Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników

Znaleziono wyników: 13

Liczba wyników na stronie
first rewind previous Strona / 1 next fast forward last
Wyniki wyszukiwania
Wyszukiwano:
w słowach kluczowych:  flash method
help Sortuj według:

help Ogranicz wyniki do:
first rewind previous Strona / 1 next fast forward last
EN
The main purpose of the work is to present the possibility of using the finite element method implemented in the COMSOL 3.5a program in the heat transfer symmetry 2D module to determine thermal diffusivity by the classic and modified pulse methods. The method of determining the thermal diffusivity by means of measuring and recording the course of the temperature difference between the extreme surfaces of the tested sample and changes in the temperature increase on the back surface after a laser shot at its front surface, assuming that the sample is adiabatic for a representative experimental course at a given temperature, is discussed. This paper presents the basic metrological conditions for the implementation of the modified pulse method for testing the temperature characteristics of thermal diffusivity on the example of nickel. The heat pulse generated by the laser method at the extreme surface of the sample for a thermostatic temperature of 341.8 °C was simulated. Using the inverse problem in both the classic and modified methods, the thermal diffusivity of the material in question was determined and these results were compared with the experimentally obtained values. The values of thermal diffusivity differ from those obtained experimentally by 3.3% for the classic method and approximately 2.5% for the modified method. A preliminary analysis of the influence of the number of nodal points on the numerical results obtained was also carried out and the results for the number of nodes between 64 and 17,000 change by only 1.1%. The paper presents a combination of experimental and numerical studies which is useful in science and simplifies the process of time-consuming experimental studies.
2
Content available remote Induction heating laboratory stand for estimating thermal properties of a charge
EN
Study is presenting the description of the laboratory stand for estimating thermal properties of inductively heated charge and aspects associated with implementing arrangements and control procedures, measuring and data handlings. Results of conducted examinations and practical conclusions resulting from analysis of problems that come across in the performance of a task were made.
PL
Opracowanie przedstawia opis stanowiska laboratoryjnego do szacowania cieplnych parametrów materiałowych indukcyjnie nagrzewanego wsadu oraz aspekty związane z wdrożeniem układów i procedur sterujących, pomiarowych oraz obróbki danych. Przedstawiono rezultaty przeprowadzonych badań oraz wnioski praktyczne wynikające z analizy trudności napotkanych w realizacji zadania.
PL
Opracowanie przedstawia opis stanowiska laboratoryjnego do szacowania cieplnych parametrów materiałowych indukcyjnie nagrzewanego wsadu oraz aspekty związane z wdrożeniem układów i procedur sterujących, pomiarowych oraz obróbki danych. Przedstawiono rezultaty przeprowadzonych badań oraz wnioski praktyczne wynikające z analizy trudności napotkanych w realizacji zadania.
EN
The study was devoted to analysis of possibility of using the impulse Flash method in real implementation for determination thermal diffusivity and time derivative of temperature method for determination heat capacity of induction heated charge. Various experiences from implementation process was presented.
EN
The paper presents the application of similarity theory to investigations of transient heat transfer in materials with complex structure. It describes the theoretical-experimental method for identification and design of the structure of two-component composite walls based on the research of the thermal diffusivity for the composite and its matrix separately. The thermal diffusivity was measured by means of the modified flash method. The method was tested on two samples of double-layer ‘epoxy resin – polyamide’. All the investigated samples had the same diameter of 12 mm and thickness ranging from 1.39–2.60 mm and their equivalent value of thermal diffusivity ranging from (1.21–1.98)×10-7 m2/s. Testing the method and research on carbon/epoxy composites was carried out at temperatures close to room temperature.
5
Content available remote Pulse method for estimation thermal diffusivity of induction heated charge
EN
The study was devoted to analysis of possibility of using the impulse Flash method for determination thermal diffusivity of induction heated charge. Cylindrical shape samples were analysed in two setup’s: “natural” and “side”. A process of determination the relation taking the radial heat flow into account which allows to determine thermal diffusivity was described.
PL
Opracowanie poświęcono analizie możliwości wykorzystania metody impulsowej Flash do wyznaczenia dyfuzyjności cieplnej materiału w układzie nagrzewania indukcyjnego. Analizie poddano próbki walcowe wsadu nagrzewane w układzie: „od czoła” i „od boku”. Przedstawiono zależność umożliwiającą wyznaczenie dyfuzyjności cieplnej w metodzie Flash przy radialnym przepływie ciepła wewnątrz nagrzewanej próbki walcowej.
PL
W artykule przedstawiono wyniki badań dyfuzyjności cieplnej stopu aluminium typu 2017, oznaczanego również jako PA6. Badania przeprowadzono przy zastosowaniu zmodyfikowanej metody impulsowej, w zakresie temperatury od 20°C do ok. 450°C. W przypadku stopu 2017 (PA6) stwierdzono występowanie anomalii w przebiegu charakterystyki a(T) w zakresie T>300°C, która jest najprawdopodobniej spowodowana zmianą struktury krystalicznej materiału. Na podstawie uzyskanych danych pomiarowych opracowano temperaturową charakterystykę dyfuzyjności cieplnej badanego stopu.
EN
