logo
Item card
logo

Fundamentals of rheology

Some basic information about the module

Cycle of education: 2022/2023

The name of the faculty organization unit: The faculty Chemistry

The name of the field of study: Chemical Technology

The area of study: technical sciences

The profile of studing:

The level of study: first degree study

Type of study: full time

discipline specialities : Chemical analysis in industry and environment, Chemical and bioprocess engineering, Organic and polymer technology

The degree after graduating from university: Bachelor of Science (BSc)

The name of the module department : Computer Laboratory

The code of the module: 194

The module status: mandatory for the speciality Organic and polymer technology

The position in the studies teaching programme: sem: 5 / W15 L30 / 3 ECTS / Z

The language of the lecture: Polish

The name of the coordinator: Prof. Mariusz Oleksy, DSc, PhD, Eng.

office hours of the coordinator: wtorek godz. 8:30-10:00, czwartek godz. 10:00-11:30

semester 5: Katarzyna Bulanda, PhD, Eng. , office hours Monday 13:30-15:00, Wednesday 12:00-13:30

The aim of studying and bibliography

The main aim of study: Acquiring knowledge on the fundamentals of polymer rheology.

The general information about the module: The modulus provides information on methods determination of the polymer and practical properties of polymer materials.

Teaching materials: Instrukcje do ćwiczeń laboratoryjnych.

others: Normy przedmiotowe.

Bibliography required to complete the module
Bibliography used during lectures
1 Wilkinson W.J., 1973 Ciecze nienewtonowskie WNT Warszawa. 1973
2 Ferguson J., Kembłowski Z. Reologia stosowana płynów Wydawnictwo Marcus S.C. Łódź . 1995
3 Wiśniewski R. Elementy reologii Tomchem Zabrze . 1999
Bibliography used during classes/laboratories/others
1 Wilkinson W.J. Ciecze nienewtonowskie WNT Warszawa. 1973
2 Schramm G. Reologia, podstawy i zastosowanie HAAKE, Ośrodek wydawnictw Naukowych, Poznań . 1998
3 Heneczkowski M., Oleksy M., Wojturska J. Technologia przetwórstwa tworzyw sztucznych z przykładami ćwiczeń laboratoryjnych Ofic. Wyd. P. Rz., Rzeszów. 1999

Basic requirements in category knowledge/skills/social competences

Formal requirements: Completed modulus on chemistry and phisycalchemistry of polymers.

Basic requirements in category knowledge: Has knowledge on chemistry and phisocalchemistry of polymers.

Basic requirements in category skills: Has a laboratory skill in instrumental analysis and skill at performing calculations and interpretation of results.

Basic requirements in category social competences: Knows safety and fire protection regulation in chemical laboratory. Capable of working in team and individually.

Module outcomes

MEK The student who completed the module Types of classes / teaching methods leading to achieving a given outcome of teaching Methods of verifying every mentioned outcome of teaching Relationships with KEK Relationships with PRK
01 Ability to use computer programs to determine the flow curves of Nonnewtonian fluids. laboratory lesson written test K_U08++
P6S_UW
02 Student can solve problems regarding the interpretation of the results of Nonnewtonian fluid flow. lecture, laboratory lesson written test K_U06++
P6S_UU
03 Has knowledge on safety and fire protection regulation. laboratory lesson observation K_U14++
P6S_UW
04 Student can solve basic industrial problems and communicate with others in problems associated with rheological phenomena. lecture, laboratory lesson written test K_U02+
P6S_UK
05 Has knowledge on the physico-chemical basis of Nonnewtonian fluid flow processes. lecture written test

Attention: Depending on the epidemic situation, verification of the achieved learning outcomes specified in the study program, in particular credits and examinations at the end of specific classes, can be implemented remotely (real-time meetings).

