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Dive into the research topics where Maris Rundans is active.

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Featured researches published by Maris Rundans.


Refractories and Industrial Ceramics | 2016

Ceramic of the Mullite–ZrO2–SiAlON System During Spark Plasma Sintering

Gaida Maruta Sedmale; Maris Rundans; Ingunda Šperberga; J. Setina; Andris Cimmers

Results are provided for a study of ceramic of the mullite–ZrO2–SiAlON system formed from oxide mixtures with addition of SiAlON nanopowder during spark plasma sintering (SPS) compared with properties of similar ceramic prepared by traditional sintering. It is shown that ceramic prepared by the SPS-process (compared with traditional sintering) has high indices for density (3.10 – 3.32 g/cm3), ultimate strength in compression (295 – 305 MPa), and also a high elasticity modulus (170 – 180 MPa) after ten thermal shock cycles. This is due to the packing density of mullite formations within sintered specimen microstructure, including ZrO2 inclusions of cubic modification.


Materials Science and Applied Chemistry | 2015

Porous Cordierite Ceramics from Natural Clays / Poraina kordierīta keramika no dabiskiem māliem

Maris Rundans; Ingunda Šperberga

Abstract In this report the obtaining and properties of hightemperature porous ceramic materials using local carbonate clays and quartz sand resources was studied. Materials with two different porosities were obtained by using different synthesis temperatures. The test results show that these materials contain cordierite as their main crystalline phase. The porosity directly influences the compressive strength and it is greatly reduced when overall porosity increases. The CTE of obtained materials is low − about 3-10−6 1/°C. Keramikas materiāliem, kas veidoti sistēmā MgO-Al2O3-SiO2 ir plašs pielietojums dažādās jomās. Tā tas, piemēram, ir termiski stabilajai fāzei kordierītam (2MgO·2Al2O3·5SiO2). Kordierīta keramika ar tās zemo termiskās izplešanās koeficientu - TIK (α ≈ 1,0·10−6 -4,0·10−6 1/°C) droši iztur straujas temperatūras izmaiņas, tāpēc tā var tikt izmantota kā ugunsizturīgs materiāls. Dabā kordierīts ir reti sastopams minerāls, tādēļ šis kristāliskais materiāls ir jāiegūst sintētiski. Visplašāk izmantotā metode ir augsttemperatūras cietfāžu sintēze, retāk - sola-gēla sintēze un rekristalizācija no stiklveida kausējuma. Sintēzei tiek izmantotas dažādas magnija, alumīnija un silīcija oksīdus saturošas izejvielas, no kurām visbiežāk lietotās ir talks un kaolīns. Lai samazinātu nepieciešamo sintēzes temperatūru, oksīda maisījumiem tiek pievienoti dažādi kušņi, piemēram, B2O3. Šajā pētījumā ieguva augsti porainus kordierīta keramiskos materiālus, izmantojot vietējās izejvielas - karbonātu mālu un kvarca smiltis. Ieguva dažādas porainības materiālus, mainot sintēzes temperatūru. Rentgenfāžu analīzes rezultāti liecināja, ka šie materiāli saturēja kordierītu kā galveno kristālisko fāzi. Porainībai palielinoties, tā tieši ietekmēja spiedes stiprību, to ievērojami samazinot. Iegūto materiālu termiskās izplešanās koeficienti bija zemi (ne augstāki par 3,0·10−6 1/°C visā pētītajā temperatūras diapazonā), neskatoties uz poru un stiklveida fāzes klātbūtni.


Journal of Physics: Conference Series | 2015

Mechanical properties of materials obtained via alkaline activation of illite-based clays of Latvia

Ingunda Šperberga; Maris Rundans; Andris Cimmers; Linda Krage; I Sidraba

Materials has been synthesized in the temperature range from 60-100 °C from two illite based clays of Latvia under activation of KOH and NaOH solutions (4-6 M). Compressive strength and apparent porosity were measured. The effect of concentration of KOH and NaOH solutions on the material mechanical properties was investigated by means of infrared spectroscopy (IR). Compressive strength data of the materials showed that via such activation could obtain building materials with good quality.


