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Innervated, self-sensing liquid crystal elastomer actuators with closed loop control

A. Kotikian, J.M. Morales, A. Lu, J. Mueller, Z.S. Davidson, W. Boley, and J.A. Lewis — Advanced Materials, Wiley, 2021. [link]

Printing reconfigurable bundles of dielectric elastomer fibers

A. Chortos*, J. Mao*, J. Mueller, E. Hajiesmaili, J.A. Lewis, and D.R. Clarke — Proceedings of the National Academy of Sciences (PNAS), 2021.[link]

Voxelated Soft Matter via Multimaterial Multinozzle 3D Printing

M.A. Skylar-Scott*, J. Mueller*, C.W. Visser, and J.A. Lewis — Nature, Nature Publishing Group, 2019. [link]

Transition waves in bistable 2D auxetic structures

L. Jin*, R. Khajehtourian*, J. Mueller*, A. Rafsanjani*, D. Kochmann, and K. Bertoldi — Proceedings of the National Academy of Sciences (PNAS), 2020. [link]

Porous Polymer Architectures with Tunable Properties via Direct Bubble Writing

C.W. Visser, D. Amato, J. Mueller, and J.A. Lewis — Advanced Materials, Wiley, 2019. [link]

Energy Absorption Properties of Periodic and Stochastic 3D Lattice Materials

J. Mueller, K. Matlack, K. Shea, and C. Daraio — Advanced Theory and Simulation, Wiley, 2019. [link]

Tensile Strength of Interfaces in Multi-Material 3D-printed Parts

T. Lumpe, J. Mueller and K. Shea — Materials \& Design, Elsevier, 2019. [link]

Stepwise Graded Struts for Maximizing Energy Absorption

J. Mueller and K. Shea — Extreme Mechanics Letters, Elsevier, 2018. [link]

Stiffness-Independent Toughening of Beams through Coaxial Interfaces

J. Mueller, J.R. Raney, D.M. Kochmann, and K. Shea — Advanced Science, Wiley, 2018. [link]

Buckling, Build orientation, and Scaling Effects in 3D Printed Lattices

J. Mueller, J. Schwarz, and K. Shea — Materials Today Communications, Elsevier, 2018. [link]

Architected Lattices with High Stiffness and Toughness via Multicore-Shell 3D Printing

J. Mueller, J.R. Raney, K. Shea, and J.A. Lewis — Advanced Materials, Wiley, 2018. [link]

Rotational 3D printing of damage-tolerant composites with programmable mechanics

J.R. Raney, B. Compton, J. Mueller, T. Ober, K. Shea, and J.A. Lewis — Proceedings of the National Academy of Sciences (PNAS), 2018. [link]

Mechanical properties of interfaces in inkjet 3D printed single and multi-material parts

J. Mueller, D. Courty, M. Spielhofer, R. Spolenak, and K. Shea — 3D Printing and Additive Manufacturing, Libertpub, 2017. [link]

The Effect of Anisotropy on the Optimization of Additively Manufactured Lattice Structures

T. Stankovic, J. Mueller, and K. Shea — Additive Manufacturing, Elsevier, 2017. [link]

Integrated Design and Simulation of Tunable, Multi-State Structures Fabricated Monolithically with Multi-Material 3D Printing

T. Chen, J. Mueller, and K. Shea — Scientific Reports, Nature Publishing Group, 2017. [link]

Mechanical properties of parts fabricated with inkjet 3D printing through efficient experimental design

J. Mueller, K. Shea, and C. Daraio — Materials \& Design, Elsevier, 2015. [link]

A Generalized Optimality Criteria Method for Optimization of Additively Manufactured Multi-Material Lattice Structures

T. Stankovic, J. Mueller, P. Egan, and K. Shea — Journal of Mechanical Design, Special issue on ''Design for Additive Manufacturing'', 2015. [link]

The Role Height Plays in the Spreading of Liquid Droplets Over Sharp Edges

J. Mueller, N. Haghparastmojaveri, T. Alan, A. Neild — Applied Physics Letters, 2013. [link]

Tensile Strength of Interfaces in Multi-Material 3D-printed Parts

T. Lumpe, J. Mueller and K. Shea — International Solid Freeform Fabrication Symposium, Austin, TX, 2018.

Design and Fabrication of a Bistable Unit Actuator with Multi-material Additive Manufacturing

T. Chen, J. Mueller, and K. Shea — International Solid Freeform Fabrication Symposium, Austin, TX, 2016.

Optimization for Anisotropy in Additively Manufactured Lattice Structures

T. Stankovic, J. Mueller, and K. Shea — ASME Computers and Information in Engineering Conference, Charlotte, NC, 2016.

The effect of build orientation on the mechanical properties in inkjet 3D-printing

