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Asme Jobs in Washington (NOW HIRING)

Spacecraft Mechanical Designer

Greenbelt, MD · On-site

$123K - $184K/yr

Apply Geometric Dimensioning and Tolerancing (GD&T) principles per ASME Y14.5 to ensure proper fit, form, and function. * Material Selection: Select appropriate aerospace-grade materials, surface ...

Apply Geometric Dimensioning and Tolerancing (GD&T) principles per ASME Y14.5 to ensure proper fit, form, and function. * Material Selection: Select appropriate aerospace-grade materials, surface ...

Senior Mechanical Engineer

Ellicott City, MD · On-site +1

$104K - $137K/yr

Develop basis of design documents and ensure compliance with client requirements, industry standards, and applicable codes (IBC, ASME, API, PIP, NFPA, etc.). * Prepare scopes of work, support ...

Mechanical Design Engineer

Arnold, MD · On-site

$55K - $126K/yr

Knowledge of ASME Y14.5 Geometric, Dimensioning, and Tolerancing principals * Ability to obtain a Secret clearance * Bachelor's degree Nice If You Have: * Experience interpreting, creating, and using ...

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Asme information

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How much do asme jobs pay per hour?

As of Sep 2, 2026, the average hourly pay for asme in Washington is $20.91, according to ZipRecruiter salary data. Most workers in this role earn between $17.40 and $20.96 per hour, depending on experience, location, and employer.

What is ASME?

ASME professionals are individuals who are members of the American Society of Mechanical Engineers (ASME), an organization dedicated to advancing the art, science, and practice of multidisciplinary engineering and allied sciences. ASME professionals often include mechanical engineers, researchers, educators, and technical experts who follow the standards, codes, and certifications set by the society. They may be involved in designing, constructing, testing, and maintaining mechanical systems and infrastructure. Membership in ASME provides access to resources, networking opportunities, and professional development in the engineering field.

What are the key skills and qualifications needed to thrive as a mechanical engineer?

To thrive as a Mechanical Engineer, you need a solid background in engineering principles, mathematics, and physics, typically supported by a bachelor's degree in mechanical engineering or a related field. Proficiency with CAD software (such as SolidWorks or AutoCAD), FEA tools, and possibly a Professional Engineer (PE) license are commonly required. Strong problem-solving abilities, communication skills, and teamwork distinguish top performers in this role. These skills and qualifications are vital for designing reliable systems, collaborating on complex projects, and ensuring safety and efficiency in engineering solutions.

What are some common challenges mechanical engineers face when working under ASME standards?

Mechanical engineers working with ASME standards often encounter challenges such as staying current with evolving codes, ensuring precise documentation, and maintaining compliance across multidisciplinary teams. These standards are rigorous and require a thorough understanding of technical specifications, which can be demanding when dealing with complex projects or tight deadlines. Collaboration with quality assurance and safety teams is essential, as is continuous learning to ensure that designs and processes meet the latest industry requirements.

What is the difference between Asme vs Welding Inspector?

AspectAsmeWelding Inspector
CertificationsASME certifications, such as ASME Section VIIICertified Welding Inspector (CWI), AWS certifications
Work EnvironmentPressure vessels, boilers, piping in industrial settingsWelding sites, fabrication shops, construction projects
Industry UsagePower plants, oil & gas, manufacturingConstruction, manufacturing, pipeline projects

While both roles involve quality and safety standards, ASME professionals focus on design, codes, and standards for pressure equipment, whereas Welding Inspectors primarily oversee welding quality and compliance on-site. Understanding these differences helps in choosing the right career path or job search focus within the industry.

How do I get into ASME?

To pursue a career related to ASME, which is an engineering organization, you typically need a relevant engineering degree, such as mechanical or aerospace engineering, and may benefit from obtaining certifications or training in specific technical skills. Gaining experience through internships or entry-level positions in engineering firms can also improve your chances of entering the field.

