Comparative analysis of the influence of nano- and microfillers of oxidized Al on the frictional-mechanical characteristics of UHMWPE

2010 ◽  
Vol 31 (5) ◽  
pp. 371-377 ◽  
Author(s):  
S. V. Panin ◽  
L. A. Kornienko ◽  
S. Vannasri ◽  
L. R. Ivanova ◽  
S. V. Shil’ko
2020 ◽  
Vol 864 ◽  
pp. 204-210
Author(s):  
Sergey Gorbatyuk ◽  
Dmitry Efremov ◽  
Sergei Albul ◽  
Natalya Kirillova

A procedure has been developed for calculating the geometric, kinematic and energy-power parameters of helical rolling, which allows a comparative analysis of the processes carried out in stands of various designs. Based on the results of this analysis, a helical rolling mill was designed and manufactured which allows to roll materials with high deformation resistance at high temperatures. The results of the study of the mechanical characteristics of molybdenum bars and wires made by new technology are presented.


2019 ◽  
pp. 6-10
Author(s):  
N. S. Kuznetsov

The article considers the issues of research of physico-mechanical characteristics of tube twister yarn in two plyings obtained through modernised aerodynamic twiner (the ADT), the rational parameters of formation of linen and flax tow yarn are determined, a comparative analysis of yarn unevenness by mass formed from roving of intensive chemical treatment is conducted. The rational values of technological parameters of tube twister twiner equipped with the ADT of triple tube twister, are determined based on an analysis of investigations of physico-mechanical characteristics of the tube twister. The use of the ADT of triple tube twister expands the range of tube twister yarns obtained, due to possibility of producing flax tow yarn in two plyings. The rational technological parameters of flax tow spinning are defined by experimental mode.


2009 ◽  
Vol 1173 ◽  
Author(s):  
Evguenia Korobko ◽  
Tatyana Kouznetsova ◽  
Zoya Novikova ◽  
Natalia Bedik ◽  
Mikalai Zhurauski

AbstractHybrid organic-inorganic nanocomposite silica with surfactant � cetylpyridinium chloride with the polyphase structure, having a high electrorheological activity, is synthesized using sol-gel method. Physical-mechanical characteristics of dispersions based on mineral oil and synthesized powder with the concentration of 20 and 30 % by weight are investigated. The results of the shear stress measurements versus the strength of the dc and ac (frequency 50 Hz) electric fields (0 � 3.5 kV/mm) at Couette shear (shear rate 8 � 390 s) and yield stress in the range of temperatures 20 � 97 �C are presented. The comparative analysis of the results obtained with the results for the powder of the hybrid organic-inorganic nanocomposite silica/ polyethylene glycol is carried out.


2017 ◽  
Vol 68 (9) ◽  
pp. 2114-2116
Author(s):  
Corneliu Rontescu ◽  
Dumitru Titi Cicic ◽  
Catalin Gheorghe Amza ◽  
Oana Roxana Chivu ◽  
Gabriel Iacobescu

This paper presents a comparative study on the microstructural and mechanical characteristics of a biocompatible titanium and Co-Cr alloys used in prosthetics implants and medical instruments fabrications. The samples used for the analysis were obtained by applying the additive manufacturing process called Direct Melting Laser Sintering. Following the analysis of the results obtained for the two sets of samples it was observed that the thermophysical properties of the materials influence the quality of the obtained surfaces.


2014 ◽  
Vol 716-717 ◽  
pp. 682-685
Author(s):  
Xiao Yang Lu ◽  
Jing Xin ◽  
Ran An ◽  
Jin Ming Liu ◽  
Lei Wang ◽  
...  

By using the parametric design language APDL, developed ellipsoidal reticulated shell parametric macros, only enter the long axis S1, short axis S2, high vector F, scale factor t, ring symmetric region shares Kn, radial nodes turns Nx, to generate the desired lattice shell; comparative analysis of 30 kinds of scheme through two types of single-shell ellipsoid reticulated shell with different rise span ratio force, studied its stress characteristics, providing a theoretical reference for designing and engineering ellipsoid reticulated shell application.


