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significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
greater increase » year increase (Expand Search)
side decrease » sizes decrease (Expand Search), fid decreased (Expand Search), step decrease (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
greater increase » year increase (Expand Search)
side decrease » sizes decrease (Expand Search), fid decreased (Expand Search), step decrease (Expand Search)
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961
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962
The error between test and simulation results.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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963
Relevant parameters of cutting head and pick.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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964
The stress variation of Node 33.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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965
Deformation trend of the gyration platform.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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966
Force transformation of cutting head.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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967
3D model of cutting head.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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968
Rigid-flexible coupling mode.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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969
The flow of cutting performance calculation.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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970
Results of different optimization schemes.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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971
Modal shape of the gyration platform.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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972
Deformation variation of Node 33.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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973
Optimization parameters of gyration platform.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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974
Property parameters of rock samples.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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975
Modal frequency of the gyration platform.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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976
Optimized design nodes of different parameters.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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977
Fatigue life distribution of gyration platform.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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978
Force analysis of cutting pick.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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979
Swing geometric model of roadheader.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”
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980
Cutting test.
Published 2024“…Deformation was predominantly observed on both sides of the lifting cylinder and the rear portion of the gyration platform. …”