Design & Technology: Product Design - 9252 OxfordAQA

Materials And Their Working Properties

Aperçu

A cold chisel and a spanner are both made of steel, and if you use one as the other you will break something. The chisel is hard enough to cut steel and would shatter if you used it as a lever; the spanner bends before it breaks and would be blunt in a minute if you hit it with a hammer. Same element, same appearance, different material, because a fraction of a per cent of carbon and a few minutes in a furnace changed which properties the steel has.

This is the largest topic in the core technical principles and it is the one every other topic leans on: you cannot select a material, choose a process, apply a finish or justify a prototype without it. You will learn the main categories and types of papers and boards, of natural and manufactured timbers, of metals and alloys, and of polymers, and then the physical properties, which are absorbency, density, fusibility and electrical and thermal conductivity, and the working properties, which are strength, hardness, toughness, malleability, ductility and elasticity. The specification is explicit that the properties are examined in relation to the main categories rather than to each named material, which tells you exactly how deep to go. This is core technical principles content, examined in Section A of Paper 1, and it supplied more specimen questions than any other topic.

Objectifs

  1. Students should have an overview of the main categories and types of papers and boards: papers including:
  2. bleed proof
  3. cartridge paper
  4. grid and layout paper
  5. tracing paper boards including:
  6. corrugated card
  7. duplex board
  8. foil lined board
  9. foam core board
  10. ink jet card
  11. solid white board.
  12. Natural and manufactured timbers
  13. Students should have an overview of the main categories and types of natural and manufactured timbers: hardwoods including:
  14. ash
  15. beech
  16. mahogany
  17. oak
  18. balsa softwoods including:
  19. larch
  20. pine
  21. spruce manufactured boards including:
  22. medium density fibreboard (MDF)
  23. plywood
  24. chipboard.
  25. Metal and alloys
  26. Students should have an overview of the main categories and types of metals and alloys: ferrous metals including:
  27. low carbon steel
  28. cast Iron
  29. high carbon/tool steel
  30. stainless steel non-ferrous metals and alloys including:
  31. aluminium
  32. copper
  33. tin
  34. zinc
  35. brass
  36. Polymers
  37. Students should have an overview of the main categories and types of polymers: thermoplastic including:
  38. acrylic (PMMA)
  39. high impact polystyrene (HIPS)
  40. high density polythene (HDPE)
  41. polypropylene (PP)
  42. polyvinyl chloride (PVC)
  43. polyethylene terephthalate (PET) thermosetting including:
  44. epoxy resin (ER)
  45. melamine-formaldehyde (MF)
  46. phenol formaldehyde (PF)
  47. polyester resin (PR)
  48. urea-formaldehyde (UF).
  49. Material properties
  50. Students should understand the working and physical properties of the materials listed in Material categories (page 16).
  51. In relation to the main categories outlined above (not the specific materials identified), students should know and understand physical properties such as:
  52. absorbency (resistance to moisture)
  53. density
  54. fusibility
  55. electrical and thermal conductivity.
  56. In relation to the main categories outlined above (not the specific materials identified), students should know and understand working properties such as:
  57. strength
  58. hardness
  59. toughness
  60. malleability
  61. ductility
  62. elasticity.

Carte mentale

Ce theme est schematise pour montrer comment les idees se relient.

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Note de cours

A designer never actually wants oak. What the designer wants is something stiff enough not to sag over a metre span, hard enough not to dent when a chair is dragged across it, stable enough not to warp in a heated room and attractive enough to sell. Oak is one way of buying that bundle of properties, and if a different material delivered the same bundle more cheaply, the design would change without anybody regretting the oak.

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Évaluation de la leçon

Félicitations, vous avez terminé la leçon sur Materials And Their Working Properties. Maintenant que vous avez exploré le concepts et idées clés, il est temps de mettre vos connaissances à lépreuve. Cette section propose une variété de pratiques des questions conçues pour renforcer votre compréhension et vous aider à évaluer votre compréhension de la matière.

Vous rencontrerez un mélange de types de questions, y compris des questions à choix multiple, des questions à réponse courte et des questions de rédaction. Chaque question est soigneusement conçue pour évaluer différents aspects de vos connaissances et de vos compétences en pensée critique.

Utilisez cette section d'évaluation comme une occasion de renforcer votre compréhension du sujet et d'identifier les domaines où vous pourriez avoir besoin d'étudier davantage. Ne soyez pas découragé par les défis que vous rencontrez ; considérez-les plutôt comme des opportunités de croissance et d'amélioration.

  1. Which one of the following is a hardwood? A. Balsa B. Larch C. Pine D. Spruce Answer: A
  2. A material that can be permanently shaped by hammering without cracking is described as A. brittle. B. ductile. C. elastic. D. malleable. Answer: D
  3. Which one of the following is a thermosetting polymer? A. Acrylic B. High density polythene C. Polypropylene D. Urea-formaldehyde Answer: D
  4. Approximately how much carbon does low carbon steel contain? A. Up to about 0.3 per cent B. About 2 to 4 per cent C. About 10.5 per cent D. About 18 per cent Answer: A
  5. Which board is made from a polymer foam sandwiched between two card faces? A. Corrugated card B. Duplex board C. Foam core board D. Solid white board Answer: C

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