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  1. Programs
  2. Injection Molding Technology

Injection Molding Technology

Tennessee College of Applied Technology-Livingston

DiplomaNon-degreeCIP: 15.0406

Become a contributor for free to openly demonstrate student outcomes, industry alignment & eligibility criteria.

No description available.

Credits

35 credits

Format

In-Person

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Program Pathways

Credentials this program stacks toward

  • Program Pathway to Process EngineeringFrom The University of Tennessee
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Program Details

Detailed information about this program

No detailed information available.

Requirements

What you need to earn this credential

No requirements listed.

Financial Aid

Eligible funding programs

No funding information available.

Scholarships

No scholarships listed.

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Locations

Where this program is offered

No locations specified.

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Related Programs

Programs related to this one

No related programs.

Skills & Competencies

Skills developed through this program

Auto-populated·from O*NET via SOC 51-4072.00

Skills

Active ListeningCritical ThinkingReading ComprehensionSpeakingMonitoringComplex Problem SolvingOperations MonitoringOperation and ControlQuality Control AnalysisTroubleshootingRepairingWritingJudgment and Decision MakingEquipment MaintenanceSystems EvaluationTime ManagementSystems AnalysisMathematics

Knowledge

Production and ProcessingMechanicalEngineering and TechnologyEnglish LanguageMathematicsDesignComputers and ElectronicsPublic Safety and SecurityChemistry

Abilities

Information OrderingNear VisionDeductive ReasoningProblem SensitivityOral ComprehensionWritten ComprehensionInductive ReasoningOral ExpressionArm-Hand SteadinessManual DexterityControl PrecisionPerceptual SpeedWritten ExpressionMultilimb CoordinationFinger DexterityVisualizationCategory FlexibilityReaction TimeStatic StrengthTrunk StrengthFlexibility of Closure

Tasks

  • Measure and visually inspect products for surface and dimension defects to ensure conformance to spe
  • Observe continuous operation of automatic machines to ensure that products meet specifications and t
  • Set up, operate, or tend metal or plastic molding, casting, or coremaking machines to mold or cast m
  • Test performance of electromechanical assemblies, using test instruments such as oscilloscopes, elec
  • Install or program computer hardware or machine or instrumentation software in microprocessor-based
  • Read blueprints, schematics, diagrams, or technical orders to determine methods and sequences of ass
  • Program and calibrate drones for specific missions or tasks, ensuring proper functionality and performance.
  • Read production schedules and work orders to determine processing sequences, furnace temperatures, a
  • Record times that parts are removed from furnaces to document that objects have attained specified t
  • Adjust controls to maintain temperatures and heating times, using thermal instruments and charts, di
  • Make repairs to robots or peripheral equipment, such as replacement of defective circuit boards, sen
  • Troubleshoot robotic systems, using knowledge of microprocessors, programmable controllers, electron
  • Install, program, or repair programmable controllers, robot controllers, end-of-arm tools, or convey
  • Modify, maintain, or repair electronics equipment or systems to ensure proper functioning.
  • Replace defective components or parts, using hand tools and precision instruments.
  • Set up and operate specialized or standard test equipment to diagnose, test, or analyze the performa
  • Estimate production costs, cost saving methods, and the effects of product design changes on expendi
  • Plan and establish sequence of operations to fabricate and assemble parts or products and to promote
  • Analyze statistical data and product specifications to determine standards and establish quality and
  • Test selected products at specified stages in the production process for performance characteristics
  • Compile and evaluate statistical data to determine and maintain quality and reliability of products.
  • Study time, motion, methods, or speed involved in maintenance, production, or other operations to es
  • Develop final construction plans that include aesthetic representations of the structure or details
  • Prepare scale drawings or architectural designs, using computer-aided design or other tools.
  • Prepare information regarding design, structure specifications, materials, color, equipment, estimat
  • Control generator output to match the phase, frequency, or voltage of electricity supplied to panels
  • Take regulatory action, based on readings from charts, meters and gauges, at established intervals.
  • Control power generating equipment, including boilers, turbines, generators, or reactors, using cont

Technology

Analytical or scientific softwareIndustrial control softwareComputer aided design CAD softwareObject or component oriented development softwareDevelopment environment softwareComputer aided manufacturing CAM softwareSpreadsheet softwareOffice suite softwareFacilities management softwareElectronic mail softwareDocument management softwareData base user interface and query softwareProject management softwareEnterprise resource planning ERP softwareWord processing softwareMaterials requirements planning logistics and supply chain softwareGraphics or photo imaging softwareDesktop publishing softwareData base management system software

Tools

Air angle die grindersAir gunsAir purifying respiratorsAluminized suitsAluminum hammersBrass hammersCold chamber die casting machinesCompressed air sprayersDeflashing toolsDie barsDie cast diesDigital handheld thermometersDigital micrometersDigital psychrometersDigital radius gaugesAnalog oscilloscopesComputerized numerical control CNC lathesComputerized numerical control CNC machining centersConductivity sensorsCoordinate measuring machines CMMDesktop computersDigital camerasDigital multimetersDigital oscilloscopesDigital tachometersDirect current DC power suppliesDrill pressesDroneDeployDynamometersFixed wing unmanned aerial vehicles UAV

Work Values

SupportRelationshipsIndependenceWorking ConditionsAchievementRecognition
Career Pathways

Occupations this program prepares you for

  • Molding, Coremaking, and Casting Machine Setters, Operators, and Tenders, Metal and Plastic51-4072.00
  • Electro-Mechanical and Mechatronics Technologists and Technicians17-3024.00
  • Heat Treating Equipment Setters, Operators, and Tenders, Metal and Plastic51-4191.00
  • Robotics Technicians17-3024.01
  • Electrical and Electronic Engineering Technologists and Technicians17-3023.00
What You'll Learn

Key competencies developed through this program

Auto-populated·from NSX Competency Framework

Mastery: developing (Level 2)(based on Diploma)

  • Precision calipers, micrometers, and gauges — apply routinely and independently to verify dimensional conformance of molded or cast metal and plastic parts.
  • Continuous automatic machine operation — monitor across a full shift, identifying early signs of malfunction or drift and making minor adjustments without supervisor direction.
  • Metal and thermoplastic molding or coremaking machines — set up and operate for standard production runs, following process sheets with minimal oversight.
  • Temperature, pressure, and cycle-time parameters — regulate by turning valves and dials to maintain consistent output quality during routine production.
  • Blueprints and production work orders — read independently to plan setup sequences, select tooling, and verify material requirements before a run begins.
  • Gauge and meter readings — record accurately in shift logs or spreadsheet software, flagging out-of-range values and notifying a lead operator promptly.
  • Die cooling system connections — complete efficiently using hand tools, confirming flow and leak-free seals before authorizing machine start.
  • Post-run die removal — perform safely and efficiently, inspecting removed tooling for wear and reporting findings to maintenance or tooling staff.
  • In-process quality checks — conduct at defined intervals using inspection criteria, distinguishing acceptable variation from non-conforming conditions.
  • Production pace and task sequencing — manage within a shift to meet daily output targets while maintaining machine uptime and product quality standards.

Some details on this page are auto-populated from public workforce data sources: O*NET (opens in new tab), BLS (opens in new tab), College Scorecard (opens in new tab), DOL Training Provider Results (opens in new tab), NSX (opens in new tab). Provided in partnership with LER.me Career Intelligence.

Student Outcomes

Performance metrics for this program

Auto-populated·from Scorecard + DOL
Completion Rate
100%
Placement Rate
71%