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Icebreaker Activity

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Group #9 Dale Bernier Tim Brown Christopher Freeborn-Scott Judy Biddle and her baby Introduction In order to create an efficient process certain qualities in design ... – PowerPoint PPT presentation

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Title: Icebreaker Activity


1
Icebreaker Activity
  • Group 9
  • Dale Bernier
  • Tim Brown
  • Christopher Freeborn-Scott
  • Judy Biddle and her baby

2
Introduction
  • In order to create an efficient process certain
    qualities in design are desired
  • A reasonable time of assembly
  • Reduction of cost without reducing quality
  • Simplicity of design

3
Project Scope
  • Design a fastening mechanism which is
  • Efficient during assembly (lt 3-5 seconds)
  • Be reversible for maintenance purposes
  • Assembled using ones hands or a simple portable
    device
  • Structurally sound
  • Uses a clamping force to reduce noise and provide
    strength
  • Provide support to external forces ( withstand
    500 N parallel and perpendicular to the
    connection
  • Support minimal part to part distance (0- 8mm)

4
Brainstorming
  • Within Brainstorming we came up with three designs

5
Design 1
6
Design 1
  • Simple Latch Design
  • Pros
  • Excellent structural integrity
  • Easy to assemble and disassemble (once attached)
  • Only needs hands to assemble
  • Meets spacing criteria
  • Cons
  • Several pieces requires within design (complex
    design)
  • Protrudes from surface of attachment
  • Requires attachment of additional parts to attach
    latch to object (could be expensive)

7
Design 2 Rivet Design
8
Design 2
  • Spring Loaded Riveting System
  • Pros
  • Ease of assembly and attachment
  • Cons
  • Questionable structural integrity
  • Complex Design (expensive)
  • Requires a specific tool to assemble
  • Spacing between components questionable

9
Design 2 Clips
10
Design 3
  • Simple Plastic Clamps
  • Pros
  • Lightweight
  • Cheap
  • Covers tensile and shear forces
  • Covers the spacing criteria
  • Easy to assemble
  • Cons
  • Several clips required to guarantee stability

11
Our Design Clipping Mechanism
  • Simplistic in design
  • Supports both shear and tensile forces.
  • Easily attached
  • Lightweight

12
Our Design Simplistic and Lightweight
  • Pieces can be easily produced within a plastic
    mold and attached to the pieces
  • Two pieces allow for reduction in failure rate
  • Can easily be plastic or other lightweight
    material reducing weight addition to product

13
Our Design Supports Shear and Tensile Forces
  • Tensile forces supported by wall of object 1 and
    the backing of the pin
  • Shear forces supported by clamping force of clip
    mechanism
  • All forces supported by the addition of several
    clips for each additional part.

14
Our Design Easy to Use
  • Used by simply aligning the numerous clips and
    pressing the two pieces together
  • Disassembled by simply applying substantial force
    at each individual clip.

15
The End
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