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Self-locking Hypoid Differential Cutaway AE411260M

Self-locking Hypoid Differential Cutaway AE411260M

AutoEDU
Product number: AE411260M
ASE category: A3
  • Cutaway model of self-locking hypoid differential with OEM parts.
  • Includes cross-sectioned hypoid bevel gear pair for visual analysis of gear contact and meshing.
  • Fully passive manual system with visible internal mechanics for demonstration purposes.
  • Durable construction designed for repeated use in automotive education environments.
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Description

Fully operational cutaway model showcasing a self-locking hypoid differential, mounted on a sturdy table stand. This model includes a precise cross-section of a hypoid bevel gear pair, providing insight into the self-locking mechanisms and gear interaction. Designed for an in-depth study of differential operation, it allows trainees to explore OEM internal components.

Specifications

  • Product type: Self-locking hypoid differential cutaway.
  • Components: Hypoid bevel gear pair, self-locking mechanism, differential case, spider gears.
  • Operation: Manual simulation only, no powered input.
  • Teaching level: Beginner to advanced drivetrain and transmission training.
  • Dimensions: 400 x 300 x 400 mm (15.75 x 11.81 x 15.75 in).
  • Weight: approx. 25 kg (55 lb).
  • Product number: AE411260M.

Value for Students

  • Learn the mechanics behind power transmission in self-locking hypoid differentials, including how torque is distributed to wheels based on traction needs.
  • Explore the interaction of hypoid bevel gears, focusing on the reduction ratio and efficiency.
  • Understand the self-locking feature and how it works for traction, mostly in slipping wheels conditions.
  • Increase experience with open gear inspections, component analysis, and get to know the gear meshing process.

Value for Instructors

  • Realistic, OEM components based demonstration of hypoid differentials. Explain of torque distribution principles in automotive field.
  • Simple exposing of key components for understanding, students will fully understand how hypoid and self-locking operating.
  • Teach theoretical and practical power distribution aspects for more dynamic and engaging teaching process.
  • Easy to integrate into various classrooms or workshops due to its mobile, space saving and stable design. Allows concurrent use by multiple students.

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