
Alloying Bronze (Cu + Sn) — The Bronze Age Begins
निर्देशनहरू
Prerequisite: Smelting Copper
Prerequisite: Smelting Copper
You need copper ingots — the base metal for bronze alloy.

पूर्वशर्त खाका
Smelting Copper from Malachite — The Birth of Metallurgy
यस चरणका सामग्री:
तामा0.9 केजीचाहिने औजार:
भट्टी
खलाती
मुसाको चिम्टा
मिलाउन मिल्ने साँचोको बाकस
निहुँ
गोलो टुप्पो भएको हथौडाPrerequisite: Casting Copper Tools
Prerequisite: Casting Copper Tools
You need casting technique from this blueprint to shape bronze.

पूर्वशर्त खाका
Casting Copper Tools — Shaping the First Metal
यस चरणका सामग्री:
टिनको ढिक्का100 ग्राम
मैन-लोप ढलाई किट - काँसा1 किटPrerequisite: Extracting Tin
Prerequisite: Extracting Tin
You need tin — the critical alloying element. Tin was the strategic resource of the Bronze Age.

पूर्वशर्त खाका
Extracting Tin from Cassiterite — The Missing Ingredient
यस चरणका सामग्री:
टिनको ढिक्का100 ग्राम
मैन-लोप ढलाई किट - काँसा1 किटMetallurgy of Bronze
Metallurgy of Bronze
Why Bronze is Superior
Bronze is a solid solution alloy — tin atoms dissolve into the copper crystal lattice, distorting it and blocking dislocation movement. Result:
| Property | Copper | Bronze (10% Sn) | Improvement |
|---|---|---|---|
| Vickers Hardness | 40-50 | 70-150 | 2-3× harder |
| Tensile Strength | 210 MPa | 300-500 MPa | 2× stronger |
| Melting Point | 1085°C | ~950°C | Easier to melt! |
| Castability | Poor (gassy) | Excellent (fluid) | Complex shapes |
| Corrosion | Forms green patina | Highly resistant | Lasts millennia |
The Ideal Ratio
Ancient smiths converged on ~10% tin, 90% copper through trial and error:
- <8% tin: Too soft, barely better than copper
- 10-12% tin: Optimal hardness, good castability, golden colour
- 15-20% tin: Very hard but brittle — good for bells and mirrors, bad for tools
- >20% tin: Extremely brittle, shatters on impact
यस चरणका सामग्री:
नाङ्गो तामाको तार १० AWG0.9 केजी
टिनको ढिक्का100 ग्राम
मैन-लोप ढलाई किट - काँसा1 किटThe Alloying Process
The Alloying Process
Preparation
- Weigh your metals: 900g copper + 100g tin for classic 10% bronze.
- Cut copper into small pieces (1-2cm) for faster melting.
- Tin can be in any form — it melts so fast it dissolves almost instantly.
Melting Sequence (CRITICAL)
- Melt the copper first. Load copper into pre-heated crucible in the kiln. Bring to full liquid (1085°C+).
- Add tin LAST. When copper is fully molten, add tin to the surface. Tin melts instantly (232°C) and dissolves into the copper.
- Stir with a pre-heated dry stick or ceramic rod. Ensure uniform mixing — 10 seconds of stirring is enough.
- NEVER add copper to molten tin — the temperature differential causes violent boiling and spatter.
Signs of Good Bronze
- Surface should be bright and mirror-like when fully liquid
- Colour: golden-yellow (not coppery red = too little tin, not silvery = too much tin)
- Flows smoothly when poured — bronze is more fluid than pure copper
Pour
- Skim slag from surface.
- Pour into pre-heated mold in one continuous stream.
- Bronze has excellent castability — it fills fine details that pure copper cannot.
यस चरणका सामग्री:
घर्रा (क्रुसिबल)1 pc
नाङ्गो तामाको तार १० AWG0.9 केजी
टिनको ढिक्का100 ग्राम
मैन-लोप ढलाई किट - काँसा1 किट
एल्युमिनियम काँसाको गोलो डण्डी C954, २५ मिमि1 सन्दर्भFinishing and the Innovation Leap
Finishing and the Innovation Leap
Post-Casting
- Allow to cool naturally in the mold.
- Remove from mold, break off sprues.
- Cold-work the edges: bronze work-hardens even more effectively than copper.
- Grind and polish the working edge.
Testing Your Bronze
- Ring test: Strike with a stick — good bronze produces a clear, bell-like ring. Dull thud = bad alloy or porosity.
- Edge test: A bronze axe keeps its edge 3-5× longer than copper.
- Colour: Golden-yellow when polished. Develops green patina over time (same as the Statue of Liberty).
The Civilization Impact
Bronze changed everything:
- Agriculture: Bronze ploughshares broke harder soil → more food → larger populations
- Warfare: Bronze swords and armour dominated for 2,000 years
- Art: Bronze casting enabled the first complex sculptures (lost-wax casting)
- Trade: Tin scarcity created the first long-distance trade networks
But bronze has a fatal flaw: tin scarcity. When the Bronze Age trade networks collapsed (~1200 BCE), civilizations that couldn't get tin were forced to master a harder, more abundant metal — iron. See Blueprint 08: Building a Bloomery & Smelting Iron.
यस चरणका सामग्री:
मैन-लोप ढलाई किट - काँसा1 किट
नाङ्गो तामाको तार १० AWG0.9 केजी
टिनको ढिक्का100 ग्राम
घर्रा (क्रुसिबल)1 pc
एल्युमिनियम काँसाको गोलो डण्डी C954, २५ मिमि1 सन्दर्भसामग्री
7- 900 ग्रामप्लेसहोल्डर
- 100 ग्रामप्लेसहोल्डर
- 12 केजीप्लेसहोल्डर
- 1 टुक्राप्लेसहोल्डर
- प्लेसहोल्डर
- प्लेसहोल्डर
- 12 केजीप्लेसहोल्डर
जोडिएका खाकाका सामग्री

Smelting Copper from Malachite — The Birth of Metallurgy
Forge द्वारा
धातु काम

Casting Copper Tools — Shaping the First Metal
Forge द्वारा
हस्तकला

Extracting Tin from Cassiterite — The Missing Ingredient
Mary द्वारा
धातु काम

Building a Box Bellows — The Breath That Makes Metal Obey Fire
Emma द्वारा
काठको काम

Alloying Brass from Copper and Zinc — The Golden Metal That Is Neither Gold Nor Bronze
Mary द्वारा
धातु काम
CC0 सार्वजनिक डोमेन
यो ब्लुप्रिन्ट CC0 अन्तर्गत जारी गरिएको छ। तपाईं अनुमति नसोधी प्रतिलिपि, परिमार्जन, वितरण र प्रयोग गर्न सक्नुहुन्छ।
ब्लुप्रिन्ट मार्फत उत्पादनहरू किनेर सिर्जनाकर्तालाई सहयोग गर्नुहोस् सिर्जनाकर्ता कमिसन विक्रेताले तोकेको, वा यो ब्लुप्रिन्टको नयाँ संस्करण बनाउनुहोस् र आम्दानी बाँड्न आफ्नो ब्लुप्रिन्टमा जडानको रूपमा समावेश गर्नुहोस्।