Author(s):  
А.В. Аносов ◽  
A.V. Anosov

The presented system of medical appointment allows building of solid-state models of bone and soft tissues on the basis of computer tomogram data. These models are able to take into account anisotropy of biomechanical properties, to carry out multiple geometrical operations on association of models of bone tissues with various combinations of fixing systems and endoprostheses, to calculate their mechanical characteristics in various physical environments, to carry out the comparative analysis of results of the calculation. The system provides biomechanical justifications of effective methods of diagnostics and treatment of the human musculoskeletal device.


Author(s):  
V.P Shpachuk ◽  
M.A Zasiadko ◽  
T.O Suprun ◽  
V.V Dudko

Purpose. To formalize the dependence of the eigenfrequencies of translational and torsional vibrations of the structural elements of the vibrating machine articulated by the connection node on their design parameters and mechanical characteristics, as well as regulatory requirements for vibration activity, strength and accuracy. To develop a method for selecting the design parameters of the elastic band element of the package, taking into account the specified values of the amplitude and frequency characteristics of the dynamic loads reproduced by the supporting structure and the coefficient of variation of the natural frequencies of translational and torsional vibrations. Methodology. The research is based on fundamental approaches of applied mechanics, machine dynamics and vibration reliability. Findings. The dependences of the eigenfrequencies of torsional vibrations of the body parts of the vibrating machine connected by the connection node on their design parameters and mechanical characteristics are obtained and analyzed. Vibrations around an axis orthogonal to the working direction of the node are considered. A comparative analysis of the natural frequencies of the node in the direction of the transmitted vibration and its circular vibrations from the design parameters and mechanical characteristics of the elastic band elements, their number in the package and the number of packages in the connection node is performed. Originality. It is in the fact that for the first time the dependences describing the natural frequencies of translational and torsional vibrations of the body parts of a vibrating machine, articulated by a package of elastic band elements, are obtained. Also the paradigm for the choice of design parameters and mechanical characteristics of the elastic band element of the package, which is based on the results of a comparative analysis of the eigenfrequencies of vibrations in the working and connected directions through their coefficient of variation is innovative. This made it possible to include the criterion of vibration reproduction accuracy, which is formalized through the coefficient of frequency variation, together with the criteria of strength and rigidity, in the methodology of synthesis of the structural scheme of the vibrating machine. Practical value. The proposed methodological solutions for the calculation and selection of design parameters and mechanical characteristics of tape elastic elements ensure the achievement of vibration activity indicators of articulated parts, as well as the ratio of natural vibration frequencies in the working and related directions at the level of the requirements of normative documents when upgrading existing machines and creating new modern equipment. As a result, the reliability, durability, safety, productivity and load-bearing capacity of machines, equipment and mechanisms of mining engineering, aviation, transport and space technology are increased.


2021 ◽  
Vol 18 (2) ◽  
pp. 180-190
Author(s):  
A. P. Scherbakov ◽  
A. E. Pushkarev ◽  
T. V. Vinogradova

Introduction. The ways of increasing the reliability of road construction machinery operation are considered. As a result, an option is proposed to replace the used 09Г2С steel with 30MnB5 boron steel. Using the example of a motor grader blade, the force effects on this working body of the road construction machinery are analyzed. In order to increase the level of physical and mechanical characteristics of 09Г2С and 30MnB5 steels, they are additionally exposed to thermo cyclic treatment. The experimental studies about the influence of this type thermal action on the structure and properties of steels are described. The comparative analysis of the obtained characteristics allows making a conclusion about the possibility of the considered replacement.Materials and methods. Through the metallographic analysis the influence of the number of thermal effects cycles on the grain size of steel is investigated. Alongside a set of physical and mechanical characteristics of these steels was determined at various stages of the thermo cyclic treatment.Results. It was determined that an increasing the level of physical and mechanical characteristics of the studied steels is possible through the use of thermo cyclic treatment. This is achieved by producing a fine-grained metal structure with a higher strength. The dependence of the tensile strength and yield strength of the steels under investigation on the number of cycles of thermal action is considered. Some correlation relationships were selected to describe these dependencies. The relationship between the yield stress and ultimate strength of 09Г2С and 30MnB5 steels and the grain size is considered. All investigated dependencies are presented in graphical form.Discussion and conclusion. Based on a comparative analysis of the complex of physical and mechanical characteristics, the conclusion about the possibility of replacing 09Г2С steel with 30MnB5 steel was made.


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