Explore Training Programs
Whether you're just getting started, switching careers or sharpening your skills, there are over 900 training programs across all 50 states to help you grow your career in shipbuilding — many that take less than 6 months to complete.
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This certificate program is designed to equip students with the foundational skills and knowledge necessary to gain entry to the robotics field. Through a blend of classroom lecture and hands-on experience, students will learn electrical theory; how to install, program, or repair robotic controllers and related equipment; how to troubleshoot robotic systems; and how to perform preventive or corrective maintenance on robotic systems or components. This certificate is designed to prepare students for career success in robotics. The overall growth of the manufacturing industry and related fields will require a growing number of robotics technicians to install and maintain robotic systems and components. This program is a good fit for people who enjoy working with their hands, with an emphasis on spatial conceptualization and mechanical reasoning. Those who graduate with this certificate have a solid understanding of the machinery and equipment used in the robotics field.
The Associate of Science degree in Mechanical Engineering prepares students for four-year institutions by introducing them to Computer-Aided Design (CAD), MATLAB, C++ skills, statics, mechanics of materials, robotics and dynamics, and their theories. By the completion of this program, students may be able to join the mechanical engineering industry at entry-level positions. Students are encouraged to transfer to a four-year institution after the completion of the AS in Mechanical Engineering.
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Acquire all of the skills offered during CCAT's Quality week. On route to this credential you will complete training focused on First Article Inspection Automation for MBD, Inspection Workflows for MBD and Automated Programming of CMM/Non-contact Inspection. Program Outcomes: 1. Develop an awareness of the digital thread (DT), model-based engineering (MBE) and model-based definition (MBD). 2. Become familiar with technical data packages (TDP), the common file types, and the role, use and definition of derivative files.3. Demonstrate how to develop an inspection plan, and the different formats in which one can be exported and automate the creation of inspection plans using advanced software. 4. Demonstrate how to automate preparation of First Article Inspection reports using advanced software. 5. Demonstrate how to set up an inspection template for part inspection using advanced software. 6. Demonstrate inspection workflows on a coordinate measuring machine (CMM).7. Demonstrate how to use advanced software to automate the program creation and inspection of a part using a CMM. 8. Describe how model-based definition has assisted in the automated programming of non-contact inspection.
An Occupational Skills Award (OSA) is the most basic sequence of courses that will prepare students for employment. Students are not able to declare an OSA as a major, or pursue one as an end goal. However, almost all OSAs are built into other certificates and/or majors, and they will be automatically awarded to students as they complete coursework in those certificates and/or majors.
Job Corps’ OTP Advanced Manufacturing training program connects Job Corps students with other local training providers like technical or community colleges, trade schools or employers to provide specialized education and training services. Students learn skills like reading and understanding schematics and blueprints, positioning or aligning components and parts either manually or with hoists, using hand tools or machines to assemble parts, conducting quality control checks, and describing the commonalities and differences of the alternating current and direct current (AC/DC) systems (e.g., wire color codes in both). These skills prepare students for a career in manufacturing, production engineering and machine shops. Students who complete Advanced Manufacturing training at Job Corps can earn nationally recognized credentials from the American Welding Society (AWS) and the National Institute for Metalworking Skills (NIMS).
Collision ITo kick off this phase, you will learn safe, proper use of the tools of the trade. You will then move into MIG welding on steel and aluminum in multiple positions, then cosmetic repair such as repairing dents, panel restoration, sanding, and finishing.Learn proper worker protection, including following regulations and PPE in the shop; this will be applied throughout the entirety of the programUnderstand proper tool selection for vehicle repairGain hands-on experience in vertical, horizontal, and overhead MIG welding steel and aluminum to I-CAR standardsPractice cosmetic repair: Including straightening dents with various tools and equipment, applying plastic body filler, and sanding and finishingRemove and replace bolted-on partsCollision IIIn this phase, you’ll gain an understanding of ABS and traction control systems, as well as learn about ADAS (advanced drivability assist systems), suspension systems, squeeze-type resistance spot welding, adhesive bonding, and structural measuring and straightening. You will practice skills required for collision repair to help you stand out and succeed in your future career.Develop advanced welding: we teach proper sectioning techniques and procedures for OEM panel replacements, quarter panels, rocker panels, and A- or B- pillarsStudy structural diagnostics and practice measuring of a vehicle on a frame rackLearn airbag theory and diagnostics of airbag systemsRemove and replace the windshield and back glass of a vehicleRemove and replace door skinsPractice aluminum welding and panel repairRefinishing IYou will begin with basic instruction in surface preparation and masking, then move on to spray gun operation, understanding paint products, and their use, and paint mixing and application. These paint techniques can be used on a variety of vehicles such as automotive, aviation, and boating.Focus on proper worker protectionGain experience in surface prep and maskingLearn about paint products and their usagePractice spray gun operation: learning how to adjust air pressure, fluid delivery, and diagnose paint gun problemsMix paint to proper paint codePerform a complete refinish on a vehicle: learn to identify dents and flaws in paint, properly sand a vehicle, and wash and prep a vehicle for complete repaintDetail a vehicle before delivery to the customerRefinishing IIYou will finish the course learning about damage analysis, utilizing estimating systems, plastic reconstruction, spot repairs and blending techniques, corrosion protection and automotive foams, and opportunities for live work. The refinishing part of our Collision/Refinishing Technology program will help you stand out to employers and succeed in your career.Practice sanding and polishingUnderstand the uses and application of tri-coat finishesPerform damage analysis and estimatingPerform plastic and bumper repairsDevelop color matching and blending techniquesLearn to vinyl wrap
Do you already have the basic skill set for heating, air conditioning and refrigeration repair and you’re ready to take the next step? Our advanced level certificate will build on your current foundation and provide you with new skills to further your career. Our professors will teach you how to help plan and install residential air conditioning and commercial refrigeration systems. The HART industry is constantly shifting due to rapid changes in technology. The need for extremely skilled, knowledgeable technicians who can adjust to these changes is on the rise, and there’s no better place for you to get the highly specialized education you’ll need than TJC. Marketable skills for this award include: critical thinking, interpersonal skills, research and team work.
Additive Manufacturing is a process that uses 3D printing to create physical objects from a digital model. The process involves adding material in layers and using a fusing application, such as a heated printhead or laser, to bind the layers.The ideal candidate for the additive manufacturing program would be someone with basic computer skills, basic mechanical aptitude, and the ability to visualize working in 3D space.
To find out if this this training opportunity is right for you, follow the link below.
To find out if this this training opportunity is right for you, follow the link below.









