1

Professional Engineer Jobs in Blue Ridge, GA (NOW HIRING)

Resistance Welding Engineer

Cumming, GA

$31.75 - $43.75/hr

Support design, manufacturing, and materials engineering with root cause analysis. * Work closely ... Excellent professional communication skills (written and verbal). * Excellent organization skills ...

Resistance Welding Engineer

Cumming, GA · On-site

$31.75 - $43.75/hr

Support design, manufacturing, and materials engineering with root cause analysis. * Work closely ... Excellent professional communication skills (written and verbal). * Excellent organization skills ...

DEPCON The Opportunity The Sr HSE Professional is a leadership role accountable for the Site-wide ... We are a team of problem-solvers, engineers, builders, and operators who thrive on tackling complex ...

The Civil Technical Engineer supports urgent post-storm recovery operations across transportation ... Communicate assessment findings, field observations, and emerging issues clearly and professionally ...

Showing results 41-60

Professional Engineer information

See Blue Ridge, GA salary details

$40K

$83.4K

$117.3K

How much do professional engineer jobs pay per year?

As of Sep 11, 2026, the average yearly pay for professional engineer in Blue Ridge, GA is $83,425.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,900.00 and $94,500.00 per year, depending on experience, location, and employer.

What is a professional engineer?

Professional Engineers (PEs) are licensed engineers who have met the education, experience, and exam requirements established by their state or country. They are legally authorized to sign off on engineering projects, offer their services to the public, and take responsibility for the safety and integrity of engineering work. Becoming a PE typically involves earning an accredited engineering degree, passing the Fundamentals of Engineering (FE) exam, gaining relevant work experience, and passing the Professional Engineering (PE) exam. The PE license signifies a high standard of competence and ethics in the engineering profession.

What does a professional engineer do?

A professional engineer uses mathematics and science to create safe and efficient buildings, machines, and applications. Engineers typically specialize in a particular field, such as aerospace, mechanical, or structural engineering. Your job duties vary depending on your area of expertise and employer but may include creating plans, designing machinery, or building skyscrapers. This career often involves a combination of office and field work. Frequent travel is an additional job requirement for many professional engineering jobs. Long hours and overtime work are also expected to meet deadlines.

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

To thrive as a Professional Engineer, you need a solid grasp of engineering principles, problem-solving skills, and a degree in engineering, typically complemented by a Professional Engineer (PE) license. Familiarity with industry-standard software such as AutoCAD, MATLAB, or project management tools, along with ongoing continuing education, is often required. Strong communication, teamwork, and project management abilities help engineers deliver effective solutions and collaborate with diverse stakeholders. These skills and qualifications ensure engineers can design safe, efficient systems and maintain high professional standards in complex technical environments.

What are some common challenges professional engineers face when managing multiple projects simultaneously?

Professional Engineers often juggle several projects at once, which can present challenges in prioritizing tasks, coordinating with diverse teams, and ensuring compliance with regulatory standards. Effective time management and clear communication are essential to handle shifting deadlines and resource allocation. Collaborating closely with project managers, clients, and other engineers helps maintain project momentum and quality, while regular progress reviews ensure that no critical detail is overlooked.

What is the difference between Professional Engineer vs Mechanical Engineer?

AspectProfessional EngineerMechanical Engineer
CredentialsRequires PE license, degree, work experience, examRequires degree, possibly fundamentals exam, but not license
Work EnvironmentDesign, review, sign off on projects, often in consulting or engineering firmsDesign, analysis, manufacturing, and testing in various industries
Industry UsageLicensed in engineering projects, legal responsibilityCommonly employed in manufacturing, automotive, aerospace, and more

The main difference between a Professional Engineer and a Mechanical Engineer is that the PE is licensed and authorized to sign off on engineering projects, ensuring legal and safety standards are met. Mechanical Engineers typically hold the necessary education and experience but do not have licensing requirements unless they pursue PE licensure. Both roles work closely in engineering fields, but the PE designation signifies a higher level of responsibility and legal accountability.

What can professional engineers do?

Professional engineers design, develop, and evaluate systems, structures, and products across various engineering disciplines. They apply technical knowledge, use tools like CAD software, and often require licensure to approve projects and ensure safety standards are met.

