Academic literature on the topic 'Denture base resin'

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Journal articles on the topic "Denture base resin"

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International, Journal of Medical Science and Innovative Research (IJMSIR). "A Blessing for Geriatric Beverage Enthusiast - Mechanical and Chemical Resin Cleaner." International Journal of Medical Science and Innovative Research (IJMSIR) 9, no. 4 (2024): 20–40. https://doi.org/10.5281/zenodo.15422236.

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<strong>Abstract</strong> <strong>Introduction</strong><strong>:</strong> This in vitro study evaluates and compares three denture cleansing methods in the removal of tea, coffee stains from conventional and high impact polymethylmethacrylate heat cured denture base acrylic resin.&nbsp;&nbsp;&nbsp; <strong>Materials &amp; Method</strong><strong>:</strong> Two types of denture base acrylic resins were polymerized into 360 specimens, 30x8x2mm dimension each. Samples were treated with 300ml artificial saliva and distilled water and air dried. Beverage decoction was prepared for sample staining us
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Arafa, Khalid A. O. "Effect of Different Denture Base Materials and Changed Mouth Temperature on Dimensional Stability of Complete Dentures." International Journal of Dentistry 2016 (2016): 1–5. http://dx.doi.org/10.1155/2016/7085063.

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Background. Type of materials used in fabrication of denture base has an effect on dimension during denture base material processing and other factors related to clinical use.Objective. The study aims were to assess the dimensional stability including thermal changes of three different denture base materials.Methods. Ninety patients were selected to construct complete dentures with different denture base materials. They were randomly divided into three groups: group 1, patients with cobalt chrome metallic base; group 2, patients with heat curing acrylic resin fabricated by injection moulding t
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Juhi, Singh, Rai Praveen, Gupta Ashutosh, Tripathi Arvind, and Sharma Ritika. "Shrinkage Assessment of Different Denture Bases: A Comparative Study." International Journal of Pharmaceutical and Clinical Research 16, no. 3 (2024): 347–50. https://doi.org/10.5281/zenodo.10957158.

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<strong>Introduction:</strong>&nbsp;Different polymers have been created and used therapeutically as denture foundation materials in dentistry.&nbsp; heat cure acrylic resin, was first released in 1937; this substance, when created via the compression molding method, continues to be the preferred denture foundation material. The volumetric shrinkage of resin is the main factor mentioned for the denture base&rsquo;s failure to adapt in the palatal and post-palatal seal region of maxillary dentures. Chemical activators, also known as cold-curing, self-curing, and autopolymerizing resins, were fi
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Rachel, Rajan, J. Vidhya, NS Azhagarasan, S. Jayakrishnakumar, and Ramakrishnan Hariharan. "Evaluation of the effect of titanium dioxide and gold nanoparticles surface treatment on the flexural strength of polymethyl methacrylate heat cure denture base resin." Journal of Clinical Advances in Dentistry 6, no. 1 (2022): 001–9. http://dx.doi.org/10.29328/journal.jcad.1001025.

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Aim: The purpose of this study was to evaluate the effect of Titanium dioxide and Gold nanoparticles surface treatment on the flexural strength of Polymethyl methacrylate (PMMA) Heat cure denture base resins. Materials and methods: A total of thirty PMMA Heat cure denture base resin test samples were fabricated of size 65 x 10 x 2.5 mm (rectangular shaped) according to ADA specification no.2. The samples were divided into three groups as Conventional PMMA heat cure denture base resin samples (GROUP I, n = 10 CONTROL), PMMA Heat cure denture base resin samples coated with Titanium dioxide nanop
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Lee, Jung-Hwan, Chung-Jae Lee, and Hae-Hyoung Lee. "Adaptation accuracy and mechanical properties of various denture base resins: a review." Journal of The Korean Dental Association 57, no. 12 (2019): 747–56. http://dx.doi.org/10.22974/jkda.2019.57.12.003.

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This paper reviews the adaptation accuracy and mechanical properties of currently used denture processing systems with base resin materials and introduces the latest research on the development of antimicrobial denture base resins. Poly(methyl methacrylate) has been successfully used as a dental denture base resin material by the compress-molding method and heat polymerization for a long time, but recently, new processing techniques, injection molding-methods or fluid-resin technique are also used for fabricating denture base. However, studies indicated that there was no difference between the
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Akram, Bestun, and Rizgar Hasan. "The Comparison of Retention between Hot Curing and Fluid Denture Base Acrylic Resin (In Vivo)." Al-Kitab Journal for Pure Sciences 2, no. 2 (2018): 150–61. http://dx.doi.org/10.32441/kjps.02.02.p10.

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Adequate retention is a basic requirement for the acceptance of complete denture. The aim of this study was to evaluate the retention quality of fluid denture base materials and compare it with conventional acrylic denture base materials Method: Sixteen edentulous male patients with an age 45-60 years participated in the study. For each patient two denture bases were constructed, one of them made from fluid denture base materials and the other made from hot acrylic denture base materials. A specially designed strain gauge measuring device was used to measure the force required to dislodge the
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Nejatian, T., A. Johnson, and R. Van Noort. "Reinforcement of Denture Base Resin." Advances in Science and Technology 49 (October 2006): 124–29. http://dx.doi.org/10.4028/www.scientific.net/ast.49.124.