The syllabus of the module

Sem. TK The content realized in MEK
5 TK01 Fundamental definitions in rheology: stress, deformation, kinematics of deformation. W01-W02 MEK02 MEK05
5 TK02 Rheological equation of state, rigid substance, liquid substance. W03 MEK02 MEK05
5 TK03 Definition of viscoelasticity of polymers, mechanical models. W04 MEK02 MEK05
5 TK04 Viscosity of polymer during flow. Rheological properties of alloys and solutions of polymers. W04-W05 MEK02 MEK05
5 TK05 Practical application of rheology: isothermal flow and nonisothermal flow through channels with different sections; polymer flow in single-screw extruder and double-screw extruder (isothermal, adiabatic and polytropic regime). W06-W07 MEK02 MEK05
5 TK06 Determination of flow curves of polymer melts by using plastometer. Analysis of the flowing of thixotropic liquids. Determination of glass transition temperatures of polymers by using Höppler consistometer. Determination of the heat resistance of selected thermoplastics. Determination of the hardness of plastics. Determination of the processing properties of rubber compounds by using wulcameter. L01-L06 MEK01 MEK03 MEK04

The student's effort

The type of classes The work before classes The participation in classes The work after classes
Lecture (sem. 5) The preparation for a test: 5.00 hours/sem.
contact hours: 15.00 hours/sem.
complementing/reading through notes: 2.00 hours/sem.
Studying the recommended bibliography: 2.00 hours/sem.
Laboratory (sem. 5) The preparation for a Laboratory: 6.00 hours/sem.
The preparation for a test: 6.00 hours/sem.
contact hours: 30.00 hours/sem.
Finishing/Making the report: 12.00 hours/sem.
Advice (sem. 5) The preparation for Advice: 2.00 hours/sem.
The participation in Advice: 3.00 hours/sem.
Credit (sem. 5) The preparation for a Credit: 5.00 hours/sem.
The written credit: 1.00 hours/sem.
The oral credit: 1.00 hours/sem.

The way of giving the component module grades and the final grade

The type of classes The way of giving the final grade
Lecture Rating from written colloquium of lectures (50% of the maximum number of points required to pass) - OW. The rating depends on the number of points scored, which determine the ratings of 3.0 3.5 4.0 4.5 and 5.0.
Laboratory To pass the course, the student must successfully complete the laboratory experiments with positive grade. The mark obtained during each laboratory exercise is the marks for a written test, correct performance of an experiment and correct preparation of a report. The total mark in the laboratory work (OL) is calculated as arithmetic mean of the marks obtained for every exercise included in the schedule. A final mark for the laboratory is rounded according to WKZJK.
The final grade The final mark in the module (K) is calculated according to the formula: K= w 0,5 OW + w 0,5 OL; where: OW, OL denote positive marks for lecture test and laboratory practice, respectively, w- coefficient for delay, w =1.0 when a passing mark is obtained in due course, w=0.9 for a first resit, w=0.8 for a second resit. The final mark is rounded according to WKZJK.

Sample problems

Required during the exam/when receiving the credit
(-)

Realized during classes/laboratories/projects
(-)

Others
(-)

Can a student use any teaching aids during the exam/when receiving the credit : no

