Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
greater increase » year increase (Expand Search)
alter decrease » larger decrease (Expand Search), water decreases (Expand Search), teer decrease (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
greater increase » year increase (Expand Search)
alter decrease » larger decrease (Expand Search), water decreases (Expand Search), teer decrease (Expand Search)
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341
Testing specimens.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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342
Comparison of experimental and numerical results.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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343
Relationships between crack initiation.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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344
Fitting parameters of damage model.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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345
Fitting Stress-Strain Curves of M20 Specimen.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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346
Numerical model for mortar-sandstone specimen.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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347
Failure Modes of M20 Specimens.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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348
Servo pressure machine.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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349
Fitting Stress-Strain Curves of M30 Specimens.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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350
Preparation ratio of mortar/(kg·m<sup>-3</sup>).
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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351
Relationships between peak stress.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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352
Micro-parameters of mortar and sandstone.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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353
Failure Modes of M30 Specimens.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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354
Fitting Stress-Strain Curves of M40 Specimens.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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355
Failure Modes of M40 Specimens.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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356
Stress-strain curves of composite.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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357
Contains all data.
Published 2025“…Different loading rates significantly alter the internal stress distribution and deformation characteristics within the composite system, thereby influencing the patterns of energy evolution and crack propagation. …”
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358
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359
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360