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Blender 3D Python Scripting Jobs in Detroit, MI (NOW HIRING)

Proficiency in ABAQUS scripting (Python) for model automation and advanced post-processing ... Build 3D battery internal structural analysis CAE models from CAD designs. Debug complex finite ...

Proficiency in ABAQUS scripting (Python) for model automation and advanced post-processing ... Build 3D battery internal structural analysis CAE models from CAD designs. Debug complex finite ...

Proficiency in ABAQUS scripting (Python) for model automation and advanced post-processing ... Build 3D battery internal structural analysis CAE models from CAD designs. Debug complex finite ...

Proficiency in ABAQUS scripting (Python) for model automation and advanced post-processing ... Build 3D battery internal structural analysis CAE models from CAD designs. Debug complex finite ...

New

... ranging from 3D CAE and system simulation to physical testing. We foster a collaborative ... Proficiency in scripting and test automation using Python, Tcl, Shell scripting, or similar ...

Server Engineer

Southfield, MI · On-site +1

$45 - $55/hr

This position requires a blend of deep technical expertise, security-minded engineering, strategic ... • Hands-on scripting experience with PowerShell, Bash, Python, or equivalent automation ...

... through a blend of business acumen, data and analytics proficiency, and technical solution ... Python, ETL, GCP, Automated Scripting, Data/Analytics Dashboards, Jira, Financial Operations, Data ...

Showing results 21-38

Blender 3D Python Scripting information

See Detroit, MI salary details

$13

$58

$85

How much do blender 3d python scripting jobs pay per hour?

As of Aug 17, 2026, the average hourly pay for blender 3d python scripting in Detroit, MI is $58.03, according to ZipRecruiter salary data. Most workers in this role earn between $47.84 and $65.91 per hour, depending on experience, location, and employer.

What is Blender 3D Python scripting?

Blender 3D Python scripting refers to the process of writing Python code to automate tasks, create custom tools, or extend the functionality of Blender, a popular open-source 3D creation suite. Python is Blender's primary scripting language, allowing users to interact with virtually every aspect of the software, from modeling and animation to scene management. This scripting capability is widely used by artists, developers, and technical directors to streamline workflows, generate procedural content, or integrate Blender with other tools and pipelines.

How do Blender 3D Python scripting professionals typically collaborate with artists and designers in a production environment?

Blender 3D Python scripting professionals often work closely with artists and designers by developing custom tools, add-ons, or automation scripts that streamline repetitive tasks or enable new creative workflows. Effective communication is key, as script developers need to understand the creative team's requirements and translate them into practical solutions within Blender. Regular feedback sessions and testing cycles are common, ensuring that scripts are user-friendly and integrate smoothly into the production pipeline. This collaboration not only enhances productivity but also helps bridge the gap between technical and creative roles.

What are the key skills and qualifications needed to thrive as a Blender 3D Python scripting specialist, and why are they important?

To excel in Blender 3D Python Scripting, you need strong skills in Python programming, a solid understanding of 3D modeling concepts, and experience working within the Blender environment. Familiarity with Blender's scripting API, version control systems like Git, and relevant certifications in 3D design or programming can be highly advantageous. Problem-solving abilities, creativity, and effective communication are crucial soft skills for collaborating with artists and developers on complex projects. These competencies are essential for efficiently automating tasks, customizing workflows, and delivering high-quality 3D content within production pipelines.

What is the difference between Blender 3D Python Scripting vs 3D Modeler?

AspectBlender 3D Python Scripting3D Modeler
Required SkillsPython programming, Blender API knowledge3D modeling, artistic skills
Work EnvironmentSoftware development, scripting within BlenderDesign studios, freelance, animation companies
Industry UsageAutomation, tool creation, procedural contentAsset creation, character modeling, environment design
CertificationsNone mandatory, programming experience preferredPortfolio, artistic skills, possibly formal art training

Blender 3D Python Scripting focuses on automating tasks and creating tools within Blender using Python, while a 3D Modeler specializes in creating visual assets and models. Both roles often work in the same industry but serve different functions—one as a technical developer, the other as an artist.

What are popular job titles related to Blender 3D Python Scripting jobs in Detroit, MI?

For Blender 3D Python Scripting jobs in Detroit, MI, the most frequently searched job titles are:

What job categories do people searching Blender 3D Python Scripting jobs in Detroit, MI look for?

