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Furnace: Difference between revisions

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Line 30: Line 30:
!Notes
!Notes
|-
|-
|Steel
|[[Steel Ingot]]
|3 iron / 1 coal
|3 iron / 1 coal
|30%
|30%
Line 37: Line 37:
|Can easily be achieved by just dropping 1 oxite and 2 volatiles
|Can easily be achieved by just dropping 1 oxite and 2 volatiles
|-
|-
|Electrum
|[[Electrum Ingot]]
|1 gold / 1 silver
|1 gold / 1 silver
|10%
|10%
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|
|
|-
|-
|Solder
|[[Solder Ingot]]
|1 iron / 1 lead
|1 iron / 1 lead
|20%
|20%
Line 51: Line 51:
|
|
|-
|-
|Constantan
|[[Constantan Ingot]]
|1 copper / 1 nickel
|1 copper / 1 nickel
|90%
|90%
Line 58: Line 58:
|
|
|-
|-
|Invar
|[[Invar Ingot]]
|1 iron / 1 nickel
|1 iron / 1 nickel
|70%
|70%

Revision as of 07:01, 21 December 2017

<languages /> <translate>

Kit (Furnace)
Recipe
Created With Autolathe, Fabricator
Cost 30g Iron, 10g Copper
Furnace
Operation
Construction
Placed with {{{placed_with_item}}}
Placed on {{{placed_on_grid}}}


Description

Used to smelt ingots and alloys using an oxygen/volatile gas mix. Ice (Oxite) and Ice (Volatiles) can be manually input directly in the furnace in order to create crude gas mixtures, or to be directly extracted as an easy trick for melting the ice.

Recipes

Those values require a working piping setup. This can be done by separating gases into tanks using atmospheric units and piping individual gases through a mixer and a pressure regulator connected to the furnace input.

Metal Components Oxygen Volatile Initial Pressure Notes
Steel Ingot 3 iron / 1 coal 30% 70% 200kPa Can easily be achieved by just dropping 1 oxite and 2 volatiles
Electrum Ingot 1 gold / 1 silver 10% 90% 200kPa
Solder Ingot 1 iron / 1 lead 20% 80% 200kPa
Constantan Ingot 1 copper / 1 nickel 90% 10% 200kPa
Invar Ingot 1 iron / 1 nickel 70% 30% 500kPa

</translate>