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Full Welding Jobs in Texas (NOW HIRING)

Senior Welding Engineer

Austin, TX · On-site

$80 - $100/hr

Lead zirconium welding procedure development: inert atmosphere GTAW, shielding gas optimization, contamination control, and full mechanical qualification * Develop and document PWHT cycles; interpret ...

Welding Field Engineer

Pecos, TX

$35 - $48.25/hr

Our team is helping the customer progress early-stage development, that would lead to the start of full EPC delivery next year. The successful candidate will be a Welding Field Engineer on the ...

New

Welding Faculty

Odessa, TX · On-site

$42K - $54K/yr

Utilizes appropriately challenging coursework to help students realize their full potential as ... An earned Associate Degree in Welding Technology or similar discipline from a regionally accredited ...

Welding Robot Operator / Welder

Dallas, TX · On-site

$18 - $24.50/hr

The ideal candidate will have strong robotic welding knowledge, the ability to work 1st or 3rd ... full-lifecycle building solutions-from design and construction to service and facilities ...

Welding Robot Operator / Welder

Dallas, TX · On-site

$17.75 - $24.50/hr

The ideal candidate will have strong robotic welding knowledge, the ability to work 1st or 3rd ... full-lifecycle building solutions-from design and construction to service and facilities ...

Full autonomy. Own things end to end, take on scope without being asked, no permission required to ... Write and qualify welding procedure specifications and procedure qualification records to AWS D1.1 ...

Hands on experience in the welding field required. No formal teaching experience required (we will ... Competitive salary, semester retention bonuses, and full state benefits available! Starting salary ...

Showing results 21-40

Full Welding information

What is full welding?

Full welding refers to a welding process where the entire joint between two pieces of metal is welded along its full length and depth, creating a strong and continuous bond. This technique is commonly used in structural applications where high strength and durability are required. Full welding can be performed using various welding methods, such as MIG, TIG, or stick welding, depending on the materials and project requirements. Proper preparation, technique, and inspection are essential to ensure the integrity of a full weld.

What are some common challenges faced by full welders on the job, and how can they be managed effectively?

Full Welders often encounter challenges such as working in confined spaces, handling heavy materials, and maintaining high-quality welds under tight deadlines. Managing these challenges effectively requires strong attention to safety protocols, good physical stamina, and a keen eye for detail. Team communication is also key—collaborating closely with supervisors, inspectors, and other trades ensures that projects stay on track and meet industry standards. Investing in ongoing training and certification can also help welders adapt to new techniques and materials, which is valuable for career advancement.

What are the key skills and qualifications needed to thrive as a full welder, and why are they important?

To thrive as a Full Welder, you need expertise in various welding techniques (such as MIG, TIG, and arc welding), strong blueprint reading skills, and typically a welding certification or completion of an apprenticeship. Familiarity with welding machines, safety equipment, and inspection tools is essential, and certifications like AWS (American Welding Society) are highly valued. Attention to detail, manual dexterity, and strong problem-solving abilities distinguish top performers in this field. These skills ensure precise, safe, and high-quality welds, which are critical for structural integrity and project success.

What is the difference between Full Welding vs Pipe Welding?

AspectFull WeldingPipe Welding
CertificationsWelding certifications (e.g., AWS, CWI)Welding certifications, often including specialized pipe welding certifications
Work EnvironmentConstruction sites, manufacturing plants, fabrication shopsOil & gas, water treatment, pipeline projects, industrial plants
Industry UsageGeneral fabrication, structural work, manufacturingPipeline construction, pressure vessel fabrication
Skills FocusVaried welding techniques, structural weldingPipe welding techniques, precision, and safety in pipe systems

Full Welding involves a broad range of welding tasks across various industries, focusing on structural and fabrication work. Pipe Welding specializes in welding pipes for pipelines and pressure systems, requiring specific skills and certifications. While both roles require welding certifications, pipe welding demands additional expertise in pipe-specific techniques. Understanding these differences helps job seekers identify the right career path based on their skills and industry interests.

What are popular job titles related to Full Welding jobs in Texas?

For Full Welding jobs in Texas, the most frequently searched job titles are:

What job categories do people searching Full Welding jobs in Texas look for?

The top searched job categories for Full Welding jobs in Texas are:

What cities in Texas are hiring for Full Welding jobs?