J. Mueller and K. Shea — International Solid Freeform Fabrication Symposium, Austin, TX, 2015.

Tensile Properties of Inkjet 3D-printed Parts: Critical Process Parameters and How to Efficiently Analyze Them

J. Mueller, S. Kim, K. Shea, and C. Daraio — ASME Computers and Information in Engineering Conference, Boston, MA, 2015.

Optimization of Additively Manufactured Multi-Material Lattice Structures Using Generalized Optimality Criteria

T. Stankovic, J. Mueller, P. Egan, and K. Shea — ASME Computers and Information in Engineering Conference, Boston, MA, 2015.

Machinability of Aligned CNT Nanocomposites

M. Mahmoodi, M. Malekian, J. Mueller, M.B. Jun, S.S. Park — Int. Conference on Micro Manufacturing (ICOMM) 2011, Tokyo, Japan, Mar. 2011.

Innervated, self-sensing liquid crystal elastomer actuators with closed loop control

A. Kotikian, J.M. Morales, A. Lu, J. Mueller, Z.S. Davidson, W. Boley, and J.A. Lewis — Materials Research Society (MRS) Fall Meeting, Boston, MA, USA, 2021.

Multimaterial Mechanical Metamaterials with Programmable Response

J. Mueller, J.A. Lewis, K. Bertoldi — MACH Conference, Annapolis, MD, USA, 2021.

Utilizing Digital Fabrication to drive Innovation in (Multi-)Functional Materials

J. Mueller — Materials Science Colloquium of the SFB 986, TU Hamburg-Harburg, Germany, 2021.

Thermally Reconfigurable Lattice Structures (Poster)

J. Mueller — BASF Northeast Research Alliance (NORA) Symposium, Boston, MA, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — Scientific Symposium 2020, Max Planck Institute for Intelligent Systems, Tübingen, Germany, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — Research Symposium, Max Planck Society, Berlin, Germany, 2020.

A digital approach to the creation of a Universal Manufacturing Machine

J. Mueller — University of Stuttgart, Stuttgart, Germany 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — Aarhus University, Aarhus, Denmark, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — University of Colorado, Denver, CO, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — Max Planck Institute for Polymer Research, Mainz, Germany, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — Massachusetts Institute of Technology (MIT), Cambridge, MA, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — University of Iowa, Iowa City, IA, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — Johns Hopkins University, Baltimore, MD, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — Princeton University, Princeton, NJ, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland, 2020.

Motion via Bistability in Viscous Fluids

M. Zanaty, W. Zunker, J. Mueller, K. Bertold — Bulletin of the American Physical Society (APS), 2020.

Advanced Composite Materials and Structures via Digital Design and Fabrication

J. Mueller — University of Minnesota, Twin Cities, Minneapolis, MN, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — University of California, Los Angeles, CA, USA, 2020.

Innervated Artificial Muscles Having Programmable Actuation

A. Chortos*, J. Mao*, J. Mueller, Y. Luo, J.A. Lewis, and D.E. Clarke — Gordon Research Conference (GRC) on Multifunctional Materials and Structures, Ventura, CA, USA, 2020.

Advanced Composite Materials and Structures via Digital Design and Fabrication

J. Mueller — University of Waterloo, Waterloo, ON, Canada, 2020.

Multimaterial Multinozzle 3D Printing (MM3D)

