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However, the compressive ductility and fracture toughness decrease with increasing ZrC content.
The result shows that open porosity of porous silicon carbide increases as Si-removing time increase, while the bending strength and the fracture toughness decrease.
The experimental results show that the tensile strength, maximum strain and toughness increase with increasing strain rates at room temperature, and the Young's modulus, tensile strength and toughness decrease with increasing temperatures at the strain rate of 40 s−1.
Both fracture strength and fracture toughness decrease only slightly with increasing temperature up to 1273 K, above which they decrease more rapidly and reach half of their room-temperature values by 1473 K.
For the specimens immersed in pH 2.5 and 3.5 solutions, both the fracture toughness and the elastic modulus increase in the early stage and then decrease with the increase of corrosion time, whereas for the specimens immersed in pH 1.5 solutions, both the elastic modulus and fracture toughness decrease almost linearly with immersion time.
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The strength of hardened steel increases rapidly as the percentage of carbon is increased, but at the same time the steel's toughness decreases.
Toughness decreased with increasing tissue Ct.Po.
At room temperature, toughness decreased as heat input increased.
The fracture toughness decreased by 28 33% after LSP treatment.
The Charpy test results showed that the toughness decreases dramatically with the decrease of cooling rate.
Micro-cantilever bending tests revealed that fracture toughness decreased as the specimen size decreased.
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