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Open Rotor Centrifugal Electric Pump Cutaway AE413060M

Open Rotor Centrifugal Electric Pump Cutaway AE413060M

AutoEDU
Product number: AE413060M
  • Visible open rotor centrifugal pump cross-section.
  • Electric motor for rotor motion visualization.
  • Full internal exposure: rotor, impeller, shaft, housing.
  • Durable construction for repeated training sessions.
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Description

Compact cutaway model of an open rotor centrifugal electric pump designed for demonstration in automotive education environments. Trainer includes visible cross-section of rotor, casing, and impeller vanes. Powered by an integrated electric motor. Developed as a hands-on visual aid for understanding centrifugal pump construction and working principles in automotive and industrial applications.

Specifications

  • Pump type: Centrifugal with open rotor.
  • Drive: Electric motor.
  • Components: Rotor, impeller, shaft, motor housing, casing.
  • Dimensions: 3000 × 3000 × 2500 mm (118.11 × 118.11 × 98.43 in).
  • Weight: 6 kg (13.23 lbs).
  • Product number: AE413060M

Value for Students

  • Understand centrifugal pump operation by observing impeller movement and fluid flow direction.
  • Learn the relationship between pump speed, pressure, and flow using a real open rotor model.
  • Identify pump components: rotor, impeller, casing, shaft, motor housing.
  • Study working principle of converting rotational energy from electric motor into kinetic energy of fluid.
  • Visualize suction and discharge paths for fluid inside pump housing.
  • Analyze rotor blade design and its role in fluid dynamics.
  • Develop practical knowledge of pump construction and mechanical component functions in automotive training.

Value for Instructors

  • Clear cutaway design makes internal structure visible for demonstration.
  • Safe, stable unit for explaining pump functions without running pressurized systems.
  • Supports visual and mechanical teaching for students in various learning levels.
  • Easy to integrate into automotive education classes and technical workshops.
  • Ideal tool to show fundamental principles of electric-driven fluid movement systems.
  • Useful aid for explaining pump faults, wear zones, and design characteristics.

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