Johns Hopkins Applied Physics Lab

2026 PhD Graduate - Postdoctoral Researcher - In-Situ Sensing for Additive Manufacturing

Manufacturing & Automotive
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Ph.D. in Mechanical Engineering, Electrical Engineering, Materials Science, Data Science, or related field.
  • Strong communication skills for engaging diverse audiences.
  • Adaptable with a collaborative mindset and enthusiasm for learning.
  • Experience solving multidisciplinary challenges in additive manufacturing.
  • Fundamental understanding of additive manufacturing processes and defects.
  • Proven track record of publishing research and authoring proposals.
  • Willingness to work in laboratory settings and travel for testing and presentations.
  • Ability to obtain Secret-level security clearance.

Responsibilities

  • Collaborate to develop innovative closed-loop sensing and control for additive manufacturing.
  • Conduct research fusing in-situ sensing to optimize material characteristics.
  • Apply AI and ML to analyze sensor data for process improvements.
  • Design adaptive algorithms for real-time adjustments to manufacturing parameters.
  • Work within a multidisciplinary team on advanced fabrication and testing.
  • Present research findings clearly to various stakeholders.
  • Contribute to the design and testing of prototypes demonstrating intelligent control.

Benefits

  • Generous education assistance program.
  • Exceptional retirement contributions.
  • Healthy work/life balance.
  • Opportunity for research initiative development and publication.
  • Inclusive, diverse workplace culture.
  • Support for employees of all abilities and backgrounds.
Full Job Description
Description

Are you passionate about pioneering advancements in additive manufacturing through cutting-edge sensing technologies, data fusion, and real-time control?

Do you want to contribute to critical national challenges by enabling intelligent closed-loop monitoring and control of metal additive manufacturing processes?

If so, we invite you to join our innovative research team in the Research and Exploratory Development Department (REDD) at the Johns Hopkins University Applied Physics Laboratory (JHU/APL). As an In-Situ Sensing Postdoctoral Fellow, you will be at the forefront of developing and integrating novel sensing modalities, artificial intelligence (AI), and machine learning (ML) algorithms to enhance process control, optimize material properties, and ensure the reliability of additively manufactured components. Your work will be essential in designing closed-loop control systems that adapt dynamically to real-time process data, enabling unprecedented advancements in manufacturing precision and efficiency.

Our team is actively developing next-generation sensing and control solutions that will allow real-time adjustments to critical additive manufacturing parameters, such as laser power, scan speed, and material feed rate. By leveraging multi-modal sensor data-including optical, thermal, acoustic, and X-ray imaging-you will help to create intelligent feedback systems capable of identifying defects, predicting failure points, and optimizing manufacturing conditions. These advances will not only push the limits of metal additive manufacturing but will also enable new applications in mission-critical environments where reliability is paramount.

As an In-Situ Sensing Postdoctoral Fellow, you will...
  • Collaborate with APL scientists, engineers, and technicians to develop novel closed-loop sensing and control solutions tailored for additive manufacturing.
  • Perform pioneering research in materials and process characterization by fusing in-situ sensing modalities to optimize microstructure and density in metal additive manufacturing.
  • Utilize AI and ML algorithms to extract insights from multi-modal sensor data, improve real-time process monitoring, and drive automated control systems.
  • Design, implement, and validate adaptive control algorithms that leverage sensor feedback to dynamically adjust processing parameters in real time.
  • Engage with a multidisciplinary team focused on materials discovery, novel fabrication techniques, multiscale modeling, processing insights, advanced testing, and qualification science.
  • Present technical findings to both internal and external audiences, effectively communicating complex concepts to team members, task leads, and project leadership.
  • Contribute to the design, fabrication, and characterization of additively manufactured operational prototypes that demonstrate intelligent process control.

Qualifications

You meet our minimum qualifications for the job if you...
  • Possess a Ph.D. in Mechanical Engineering, Electrical Engineering, Materials Science, Data Science, or a related field.
  • Have strong written and oral communication skills, with the ability to engage wide - ranging audiences and adapt to different communication styles.
  • Are adaptable, enthusiastic about new challenges, and have a passion for learning with a collaborative mindset open to sharing and receiving feedback.
  • Have experience solving multidisciplinary research challenges related to qualified hardware and additive manufacturing.
  • Demonstrate a fundamental understanding of additive manufacturing, including process defects, microstructure evolution, and thermodynamic solidification.
  • Have a demonstrated track record of authoring research proposals and publishing high-impact journal papers.
  • Are willing and able to work in a laboratory setting and travel for field testing, sponsor meetings, conferences, and technical presentations.
  • Are able to obtain a Secret-level security clearance to start with APL and then upi will be required to obtain a final Top Secret clearance. If selected, you will be subject to a government security clearance investigation, and must meet the eligibility requirements for access to classified information, including U.S. citizenship.


You will go above and beyond our minimum qualifications if you...
  • Have experience fielding additively manufactured components.
  • Demonstrate the ability to fuse 2D and 3D data, including in-situ and post-manufacturing data, into a 3D format for advanced processing and visualization.
  • Have experience applying AI/ML techniques to complex datasets, including deep learning models for defect detection, anomaly detection, and predictive modeling of additive manufacturing processes.
  • Have hands-on expertise in developing novel in-situ monitoring methods for additive manufacturing, including custom sensor development to improve signal-to-noise ratios and spatial registration.
  • Have experience with digital twin technology and reinforcement learning for real-time optimization of manufacturing parameters.
  • Have experience working with voxel-based data and mapping physical quantifications across multiple sensing platforms.
  • Possess strong scientific programming skills using tools such as MATLAB or Python, with experience in machine learning frameworks such as TensorFlow, PyTorch, or Scikit-Learn.


We are seeking a postdoctoral fellow with proven expertise in in-situ sensing, AI, and data fusion for additive (or other advanced) manufacturing processes to drive innovation in real-time monitoring and closed-loop control of advanced manufacturing systems. In this role, you will collaborate with a multi-disciplinary team to demonstrate multi-modal (e.g., optical, thermal, acoustic) in-situ sensing and real-time adaptive control in advanced manufacturing environments.
At APL, we encourage our team members to generate and lead their own research initiatives while also publishing their findings in high-impact venues. We are a collaborative, risk-taking, and innovative research team dedicated to solving complex technical challenges with national impact. If you are excited about the opportunity to shape the future of additive manufacturing through sensing, AI, and adaptive control systems, we would love to hear from you!

Minimum Rate

$85,300 Annually

Maximum Rate

$155,500 Annually

About Johns Hopkins Applied Physics Lab

The Johns Hopkins University Applied Physics Laboratory (APL) is a research and development organization that provides solutions to national security and scientific challenges. The laboratory was founded in 1942 and is located in Laurel, Maryland. APL is a division of the Johns Hopkins University and is a not-for-profit organization. The laboratory has expertise in a variety of areas, including space exploration, national security, and healthcare.
Learn more about Johns Hopkins Applied Physics Lab
Size
7,000 employees
Industry
Founded
1942

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