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1
Grain size effect on near-threshold fatigue crack propagation in CrMnFeCoNi high-entropy alloy fabricated by spark plasma sintering
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Grain size effect on near-threshold fatigue crack propagation in CrMnFeCoNi high-entropy alloy fabricated by spark plasma sintering

Fujita, Keisuke ; Tsuboi, Hayato ; Kikuchi, Shoichi

Engineering fracture mechanics, 2023-06, Vol.286, p.109317, Article 109317 [Periódico revisado por pares]

Elsevier Ltd

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2
High fracture toughness in van der Waals-layered MoTe2: Disappearance of stress singularity
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High fracture toughness in van der Waals-layered MoTe2: Disappearance of stress singularity

Hirakata, Hiroyuki ; Akiyoshi, Masao ; Masuda, Ryoichi ; Shimada, Takahiro

Engineering fracture mechanics, 2023-01, Vol.277, p.108974, Article 108974 [Periódico revisado por pares]

Elsevier Ltd

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3
Determination of the resistance curve of solid wood by measuring two load–deflection compliances in the double cantilever beam and three-point end-notched flexure tests
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Determination of the resistance curve of solid wood by measuring two load–deflection compliances in the double cantilever beam and three-point end-notched flexure tests

Yoshihara, Hiroshi ; Maruta, Makoto

Engineering fracture mechanics, 2022-12, Vol.276, p.108876, Article 108876 [Periódico revisado por pares]

Elsevier Ltd

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4
Deformation and fracture initiation of Ni3Al intermetallic single crystal turbine blade
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Deformation and fracture initiation of Ni3Al intermetallic single crystal turbine blade

Paik, Suman ; Dutta, B.K. ; Naveen Kumar, N. ; Tewari, R.

Engineering fracture mechanics, 2022-11, Vol.275, p.108812, Article 108812 [Periódico revisado por pares]

Elsevier Ltd

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5
Quantitative evaluation of fracture toughness deterioration due to Pre-strain
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Quantitative evaluation of fracture toughness deterioration due to Pre-strain

Ozawa, Takumi ; Kawabata, Tomoya ; Mikami, Yoshiki

Engineering fracture mechanics, 2022-09, Vol.272, p.108683, Article 108683 [Periódico revisado por pares]

Elsevier Ltd

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6
Long crack propagation and closure in DC(T) specimens of Ni-based superalloy Inconel 718 and stainless steel AISI 301 after shot peening
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Long crack propagation and closure in DC(T) specimens of Ni-based superalloy Inconel 718 and stainless steel AISI 301 after shot peening

Klumpp, Alexander ; Ruf, Maximilian ; Dietrich, Stefan ; Schulze, Volker

Engineering fracture mechanics, 2022-06, Vol.269, p.108551, Article 108551 [Periódico revisado por pares]

New York: Elsevier Ltd

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7
Prediction of fatigue crack propagation behavior of AA2524 after laser shot peening
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Prediction of fatigue crack propagation behavior of AA2524 after laser shot peening

Li, Songbai ; Liang, Wei ; Yan, Hongzhi ; Wang, Yuhang ; Gu, Chu

Engineering fracture mechanics, 2022-06, Vol.268, p.108477, Article 108477 [Periódico revisado por pares]

New York: Elsevier Ltd

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8
High-resolution in situ characterization of micromechanisms in CFRP laminates under mode II loading
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High-resolution in situ characterization of micromechanisms in CFRP laminates under mode II loading

Oshima, Sota ; Mamishin, Aya ; Hojo, Masaki ; Nishikawa, Masaaki ; Matsuda, Naoki ; Kanesaki, Manato

Engineering fracture mechanics, 2022-02, Vol.260, p.108189, Article 108189 [Periódico revisado por pares]

New York: Elsevier Ltd

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9
Mode II critical stress intensity factor of solid wood obtained from the asymmetric four-point bend fracture test using groove-free and side-grooved samples
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Mode II critical stress intensity factor of solid wood obtained from the asymmetric four-point bend fracture test using groove-free and side-grooved samples

Yoshihara, Hiroshi ; Maruta, Makoto

Engineering fracture mechanics, 2021-12, Vol.258, p.108043, Article 108043 [Periódico revisado por pares]

New York: Elsevier Ltd

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10
Mode II stress intensity factors for circumferential through-wall-cracked pipes under torsional loading
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Mode II stress intensity factors for circumferential through-wall-cracked pipes under torsional loading

Huang, Yifan

Engineering fracture mechanics, 2021-06, Vol.251, p.107786, Article 107786 [Periódico revisado por pares]

New York: Elsevier Ltd

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