Cities in Texas with the most Full Welding job openings:

Senior Welding Engineer

Epoch Biodesign

Austin, TX • On-site

$80 - $100/hr

Other

Posted 15 days ago


Job description

About Aalo Atomics

Aalo Atomics is pioneering a new era in clean energy with factory-fabricated microreactors designed to deliver affordable, scalable, and reliable nuclear power. Our mission is to make nuclear energy globally accessible, starting with the Aalo-1, a 10 MWe reactor leveraging cutting-edge safety, modularity, and efficiency. Based in Austin, TX, we’re rapidly growing as we work to deploy the world’s first fleet of advanced microreactors. Join us and help revolutionize energy for a sustainable future.

About the role

You’ll be a founding member of our welding engineering function. You’ll own process development and qualification, drive automation and cost reduction, and lead R&D into advanced welding modalities - laser beam, electron beam, and others - that unlock performance and throughput conventional arc welding can’t. You’ll also develop our zirconium welding capability from scratch, a rare technical challenge outside national labs.

This is a hands‑on role. You’ll be on the shop floor as much as at your desk.

What you’ll do Process Development & Qualification
  • Develop, qualify, and optimize GTAW, GMAW, spray MIG, and emerging processes for stainless steel pressure vessels and piping
  • Own WPS/PQR documentation to ASME Section IX, AWS D1.6, or applicable codes
  • Lead zirconium welding procedure development: inert atmosphere GTAW, shielding gas optimization, contamination control, and full mechanical qualification
  • Develop and document PWHT cycles; interpret metallurgical outcomes
Advanced Welding R&D
  • Evaluate and qualify laser beam (LBW), electron beam (EBW), plasma arc (PAW), and hybrid laser-arc processes for vessel and pressure system applications
  • Design parametric studies to characterize process windows and build qualification datasets
  • Develop solutions for difficult joint configurations - dissimilar materials, thin-wall closures, complex penetrations
  • Collaborate with vendors, equipment suppliers, and national lab partners to stay at the front edge of nuclear-relevant welding technology
  • Build internal IP and documentation to support future procedure qualifications and regulatory submittals
Automation & Cost Reduction
  • Identify and implement orbital GTAW, mechanized MIG, and robotic welding to drive consistency and reduce labor cost
  • Develop parametric programs for automated systems including seam tracking, adaptive fill, and multi-pass sequencing
  • Instrument in-process monitoring (voltage, travel speed, heat input) to enable closed-loop quality control
  • Track weld cycle times, consumable costs, and rework rates; use data to justify capital investments
Quality & Continuous Improvement
  • Partner with design engineers on joint weldability - distortion control, access, inspection compatibility
  • Work with NDE personnel (RT, PT, UT, PAUT) to interpret results and close nonconformances
  • Drive root cause analysis on weld defects using metallography, fractography, hardness, and chemical analysis
  • Build and maintain weld quality metrics; use them to focus engineering effort where it has the highest return
  • Maintain documentation infrastructure: travelers, hold points, NCRs, lessons learned
Production Support
  • Provide real-time direction to welders on the floor; troubleshoot defects and maintain build pace
  • Mentor welders on technique, procedure compliance, and quality standards
  • Support welder qualification and certification as the team scales
Qualifications
  • BS in Materials Science, Metallurgical Engineering, Mechanical Engineering, or related field
  • 3+ years of welding engineering experience including process development and qualification
  • Hands‑on GTAW experience on stainless steel pressure-boundary applications
  • Working knowledge of ASME BPVC Section IX or equivalent pressure systems code
  • Comfortable on the shop floor - able to evaluate welds in progress, not just on paper
Preferred Qualifications
  • AWS CWE or CWI certification
  • Experience with LBW or EBW process development or production support
  • Experience welding zirconium, titanium, or Inconel under inert-atmosphere conditions
  • Experience deploying orbital or robotic welding in production, including program development
  • Background in weld process monitoring and correlating in-process signals to quality outcomes
  • Familiarity with nuclear QA requirements (NQA-1, 10 CFR 50 Appendix B) or equivalent regulated-industry QA (aerospace, defense)
  • Hands‑on fabrication ability - picking up a torch and demonstrating technique is a plus
Why This Role

You’ll develop zirconium welding procedures few U.S. engineers have touched outside national labs, qualify laser and electron beam processes for nuclear vessel applications, and build the weld program from the ground up at a company moving from prototype to production at unprecedented speed. Every improvement you make means faster builds, lower cost, and more clean energy in the world.

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