National Repository of Grey Literature 2 records found  Search took 0.00 seconds. 
Preliminary study using pulsating water jet for bone cement demolition
Hloch, Sergej ; Kloc, J. ; Foldyna, Josef ; Pude, F. ; Smolko, I. ; Zeleňák, Michal ; Sitek, Libor ; Hvizdoš, P. ; Monka, P. ; Monková, K. ; Kozak, D. ; Stoić, A. ; Sedmak, A. ; Milosevic, M. ; Lehocká, D. ; Mihalčinová, E.
The paper deals with the study of using the selective property of ultrasonic pulsating water jet for the disintegration of bone cement which creates the interface between femoral stem and trabecular bone tissue. For investigation, commercial bone cements were used. Bone cements were tested by nanoindentation in order to review their mechanical properties. A representative sample Palacos R+G was selected for disintegration of bone cement. Bone cements samples fixed between two plexiglasses were disintegrated using ultrasonic water jet and water jet generated by self-resonating nozzle at the pressure level of 20 MPa. Visualisation of bone cement demolition was provided with high speed 1 kHz cameras with two led pulsed sources. Potential were observed for using of pulsating water jet for bone cement demoliton during femoral stem extraction.
Innovative Approach to Advanced Modulated Waterjet Technology
Kušnerová, M. ; Stoic, A. ; Foldyna, Josef ; Sitek, Libor ; Magurová, D. ; Harničárová, M.
The paper deals with a new formulation of theory for modulated waterjet technology by analytical model. The fundamental oscillations frequency for modulated waterjet technology has been investigated. This system generates a modulated liquid jet as a result of the resonant chamber introduction. The theoretical model was developed particularly on the basis of knowledge of the geometric dimensions of the system and the liquid pressures in order to predict the values of the fundamental frequencies of oscillations. The predicted oscillation frequencies were verified by laboratory measurements. It has been achieved a significant performance improvement in surface disintegration of material being machined.

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