What are popular job titles related to Asme jobs in Washington?

For Asme jobs in Washington, the most frequently searched job titles are:

What job categories do people searching Asme jobs in Washington look for?

The top searched job categories for Asme jobs in Washington are:

What cities in Washington are hiring for Asme jobs?

Cities in Washington with the most Asme job openings:

Infographic showing various Asme job openings in Washington as of August 2026, with employment types broken down into 86% Full Time, 3% Part Time, 2% Temporary, 8% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $43,501 per year, or $20.9 per hour.

Pressure Systems & Lifting Devices (PVS/LDE) Program Manager

Input Technology Solutions

Greenbelt, MD • On-site

Full-time

Re-posted 5 days ago


Job description

Input Technology Solutions is seeking a Pressure Systems & Lifting Devices (PVS/LDE) Program Manager in Greenbelt, MD to provide Safety and Mission Assurance support to NASA Goddard Space Flight Center (GSFC) under the Safety and Mission Assurance Services III (SMAS III) contract. This position directly supports the GSFC Code 320 Safety and Health Division as the program manager and engineering expert for the Greenbelt Pressure Vessels and Pressurized Systems (PVS) and Lifting Devices and Equipment (LDE) programs.

Functional responsibilities:

  • Provide management and oversight of the GSFC Greenbelt PVS and LDE programs, including review and recommended approval of LDE/PVS testing, inspections, engineering analyses, and certification/recertification of ground-based pressure vessels and pressurized systems.

  • Serve as the engineering expert on analysis and evaluation of PVS certification/recertification problems, including characterization and analysis of flaws, ASME Boiler & Pressure Vessel Code and Process Piping Code analyses, acceptance criteria development and evaluation, fracture mechanics analysis, and specialized analyses to resolve engineering or inspection issues.

  • Validate the Center's pressure systems and vessels to ensure safe operation at rated pressure; resolve complex revalidation issues arising from missing legacy documentation and evolving design/construction standards and criteria.

  • Lead an effort to determine the current state of the Greenbelt PVS program: identify all PVS systems, assign risk categories, and determine certification status and critical safety components to enable the Center to address system deficiencies.

  • Support the Division Chief in developing a plan to address Center PVS risks and bring Center PVS systems into compliance with OSHA and industry standards.

  • Identify NASA/GSFC LDE or PVS requirements not required by OSHA or industry that provide no significant risk reduction, and recommend process changes to drive efficiency and better enable missions.

  • Serve as technical advisor and consulting safety engineer for application of current safety technologies and regulations to facilities, structures, systems, and equipment; support technical program planning and coordinate with engineers in execution.

  • Key deliverables: weekly status reports; Greenbelt PVS System Risk Level and Status assessment (Oct 1, 2026); recommended PVS/LDE process improvements and requirements-tailoring report (Oct 31, 2026).

Minimum Requirements:

  • Demonstrated expertise in ASME Boiler & Pressure Vessel Code, Section VIII, Div. 1 and Div. 2, requirements and analyses.

  • ASME B31.3 Process Piping requirements and analyses. API 579-1/ASME FFS-1 Fitness-For-Service requirements and analyses.

  • API 520 Parts I and II (sizing, selection, and installation of pressure-relieving devices) requirements and analyses.

  • National Board Inspection Code (NBIC) NB-23, Parts 1, 2, and 3, requirements and applicable analyses.

  • Application of nondestructive examination (NDE) methodologies for pressure vessels/systems based on their codes and standards of construction.

  • System and component field inspection/verification and walk-downs against system P&IDs.

  • Knowledge of safe operation of high-pressure systems.

  • Ability to complete government-required training for NASA physical and computer system access.

Education:

  • A bachelor's degree in mechanical engineering or a related engineering discipline (mechanical engineering strongly preferred).

  • At least 10 years of relevant experience in pressure vessel/pressurized systems engineering, certification/recertification, and/or pressure systems program management