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Difference between revisions of "40d:Gear assembly"

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A '''gear assembly''' is a [[machine component]] that is used to move [[power]] between adjacent machine components such as [[water wheel]]s, [[windmill]]s, [[axle]]s, and other gear assemblies. This allows the transfer of vertical motion to horizontal and vice versa. Each gear in a chain of gears requires 5 units of power.
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A '''gear assembly''' is a [[machine component]] that is used to move [[power]] between adjacent machine components such as [[water wheel]]s, [[windmill]]s, [[axle]]s, and other gear assemblies. This allows the transfer of vertical motion to horizontal and vice versa. Note that gear assemblies do not transfer power diagonally; they only work orthogonally (N-S and E-W).  Each gear in a chain of gears requires 5 units of power.
  
 
==Construction==
 
==Construction==
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Gears can be constructed from the {{K|b}}uild menu under {{K|M}}achine Components and {{K|g}}ear. They require one [[mechanism]] to construct.
 
Gears can be constructed from the {{K|b}}uild menu under {{K|M}}achine Components and {{K|g}}ear. They require one [[mechanism]] to construct.
  
A gear may be used to transfer power between [[z-level]]s. In order to do so, you must first dig a channel, and then place the gear over the opening. Another gear may be used above or below to resume pathing power on the XY plane.
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Gears may be used to transfer power between [[z-level]]s. In order to do so, you must first dig a channel, and then place the gear over the opening. Then place either another gear assembly, a vertical axle, or a machine (screw pump, etc.) on the z-level below in the same square, and power will be routed to it.
  
 
==Disconnected gears==
 
==Disconnected gears==
  
When connected to a [[lever]], gears can be "disconnected" by activating the lever. However, be warned that devices connected vertically to a linked gear may collapse when disconnected. The same is true of a horizontally connected hanging device. An example is building a windmill directly on top of a gear and then "disconnecting" the gear using a lever; this causes the windmill construction to collapse. Instead, create a second gear adjacent to the linked gear upon which to support the windmill.
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Gears can be "disconnected" by being connected to a [[lever]], and then activating that lever. However, be warned that devices connected vertically to a linked gear may collapse when disconnected. The same is true of a horizontally connected hanging device. An example is a windmill built directly on top of a gear: in this case, disconnecting the gear via the lever will cause the windmill construction to collapse. In order to avoid this, create a second gear adjacent to the linked gear but not otherwise connected to the system; This gear will support the windmill if the linked gear is disconnected, but will not transfer power, since it only draws it from the now-disconnected gear.
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[[Category:Constructions]]
 
[[Category:Constructions]]
 
[[Category:Machine components]]
 
[[Category:Machine components]]

Revision as of 21:25, 4 November 2007

A gear assembly is a machine component that is used to move power between adjacent machine components such as water wheels, windmills, axles, and other gear assemblies. This allows the transfer of vertical motion to horizontal and vice versa. Note that gear assemblies do not transfer power diagonally; they only work orthogonally (N-S and E-W). Each gear in a chain of gears requires 5 units of power.

Construction

Gears can be constructed from the build menu under Machine Components and gear. They require one mechanism to construct.

Gears may be used to transfer power between z-levels. In order to do so, you must first dig a channel, and then place the gear over the opening. Then place either another gear assembly, a vertical axle, or a machine (screw pump, etc.) on the z-level below in the same square, and power will be routed to it.

Disconnected gears

Gears can be "disconnected" by being connected to a lever, and then activating that lever. However, be warned that devices connected vertically to a linked gear may collapse when disconnected. The same is true of a horizontally connected hanging device. An example is a windmill built directly on top of a gear: in this case, disconnecting the gear via the lever will cause the windmill construction to collapse. In order to avoid this, create a second gear adjacent to the linked gear but not otherwise connected to the system; This gear will support the windmill if the linked gear is disconnected, but will not transfer power, since it only draws it from the now-disconnected gear.