J. Mueller, M.A. Skylar-Scott, and J.A. Lewis — Gordon Research Conference (GRC) on Robotics, Ventura, CA, USA, 2020.

A Computational Approach to the Creation of Digital Matter

J. Mueller — University of British Columbia, Vancouver, BC, Canada, 2020.

Active Lattices With Thermally Tunable Properties

J. Mueller, J.A. Lewis, and K. Bertoldi — ASME IMECE, Salt Lake City, UT, USA, 2019.

From stretching to bending dominated lattice materials

J. Mueller, K. Bertoldi, and J.A. Lewis — SES Technical Meeting, St. Louis, MO, USA, 2019.

Overcoming the conflict between stiffness and toughness in architected lattices

J. Mueller — Cluster of Excellence 3DMM2O, Karlsruhe Institute of Technology, Karlsruhe, Germany, 2019.

A computational approach to the creation of digital matter

J. Mueller — Department of Informatics, Karlsruhe Institute of Technology, Karlsruhe, Germany, 2019.

Transforming cellular structures via active materials

J. Mueller, D. Kokkinis, K. Bertoldi, and J.A. Lewis — MACH Conference, Annapolis, MD, USA, 2019.

Controlled transition waves in two-dimensional bistable auxetics

J. Mueller and K. Bertoldi — Bulletin of the American Physical Society (APS), Boston, MA, USA, 2019.

Deployable multi-state structures via pre-strained, multistable elements

J. Mueller, J.A. Lewis, and K. Bertoldi — Materials Research Society (MRS) Fall Meeting, Boston, MA, USA, 2018.

Multicore-Shell Printing of Stiff and Tough Lattice Structures

J. Mueller, J.R. Raney, K. Shea, and J.A. Lewis — European Solid Mechanics Conference (ESMC), Bologna, Italy, 2018.

Architected Core-Shell Beams for Stiff, Strong, and Tough Cellular Structures

J. Mueller — ABB Ltd., Baden, Switzerland, 2018.

Radially Layered Multi-Material Struts for Increased Energy Absorption and Fracture Strain in Stiff Lattice Structures

J. Mueller, J.R. Raney, J.A. Lewis, and K. Shea — Materials Research Society (MRS) Fall Meeting, Boston, MA, USA, 2017.

Multiplexed Multi-Material 3D Printing

M.A. Skylar-Scott*, J. Mueller*, C.W. Visser, and J.A. Lewis — Materials Research Society (MRS) Fall Meeting, Boston, MA, USA, 2017.

Increased Energy Absorption of Lattice Structures Through Coaxially Aligned Struts

J. Mueller, J.R. Raney, J.A. Lewis, and K. Shea — SES Technical Meeting, Boston, MA, USA, 2017.

Rotational 3D printing of bioinspired, damage-tolerant materials

J.R. Raney, B. Compton, J. Mueller, T. Ober, K. Shea, and J.A. Lewis — Mach Conference, Anapolis, MD, USA, 2017.

Design for Additive Manufacturing

J. Mueller — Additive Manufacturing Expo (AMX) Showcase Forum, Lucerne, Switzerland, 2016.

3D printing of carbon fiber-epoxy composites with programmable fiber orientation

J.R. Raney, B. Compton, J. Mueller, T. Ober, K. Shea, and J.A. Lewis — SES Technical Meeting, College Park, MD, USA, 2016.

Material and Process Characterization, Design Automation and Optimization for Digital Fabrication (Poster)

J. Mueller, T. Stankovic, and K. Shea — Symposium on Computational Fabrication, CSAIL MIT, Cambridge, MA, USA, 2016.

Introduction to Additive Manufacturing and the Engineering, Design and Computing Lab

J. Mueller — Spritzgussformen aus dem 3D-Printer, Zurich, Switzerland, 2016.

Programmable Metamaterial and Method of Controlling Macroscopic Properties of a Metamaterial

J. Mueller, J.A. Lewis, and K. Bertoldi — US. Prov. Patent 57,803, filed November 13, 2020.

Method of 3D Printing A Cellular Solid

J.A. Lewis, J. Mueller, C.W. Visser, and D.N. Amato — US. Prov. Patent 62/714,892, filed Aug. 6, 2018.

Core-Shell Nozzle for Three-Dimensional Printing and Method of Use

J.A. Lewis, J. Mueller, J.R. Raney, and K. Shea — US. Prov. Patent 62/431,723, granted Dec. 8, 2016. International Application No. PCT/US17/64733, filed December 5, 2017.

3D Printed Core-Shell Filament and Method of 3D Printing a Core-Shell Filament

J.A. Lewis, J. Mueller, J.R. Raney, and K. Shea — US. Prov. Patent 62/431,653, granted December 8, 2016. International Application No. PCT/US17/64734, filed Dec. 5, 2017.

Valved Nozzle with a Compensator and Massively Parallel 3D Printing System

J.A. Lewis, M.A. Skylar-Scott, and J. Mueller — US. Prov. Patent 62/431,223, granted Dec. 7, 2016. International Application No. PCT/US17/64738, filed December 5, 2017.

Systems and Methods for Automated Nozzle Design and 3D Printing

J.A. Lewis, M.A. Skylar-Scott, J. Mueller, and D. Kolesky — US. Prov. Patent 62/303,800, granted Mar. 4, 2016.

