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Card Triangles Axle Supports

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Pre-punched axle supports designed to stabilise vehicle frames, compatible with Lynx Corner Joints.
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From £17.50 ex VAT
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Technical Summary

Overview

Helping to Support Teaching and Learning

Perfect Fit Design

These axle supports complement Lynx corner joints, ensuring a perfect fit and enhanced stability for vehicle frames in classroom projects.

Versatile Pack Options

Available in two convenient pack sizes, these supports cater to different classroom needs, making them a versatile addition to any construction project.

Durable Construction

Constructed from durable 1mm thick card, these supports promise longevity, allowing for repeated use in numerous educational projects.

Encourages Hands-on Learning

By facilitating hands-on learning, these supports enhance children's understanding, encouraging exploration and creativity.

Supports Science Curriculum

Aligned with Key Stage 2 curriculum on Forces, these supports enable practical exploration of mechanisms such as levers, pulleys, and gears.

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Card Triangles Axle Supports

Pre-punched axle supports designed to stabilise vehicle frames, compatible with Lynx Corner Joints.

Overview

  • Incorporating practical elements into education significantly enhances learning outcomes. Designed for compatibility with Lynx Corner Joints, these supports promote active engagement with key engineering concepts.

  • Used with Lynx Corner Joints, the supports guarantee the necessary structural integrity for constructing vehicle frames, pivotal for projects examining engineering principles. Their application bolsters learning and enhances problem-solving abilities. Constructed from 1mm thick card and presented in two pack sizes, they offer durability and adaptability for various project demands.

  • These supports are essential for interactive learning, enabling an in-depth exploration of mechanical concepts and supporting the Key Stage 2 curriculum.

Supports the National Curriculum

Science, Year 5, Forces

Recognise that some mechanisms including levers, pulleys and gears allow a smaller force to have a greater effect.

Technical Summary

Overview

    Material

  • Cardboard

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