Key Engineering Materials | 2018

Influence of Technological Parameters on Thermal Properties of Cordierite Ceramics

Maris Rundans; Gaida Maruta Sedmale; Aija Krūmiņa; Aiga Ivdre

Porous cordierite ceramic samples have been prepared by using 33% of two carbonate-containing illite clays as substitutes for the necessary synthetic ingredients. The changes of thermal (CTE) and mechanical properties (compressive strength, modulus of elasticity), as well as phase content, apparent porosity and bulk density have been investigated in regards to gradual changes in maximum sintering temperature. It can be affirmed that these properties strongly depend on the thermal parameters of sintering as well as slightly upon differences in chemical composition of composition substitutes.


Materials Science and Applied Chemistry | 2015

Chemically and Thermally Activated Illite Clay from Latvia / Ķīmiski un termiski aktivēts Latvijas illīta māls.

Ingunda Šperberga; Polina Spela; Maris Rundans; Andris Cimmers

Abstract Materials were synthesized from illite based clay from Latvia by chemical and thermal activation using both NaOH and KOH solutions (4−6 M). Compressive strength and apparent porosity were measured. Effect of concentration of both solutions on the mechanical properties of the material was investigated by means of infrared spectroscopy (IR). Compressive strength data showed that alternative building materials could be obtained via alkaline activation. Rakstā aplūkota Latvijas kvartāra illītа māla kīmiska aktivēšana ar dažādas koncentrācijas KOH un NaOH šķīdumiem un tā piemērotība materiālu izstrādei dažādās temperatūrās (60−80 °C) un (600−800 °C). Illīts un plagioklāzs ir alumosilikāti, kas var reaģēt sārmainos apstākļos; to klātbūtnei mālos ir svarīga loma ģeopolimerizācijas procesā. Kā galvenais rādītājs ģeopolimerizācijas procesa sekmīgai norisei izvēlēta iegūto materiālu spiedes stiprība, kas pieauga līdz ar temperatūras paaugstināšanu (no 600 °C līdz 800 °C) karbonātus saturošos kvartāra mālos. Kā aktivētājs tiek izmantots KOH vai NaOH šķīdums. Šo mālu materiālu augstākā spiedes stiprība (23,8 MPa) tiek sasniegta apstrādājot 800 °C, ja kā ķīmiskais aktivators tiek izmantots 4 M KOH šķīdums. Ķīmiskās aktivācijas procesā ar NaOH šķīdumu tiek iegūti materiāli, kuru spiedes stiprības rādītāji ir zemāki par rādītājiem, kas iegūti izmantojot KOH šķīdumu. Tomēr salīdzinot ar ķīmiski neaktivēta māla spiedes stiprību (16 MPa), šajā gadījumā ir iegūts materiāls, kura spiedes stiprība ir 1,5 reizes lielāka (22 MPa) - kā šķīdums ķīmiskajai aktivācijai tiek izmantots 4 M NaOH un termiskās aktivācijas temperatūra ir 800 °C. Pētījumi parādīja, ka viena vai otra sārmu hidroksīda izmantošana ģeopolimerizācijas procesā deva dažādus rezultātus. Iegūto materiālu īpašības bija atkarīgas no vairākiem faktoriem, no kuriem svarīgākais bija termiskās apstrādes temperatūra. Sakarā ar katjonu katalītisko lomu, svarīgs ir katjons, kas ietilpst hidroksīda (NaOH vai KOH) sastāvā un ar kuru māls tiek ķīmiski aktivēts. Iegūto materiālu varētu izmantot kā tradicionālo būvmateriālu aizstājēju. Pētītais materiāls tiek iegūts zemākā temperatūrā, bet tas nemazina tā spiedes stiprību, salīdzinot ar tradicionāliem būvmateriāliem.