How to print multi-material devices in one go

Nature | News & Views, Nov. 13, 2019. [link]

Multimaterial 3D printing manufactures complex objects, fast

Space Daily, Nov. 18, 2019. [link]

New 3D printer tech inches closer to holy grail of multi-material printing

Techheading, Nov. 15, 2019. [link]

Robot millipede printed by 3D printer that can spew out multiple materials

Boing Boing, Nov. 15, 2019. [link]

Rapid 3D printing of multimaterial complex structures

3DMedNet, Nov. 13, 2019. [link]

Multimaterial 3D printing manufactures complex objects, fast

Science Daily, Nov. 13, 2019. [link]

Multimaterial 3-D printing manufactures complex objects, fast

Tech Xplore, Nov. 13, 2019. [link]

Multimaterial 3D printing manufactures complex objects, fast

Harvard News & Events, Nov. 13, 2019. [link]

Multimaterial 3D printing manufactures complex objects, fast

Wyss Institute, Nov. 13, 2019. [link]

Multimaterial 3D printing manufactures complex objects, fast

EurekAlert!, Nov. 13, 2019. [link]

3-D Grayscale Digital Light Printing (g-DLP) Highly Functionally Graded Materials (FGM)

ECN, May 21, 2019. [link]

3-D Grayscale Digital Light Printing (g-DLP) Highly Functionally Graded Materials (FGM)

Wireless Week, May 21, 2019. [link]

3-D grayscale digital light printing (g-DLP) highly functionally graded materials (FGM)

Phys.org, May 21, 2019. [link]

New 3D printing process can control fiber orientation in composites

Materials Today, Jan. 29, 2018. [link]

Novel 3-D printing technique yields high-performance composites

Space Daily, Jan. 17, 2018. [link]

News story from Eurasia Review on Wednesday 17 January 2018

Eurasia Review, Jan. 17, 2018. [link]

Novel 3-D printing technique yields high-performance composites

Nanowerk, Jan. 16, 2018. [link]

Novel 3-D printing technique yields high-performance composites

AlphaGalileo, Jan. 16, 2018. [link]

Novel 3-D Printing Technique Yields High-performance Composites

Science Newsline, Jan. 16, 2018. [link]

3D Printing to Produce High-Performing Composites

Azo Materials, Jan. 16, 2018. [link]

Novel 3D Printing Technique Yields High-Performance Composites

R&D, Jan. 16, 2018. [link]

News story from The Engineer on Tuesday 16 January 2018

The Engineer, Jan. 16, 2018. [link]

Harvard solves nature’s composite materials puzzle with rotational 3D printing

3D Printing Industry, Jan. 16, 2018. [link]

Novel 3-D Printing Technique Yields High-Performance Composites

Fars News Agency, Jan. 16, 2018. [link]

Novel 3-D printing technique yields high-performance composites

Tech Xplore, Jan. 15, 2018. [link]

Novel 3-D printing technique yields high-performance composites

EurekAlert!, Jan. 15, 2018. [link]

Novel 3D printing technique yields high-performance composites

My Science, Jan. 15, 2018. [link]

Study on the Development of 4D Shape-Transforming Structures

AZO Materials, Nov. 3, 2017. [link]

Researchers Achieve 4-D Printing of Programmable Shape-Changing Structures

Product Design and Development, Nov. 3, 2017. [link]

Researchers Achieve 4-D Printing of Programmable Shape-changing Structures

Science Newsline, Nov. 2, 2017. [link]

Researchers achieve 4-D printing of programmable shape-changing structures

Phys.org, Nov. 2, 2017. [link]

Arrivano le stampanti 4D: gli oggetti potranno cambiare forma nel tempo

La Republica, May. 18, 2017. [link]

Fabrication technology in the fourth dimension

Space Daily, May. 12, 2017. [link]

Die vierte Dimension in der Fertigungstechnik

Innovations Report, May. 9, 2017. [link]

Fabrication technology in the fourth dimension

Health Medicinet, May. 9, 2017. [link]

Fabrication Technology in the Fourth Dimension

Science Newsline, May. 8, 2017. [link]

Die vierte Dimension in der Fertigungstechnik

Jura Forum, May. 8, 2017. [link]

Watch 4D-printed object become a sturdy dome - Futurity

Futurity, May. 8, 2017. [link]

Die vierte Dimension in der Fertigungstechnik

Informationsdienst Wissenschaft, May. 8, 2017. [link]

Neues Verfahren ermöglicht Drucken in der vierten Dimension

APA, May. 8, 2017. [link]

Fabrication technology in the fourth dimension

ETH Zurich News, May. 8, 2017. [link]

Die vierte Dimension in der Fertigungstechnik

ETH Zurich News, May. 8, 2017. [link]

Fabrication technology in the fourth dimension

EurekAlert!, May. 8, 2017. [link]

This Harvard lab is making 3-D-printing ‘inks’ from metals and living cells

Boston Globe, Mar. 16, 2016. [link]

Microscale 3-D Printing

MIT Technology Review, Apr. 13, 2016. [link]