The top searched job categories for Blender 3D Python Scripting jobs in Detroit, MI are:

Infographic showing various Blender 3D Python Scripting job openings in Detroit, MI as of August 2026, with employment types broken down into 2% Internship, 85% Full Time, 7% Part Time, and 6% Contract. Highlights an 81% Physical, 5% Hybrid, and 14% Remote job distribution, with an average salary of $120,709 per year, or $58 per hour.

Contractor

Re-posted 22 days ago


Job description

Job Title:
CAE Engineer
Position Description:
We are looking for an experienced structural CAE engineer to lead high-voltage battery internals and related system structural design using CAE tools. You will work with battery design and release engineers on cutting-edge battery technologies to ensure the battery functional environment operates within specified conditions. As a collaborative team player, you will create impact by working across the Electrified Powertrain Engineering organization and with key stakeholders of the battery business. Global Electrified Powertrain Engineering Team is a growing team committed to bringing efficiency and value into the battery architecture through close collaboration with global suppliers. Together, our team works to understand our changing world, identify new opportunities, and take action to design and innovate for the future of mobility - vehicles and surrounding experiences.

Skills Required:
Abaqus - Primary FEA solver (required)
HyperMesh - Pre-processing, meshing, and model setup
nCode or fe-safe - Fatigue and durability analysis

Experience Required:
4+ years of experience working with structural components and designs in an engineering environment.
Bachelor's degree in Mechanical or Structural Engineering.
Broad experience using ABAQUS, Hypermesh, ncode or FeSafe and 3DX.
Minimum of 3 years of working in Abaqus performing non-linear FEA, 5 preferred.

Experience Preferred:
5 or more years of experience specifically in CAE structural modeling and simulation analysis techniques using ABAQUS or equivalent, including experience selecting appropriate solution procedures for complex non-linear problems.
M.S. in Mechanical Engineering or equivalent degree.
Working knowledge of ABAQUS, OptiStruct Non-Linear, HyperMesh, HyperView, ABAQUS Viewer, Teamcenter, 3DEXPERIENCE (3DX), or equivalent tools (ANSYS, etc.).
Working knowledge of CAE tools for fatigue assessments such as FEMFAT, nCode, fe-safe, or equivalent.
Strong experience in correlating complex non-linear CAE models with physical test data, including sensitivity analysis and model tuning for improved accuracy.
Extensive knowledge of various structural materials, high-strength material behavior, energy flow theory and analysis methods, fracture mechanics, and crack initiation/propagation.
Working knowledge and experience using CAE pre-processing tools such as HyperMesh or equivalent for geometry cleanup and meshing, and ABAQUS, Nastran, or equivalent for CAE model solving and post-processing.
Proficiency in ABAQUS scripting (Python) for model automation and advanced post-processing.
Familiarity with sheet metal design specifications, sealing design, structural testing setup, and data collection.
Familiarity with thermal-mechanical coupled analysis that considers temperature-dependent material properties, thermal expansion, and effects on structural integrity.
Proven record of innovative applications and ability to introduce new ideas for product development.
Working knowledge of optimization CAE tools such as modeFRONTIER, iSight, HEEDS, Tosca, or OptiStruct.
Experience in physical testing is a plus.
Ability to mentor junior engineers and collaborate effectively as a team player.
Strong verbal and written communication and interpersonal skills.
Experience with variability, robustness, and Six Sigma methodologies.

Education Required:
MASTER'S DEGREE (w/ FEA courses taken)


Additional Information :
***POSITION IS HYBRID / (4 days per week in the office / Monday to Thursday)***
Build 3D battery internal structural analysis CAE models from CAD designs.
Debug complex finite element (FE) models independently.
Perform 3D structural simulations on high-voltage battery packs at the system, subsystem, and component levels to support internal design development, utilizing non-linear FEA codes such as ABAQUS, ANSYS, or OptiStruct Non-Linear, including pre- and post-processing with HyperMesh, HyperView, and ABAQUS Viewer.
Evaluate 3D structural analysis results and provide technical feedback and design direction to vehicle program and battery pack design teams.
Collaborate with vehicle-level teams to obtain boundary conditions for battery pack structural-level simulations.
Partner with battery lab and vehicle-level testing teams; specify instrumentation for data collection; process physical structural test results and use the data to correlate CAE models.
Coordinate with extended overseas CAE teams for meshing and geometric cleanup tasks.
Compile professional, organized, and structured reports detailing completed CAE work, including recommendations and conclusions.