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Editing Weapon
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* '''aIY''' is the armor's impact yield in MPa (i.e. raw value divided by 10<sup>6</sup>). | * '''aIY''' is the armor's impact yield in MPa (i.e. raw value divided by 10<sup>6</sup>). | ||
− | Note that the armor wants as high impact | + | Note that the armor wants as high impact yield as possible to make this test fail. The armor also wants low impact fracture, although the weapon's impact fracture does not matter, and high quality and high contact area. |
On a success, attack momentum is decreased by some 5% and the layer is considered punctured/severed, and the process continues to the next layer, including working through layers of the defender's body. If the attack was edged, it becomes edged again. On a failure, the momentum is multiplied by SHEAR_STRAIN_AT_YIELD/50000 for edged attacks or IMPACT_STRAIN_AT_YIELD/50000 for blunt attacks, then it becomes *permanently* blunt, and is passed on to the next layer. This means most rigid metal armor will reduce blocked attacks by 98%-99%, but elastic armor, such as a mail shirt, has both strain at yield values raised to 50000, so it multiplies by 1 at this step (i.e. does nothing to the momentum, but does still convert it to blunt) regardless of material. | On a success, attack momentum is decreased by some 5% and the layer is considered punctured/severed, and the process continues to the next layer, including working through layers of the defender's body. If the attack was edged, it becomes edged again. On a failure, the momentum is multiplied by SHEAR_STRAIN_AT_YIELD/50000 for edged attacks or IMPACT_STRAIN_AT_YIELD/50000 for blunt attacks, then it becomes *permanently* blunt, and is passed on to the next layer. This means most rigid metal armor will reduce blocked attacks by 98%-99%, but elastic armor, such as a mail shirt, has both strain at yield values raised to 50000, so it multiplies by 1 at this step (i.e. does nothing to the momentum, but does still convert it to blunt) regardless of material. |