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Topic 4.1Design Technology HL44 flashcards

Manufacturing techniques

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Card 1 of 444.1.1
4.1.1
Question

Name the five categories of manufacturing technique.

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All Flashcards in Topic 4.1

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4.1.14 cards

Card 1definition
Question

Name the five categories of manufacturing technique.

Answer

Additive, subtractive (wasting), forming, joining and finishing.

Card 2concept
Question

How do you place an unfamiliar process in a category?

Answer

Ask what happens to the amount of material: more is additive, less is subtractive, the same in a new shape is forming, pieces becoming one is joining, and only a changed surface is finishing.

Card 3concept
Question

Why can timber not be moulded?

Answer

Moulding needs a material that can be melted or softened and set in a new shape. Timber burns rather than melting, and its fibres along a grain cannot be reformed.

Card 4concept
Question

What makes a "why this process" answer complete?

Answer

A pairing of the technique with a reason — a material property, the volume required, a tolerance, a cost, or the environment the product lives in.

4.1.104 cards

Card 5definition
Question

What are the three jobs of a finish?

Answer

Protect the material from its environment, improve how the product looks and feels, and by doing both extend the product's working life.

Card 6concept
Question

Why does anodising not peel?

Answer

It is not a coating. The oxide layer is grown out of the aluminium itself, so there is nothing on top of the metal to lift — though it is thin and brittle.

Card 7definition
Question

What is sacrificial protection?

Answer

Zinc in a galvanised coating corrodes in preference to the steel, so it goes on protecting even where a scratch has exposed the steel beneath.

Card 8concept
Question

Why is longevity an environmental argument?

Answer

A finish that doubles a product's life halves the impact of everything that went into making it — usually a larger saving than any change of material.

4.1.114 cards

Card 9concept
Question

How should a manufacturing question be worked through?

Answer

In order: how the basic shape was made, what brought it to size, how the parts were joined, and what was done to the surface — with a reason at every stage.

Card 10concept
Question

What counts as a reason for a manufacturing technique?

Answer

A material property, the volume required, a tolerance, a cost at that volume, or the environment the product lives in.

Card 11concept
Question

Why is 3D printing usually a prototyping stage in a mass-produced product?

Answer

At high volume, moulding is far faster and cheaper per part. The printed stage is where the shape was settled before the tooling was cut.

Card 12example
Question

Work a saucepan through the five categories.

Answer

Deep-drawn body, trimmed and machined base, printed handle prototypes, riveted handle, anodised inside and polished outside.

4.1.24 cards

Card 13definition
Question

How do LOM, FDM and SLA differ?

Answer

Only in how each layer is made. LOM glues down sheets and cuts each outline, FDM extrudes melted thermoplastic, and SLA cures liquid photopolymer with light.

Card 14concept
Question

Why is a printed part weaker in one direction?

Answer

The bond between layers is weaker than the material within a layer, so the part breaks along a layer. Build orientation decides which direction it can be loaded in.

Card 15concept
Question

Why does an overhang need support material?

Answer

Nothing holds up material printed over air, so overhangs steeper than about 45° need support printed beneath and removed afterwards — costing material, time and clean-up.

Card 16example
Question

What can additive manufacturing make that no other category can?

Answer

Internal channels, lattices and shapes that would need a mould split into many pieces, because no tool ever has to be withdrawn from inside the part.

4.1.34 cards

Card 17definition
Question

What separates rapid prototyping from additive manufacturing?

Answer

Not the machine but the specification. A base model answers one question and is thrown away; a production part must meet a specification, survive its service life and be repeatable.

Card 18concept
Question

Why does low volume favour additive production?

Answer

There is no tooling to pay for, so the first part costs what the thousandth costs. Below a few thousand parts that beats moulding.

Card 19definition
Question

What is mass customisation?

Answer

Making every unit different at no extra cost. A printer works from a file, so a hearing-aid shell or dental aligner matched to one person costs the same as a standard part.

Card 20concept
Question

Where does additive manufacturing still lose?

Answer

At high volume, where moulding makes a part in seconds; on large simple shapes; and anywhere the layer-to-layer weakness or surface finish cannot be accepted.

4.1.44 cards

Card 21definition
Question

How does powder bed fusion work?

Answer

A thin layer of powder is spread across a bed and a laser or electron beam fuses the cross-section. The bed drops, another layer is spread, and unfused powder supports the part.

Card 22concept
Question

Why does SLS need no support structures?

Answer

The surrounding unfused powder holds the part up, so overhangs and internal cavities need nothing printed beneath them. The loose powder is recovered and reused.

