- Understanding the mechanical properties of polymer nanocomposite materials is essential for industrial use. Particularly, the determination of the polymer modulus at the nanofiller-polymer interphase is important for optimizing the interfacial mechanical properties. Nanoindentation via Atomic Force Microscopy (AFM) is well established for measuring the modulus of the interphase region with nanoscale spatial resolution. However, indentation into heterogeneous materials presents a confounding issue often referred to as the "substrate effect", i.e., the structural stress field caused by the rigid body is convoluted with the actual modulus of the interphase region. While finite element analysis (FEA)-based methods can be used to deconvolute the interphase modulus from measured apparent ... [Read More]
- Total Size
- 7 files (50.7 GB)
- Data Citation
- Saito, I., Sheridan, R. J., Zauscher, S., & Brinson, C. (2025). Data from: Pushing AFM to the boundaries — interphase mechanical property measurements near a rigid body. Duke Research Data Repository. https://doi.org/10.7924/r4d79jv0f
- DOI
- 10.7924/r4d79jv0f
- Publication Date
- January 2, 2025
- ARK
- ark:/87924/r4d79jv0f
- Affiliation
- Publisher
- Collection Dates
- 2022 to 2024
- Type
- Related Materials
- Funding Agency
- National Science Foundation
- Division of Civil, Mechanical and Manufacturing Innovation
- Grant Number
- NSF-CMMI 2040670
- Contact
- Cate Brinson, Ph.D.: cate.brinson@duke.edu, https://orcid.org/0000-0003-2551-1563
- Title
- Data from: Pushing AFM to the boundaries — interphase mechanical property measurements near a rigid body
- Repository
Thumbnail | Title | Date Uploaded | Visibility | Actions |
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README.txt | 2025-01-02 | Download | |
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Aggregated.tar | 2025-01-02 | Download | |
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All Data.csv | 2025-01-02 | Download | |
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All Data.tar | 2025-01-02 | ||
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Fitting result.csv | 2025-01-02 | Download | |
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Thickness.tar | 2025-01-02 | Download | |
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Tip radius.tar | 2025-01-02 | Download |