The contents of the module are associated with the research profile: yes

1 K. Bulanda; D. Grzęda; M. Oleksy; J. Ryszkowska; G. Węgrzyk A new method for determining the parameters of mechanical mixing using the example of polyurethane rigid foam synthesis 2024
2 K. Bulanda; K. Filik; G. Karnas; G. Masłowski; M. Oleksy; R. Oliwa Samogasnąca kompozycja żywicy epoksydowej o zwiększonym przewodnictwie elektrycznym oraz sposób otrzymywania samogasnącej kompozycji żywicy epoksydowej o zwiększonym przewodnictwie elektrycznym 2024
3 K. Bulanda; M. Oleksy; R. Oliwa The Influence of Selected Fillers on the Functional Properties of Polycarbonate Dedicated to 3D Printing Applications 2024
4 K. Czech; M. Oleksy Innovative method for studying impact energy absorption of hybrid polymer composites used in the defence industry 2024
5 O. Markowska; T. Markowski; M. Oleksy Wiórkownik krążkowy oraz sposób obróbki, zwłaszcza kół zębatych, z wykorzystaniem tego wiórkownika krążkowego 2024
6 A. Bazan; G. Budzik; J. Cebulski; M. Dębski; T. Dziubek; J. Józwik; A. Kawalec; M. Kiełbicki; Ł. Kochmański; I. Kuric; M. Oleksy; A. Paszkiewicz; P. Poliński; P. Turek Geometrical Accuracy of Threaded Elements Manufacture by 3D Printing Process 2023
7 A. Leśniak; M. Mrówczyńska; M. Oleksy; G. Oleniacz; M. Rymar; I. Skrzypczak A practical hybrid approach to the problem of surveying a working historical bell considering innovative measurement methods 2023
8 D. Głowacz-Czerwonka; M. Kuźnia; M. Oleksy; K. Pielichowska; T. Telejko; P. Zakrzewska The influence of biowaste-based fillers on the mechanical and fire properties of rigid polyurethane foams 2023
9 K. Balawender; K. Bulanda; K. Kroczek; B. Lewandowski; M. Oleksy; S. Orkisz; M. Potoczek; J. Szczygielski; Ł. Uram Polylactide-based composites with hydroxyapatite used in rapid prototyping technology with potential for medical applications 2023
10 K. Balawender; M. Oleksy; A. Pliszka The Intrapelvic Pressure during Retrograde Intrarenal Surgery in the Setting of Ureteral Access Sheath Size: Experimental Study on 3D Printed Model 2023
11 K. Bulanda; D. Krajewski; K. Kroczek; M. Oleksy; R. Oliwa Hybrid polymer composites used in medicine 2023
12 K. Bulanda; D. Krajewski; K. Kroczek; M. Oleksy; R. Oliwa Polymer composites used in rapid prototyping technology 2023
13 K. Bulanda; D. Krajewski; M. Oleksy; R. Oliwa Epoxy composites with improved flame resistance and electrical conductivity 2023
14 K. Bulanda; K. Czech; D. Krajewski; K. Kroczek; M. Oleksy; R. Oliwa Nowoczesne materiały kompozytowe – cz. 1 2023
15 K. Bulanda; K. Filik; G. Karnas; G. Masłowski; M. Oleksy; R. Oliwa Stanowisko probierczo-pomiarowe do badań wysokonapięciowych impedancji, rezystywności i odporności materiałów kompozytowych oraz sposób badania wysokonapięciowych impedancji, rezystywności i odporności materiałów kompozytowych 2023
16 K. Bulanda; M. Oleksy; R. Oliwa Polymer Composites Based on Polycarbonate/Acrylonitrile-Butadiene-Styrene Used in Rapid Prototyping Technology 2023
17 K. Bulanda; T. Markowski; Ł. Molter; M. Oleksy; R. Oliwa Polymer composites used to manufacturing Naturacustic® acoustic screens 2023
18 G. Budzik; H. Majcherczyk; M. Oleksy; J. Pisula; T. Sanocki; B. Sobolewski; M. Zajdel Geometrical accuracy of injection-molded composite gears 2022
