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Body Design Engineer Jobs in Texas (NOW HIRING)

Manufacturing Process Engineer

Houston, TX

$70.20K - $93.60K/yr

... the mechanical design engineer based in SF. Responsibilities: - Create and adapt process ... body, durability, aero and thermal sytems - Strong organizational and scheduling skills. Preferred ...

Manufacturing Process Engineer

Houston, TX · On-site

$70.20K - $93.60K/yr

... the mechanical design engineer based in SF. Responsibilities: - Create and adapt process ... body, durability, aero and thermal sytems - Strong organizational and scheduling skills. Preferred ...

Fit, align, and assemble subassemblies with precision using engineering drawings, CAD models, and ... Proven ability in body filler application, panel straightening, shaping, sanding, and restoration ...

\uD83C\uDFD7 Manufacturing Process Engineer

Houston, TX · On-site

$70.20K - $93.60K/yr

... the mechanical design engineer based in SF. \uD83E\uDE90Responsibilities: - Create and adapt ... body, durability, aero and thermal sytems - Strong organizational and scheduling skills. \uD83E ...

Associate, Stress Engineering

Greenville, TX · On-site

$48.75 - $66.75/hr

Collaborate with Design Engineers to substantiate aircraft modifications and installations and ensure the design meets airworthiness requirements * Generate free body diagrams and calculate internal ...

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Body Design Engineer information

See Texas salary details

$12

$37

$58

How much do body design engineer jobs pay per hour?

As of May 28, 2026, the average hourly pay for body design engineer in Texas is $37.91, according to ZipRecruiter salary data. Most workers in this role earn between $31.50 and $47.14 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Body Design Engineer, and why are they important?

To thrive as a Body Design Engineer, you need a solid background in mechanical engineering, knowledge of automotive body structures, and proficiency in CAD software, often supported by a relevant degree. Experience with tools like CATIA, NX, and familiarity with GD&T standards and manufacturing processes are typically required. Strong problem-solving abilities, teamwork, and effective communication are vital soft skills for collaborating across design, engineering, and manufacturing teams. These skills ensure that vehicle body components are engineered for safety, manufacturability, and cost-effectiveness in a competitive automotive industry.

What are some common challenges faced by Body Design Engineers in automotive projects?

Body Design Engineers often encounter challenges such as balancing aesthetic requirements with structural integrity, meeting safety regulations, and integrating new materials or technologies. They must coordinate closely with cross-functional teams, including manufacturing, electrical, and safety engineers, to ensure that all design aspects are feasible for mass production and meet quality standards. Additionally, tight project timelines and evolving customer expectations can add complexity to the role, requiring strong problem-solving skills and adaptability.

What is a Body Design Engineer?

A Body Design Engineer is a professional who designs and develops the structural and exterior components of vehicles, such as doors, hoods, fenders, roofs, and frames. They focus on ensuring that these parts meet safety, durability, and aesthetic requirements while collaborating with other engineering teams. Body Design Engineers use computer-aided design (CAD) software and work closely with manufacturing to ensure that designs can be efficiently produced. Their role is essential in creating vehicles that are safe, functional, and visually appealing.

What is the highest salary of a design engineer?

The highest salary for a design engineer can exceed $120,000 annually, especially for those with extensive experience, specialized skills, or working in high-demand industries like aerospace or automotive design. Senior design engineers with advanced certifications and expertise in CAD software often earn the top salaries in the field.

What is the difference between Body Design Engineer vs Structural Engineer?

AspectBody Design EngineerStructural Engineer
CredentialsBachelor's in Mechanical, Automotive, or Aerospace EngineeringBachelor's in Civil, Mechanical, or Structural Engineering
Work EnvironmentAutomotive, aerospace, or manufacturing industriesConstruction, infrastructure, or building projects
Industry UsageDesigning vehicle bodies, aircraft fuselages, or product shellsDesigning load-bearing structures for buildings and bridges

While both roles involve engineering design, a Body Design Engineer focuses on creating vehicle or product shells, emphasizing aerodynamics and aesthetics, whereas a Structural Engineer specializes in ensuring the safety and stability of buildings and infrastructure. Both roles require similar educational backgrounds and work in related industries, but their specific applications and design focus differ significantly.

