Collin Ynchausti

Collin Ynchausti

Brigham Young University

H-index: 9

North America-United States

About Collin Ynchausti

Collin Ynchausti, With an exceptional h-index of 9 and a recent h-index of 9 (since 2020), a distinguished researcher at Brigham Young University, specializes in the field of Mechanical Engineering, Compliant Mechanisms, Origami-Inspired Design.

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

Ultra-Compact Orthoplanar Spring via Euler-Spiral Flexures

The KIHM-9: A Self-Deploying Picosat Holographic Metasurface Antenna (HMA) Design

Adjustable, radii-controlled embedded lamina (RadiCEL) hinges for folding of thick origami-adapted systems

Zero-curvature deformation properties and 3R pseudo-rigid-body model of large-deflection Euler spiral beams

The KiHM-9: A Novel Self-Deploying PicoSat Antenna Design for Reflectarray Antennas

Preliminary Exploration of Approaches to Increase the Stability of Flat-Foldable Origami-Adapted Designs in the Open, Flat State

Methods for Designing Compact and Deployable Origami-Inspired Flat-Foldable Spacecraft Antennas and Other Systems

Approaches for minimizing joints in single-degree-of-freedom origami-based mechanisms

Collin Ynchausti Information

University

Position

PhD Candidate

Citations(all)

229

Citations(since 2020)

229

Cited By

8

hIndex(all)

9

hIndex(since 2020)

9

i10Index(all)

9

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Collin Ynchausti Skills & Research Interests

Mechanical Engineering

Compliant Mechanisms

Origami-Inspired Design

Top articles of Collin Ynchausti

Ultra-Compact Orthoplanar Spring via Euler-Spiral Flexures

Machines

2024/4

Collin Ynchausti
Collin Ynchausti

H-Index: 2

The KIHM-9: A Self-Deploying Picosat Holographic Metasurface Antenna (HMA) Design

2024

Adjustable, radii-controlled embedded lamina (RadiCEL) hinges for folding of thick origami-adapted systems

Mechanism and Machine Theory

2023/9/1

Collin Ynchausti
Collin Ynchausti

H-Index: 2

Zero-curvature deformation properties and 3R pseudo-rigid-body model of large-deflection Euler spiral beams

Mechanism and Machine Theory

2023/5/1

Mohui Jin
Mohui Jin

H-Index: 6

Collin Ynchausti
Collin Ynchausti

H-Index: 2

The KiHM-9: A Novel Self-Deploying PicoSat Antenna Design for Reflectarray Antennas

2023

Preliminary Exploration of Approaches to Increase the Stability of Flat-Foldable Origami-Adapted Designs in the Open, Flat State

2023

Collin Ynchausti
Collin Ynchausti

H-Index: 2

Methods for Designing Compact and Deployable Origami-Inspired Flat-Foldable Spacecraft Antennas and Other Systems

2023

Approaches for minimizing joints in single-degree-of-freedom origami-based mechanisms

Journal of Mechanical Design

2022/10/1

Collin Ynchausti
Collin Ynchausti

H-Index: 2

Dual-Purpose Lenticular Locking Hinges for Actuation and Stiffening of Deployable Origami Arrays

2022/8/14

Nathan Brown
Nathan Brown

H-Index: 6

Collin Ynchausti
Collin Ynchausti

H-Index: 2

A preliminary approach to select an origami source pattern for deployable space arrays

2022/8/14

Collin Ynchausti
Collin Ynchausti

H-Index: 2

An ultra-wideband origami microwave absorber

Scientific Reports

2022/8/4

Akash Biswas
Akash Biswas

H-Index: 5

Collin Ynchausti
Collin Ynchausti

H-Index: 2

Considering thickness-accommodation, nesting, grounding and deployment in design of Miura-ori based space arrays

Mechanism and Machine Theory

2022/8/1

The Mixed-Body Model: A Method for Predicting Large Deflections in Stepped Cantilever Beams

Journal of Mechanisms and Robotics

2022/8/1

Multifunctional and Deployable Origami Antennas

2022/5/30

Abdul-Sattar Kaddour
Abdul-Sattar Kaddour

H-Index: 5

Collin Ynchausti
Collin Ynchausti

H-Index: 2

Deployable euler spiral connectors

Journal of Mechanisms and Robotics

2022/4/1

Collin Ynchausti
Collin Ynchausti

H-Index: 2

Nathan Brown
Nathan Brown

H-Index: 6

Deployable compliant mechanism

2022/2/17

Hexagonal twist origami pattern for deployable space arrays

2022

Principles for Designing Origami-Inspired Composite Space Structures with High-Strain Compliant Laminate Joints

2022

Collin Ynchausti
Collin Ynchausti

H-Index: 2

Exploring Depth Adjustable Embedded Membrane Joints

2022

Collin Ynchausti
Collin Ynchausti

H-Index: 2

A novel miura-ori origami reflectarray antenna for CubeSat applications

2021/12/4

See List of Professors in Collin Ynchausti University(Brigham Young University)

Co-Authors

academic-engine