English | 简体中文 | 繁體中文 | 한국어 | 日本語
Monday, 12 March 2018, 14:30 HKT/SGT
Share:
    

Source: Science and Technology of Advanced Materials
Printing the 'Soft' Robots of the Future
3D printing shows potential for fabricating personalized 'soft' robotic hands and hearts. But challenges need to be addressed.

TSUKUBA, Japan, Mar 12, 2018 - (ACN Newswire) - Three-dimensional printing offers unique advantages, but still faces many challenges, for fabricating small, flexible robots that can navigate through the human body and other confined spaces, according to a review in the journal Science and Technology of Advanced Materials.

Soft robots are made with highly compliant materials such as fluids, gels and polymers so they can mimic functions present in living organisms. (Copyright: Suljo / 123RF Stock Photo)

Researchers at South Korea's Jeju National University examined the latest research and developments in fabricating soft robots using 3D printing technologies. Their study concludes that 3D printing is well suited to build robots that have complex external shapes together with an internally porous structure. Even so, the field is still new and major gaps must be addressed in order to print robots with multiple materials that readily adhere to each other.

Soft robots are made with highly compliant materials such as fluids, gels and polymers so they can mimic functions present in living organisms. In the last few years, there has been a significant trend toward using 3D printing for their manufacturing instead of conventional moulding and casting approaches.

Many 3D printing technologies are available. They all convert digital data into three-dimensional objects by adding successive layers of a material until the object is fabricated. The printing technologies use different types of materials and approaches for layering them. For example, researchers used 'selective laser sintering' of powdered metals to develop a multi-finger soft robotic hand that can lift, grip, spin and precisely position objects.

Other materials used to 3D print soft robots include dielectric elastomers: polymers that change their size and shape when stimulated by an electric field; shape memory polymers, which change their shape in response to heat; and hydrogels that are affected by a variety of stimuli including heat, electricity, acidity, magnetism and light.

Soft robots are being tested for a variety of purposes inside and outside the human body. For example, a 3D printed soft silicone pump could be used as an artificial heart. 3D printed soft 'micro-biobots', which can travel through blood vessels or the gut, are being researched for monitoring diseases. Outside the body, soft robots are being developed for prosthetics, for monitoring vital signs, and for organ-on-a-chip devices that can replace animals in drug testing.

But many challenges remain to improve these technologies for clinical use. The materials sometimes shrink during the solidification process, for example. Also, 3D printing is yet too slow for mass production.

The commercial success of these technologies, the researchers conclude, will depend on developing rapid prototypes that can lead to mass-production. Robots must also be inexpensive and satisfy market needs.

Journal information
Jahan Zeb Gul, Memoon Sajid, Muhammad Muqeet Rehman, Ghayas Uddin Siddiqui, Imran Shah, Kyung-Hwan Kim, Jae-Wook Lee & Kyung Hyun Choi
3D printing for soft robotics - a review
Science and Technology of Advanced Materials
https://doi.org/10.1080/14686996.2018.1431862
Published online: 8 March 2018

For further information please contact:
Prof. Kyung Hyun Choi
Department of Mechatronics Engineering, Jeju National University, South Korea
amm@jejunu.ac.kr

About Science and Technology of Advanced Materials
Open access journal, STAM publishes outstanding research articles across all Aspects of materials science, including functional and structural materials, theoretical analyses, and properties of materials. Website: http://tandfonline.com/stam

For more information about STAM, please contact:
Mikiko Tanifuji
STAM Publishing Director
Tanifuji.Mikiko@nims.go.jp

Press release distributed by ResearchSEA for Science and Technology of Advanced Materials.

Topic: Research and development
Source: Science and Technology of Advanced Materials

Sectors: Electronics, Science & Nanotech, Science & Research
https://www.acnnewswire.com
From the Asia Corporate News Network


Copyright © 2024 ACN Newswire. All rights reserved. A division of Asia Corporate News Network.

 

Science and Technology of Advanced Materials Related News
Dec 3, 2024 23:15 HKT/SGT
Machine learning used to optimise polymer production
Oct 25, 2024 23:00 HKT/SGT
Machine learning can predict the mechanical properties of polymers
July 30, 2024 20:00 HKT/SGT
Dual-action therapy shows promise against aggressive oral cancer
Apr 17, 2024 22:00 HKT/SGT
A new spin on materials analysis
Apr 12, 2024 18:00 HKT/SGT
Kirigami hydrogels rise from cellulose film
More news >>
Copyright © 2024 ACN Newswire - Asia Corporate News Network
Home | About us | Services | Partners | Events | Login | Contact us | Cookies Policy | Privacy Policy | Disclaimer | Terms of Use | RSS
US: +1 214 890 4418 | China: +86 181 2376 3721 | Hong Kong: +852 8192 4922 | Singapore: +65 6549 7068 | Tokyo: +81 3 6859 8575