What job categories do people searching Body Design Engineer jobs in Texas look for? The top searched job categories for Body Design Engineer jobs in Texas are:
What cities in Texas are hiring for Body Design Engineer jobs? Cities in Texas with the most Body Design Engineer job openings:
Test Stand Design & Build Engineer (Structures/Fluid Systems)

Test Stand Design & Build Engineer (Structures/Fluid Systems)

SpaceX

Mcgregor, TX

Other

Posted 18 days ago


SpaceX rating

8.7

Company rating: 8.7 out of 10

Based on 142 frontline employees who took The Breakroom Quiz

12th of 59 rated aerospace companies


Job description

TEST STAND DESIGN & BUILD ENGINEER (STRUCTURES/FLUID SYSTEMS)

SpaceX is looking for engineers to support the development and production testing of Starship/Raptor, Falcon, and Dragon engine and vehicle hardware in McGregor, TX. This is a fast-paced, hands-on, constantly evolving, real-as-it-gets engineering position available for the ambitious. We design, build, activate, modify, and maintain the fluid and mechanical systems that power, restrain, and measure the most powerful high-volume rocket engines in the world. In this dynamic environment, you can expect your engineering skills to be put to the test and the hardware you designed to be built and installed the very same day. From thousands of gallons per minute of cryogens to tens of pounds per second of high-pressure gas, we develop clever solutions to meet the needs of a demanding test program both today and in the future. We have open positions ranging from entry-level to very experienced engineers to add value to the SpaceX mission.

RESPONSIBILITIES:

  • Analyze, design, and build systems that support testing of fully integrated flight vehicles, individual rocket engines, and various rocket components
  • Drive cradle-to-grave ownership of engineering projects through design reviews, decision justifications, equipment procurement, and coordination/participation in the construction of your ideas
  • Work directly with skilled technicians to build your designs and fix real-world problems on the fly
  • Maintain a tight feedback loop with the test operations team to rapidly alter plans as necessary to meet tight testing deadlines critical to company success
  • Operate and troubleshoot equipment to achieve testing objectives, and apply lessons learned to iterate system designs for improved performance and maintenance
  • Evaluate complex engineering needs and arrive at solutions to seemingly impractical problems that support test programs and achieve company objectives
  • Take a hands-on approach to tackling rapidly-emerging field projects that keep the company testing rocket engines and vehicles every single day

BASIC QUALIFICATIONS:

  • Bachelor's degree in mechanical engineering, aerospace engineering, chemical engineering, or other engineering discipline 
  • 1+ years of hands-on design or build experience (professional work, internships, clubs, or other engineering activities qualify)

PREFERRED SKILLS AND EXPERIENCE:

  • Strong fundamental understanding and intuition for fluid, structural, or mechanical systems
  • Critical thinking and problem solving in stressful, dynamic situations
  • Positive responses and outcomes to challenges posed by short deadlines
  • Hands-on build-machining, welding, and other fabrication techniques are a plus
  • Creativity to imagine and design for reliability, efficiency, and maintainability from scratch
  • Driven approach to addressing challenges and opportunities-an enthusiastic, self-motivated, positive, can-do attitude
  • Determining the best solution among several options, often balancing cost/schedule/complexity
  • Acute attention to detail, and ability to see interactions with related systems to avoid problems
  • Instrumentation and testing, data review and analysis, verification of models against reality
  • High-pressure or cryogenic fluid systems and components
  • Complex structural or mechanical systems and components
  • Design verification with simplified hand calculations and complex modeling-FEA or CFD is a plus
  • Production of fabrication drawings for parts to be machined or welded
  • Intermediate skill level using CAD-Siemens NX is a plus
  • ASME piping and pressure vessel design
  • Excellent written and verbal communication skills
  • 3+ years of engineering design experience in an industrial setting or equivalent

ADDITIONAL REQUIREMENTS:

  • Ability to work both independently and as part of a team, take individual initiative, and communicate effectively to peers, leadership, and customers
  • Ability to rapidly change roles/responsibilities while maintaining a high sense of urgency in a fast-paced, challenging work environment
  • Willingness to perform other related duties for the purpose of ensuring an efficient and effective work environment
  • Availability to respond to emergencies to support priority projects, missions, and launches
  • Availability to work extended hours and weekends as needed-flexibility is required
  • Ability to perform job duties that require standing, kneeling, crouching, twisting upper body, working in cramped positions in small openings, and climbing hand over hand
  • Ability to lift heavy objects unassisted-up to 25 lbs.
  • Ability to work at elevated heights with proper PPE-up to 300 ft.
  • Ability to work in extreme outdoor environments when needed-heat, cold, wind, rain, etc.
  • Ability to work in environments with exposure to fumes, odors, and noise
  • Working conditions may be in tight quarters-physical dexterity is required

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