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Plastic tests plastics = a toy brick...
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Moser, Richard.
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Plastic tests plastics = a toy brick tensometer for electromechanical characterization of elastomers /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Plastic tests plastics/ by Richard Moser.
其他題名:
a toy brick tensometer for electromechanical characterization of elastomers /
作者:
Moser, Richard.
出版者:
Wiesbaden :Springer Fachmedien Wiesbaden : : 2015.,
面頁冊數:
xxv, 150 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Tensiometers. -
電子資源:
http://dx.doi.org/10.1007/978-3-658-10530-3
ISBN:
9783658105303 (electronic bk.)
Plastic tests plastics = a toy brick tensometer for electromechanical characterization of elastomers /
Moser, Richard.
Plastic tests plastics
a toy brick tensometer for electromechanical characterization of elastomers /[electronic resource] :by Richard Moser. - Wiesbaden :Springer Fachmedien Wiesbaden :2015. - xxv, 150 p. :ill., digital ;24 cm. - BestMasters. - BestMasters..
Richard Moser shows how to use and upgrade toy bricks for the construction of a lightweight, low-cost, and easy to reproduce tensile testing setup. Tailored for the characterization of elastomers and stretchable electrodes, the setup is capable of performing stress-strain studies along with resistance-strain measurements. Based on the underlying theory of material deformation and rubber elasticity, the author applies the setup to mechanically characterize polydimethylsiloxane (PDMS) with different grades of stiffness. The versatility of the device is highlighted with the electromechanical characterization of stretchable thin film metal electrodes on PDMS. Applications of the author´s setup range from using it as an educational tool in practical physics and engineering courses over being showcase in scientific exhibitions to its utilization as an inexpensive and reliable laboratory tool. Contents Fundamentals of Elasticity Design of the Toy Brick Tensometer Stress/Resistance-Strain Measurements Target Groups Teachers and students in technical and applied sciences, with focus on stretchable electronics Executives and specialists in the field of plastics and polymer engineering and research The Author Richard Moser studied Technical Physics at Johannes Kepler University Linz and wrote his Master Thesis at the Soft Matter Physics Department (Institute of Experimental Physics) under the supervision of Prof. Dr. Siegfried Bauer, where he is currently working on his PhD thesis.
ISBN: 9783658105303 (electronic bk.)
Standard No.: 10.1007/978-3-658-10530-3doiSubjects--Topical Terms:
2156351
Tensiometers.
LC Class. No.: TA165
Dewey Class. No.: 681.2
Plastic tests plastics = a toy brick tensometer for electromechanical characterization of elastomers /
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Richard Moser shows how to use and upgrade toy bricks for the construction of a lightweight, low-cost, and easy to reproduce tensile testing setup. Tailored for the characterization of elastomers and stretchable electrodes, the setup is capable of performing stress-strain studies along with resistance-strain measurements. Based on the underlying theory of material deformation and rubber elasticity, the author applies the setup to mechanically characterize polydimethylsiloxane (PDMS) with different grades of stiffness. The versatility of the device is highlighted with the electromechanical characterization of stretchable thin film metal electrodes on PDMS. Applications of the author´s setup range from using it as an educational tool in practical physics and engineering courses over being showcase in scientific exhibitions to its utilization as an inexpensive and reliable laboratory tool. Contents Fundamentals of Elasticity Design of the Toy Brick Tensometer Stress/Resistance-Strain Measurements Target Groups Teachers and students in technical and applied sciences, with focus on stretchable electronics Executives and specialists in the field of plastics and polymer engineering and research The Author Richard Moser studied Technical Physics at Johannes Kepler University Linz and wrote his Master Thesis at the Soft Matter Physics Department (Institute of Experimental Physics) under the supervision of Prof. Dr. Siegfried Bauer, where he is currently working on his PhD thesis.
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