19 G. Budzik; J. Cebulski; M. Dębski; T. Dziubek; J. Jóźwik; A. Kawalec; M. Kiełbicki; Ł. Kochmański; I. Kuric; M. Oleksy; A. Paszkiewicz; P. Poliński; P. Turek Strength of threaded connections additively produced from polymeric materials 2022
20 G. Budzik; K. Bulanda; D. Filip; J. Jabłoński; A. Łazorko; M. Oleksy; A. Paszkiewicz; Ł. Przeszłowski; J. Sęp; S. Snela; P. Turek; S. Wolski Manufacturing Polymer Model of Anatomical Structures with Increased Accuracy Using CAx and AM Systems for Planning Orthopedic Procedures 2022
21 G. Budzik; L. Nędza; M. Oleksy; J. Oliwa; R. Oliwa Sposób modyfikacji bentonitu 2022
22 G. Budzik; M. Oleksy; R. Oliwa; A. Paszkiewicz; Ł. Przeszłowski; B. Sobolewski; M. Wieczorowski; J. Woźniak The Place of 3D Printing in the Manufacturing and Operational Process Based on the Industry 4.0 Structure 2022
23 K. Balawender; R. Brodowski; G. Budzik; J. Cebulski; D. Filip; K. Kroczek; B. Lewandowski; A. Mazur; D. Mazur; M. Oleksy; S. Orkisz; Ł. Przeszłowski; J. Szczygielski; P. Turek Characterisation of Selected Materials in Medical Applications 2022
24 K. Bulanda; K. Czech; D. Krajewski; G. Masłowski; D. Mazur; M. Oleksy; R. Oliwa Methods for Enhancing the Electrical Properties of Epoxy Matrix Composites 2022
25 K. Bulanda; K. Czech; D. Krajewski; M. Oleksy; R. Oliwa Modyfikacja osnowy i wzmocnienia przekładkowych kompozytów polimerowych stosowanych w przemyśle zbrojeniowym 2022
26 K. Bulanda; K. Filik; G. Karnas; J. Królczyk; G. Masłowski; M. Oleksy; R. Oliwa A new method to electrical parameters identification of carbon fiber reinforced composites using lightning disturbances corresponding to subsequent return strokes 2022
27 K. Bulanda; M. Oleksy; R. Oliwa Hybrid Polymer Composites Based on Polystyrene (PS) Used in the Melted and Extruded Manufacturing Technology 2022
28 K. Bulanda; M. Oleksy; R. Oliwa Polymer Composites Based on Glycol-Modified Poly(Ethylene Terephthalate) Applied to Additive Manufacturing Using Melted and Extruded Manufacturing Technology 2022
29 K. Czech; A. Domańska; M. Oleksy; R. Oliwa Hybrid polymer composites with enhanced energy absorption 2022
30 A. Kalina; A. Mazurkow; M. Oleksy; B. Wierzba; W. Witkowski Properties of Elasto-Hydrodynamic Oil Film in Meshing of Harmonic Drive Gears 2021
31 A. Kalina; A. Mazurkow; M. Oleksy; B. Wierzba; W. Witkowski The effect of oil feeding type and oil grade on the oil film bearing capacity 2021
32 G. Budzik; J. Mirowski; M. Oleksy; R. Oliwa; J. Ryszkowska; J. Tomaszewska Poly(vinyl chloride) Composites with Raspberry Pomace Filler 2021
33 G. Budzik; K. Bulanda; J. Fal; T. Jesionowski; M. Oleksy; R. Oliwa; Ł. Przeszłowski Polymer Composites Based on Polycarbonate (PC) Applied to Additive Manufacturing Using Melted and Extruded Manufacturing (MEM) Technology 2021
34 G. Budzik; K. Bulanda; K. Czech; D. Krajewski; A. Mazurkow; M. Oleksy; R. Oliwa Hybrid Polymer Composites Used in the Arms Industry: A Review 2021
35 G. Budzik; K. Bulanda; K. Czech; D. Krajewski; M. Oleksy; R. Oliwa; Ł. Przeszłowski Właściwości użytkowe kompozytów polimerowych stosowanych w technologii szybkiego prototypowania 2021