Card 23concept
Question

Why is additive used for low-volume production?

Answer

No tooling, so the first part costs what the thousandth costs. Below a few thousand parts it beats moulding, and it removes the lead time and minimum order too.

Card 24concept
Question

What are the limits of additive production?

Answer

Build volume caps part size, cycle times are hours, metal powders are costly and need careful handling, and safety-critical parts need qualification of powder, parameters and post-processing.

4.1.54 cards

Card 25definition
Question

What is 4D printing?

Answer

3D printing with a material whose physical or chemical state changes over time in response to an external stimulus — pH, temperature, water or light.

Card 26concept
Question

How does a shape memory polymer work?

Answer

Printed in its permanent shape, warmed and deformed into a temporary one, then cooled so the chains lock. A stimulus lets them move again and it returns to the printed shape.

Card 27example
Question

Give two 4D printing applications with their stimulus.

Answer

A vascular stent that opens at body temperature; a drug capsule that opens at intestinal pH; flat-pack that folds when wetted; shading that closes in direct light.

Card 28concept
Question

What are the limits of 4D printing today?

Answer

Few materials, high cost, poor recyclability, changes that are usually one-way or repeatable only a few times, and products that are hard to test, certify and trust.

4.1.64 cards

Card 29definition
Question

What are the two extra axes in 5D printing?

Answer

Rotation of the print bed and rotation of the extruder head, which together let material be laid along a curved path rather than in flat horizontal slices.

Card 30concept
Question

Why is a 5D printed part stronger?

Answer

A printed part is weakest between layers. When the layers follow the curve of the part, a load along that surface runs along the layers rather than peeling them apart.

Card 31concept
Question

What else do the extra axes improve?

Answer

The surface, because a curve is printed as a curve rather than a staircase, and the support material, because an overhang can be rotated until it is no longer an overhang.

Card 32example
Question

What kind of part justifies 5D printing?

Answer

Curved, loaded and made in small numbers — implants, prosthetic sockets, automotive brackets, aerospace ducts. Flat, lightly loaded or mass-produced parts gain nothing worth the cost.

4.1.74 cards

Card 33definition
Question

What is the difference between milling and turning?

Answer

In turning the work rotates and the tool is fed along it, so it makes round shapes only. In milling the tool rotates and the work is moved past it, so it makes almost any reachable shape.

Card 34concept
Question

What does abrading do that cutting cannot?

Answer

It removes very little material at a time with many small hard particles, holding tolerances and producing surfaces a cutting edge cannot — grinding, honing and polishing.

Card 35concept
Question

Why are subtractive processes called wasting?

Answer

Everything removed is waste that was bought, transported and often processed first. A machined aerospace bracket can start as a block ten times its finished mass.

Card 36concept
Question

What does subtractive manufacturing buy?

Answer

Accuracy and surface finish no other category reaches, in any material, with no tooling to make first — which is why prototypes, one-offs and mould tools are machined.

4.1.84 cards

Card 37concept
Question

What do all forming processes have in common?

Answer

Nothing is added or removed — the same material takes a new shape with almost no waste. All of them trade an expensive tool made once for a very low cost per part.

Card 38definition
Question

How do blow, rotational and vacuum forming differ?

Answer

Blow moulding makes thin-walled parts with a narrow neck, such as bottles. Rotational moulding makes large seamless hollow parts, such as tanks. Vacuum forming makes open shapes with one good face.

Card 39concept
Question

Why does injection moulding need high volume?

Answer

The precision steel tool costs thousands and must be spread over the run. At 400 parts the tooling dominates; at 400,000 it is a fraction of a penny each.

Card 40example
Question

What shape is the signature of extrusion?

Answer

A constant cross-section along the whole length — window frames, pipe, guttering, curtain track and aluminium sections.

4.1.94 cards

Card 41concept
Question

What is the first question when choosing a joint?

Answer

Does it ever need to come apart? Temporary joints allow repair, upgrade and recycling; permanent ones are stronger, lighter, sealed and cheaper to assemble.

Card 42concept
Question

When is adhering the right choice?

Answer

For dissimilar materials that cannot be welded, thin sheets a rivet would tear, and joints that must be sealed — because load is spread over the bonded area rather than at points.

Card 43concept
Question

What does welding cost?

Answer

Compatible materials only, heat that distorts and weakens the area around the joint, skill or a robot, and no way to reverse it.

Card 44concept
Question

What is the end-of-life consequence of a glued product?

Answer

It is one object that can only be shredded. A screwed product is a pile of materials that can be separated and sorted.

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