What are the most commonly searched types of Engineer jobs in Blue Ridge, GA?

The most popular types of Engineer jobs in Blue Ridge, GA are:

What are popular job titles related to Professional Engineer jobs in Blue Ridge, GA?

For Professional Engineer jobs in Blue Ridge, GA, the most frequently searched job titles are:

What cities near Blue Ridge, GA are hiring for Professional Engineer jobs?

Cities near Blue Ridge, GA with the most Professional Engineer job openings:

Infographic showing various Professional Engineer job openings in Blue Ridge, GA as of August 2026, with employment types broken down into 1% As Needed, 72% Full Time, 23% Part Time, and 4% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $83,425 per year, or $40.1 per hour.

Resistance Welding Engineer

Cumming, GA

American BOA, Inc.
Industrial Machinery Manufacturing • 201 - 500 employees

$31.75 - $43.75/hr

Full-time

Re-posted 24 days ago


Job description

Position Summary:
The position will provide support for flexible metal piping products (bellows, expansion joints, hoses) being sold into the Aerospace, Automotive, and General Industries. Responsibilities include but are not limited to new weld process and parameter development, documentation, process optimization amp; automation, root cause analysis and corrective actions, new design development and support.
Essential Duties and Responsibilities
  • Develop, optimize, and qualify weld processes and parameters for multiple welding processes including but not limited, to gas tungsten arc welding, plasma arc welding, resistance welding, and gas metal arc welding.
  • Test and qualify welders in accordance with applicable techniques, standards, customer requirements, and other industry codes.
  • Support production operations on full scale welded assemblies, providing direction to welding technicians and supervisors on correct techniques in a fast-paced manufacturing environment.
  • Support design, manufacturing, and materials engineering with root cause analysis.
  • Work closely with design, tooling, automation, and product design engineers to improve welded designs for manufacturing.
  • Set up welding qualification test campaigns and interpret mechanical testing and NDE results.
  • Work closely with NDE personnel to interpret weld quality on development and production hardware.
  • Develop and implement process controls where possible using test and NDE results to improve overall weld process yield.
  • Research and recommend new welding technologies that may be employed to improve rate/quality/efficiency.
  • Perform producibility reviews on engineering designs to assess manufacturability, ease of assembly, and material availability.
  • Generate special tooling solutions and shop aids for production level producibility.
Required Education and/or Experience
  • Ability to learn quickly in a high pace environment.
  • Bachelor’s degree in an engineering discipline required.
  • Hands on welding experience of stainless steel, nickel-based, titanium, and aluminum alloys.
  • Fundamental understanding of welding processes including, but not limited to, plasma arc, resistance, gas tungsten arc, and gas metal arc.
  • Knowledge of basic weld destructive and non-destructive testing and interpretation thereof.
Preferred Skills and Experience
  • Bachelor’s or Master’s degree in Weld Engineering.
  • Experience and/or domain knowledge of
    • GTAW linear seam welding of thin materials
    • Resistance seam welding
    • Pressure bearing piping or vessel components and codes. Namely: ASME Pipe and Pressure Vessel Codes, ASME Section IX, AWS D17.1 amp; D17.2
  • Metallographic processing and interpretation.
  • Robot programming experience for automated welding solutions.
  • Tooling design experience for welded assemblies to reduce part distortion and improve part consistency.
  • Military service is acknowledged and appreciated.
Additional Competencies
  • Proficiency in computer applications including Microsoft Excel, Outlook, and Word. Advanced skills in Excel, Microsoft Project, Solidworks or other relevant software a plus.
  • Familiarity with an ERP or MRP system such as SAP a plus.
  • Familiarity with MES systems a plus.
  • Excellent professional communication skills (written and verbal).
  • Excellent organization skills with the ability to multitask and prioritize with minimal supervision.
  • Ability to apply design theory across a multitude of industries/markets.
Work Environment
  • Working conditions are split between a standard office environment and production environment.
  • Ability to perform job duties that require standing, kneeling, crouching, twisting upper body, lifting of objects up to 25lbs.
Travel
  • Travel requirements are minimal.
The above statements are intended to describe the general nature and level of work being performed by most people assigned to this job. They are not intended to be an exhaustive list of all responsibilities, duties, and requirements.