36 G. Budzik; K. Bulanda; M. Magniszewski; M. Oleksy; R. Oliwa; A. Paszkiewicz; Ł. Przeszłowski Torsional strength tests of spline connections made of polymer materials (Rapid communication) 2021
37 G. Budzik; M. Heneczkowski; T. Jesionowski; M. Oleksy; R. Oliwa; R. Pietryka; W. Pietryka; W. Pietryka Hybrydowe kompozycje poliestrowych farb proszkowych 2021
38 G. Budzik; O. Markowska; M. Oleksy; R. Oliwa; P. Ostyńska; T. Żółkoś Sposób otrzymywania kompozycji na osnowie polipropylenu z dodatkiem recyklatu MDF 2021
39 J. Mirowski; K. Mizera; M. Oleksy; R. Oliwa; E. Rój; J. Ryszkowska; J. Tomaszewska Composites of Poly(vinyl chloride) with Residual Hops after Supercritical Extraction in CO2 2021
40 K. Bulanda; K. Czech; D. Krajewski; M. Oleksy; R. Oliwa Wpływ modyfikacji materiału osnowy stosowanej do wyrobu kompozytów polimerowych na jej przewodnictwo elektryczne oraz wybrane właściwości mechaniczne 2021
41 K. Bulanda; K. Filik; G. Karnas; G. Masłowski; M. Oleksy; R. Oliwa Testing of Conductive Carbon Fiber Reinforced Polymer Composites Using Current Impulses Simulating Lightning Effects 2021
42 M. Auguścik-Królikowska; J. Bartoń; G. Budzik; M. Gzik ; M. Oleksy; R. Oliwa; J. Ryszkowska Effects of Various Types of Expandable Graphite and Blackcurrant Pomace on the Properties of Viscoelastic Polyurethane Foams 2021
43 S. Boncel; K. Bulanda; J. Fal; M. Liu; M. Oleksy; J. Shi; J. Sobczak; G. Żyła High AC and DC Electroconductivity of Scalable and Economic Graphite–Diamond Polylactide Nanocomposites 2021
44 A. Ambroziak; M. Auguścik-Królikowska; M. Oleksy; R. Oliwa; J. Ryszkowska; L. Szczepkowski The structure and properties of viscoelastic polyurethane foams with fillers from coffee grounds 2020
45 G. Budzik; H. Majcherczyk; M. Oleksy; R. Oliwa; M. Sobczyk; M. Strącel Polymers in gearbox production 2020
46 G. Budzik; J. Jóźwik; M. Oleksy; A. Paszkiewicz; P. Turek; J. Woźniak; D. Żelechowski Analysis of Wear of the Polymer Mold in the Production of Wax Casting Models of Aircraft Engine Blades 2020
47 G. Budzik; J. Jóźwik; Ł. Kochmański; M. Oleksy; A. Paszkiewicz; Ł. Przeszłowski; J. Sęp; P. Turek; D. Żelechowski An Analysis of the Casting Polymer Mold Wear Manufactured Using PolyJet Method Based on the Measurement of the Surface Topography 2020
48 G. Budzik; K. Bulanda; A. Mazurkow; M. Oleksy; R. Oliwa; Ł. Przeszłowski Biodegradable polymer composites used in rapid prototyping technology by Melt Extrusion Polymers (MEP) 2020
49 G. Budzik; K. Bulanda; J. Fal; K. Grąz; R. Kuzioła; M. Oleksy; J. Sobczak; J. Traciak; G. Żyła Electrical and Optical Properties of Silicon Oxide Lignin Polylactide (SiO2-L-PLA) 2020
50 G. Budzik; K. Bulanda; M. Gontarz; M. Oleksy; R. Oliwa Biodegradable polymer composites based on polylactide used in selected 3D technologies 2020
51 G. Budzik; K. Bulanda; M. Oleksy; P. Turek Polymer materials used in medicine processed by additive techniques 2020
52 G. Budzik; K. Bulanda; M. Oleksy; R. Oliwa; I. Skrzypczak; R. Szałajko Phenol-formaldehyde resin composites filled with modified phlogopite reinforced with hybrid glass and basalt fiber meshes used as grinding wheels 2020
53 G. Budzik; K. Bulanda; S. Krauze; M. Oleksy; R. Oliwa Analysis of mechanical properties and distribution of deformation during the shear of polymer-fiber composites containing flame retardants 2020