The article presents the results of the thermal diffusivity investigations of aluminum alloy type 2017, also called PA6. The tests were performed using a modified flash method in temperature range from 20°C to about 450°C. In the case of the 2017 (PA6) alloy, an anomaly were found in the course of a(T) in the range T> 300°C, which is most likely caused by the change of the crystal structure of the material. Based on the measurement data the temperature characteristic of the thermal diffusivity of the test alloy was developed.
EN
Transient heat transfer is studied and compared in two plane-parallel composite walls and one EPIDIAN 53 epoxy resin wall acting as a matrix for both composites. The first of the two walls is made of carbon-epoxy composite; the other wall is made of glass-epoxy composite, both with comparable thickness of about 1 mm and the same number of carbon and glass fabric layers (four layers). The study was conducted for temperatures in the range of 20-120 °C. The results of the study of thermal diffusivity which characterizes the material as a heat conductor under transient conditions have a preliminary character. Three series of tests were conducted for each wall. Each series took about 24 h. The results from the three series were approximated using linear functions and were found between (0.7-1.35) x 10-7m2/s. In the whole range of temperature variation, the thermal diffusivity values for carbon-epoxy composite are from 1.2 to 1.5 times higher than those for the other two materials with nearly the same thermal diffusivity characteristics.
PL
Opracowanie poświęcono analizie możliwości wykorzystania metody impulsowej Flash do wyznaczenia dyfuzyjności cieplnej materiału w układzie nagrzewania indukcyjnego. Analizie poddano próbki walcowe wsadu nagrzewane w układzie: „od czoła" i „od boku". Przedstawiono zależność umożliwiającą wyznaczenie dyfuzyjności cieplnej w metodzie Flash przy radialnym przepływie ciepła wewnątrz nagrzewanej próbki walcowej.
EN
The study was devoted to analysis of possibility of using the impulse Flash method for determination thermal diffusivity of induction heated charge. Two set-up's was analysed: "natural" and "side". A process of determination the relation taking the radial heat flow into account was described.
PL
W artykule przedstawiono wpływ grubości próbki na mierzoną wartość dyfuzyjności cieplnej modyfikowanej żywicy epoksydowej. Badania dyfuzyjności cieplnej przeprowadzono metodą impulsu cieplnego. Wyniki badań eksperymentalnych wykazały, że grubość próbki badanej ma istotny wpływ na uzyskany wynik dyfuzyjności cieplnej.
EN
The article presents the effect of specimen thickness on measured value of thermal diffusivity of modified epoxy resin. The thermal diffusivity measurements were carried out using the heat pulse method. Experimental results showed that the specimen thickness considerably affects the obtained value of thermal diffusivity.
10
EN
A pulse method for simultaneous determination of the specific heat and the thermal diffusivity of plastics by using double-layer sample "metal-plastics" has been presented. Investigations have been carried out using a sample made of polytetrafluoroethylene (PTFE) of diameter 12 mm with glued molybdenum foil of thickness 0.1 mm. The temperature range of investigations is 290 - 400 K.
PL
W artykule przedstawiono krótki przegląd obecnie stosowanych metod określania dyfuzyjności cieplnej oraz opisano, stosowaną przez Autorów, klasyczną i zmodyfikowaną metodę impulsową wyznaczania tej wielkości wraz ze stanowiskiem badawczym i stosownymi procedurami (część 1). W części 2 artykułu będą przedstawione wyniki badań własnych dyfuzyjności cieplnej na przykładzie wzorcowej próbki z elektrolitycznego żelaza (NBS - Research material 8421 Electrolytic Iron), a także metoda szacowania błędu pomiaru w przypadku metody zmodyfikowanej.
EN
A short review of contemporary methods, concerning determination of thermal diffusivity, is presented. The classic and modified flash methods, as applied by the authors, are described, including an experimental stand and adequate procedures (Part 1). Part 2 will contain the results of the author's investigations of the thermal diffusivity, taking as an example a standard sample of electrolytic iron (NBS - Research material 8421 Electrolytic Iron). An evaluation method of measurement error for the modified method will also be included.
EN
A method of the thermal diffusivity measurement of the semitransparent materials for the laser pulse radiation is described. The paper also presents a laser flash laboratory apparatus used for the thermal diffusivity investigations. A pulse neodymium laser is utilised as a heat source. The method is based on the measurements of the temperature difference between two surfaces of a disc-like sample during the process of achieving the temperature equilibrium. The materials under testing were methyl polymethacrylate (PMM) and polytetrafluoroethylene (PTFE). Investigations were carried out within a temperature range of 300-360 K.
13
Content available remote A modified flash method for determination of thermal diffusivity in solids
EN
A modified version of the flash method of the thermal diffusivity measurement of solids is described. The method is based on the analysis of the temperature difference between two opposite surfaces of a disc-like sample, where one surface had surface heat generation. The paper also presents a laser flash laboratory apparatus, a procedure for the samples preparation under investigation, as well as the required conditions for the experiment. The method and the apparatus were tested by measurement the thermal diffusivity of nickel 0.999 for several temperatures within the range from 300 to 1000 K. For illustration, the investigation of thermal diffusivity characteristic, within the range from 300 to 1000 K, of the N18K9M5TPr alloy steel, is also presented. The error of the thermal diffusivity determination was estimated to be less than 6%.
first rewind previous Strona / 1 next fast forward last
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.