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Strain at yield

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This article is about the current version of DF.
Note that some content may still need to be updated.

Strain at yield is a property of materials. As with yield and fracture, there are six types of strain at yield, one for each of the six forces: impact, compressive, tensile, torsion, shear, and bending. Although in real life it represents the level of strain when forced by one of the forces, it is simplified greatly. Only impact strain at yield has been verified to have an effect.

A higher number means more strain (more flexible). A lower number means less strain (more rigid).

Elastic Modulus[edit]

The formula used in the raws to calculate strain at yield from a real-world elastic modulus value is the raw yield strength (in MPa/raw units) divided by 10 times the elastic modulus (in GPa).

Young's modulus is used for tensile and bending elasticity, the shear modulus is used for shear and torsion elasticity, and the bulk modulus is used for impact and compressive elasticity.

Strain at yield of materials[edit]

Strain at yield of materials is defined by the following tokens:

  • [IMPACT_STRAIN_AT_YIELD]
  • [COMPRESSIVE_STRAIN_AT_YIELD]
  • [TENSILE_STRAIN_AT_YIELD]
  • [TORSION_STRAIN_AT_YIELD]
  • [SHEAR_STRAIN_AT_YIELD]
  • [BENDING_STRAIN_AT_YIELD]

As stated above, only [IMPACT_STRAIN_AT_YIELD] has been observed to affect the material. Lower strain at yield materials will shatter when hit by an impact, even if the impact is an edge weapon.

Material Strain at yield
Stone, Bone, Tooth, Horn, Hoof, Pearl, Shell, Soap, Tallow, Chitin, Most frozen liquids 100
Metal template, Wood template, Plant template, Seed template, most powders 1000
Nail 5000
Cartilage 25000
Skin, Fat, Muscle, Sinew, Nerve, Organ template, Leather, Cheese, Leaf 50000
Hair, Feather, Scale, Silk, Thread 100000