54 G. Budzik; K. Bulanda; S. Krauze; M. Oleksy; R. Oliwa; P. Ostyńska; M. Płocińska Fire resistance and mechanical properties of powder-epoxy composites reinforced with recycled glass fiber laminate 2020
55 G. Budzik; K. Bulanda; T. Markowski; M. Oleksy; R. Oliwa Polymer Composites Used in Rapid Prototyping Technology 2020
56 G. Budzik; T. Dziubek; T. Markowski; M. Oleksy Place of Designing and Machine Construction Basics in Industry 4.0 Structure 2020
57 K. Bulanda; M. Cieplak; M. Oleksy; P. Połowniak; M. Sobolak Application of polymeric materials for obtaining gears with involute and sinusoidal profile 2020
58 M. Bolanowski; G. Budzik; M. Oleksy; A. Paszkiewicz; T. Pisz; Ł. Przeszłowski; P. Sowa Remote Design and Manufacture through the Example of a Ventilator 2020
59 M. Bolanowski; G. Budzik; M. Oleksy; A. Paszkiewicz; Ł. Przeszłowski Process of Creating an Integrated Design and Manufacturing Environment as Part of the Structure of Industry 4.0 2020
60 A. Białek; G. Budzik; M. Oleksy; B. Sarna Kompozycja do otrzymywania biodegradowalnej taśmy spieniającej 2019
61 G. Budzik; J. Fal; M. Oleksy; M. Wanic; G. Żyła Electrical Conductivity and Dielectric Properties of Ethylene Glycol-Based Nanofluids Containing Silicon Oxide–Lignin Hybrid Particles 2019
62 G. Budzik; K. Bulanda; M. Nędza; M. Oleksy; J. Oliwa; R. Oliwa The use of a mixer with built-in Parshall’s venturi for modification of bentonite designed for the filling of polymer resins 2019
63 G. Budzik; K. Bulanda; M. Oleksy; J. Oliwa; R. Oliwa Effect of modified bentonites on the crosslinking process of epoxy resin with alifphatic amine as curing agent 2019
64 G. Budzik; L. Nędza; M. Oleksy; J. Oliwa; R. Oliwa Sposób modyfikacji bentonitu 2019
65 G. Budzik; M. Heneczkowski; M. Oleksy; A. Szeliga; S. Szeliga Wielowarstwowa folia typu stretch 2019
66 H. Galina; M. Heneczkowski; M. Oleksy; J. Oliwa; R. Oliwa; P. Szałański A method of modification of bentonite and a method of the application 2019
67 J. Czech-Polak; M. Heneczkowski; M. Oleksy; R. Oliwa Elastyczna pianka poliuretanowa o ograniczonej palności i sposób jej wytwarzania 2019
68 J. Czech-Polak; M. Kowalski; S. Krauze; M. Oleksy; R. Oliwa; M. Płocińska Powder-epoxy resin/glass fabric composites with reduced flammability 2019
69 J. Fal; M. Malicka; M. Oleksy; M. Wanic; G. Żyła Experimental Investigation of Electrical Conductivity of Ethylene Glycol Containing Indium Oxide Nanoparticles 2019
70 M. Bolanowski; G. Budzik; D. Mazur; M. Oleksy; A. Paszkiewicz Analysis of possible SDN use in the rapid prototyping process as part of the Industry 4.0 2019
71 M. Bolanowski; G. Budzik; M. Oleksy; A. Paszkiewicz Przemysł 4.0 cz. II. Uwarunkowania w obszarze technologii wytwarzania i architektury systemu informatycznego w przetwórstwie tworzyw polimerowych 2019
72 M. Kowalski; S. Krauze; M. Oleksy; J. Oliwa; R. Oliwa; A. Węgier Fire resistant glass fabric-epoxy composites with reduced smoke emission 2019
73 M. Oleksy Materiały polimerowe stosowane na elementy maszyn 2019
74 S. Krzemińska; L. Lipińska; M. Oleksy; W. Rzymski; A. Smejda-Krzewicka; M. Woluntarski Kompozycja elastomerowa z karboksylowanego kauczuku butadienowo-akrylonitrylowego 2019