Crystal E Owens

About Crystal E Owens

Crystal E Owens, With an exceptional h-index of 10 and a recent h-index of 10 (since 2020), a distinguished researcher at Massachusetts Institute of Technology, specializes in the field of Rheology, Acoustics, Microfluidics, Oreology.

His recent articles reflect a diverse array of research interests and contributions to the field:

Large Language Models for Design and Manufacturing

Comparing machine learning algorithms for non-invasive detection and classification of failure in piezoresistive bone cement via electrical impedance tomography

Soft Viscoelastic Magnetic Hydrogels from the In Situ Mineralization of Iron Oxide in Metal-Coordinate Polymer Networks

Low-Profile, Large-Range Compressive Strain Sensing Using Micromanufactured CNT Micropillar Arrays

How Can Large Language Models Help Humans in Design and Manufacturing?

3D-Printed, Non-Planar Electron Sources For Next-Generation Electron Projection Lithography

Rheo-PIV of yield-stress fluids in a 3D-printed fractal vane-in-cup geometry

3D Printability of Silk/Hydroxyapatite Composites for Microprosthetic Applications

Crystal E Owens Information

University

Position

Mechanical Engineering Research Assistant

Citations(all)

399

Citations(since 2020)

361

Cited By

140

hIndex(all)

10

hIndex(since 2020)

10

i10Index(all)

11

i10Index(since 2020)

11

Email

University Profile Page

Google Scholar

Crystal E Owens Skills & Research Interests

Rheology

Acoustics

Microfluidics

Oreology

Top articles of Crystal E Owens

Comparing machine learning algorithms for non-invasive detection and classification of failure in piezoresistive bone cement via electrical impedance tomography

Review of Scientific Instruments

2023/12/1

Soft Viscoelastic Magnetic Hydrogels from the In Situ Mineralization of Iron Oxide in Metal-Coordinate Polymer Networks

ACS Applied Materials & Interfaces

2023/11/2

Low-Profile, Large-Range Compressive Strain Sensing Using Micromanufactured CNT Micropillar Arrays

ACS Applied Materials & Interfaces

2023/8/7

3D-Printed, Non-Planar Electron Sources For Next-Generation Electron Projection Lithography

2023/7/10

Crystal E Owens
Crystal E Owens

H-Index: 6

Rheo-PIV of yield-stress fluids in a 3D-printed fractal vane-in-cup geometry

Journal of Rheology

2023/7/1

Crystal E Owens
Crystal E Owens

H-Index: 6

3D Printability of Silk/Hydroxyapatite Composites for Microprosthetic Applications

ACS Biomaterials Science & Engineering

2023/3/1

Extrusion Printing of Carbon Nanotube Inks, from Rheology to Electronics

2023

Crystal E Owens
Crystal E Owens

H-Index: 6

Individually Addressable, 3D-Printed Carbon Nanotube Field Emitter Arrays for Large-Area Vacuum Electronics

2023

Crystal E Owens
Crystal E Owens

H-Index: 6

Versatile acid solvents for pristine carbon nanotube assembly

Science Advances

2022/4/27

Crystal E Owens
Crystal E Owens

H-Index: 6

Lucy Liberman
Lucy Liberman

H-Index: 5

Understanding the Dynamics of Cellulose Dissolved in an Ionic Liquid Solvent Under Shear and Extensional Flows

Biomacromolecules

2022/4/20

Crystal E Owens
Crystal E Owens

H-Index: 6

Jianyi Du
Jianyi Du

H-Index: 3

On Oreology, the fracture and flow of “milk's favorite cookie®”

Physics of Fluids

2022/4/19

Crystal E Owens
Crystal E Owens

H-Index: 6

Printable, castable, nanocrystalline cellulose-epoxy composites exhibiting hierarchical nacre-like toughening

Cellulose

2022/3

Time-resolved rheometry of coarsening foams using three-dimensionally printed fractal vanes

Physics of Fluids

2022/11/1

Crystal E Owens
Crystal E Owens

H-Index: 6

Computational rheometry of yielding and viscoplastic flow in vane-and-cup rheometer fixtures

Journal of Non-Newtonian Fluid Mechanics

2022/9/1

Crystal E Owens
Crystal E Owens

H-Index: 6

A Railgun Secondary Propulsion System for High-speed Hyperloop Transportation

IEEE Transactions on Plasma Science

2022/8/9

Pointwise Fabrication and Fluidic Shaping of Carbon Nanotube Field Emitters

2021/6/20

Crystal E Owens
Crystal E Owens

H-Index: 6

Substrate‐Versatile Direct‐Write Printing of Carbon Nanotube‐Based Flexible Conductors, Circuits, and Sensors

Advanced Functional Materials

2021/6

Crystal E Owens
Crystal E Owens

H-Index: 6

An improved capillary breakup extensional rheometer to characterize weakly rate-thickening fluids: Applications in synthetic automotive oils

Journal of Non-Newtonian Fluid Mechanics

2021/5/1

Jianyi Du
Jianyi Du

H-Index: 3

Crystal E Owens
Crystal E Owens

H-Index: 6

See List of Professors in Crystal E Owens University(Massachusetts Institute of Technology)

Co-Authors

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