the load history, rather than ultimate strength or specific failure modes. Here’s what I need from you: • An accurately meshed, non-linear Abaqus model that represents the steel beam-to-CLT connection used in push-out testing (material orthotropy for CLT, contact definitions, appropriate boundary conditions, and loading protocol). • Post-processing that isolates global and local deformations and presents them as clear, publication-ready graphs and charts (force–slip curves, displacement contours, etc.). • All input files, output da...
I have a simple but critical industrial water system: one centrifugal pump feeds seven separate delivery points through a branched pipe network. The factory installed the network without any modeling in mind. Your brief is two-fold. First, verify every calculated flow rate and pressure drop from the pump discharge right up to each of the seven use points. Second, once the numbers are solid, help me refine or completely re-design the network if that will improve overall performance or simplify the pipework. What I need from you • Flow-rate analysis along every leg, confirming that each outlet meets its target demand. • Pressure-loss calculations, clearly identifying sections where friction losses or elevation changes are hurting performance. • A summary of flow rate a...
I am preparing a detailed multi-body simulation focused on the dynamics of the power transmission in a manual transmission and the crankshaft assembly. I urgently need an engineer who can: • Build a robust multibody model of the connecting shafts and input components of the gear train for a 5-speed manual transmission, the crankshaft assembly, • Run steady-state and transient analyses to capture torsional vibration, imbalance forces, and bearing loads • Document all assumptions, material properties, and boundary conditions so results are fully traceable • Recommend design tweaks if critical speed or NVH issues appear in the results Adams and Simpack, experience with either package is a bonus, but I’m also open to other comparable platforms if you can just...
I’m building a compact, four-legged robot and need a mechanical designer who can take it from concept to validated CAD. Whether you prefer SolidWorks or Fusion 360 is completely up to you—the important part is a solid background in robotics mechanisms, joints, linkages, and gears, backed by a portfolio that shows assemblies in motion rather than static renders. Project scope The core task is a lightweight yet strong leg architecture. Each leg will have hip and knee joints that must offer a wide range of motion and allow precise control once the actuators and gearing are in place. Please reserve internal volume and mounting points for a Jetson board alongside a battery pack, and route cabling logically so the final build stays neat. What I expect from you • A full 3D ...
This project focuses on the validation of an experimental investigation on a novel Concrete-Filled Steel Tube (CFST) pier-to-foundation connection with tubed RC encasement using advanced finite element modeling in ABAQUS. The objective is to reproduce the experimental/numerical work presented in and verify the accuracy of the FE model by comparing: Load–displacement (load-drift) behavior Failure modes (FM1, FM2, FM3) Stress and strain distribution Lateral resistance and stiffness The ABAQUS model includes: Concrete Damaged Plasticity (CDP) for concrete Steel modeled with elastic–plastic behavior Surface-to-surface contact with friction Embedded constraints for reinforcement Boundary conditions simulating real test setup Validation is performed by comparing FE results with ...
I need a CT scan of the septal cartilage converted into a finite element model for medical research. The focus is on analyzing deformation patterns. Requirements: - Expertise in CT imaging and FEA - Background in medical research, particularly in cartilage or related areas - Proficiency in software used for FEA modeling - Attention to detail and accuracy in model creation Ideal Skills: - Mechanical engineering - Biomedical engineering - Computational mechanics Please provide relevant experience and a timeline for completion.
Hi I will share the details with the shortlisted candidates. Thanks
This tssk focuses on using finite element analysis (FEA) to study the mechanical behaviour of a sugar mill roller shaft under realistic operating conditions. The task requires modelling the shaft in engineering software (NX Nastran) to predict how it deforms and where stresses are concentrated, particularly at critical نقاط where failure is likely due to fatigue. Students must apply appropriate loads (such as roll pressure and torque), define constraints, and choose suitable mesh and element types while justifying all modelling decisions. The analysis is carried out for two scenarios—roll load only, and combined roll load with torque—to compare their effects on stress and deformation. Finally, the results, assumptions, and engineering reasoning must be clearly presented in a st...
Hi I will share the details with the shortlisted candidates. Thanks
I'm seeking a mechanical engineer specializing in vehicle dynamics to optimize ride comfort by refining our independent suspension system. The focus areas include: - Suspension Optimization: Improve performance to minimize vibrations and enhance ride quality including vibro-acoustics. - Finite Element Analysis (FEA): Assess and simulate suspension input loads to inform design modifications. - Multibody Dynamics: Analyze the interaction of vehicle components to ensure durability and comfort. Ideal candidates will have: - Expertise in ride comfort and suspension systems - Proficiency in FEA and multibody dynamics software - Strong background in mechanical engineering and vehicle dynamics Please provide relevant experience and approach.
I need a detailed modal analysis carried out in ANSYS Mechanical (Workbench or APDL) on a composite beam that is mounted on linear springs at both ends. The study is part of my master’s research, so every modelling choice—from element selection and mesh sensitivity to boundary condition justification—must be fully traceable. Two configurations must be investigated: 1. The bare beam on linear springs. 2. The same beam on linear springs with a centrally-mounted lumped mass (a disc). I already have the exact beam dimensions and material properties for the composite lay-up; I will share them once the project starts. What I require from you is to import or build the geometry, assign the composite stack, model the linear spring supports correctly, and extract natural frequ...
requires stress analysis on a reactor nozzle. They intend fitting a dip pipe through the nozzle, but need to know that the nozzle is suitable, and need to be sure the dip pipe can do the job, bearing in mind that the vessel is fitted with an agitator. Do you think this is something you can help with? In addition to the physical data the things I’d like you to consider are: Longest dippipe we could have without internal vessel modifications (to add supports etc..) Mechanical design for a directional dip-pipe to direct recirculation to the vessel wall , and if this is ok for stress/erosion risk on the vessel wall given the high recirculation flow rates Vessel fabrication drawings will be provided Nozzle will be used for the dip-pipe Vessel data sheet will be provided with process an...
I am in the detail-design phase of a new aircraft and need focused help finishing three intertwined tasks: CAD modeling of the airframe, disciplined material selection, and verification through structural analysis. The high-level geometry, aerodynamic data, and load cases are already defined; what remains is turning those inputs into production-ready 3D models and substantiating every spar, skin, and joint. Here is how the work will flow: • CAD modeling – Clean, parametric 3D models of the wing, fuselage, control surfaces, and primary subsystems, ready for downstream manufacturing drawings. Native files in SolidWorks, CATIA, or Siemens NX plus neutral STEP outputs are required. • Material selection – A trade study covering candidate alloys and composites, with just...
I have a sheet-metal part that has to be built, validated, and reported entirely inside CATIA V5. I have the basic geometry sketched out, but I need an expert who can turn it into a clean, fully-parametric Sheet Metal Part, set up the right material properties, thickness parameters, bend tables, and reliefs, and then run the required simulation and analysis on the model to confirm it meets strength and deformation limits before manufacturing. Here is what I expect from you: • Re-create or refine the sheet-metal part in CATIA V5 Sheet Metal workbench, keeping design intent intact and all parameters editable. • Prepare an analysis set-up in the Generative Structural Analysis (or relevant) workbench: apply loads and boundary conditions that I will provide, mesh the part appropri...
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