Hyster Yale Group celebrated National STEM Day through employee-led workshops, partnerships with schools for robotics programs, and interactive facility tours highlighting engineering in material handling. Their 2023 focus included sponsoring FIRST Lego League teams and donating STEM kits to underfunded districts, emphasizing real-world applications of automation and lithium-ion power systems.
What educational initiatives did Hyster Yale launch?
Hyster Yale deployed mobile STEM labs featuring hydraulic lift simulations and battery thermal management demos. These kits enabled students to troubleshoot real-world scenarios like optimizing LiFePO4 charge cycles under load fluctuations.
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Beyond classroom tools, the company hosted virtual reality tours of their Oregon automation plant, showing how engineers balance torque requirements with battery drain in electric forklifts. Pro Tip: Schools can request free curriculum modules covering Ohm’s Law applications in EV drivetrains. For example, high school teams using Hyster Yale’s motor efficiency charts reduced their robot’s power consumption by 22% during competitions. But how do these programs bridge theoretical learning? By contextualizing abstract concepts—like why battery management systems (BMS) need temperature sensors to prevent Li-ion dendrite growth.
Initiative | Reach | STEM Focus |
---|---|---|
Mobile Labs | 85 Schools | Electrohydraulic Systems |
VR Plant Tours | 1,200+ Students | Automation Programming |
How did employees participate?
Employees volunteered 3,200+ hours mentoring robotics teams and judging science fairs. Engineers demonstrated CAN bus diagnostics used in Hyster forklifts, teaching troubleshooting workflows.
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Mechanical designers led sessions on calculating center of gravity in pallet stacks—a critical skill for warehouse automation safety. Pro Tip: Shadowing Hyster Yale’s battery R&D team helped students grasp why lithium-ion packs outperform lead-acid in cold storage. One memorable demo? Using thermal cameras to show how 48V LiFePO4 packs maintain efficiency at -20°C versus lead-acid’s 50% capacity drop. Practically speaking, these interactions demystify careers—like explaining why corrosion engineers matter in coastal forklift deployments.
What partnerships amplified their impact?
Collaborations with Project Lead the Way and IEEE expanded access to industrial-grade training simulators. Joint webinars covered topics like regenerative braking energy recovery rates in electric lift trucks.
Through Project Lead the Way, students modeled warehouse layouts using Hyster Yale’s proprietary energy consumption algorithms. Real-world case studies compared LFP and NMC batteries in terms of cycle life versus peak power output. For instance, a Texas school district achieved 18% faster charge times by applying Hyster’s charge curve data to their robot’s 36V system. These partnerships answer a key question: How do classroom theories scale into industrial solutions?
Partner | Activity | Outcome |
---|---|---|
IEEE | Motor Efficiency Workshops | 37% Participant Career Interest Increase |
Girls Who Code | Forklift Telemetry Analysis | 92% Learned Python Basics |
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FAQs
Yes, kits include updatable software licenses. However, lithium battery simulators require annual safety recertification—contact their education team for recalibration schedules.
Do volunteers need engineering degrees?
No—Hyster Yale trains employees in pedagogy. Warehouse logistics experts often lead modules on pallet-stacking physics and energy-efficient route planning.