Ultra low expansion glass has an ultimate tensile strength of, a Poisson s ratio 0.17, a density of ( ), a Specific stiffness of ( ), a shear modulus of ( ), a bulk modulus of ( ), and an elastic modulus of ( ).
22.
Its ultimate tensile strength ( UTS ) depends on material density and is about 160 kPa at 8.5 mg / cm 3 and 1 kPa at 0.18 mg / cm 3; in comparison, the strongest silica aerogels have a UTS of 16 kPa at 100 mg / cm 3.
23.
Ductile materials have a fracture strength lower than the ultimate tensile strength ( UTS ), whereas in brittle materials the fracture strength is equivalent to the UTS . If a ductile material reaches its ultimate tensile strength in a load-controlled situation, it will continue to deform, with no additional load application, until it ruptures.
24.
Ductile materials have a fracture strength lower than the ultimate tensile strength ( UTS ), whereas in brittle materials the fracture strength is equivalent to the UTS . If a ductile material reaches its ultimate tensile strength in a load-controlled situation, it will continue to deform, with no additional load application, until it ruptures.
25.
Where \ sigma _ \ text { a } is the alternating stress, \ sigma _ \ text { m } is the mean stress, \ sigma _ \ text { fat } is the fatigue limit for completely reversed loading, and \ sigma _ \ text { ts } is the ultimate tensile strength of the material.
26.
The ranges of ultimate tensile strength and yield strength are largely based on the heat treatment that the alloy is subjected to following manufacturing, often T1 ( cooled from an elevated temperature shaping process and aged naturally to a substantially stable condition ) or T5 ( cooled from an elevated temperature shaping process and then artificially aged ) for alloy 6105 aluminum.
27.
Ultimate tensile strength of ordinary strength alloys is 58, 000-71, 000 psi ( 400-490 MPa ), except for ABS A shapes and bars with 58, 000-80, 000 psi ( 400-550 MPa ), and cold flanged sections with 55, 000-65, 000 psi ( 380-450 MPa ).
28.
The novel polymeric alloy core layer / s is made of a high performance polymer compound with a storage modulus of e " 1400 MPa at 23�C, measured by Dynamic Mechanical Analysis ( DMA ) at a frequency of 1 Hz according to ASTM D4065; or an ultimate tensile strength of at least 30 MPa . The outer layers are usually made of a polyethylene or polypropylene polymer, with a blend or alloy with other polymers, fillers, additives, fibers and elastomers.
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