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NotesDesign Technology HLTopic 6.2Rapid prototyping in use
Back to Design Technology HL Topics
6.2.54 min read

Rapid prototyping in use (Design Technology HL)

IB Design Technology • Unit 6

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Contents

  • From a model on screen to a part on the bed
  • The five checks
  • Which technique, and what the part can be used for
  • Exam-style question
The big idea: A CAD model that looks right on screen may be unprintable.

Making one suitable for rapid prototyping is a set of decisions — orientation, wall thickness, clearances, supports and a watertight solid — not an export button.

Five checks, each with the rule and what happens if it is ignored — then the order to do them in.

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CheckThe ruleIf you ignore it
Watertight solidThe model must enclose a volume — no gaps, no self-intersections, no stray surfacesThe slicer cannot tell inside from outside, so it prints a shell or refuses the file
Wall thicknessAt least two or three times the nozzle or beam width — around 1 mm on a typical printerA 0.3 mm wall on screen becomes a gap in the part, or a single fragile strand
OrientationLay the part so the load runs ALONG the layers, and the best surface faces upPrinted the wrong way up, a bracket snaps between layers at a fraction of its load
OverhangsAnything overhanging beyond about 45° needs support that can be reached to removeSupport inside a closed cavity cannot be removed, so the part is scrap
ClearanceMating parts need a designed gap, typically 0.2-0.4 mm per faceModelled at the exact nominal size, a shaft and its hole fuse together
Orientation first: Choose which way up the part prints before anything else.

It fixes which faces come out well, which surfaces overhang, and which direction the part is weak in — so deciding it last means redoing the other four checks.

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The three techniques by the property the part must have — finish, cost, or strength.

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SLAFDMSLS
FinishBest — finest detailVisible layersGrainy and matt
StrengthBrittle, degrades in sunlightWeak across the layersStrong, near-isotropic
SupportsNeeded, and they leave marksNeeded for overhangsNone — loose powder supports it
Choose it forAppearance modelsCheap, fast, many printsParts that must actually work
A printed part is not the production part: An FDM part is much weaker across its layers than an injection-moulded one is in any direction, and an SLA part yellows and embrittles in sunlight.

So a printed prototype surviving a test proves less than it appears to. Say which property your prototype could not represent.

How this is tested — constructing CAD models suitable for rapid prototyping. It comes up two ways:

Paper 1 — multiple choice

  • Identify why a stated model will not print.
  • Pick the correct orientation for a loaded part.

Paper 2 — analysing a product

  • Explain how a CAD model is prepared for printing.
  • Justify a rapid prototyping technique for a named part.
The trap: Treating printing as an export. Orientation, wall thickness and clearances are design decisions made in the CAD model, and getting them wrong wastes a print and a day.
IB-style questionExplain[6 marks]

A drill housing with a snap-fit battery latch is to be printed for user testing. Explain how the CAD model should be prepared, and justify the technique chosen.

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IB Exam Questions on Rapid prototyping in use

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How Rapid prototyping in use Appears in IB Exams

Examiners use specific command terms when asking about this topic. Here's what to expect:

Define

Give the precise meaning of key terms related to Rapid prototyping in use.

AO1
Describe

Give a detailed account of processes or features in Rapid prototyping in use.

AO2
Explain

Give reasons WHY — cause and effect within Rapid prototyping in use.

AO3
Evaluate

Weigh strengths AND limitations of approaches in Rapid prototyping in use.

AO3
Discuss

Present arguments FOR and AGAINST with a balanced conclusion.

AO3

See the full IB Command Terms guide →

Related Design Technology HL Topics

Continue learning with these related topics from the same unit:

6.1.1The five stages
6.1.2Research as an activity
6.1.3Primary research
6.1.4Secondary research
View all Design Technology HL topics

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Command terms, paper structure, and mark-scheme tips for Design Technology HL

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6.2.4Finite element analysis
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