Laser based Manufacturing
Upcoming dates (1)
Fee
- $2,895
-
Fee covers course materials and live online instruction.
Discounts
When three or more sign up from the same employer, your fee is $2316 per person.
10% discount per person for participants registered in the Manufacturing Excellence Certificate series. Promo code needed during registration.
ID
RA00085-D850
Credits
- CEU: 3
- PDH: 30
Schedule
This course meets once per week during the 2025 fall semester:
Thursdays 9/4/2025 - 12/11/2025 6:00 pm - 7:15 pm Central Time
- Class will not meet on 11/27/2025
Course Notes
This is a live online course that uses the Zoom and Canvas platforms. The registration confirmation will guide students through accessing the Canvas course site.
Students will create and log in to the Canvas course site with a NetID. Course assets such as instructional materials, participation certificates, and course evaluations will be available to all students through the Canvas course site.
The course materials are all digital and only available on the Canvas course website.
Online attendees will access sessions via the Zoom web conferencing platform. The Zoom link will be provided a few days before the course.
Please watch the email address you provide during registration for release dates and pre-course information.
Instructors
Frank Pfefferkorn, Kevin Klingbell
Location
This is an online course.
Cancellation Policy
If you cannot attend, please notify us no later than one week before your course begins, and we will refund your fee. Cancellations received after this date and no-shows are subject to a $150 administrative fee. You may enroll a substitute at any time before the course starts. Once you have accessed the online course, exam and/or materials, no cancellations or refunds are permitted.Course Overview
This course provides a comprehensive introduction to laser-based manufacturing. The curriculum integrates theoretical concepts with practical knowledge drawn from over 50 years of combined industry and research experience. Real-world manufacturing examples illustrate system implementation, troubleshooting, and process optimization. This course is ideal for newcomers to laser manufacturing or professionals looking to deepen their understanding of laser applications. The 15-week format allows you to learn and apply materials each week. The one live session per week is interactive allowing you to learn from your instructors and other participants implementing laser equipment. There will be a second weekly session that can be attended live or watched via recording.
Learning Outcomes
By the end of the course, participants will be able to:
- Explain the fundamental characteristic of lasers, optics, and motion control elements and how they are applied to various manufacturing processes.
- Evaluate laser applications and be able to select laser equipment, process parameter space, process variables to monitor, and quality metrics.
- Apply safety standards and best practices for operating and maintaining laser equipment.
- Troubleshoot and identify root causes of process performance issues/variations and product defects.
- Analyze the relationship between laser process parameters and the resulting material and part properties, and effectively communicate how process choices influence manufacturing outcomes.
Who Should Attend?
- Design Engineers
- Manufacturing Engineers
- Senior Operators
- Technicians
- Supervisors
Additional Information
This course is part of the Manufacturing Excellence Certificate. Course may be taken individually as well.
Course Outline
- History of lasers and their applications
- Laser Safety
- Principles of laser operation and types of lasers
- Electromagnetic (EM) radiation and wave propogation
- Optics
- Laser-material interactions
- Laser implementation considerations and trouble shooting
- Industrial manufacturing process applications of lasers:
- Marking
- Cleaning
- Heat treating
- Peening
- Forming
- Sintering and Welding
- Polishing and Structuring
- Cutting
Instructors
Frank Pfefferkorn
Dr. Frank Pfefferkorn is a Professor of Mechanical Engineering at the University of Wisconsin-Madison. His teaching and research are focused on discrete metal part manufacturing processes, and heat transfer as it applies to manufacturing processes. His goals are to: (1) educate/develop manufacturing engineers/workforce, and (2) build a scientific understanding of advanced manufacturing processes, develop physics-based models that can be used to improve and control these processes, and to transfer this fundamental knowledge to industry. In his lab he conducts research with a focus on where the tool meets the workpiece, whether that tool is a laser, mechanical cutting tool, friction stir tool, etc. Currently, his lab is conducting research on: friction stir welding and processing, placing sensors in the coatings of cutting tools for smart manufacturing, solid-state metal additive-subtractive manufacturing (including friction surfacing), and laser remelting surfaces for polishing, structuring, and hardening.
In addition to being an Professor in the Department of Mechanical Engineering he serves as the Academic Director of the online MS Manufacturing Systems Engineering Program at UW-Madison.
Kevin Klingbell
Kevin Klingbell is a seasoned expert in laser manufacturing processes with over 25 years of experience in process engineering, quality management, and technology leadership. He began his career after earning a physics degree from UW–Madison, initially working in automated circuit board inspection before advancing into laser-based manufacturing. His expertise spans laser welding, cutting, scoring, cladding, and heat treating across both metallic and non-metallic materials using a wide range of laser systems and wavelengths.
Kevin has consistently taken on both technical and leadership roles, including managing quality systems, developing embedded controls for galvo scanners, and directing multidisciplinary teams. He has also contributed to industry knowledge through conference presentations and client education. Currently, he leads his own consulting firm, Cross Product Solutions, helping manufacturers optimize laser processes and system integration.
Laser based Manufacturing
Location: Online
Course #: RA00085-D850
Fee: $2,895
Fee
- $2,895
-
Fee covers course materials and live online instruction.
Discounts
When three or more sign up from the same employer, your fee is $2316 per person.
10% discount per person for participants registered in the Manufacturing Excellence Certificate series. Promo code needed during registration.
Credits
- CEU: 3
- PDH: 30
Schedule
This course meets once per week during the 2025 fall semester:
Thursdays 9/4/2025 - 12/11/2025 6:00 pm - 7:15 pm Central Time
- Class will not meet on 11/27/2025
Course Notes
This is a live online course that uses the Zoom and Canvas platforms. The registration confirmation will guide students through accessing the Canvas course site.
Students will create and log in to the Canvas course site with a NetID. Course assets such as instructional materials, participation certificates, and course evaluations will be available to all students through the Canvas course site.
The course materials are all digital and only available on the Canvas course website.
Online attendees will access sessions via the Zoom web conferencing platform. The Zoom link will be provided a few days before the course.
Please watch the email address you provide during registration for release dates and pre-course information.
Instructors
Frank Pfefferkorn, Kevin Klingbell
Location
This is an online course.
Cancellation Policy
If you cannot attend, please notify us no later than one week before your course begins, and we will refund your fee. Cancellations received after this date and no-shows are subject to a $150 administrative fee. You may enroll a substitute at any time before the course starts. Once you have accessed the online course, exam and/or materials, no cancellations or refunds are permitted.Create a custom learning experience
We can deliver this course as an on-site learning experience tailored to your organization’s specific training needs.
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