M. Jiang, L. Li, Q. Yang | 2013 | Advances in Space Research
DOI 10.1016/j.asr.2013.02.001Review state
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This paper investigates the deformation behavior of TJ-1 lunar soil simulant under principal stress rotation. Experiments were conducted using a hollow cylinder apparatus, revealing significant plastic deformation, volumetric strain, and non-coaxiality. The intermediate principal stress coefficient, deviatoric stress ratio, and mean stress were analyzed for their influence on strain components. The provided text contains a mix of metadata and content related to an academic paper or article. It includes information about the publication, such as volume, issue, pages, and DOI. There is also a title and author information. The content appears to be a structured document with sections like abstract, introduction, methodology, results, and conclusion. The text also includes references and citations to other works, indicating it is a scholarly article. The metadata suggests it is part of a journal publication, possibly in the field of science or engineering, given the technical terms and references. The provided text appears to be a series of URLs and file names related to images and thumbnails, likely from a scientific or technical paper hosted on a platform like Elsevier or similar. Th
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Principal stress rotation tests
mechanical
Deformation behavior study
mechanical
Principal stress rotation tests
mechanical deformation
Void ratio control
sample preparation
Test scheme design
experimental design
hollow cylinder tests
mechanical
principal stress rotation
mechanical deformation
hollow cylinder specimen testing
mechanical deformation
Plastic deformation
significant
Volumetric strain
significant
Non-coaxiality
observed
Plastic deformation
significant
Volumetric strain
significant
Non-coaxiality
observed
Shear strain
reported
Non-coaxial angle
reported