Wissenschaftliche Veröffentlichungen

Anzahl der Treffer: 519
Erstellt: Tue, 02 Jul 2024 23:06:43 +0200 in 0.0879 sec


Griebel, Stefan; Böhm, Valter; Böhm, Valter *1978-*; Zentner, Lena;
Actuator development based on snail tentacles. - In: Prospects in mechanical engineering, (2008), insges. 2 S.

http://www.db-thueringen.de/servlets/DocumentServlet?id=17935
Behn, Carsten; Steigenberger, Joachim
Adaptive control and worm-like robotic locomotion systems revisited. - In: Prospects in mechanical engineering, (2008), insges. 20 S.

http://www.db-thueringen.de/servlets/DocumentServlet?id=17910
Minchenya, Vladimir; Stepanenko, Dmitry; Lysenko, Victor; Chigarev, Anatoly; Zimmermann, Klaus
Study of microrobots operating in the mode of steerable resonance. - In: Prospects in mechanical engineering, (2008), insges. 4 S.

http://www.db-thueringen.de/servlets/DocumentServlet?id=17906
Zimmermann, Klaus;
Locomotion based on isotropic friction. - In: Prospects in mechanical engineering, (2008), insges. 2 S.

http://www.db-thueringen.de/servlets/DocumentServlet?id=17874
Zimmermann, Klaus; Böhm, Valter; Popp, Jana; Zeidis, Igor
A contribution about ferrofluid based apedal locomotion. - In: Prospects in mechanical engineering, (2008), insges. 2 S.

http://www.db-thueringen.de/servlets/DocumentServlet?id=17833
Zentner, Lena; Böhm, Valter
On the static deformation behaviour of compliant structures. - In: Prospects in mechanical engineering, (2008), insges. 2 S.

http://www.db-thueringen.de/servlets/DocumentServlet?id=17832
Bolotnik, Nikolai N.; Pivovarov, Mikhail; Zeidis, Igor; Zimmermann, Klaus; Yatsun, Sergey F.
Motion of vibration-driven mechanical systems along a straight line. - In: Advances in mechanics, (2008), S. 53-60

Zimmermann, Klaus; Zeidis, Igor; Bolotnik, Nikolai N.; Pivovarov, Michail; Yatsun, Sergey F.
Vibration-driven locomotion systems. - In: The 9th International Conference on Motion and Vibration Control, (2008), insges. 10 S.

The controlled motion of systems of bodies along a straight line on a rough plane is studied. In the first part of the paper, we consider a systems of two mass points connected by a spring. The system is driven by forces that act between the points and change harmonically. To provide the asymmetry of the friction force, necessary for the progressive motion in a given direction, it suffices to apply a brush-like or scaly coating to the contact surfaces. In the second part, we consider a rectilinear motion of a vibration-driven system, consisting of a housing body and two internal masses, along a rough horizontal plane. One of the internal masses oscillates in the horizontal direction and the other oscillates vertically. It is shown that by changing the phase shift between the horizontal and vertical oscillations one can control the velocity of the steady-state motion of the systems, for symmetric or asymmetric friction. In the third part, the motion of two mass points connected by a spring and actuated by two unbalance rotors is investigated. It is shown that the direction of motion of the systems can be changed by changing only the magnitude of the speed of the rotors, with the direction of rotation kept unaltered.



Kirchner, Isabel; Gerlach, Erik; Oberthür, Siegfried; Zimmermann, Klaus
Erstellung eines MKS-Modells zur Untersuchung der Dynamik einer Nanopositionier- und Messmaschine (NPMM). - In: Modellierung, Regelung und Simulation in Automotive und Prozessautomation, ISBN 978-3-901608-33-9, (2008), S. 171-172

Im Rahmen des Sonderforschungsbereiches 622 werden an der TU Ilmenau die Grundlagen zur Entwicklung von Nanopositionier- und Nanomessmaschinen (NPM-Maschinen) erarbeitet. Im Rahmen eines Virtuellen Prototyping, für welches die Modellgenerierung eine wesentliche Basis darstellt, sollen die dynamischen Eigenschaften des Systems in frühen Entwicklungsphasen bestimmt werden.Die Analyse der Dynamik erfolgt durch die Simulation eines Mehrkörpermodells. Durch Integration von Antrieben und Regelungen in das Modell wird ein mechatronisches System computergestützt analysiert.



Zimmermann, Klaus; Naletova, Vera A.; Zeidis, Igor; Turkov, Vladimir A.; Kalmykov, Sergej A.; Lukashevich, Mikhail V.
Numeric calculation of a magnetizable elastic body dynamic in a magnetic field. - In: Book of abstracts, ISBN 978-5-8279-0072-6, (2008), S. 474-475

The deformation and the motion of a body made by a magnetizable polymer in an alternating magnetic field are experimentally studied. The cylindrical body (worm) which is located in a cylindrical tube is analyzed. These effects can be used in deigning autonomous mobile robots without a hard cover. Such robots can be employed in clinical practice and biological investigations.