Key Engineering Materials | 2014

Influence of Bacteria Pseudomonas Fluorescens on the Properties of Latvian Clay

Maris Rundans; Ingunda Šperberga; Gaida Maruta Sedmale; Dagnija Vecstaudza; Olga Muter

Wide varieties of bacteria are able to produce extracellular polymeric substances (EPS) which are mostly composed of polysaccharides. It is suggested that EPS substances can alter certain clay soil properties due to their ability to adhere to the surface of mineral particles. Most common used microorganisms by the researchers for this purpose are of either genus Bacillus or genus Pseudomonas. In this study growth of bacteria P. fluorescens AM PS11 culture in locally obtained clay is studied for the purpose of establishing their influence on rheological properties of clay. An attempt to evaluate it has been made using FT-IR and XRD. Change in plasticity of clay using Atterberg limits method and coefficient of drying sensitivity has also been determined.


Advances in Science and Technology | 2014

Different Treatment Application of Illite Clay for Low Temperature Ceramics

Gaida Maruta Sedmale; Ingunda Šperberga; Maris Rundans; Liga Grase

Impact of chemical treatment by alkali of raw, dehydroxylated at 600 °C and intensively milled illite clay on structure, phase composition and some properties of sintered at lower temperatures ceramic materials were studied using DTA, X-ray diffraction (XRD), as well as scanning electron microscopy (SEM) and mercury intrusion porosimetry. DTA and XRD results show that alkaline activation of illite clay by sodium hydroxide leads to the slight structural changes of illite characterized by structural water losses showed from DTA and negligible decrease of illite and kaolinite, as well dolomite diffraction peaks on XRD. Additional treatment, intensive milling and in particular dehydroxylation, contributes to the considerable changes in intensities of all effects on DTA-curves, especially for dehydroxylation endo-peak. It is shown that chemical treatment promotes the formation of rather amorphous and homogenous structure of sintered at 600°C respective ceramic samples and leads to the growth of the compressive strength.


Advances in Science and Technology | 2014

Development of Cordierite Ceramics from Natural Raw Materials

Maris Rundans; Gaida Maruta Sedmale; Ingunda Šperberga; Ina Pundiene

Cordierite ceramics are known for their low CTE and high compressive strength values which affords them place in fields where demanding thermal and mechanical properties are required. Development of such ceramics is greatly dependent on materials used. If raw materials are used formation of additional phases and pore/glass formation is expected. The purpose of this research is to examine the process of cordierite development from mixed compositions formed from precursors of the natural raw materials as illite clay, dolomite and quartz sand and synthetic additives – MgO, γ-Al2O3 and their influence on thermal and mechanical properties. It is verified that the addition of 10 wt.% of illite clay and about 20-21 wt.% dolomite in staring compositions at the sintering temperature of 1200 °C results in the development of dense ceramic material with perfect-shaped crystalline cordierite phase and secondary anorthite phase. Sintered cordierite ceramics have been tested, among other properties, for their compressive strength, coefficient of thermal expansion and modulus of elasticity after 20 cycles of thermal shock treatment.


IOP Conference Series: Materials Science and Engineering | 2011

Effect of sintering process and additives on the properties of cordierite based ceramics

Maris Rundans; Ingunda Šperberga; Gaida Maruta Sedmale; Girts Stinkulis

It is possible to obtain cordierite ceramics with high temperature synthesis using both synthetic and raw natural materials. This paper discusses the possibilities to obtain cordierite ceramics, replacing part of required oxides with raw materials from various Latvian deposits of dolomite and clay. The obtained raw cordierite powders were ground in two modes (3 and 12 hours) and fired at 1200 °C. Ceramic samples were characterized by hydrostatic weighting method; crystalline phase composition was studied by XRD. Obtained samples were evaluated by their mechanical (compressive) strength and linear coefficient of thermal expansion (CTE). Thermal shock resistance was tested using water quenching method and afterwards evaluated by using ultrasonic method to test changes in Youngs modulus of elasticity. Results show that increase in grinding time causes samples to densify and promote formation of cordierite crystalline phase which corresponds to increase in total compressive strength and decrease of CTE values. CTE values of samples ground for 12 hours conform to that of obtained in other researches.


Applied Clay Science | 2017

Application of differently treated illite and illite clay samples for the development of ceramics

Gaida Maruta Sedmale; Martins Randers; Maris Rundans; Valdis Seglins

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Andris Cimmers

Riga Technical University

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J. Setina

Riga Technical University

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Linda Krage

Riga Technical University

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Aija Krūmiņa

Riga Technical University

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