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The fracture resistance of polymethyl methacrylate (PMMA) the most popular denture base materials, is not satisfactory. The aim of this study is to improve the mechanical properties of PMMA by adding filler particles. Different inorganic filler particles including micronised glass flakes, acryl silane micronised, glass flakes 350nm, TiO2 and ZrO2 with different ratios by weight were incorporated into heat-cure plain PMMA and processed with optimal condition [2.5:1 Powder/ monomer ratio, conventional packing method and water bath curing for 2 hours at 95°C] to produce 12mm diameter and 2mm thic
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Miyao, Motonobu, Mutsuo Yamauchi, Takayasu Goto, Makoto Sakai, and Joji Kawano. "Rediopacity of Denture Base Resin." Nihon Hotetsu Shika Gakkai Zasshi 35, no. 3 (1991): 494–500. http://dx.doi.org/10.2186/jjps.35.494.

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Gaol, Elkana Lumban, and Putri Welda Utami Ritonga. "Effect of Chlorhexidine and Castor Oil on Surface Roughness of Heat-Cured Acrylic Resin Denture Base." Journal of Syiah Kuala Dentistry Society 8, no. 1 (2023): 24–30. http://dx.doi.org/10.24815/jds.v8i1.33022.

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Background: Heat-cured acrylic resin is the acrylic resin most often used to make denture bases. In its use as a denture base, heat-cured acrylic resin requires a disinfectant to clean it from contamination by microorganisms. Still, it does not affect other properties of the heat-cured acrylic resin. Objective: This study aimed to determine the effect of heat-cured acrylic resin denture base disinfection with chlorhexidine and castor oil on surface roughness. Materials and Methods: This research is laboratory experimental with 30 bar-shaped (50x20x3mm) heat-cured acrylic resin-denture base spe
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Du, Jun Jun, Hao Yu, and Mei Fang Zhu. "Novel Enhanced Acrylic Denture Base Powder by Incorporating with PMMA-Modified Ag/NaZr2(PO4)3 through In Situ Suspension Polymerization." Materials Science Forum 815 (March 2015): 342–47. http://dx.doi.org/10.4028/www.scientific.net/msf.815.342.

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A kind of novel antibacterial denture base powder incorporated with PMMA-modified nanoAg/NaZr2(PO4)3(CBD-300) was prepared by in-situ suspension polymerization and the flexural properties of denture base resin was investigated. CBD-300 was silanized by 3-methacryloxy propyl trimethoxyl silane (γ-MPS), and thenγ-MPS-CBD-300 was grafted with poly (methyl methacrylate) (PMMA) to prepare M-CBD-300 which has a good compatibility with the denture base resin. Denture base powders with different addition of M-CBD-300 were prepared by in-situ suspension polymerization. Thermal gravimetric analysis (TGA
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Dissertations / Theses on the topic "Denture base resin"

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Cunningham, James Leo. "To develop a standard processing technique in order to maximise the bond strength between acrylic resin denture base material and polymer teeth." Thesis, Queen's University Belfast, 1993. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.359018.

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Cheng, Yi-yung. "Denture base resin reinforced with highly drawn linear polyethylene fibres dimensional changes and denture construction technique /." Click to view the E-thesis via HKUTO, 1994. http://sunzi.lib.hku.hk/HKUTO/record/B38627991.

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Cheng, Yi-yung, and 鄭而容. "Denture base resin reinforced with highly drawn linear polyethylene fibres: dimensional changes and dentureconstruction technique." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 1994. http://hub.hku.hk/bib/B38627991.

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Lima, Ana Paula Barbosa de. ""Avaliação da alteração dimensional da base de prova permanente da prótese total de resina acrílica ativada termicamente, processada em forno microondas, por meio da imagem digital"." Universidade de São Paulo, 2006. http://www.teses.usp.br/teses/disponiveis/23/23137/tde-28082006-180810/.

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Foram confeccionados 50 corpos de prova, divididos em 30 próteses totais superiores e 20 bases de provas permanentes, padronizados, para se avaliar a alteração dimensional da base de prova permanente, com dupla polimerização, processada em forno de microondas convencional; base de prova permanente com dupla polimerização, processada no método convencional; e a prótese total em uma única polimerização. Para essa análise, essas próteses foram divididas em 5 grupos: grupo I – prótese total convencional – banho de água (controle); grupo II – base de prova permanente processada convencionalmente; g
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龍英奇 and Ying-kei Christie Lung. "Residual monomer in denture base acrylic." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2003. http://hub.hku.hk/bib/B42577743.

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Lung, Ying-kei Christie. "Residual monomer in denture base acrylic." Click to view the E-thesis via HKUTO, 2003. http://sunzi.lib.hku.hk/hkuto/record/B42577743.

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Yamaguchi, Flavio Jun. "\"Avaliação dos efeitos da alteração dimensional de resinas para base de próteses totais submetidas a diferentes técnicas de processamento avaliados ao nível condilar\"." Universidade de São Paulo, 2006. http://www.teses.usp.br/teses/disponiveis/23/23137/tde-30102006-152609/.

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O objetivo deste trabalho foi avaliar as alterações dimensionais de resinas acrílicas submetidas a diferentes tipos de processamento avaliados ao nível condilar. As condições experimentais foram introduzidas em três etapas. Na etapa A, as resinas acrílicas (Clássico, Ondacryl, Acron MC, Lucitone e QC-20) foram incluídas em muflas contendo muralha de gesso, prensadas na fase plástica e submetidas a cinco ciclos de acrilização. Na etapa B, as resinas acrílicas utilizadas foram a QC-20 e a Lucitone, utilizando três tipos de muralha (gesso, silicone (ZETALABOR) e filme de silicone (VIPISIL)), e du
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LoSchiavo, Mark Francis. "The effect of processing techniques on the dimensional accuracy of acrylic resin dentures : variation in contour changes occurring during processing of resin denture bases according to curing techniques." Thesis, The University of Sydney, 1985. http://hdl.handle.net/2123/4689.

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Alawadhi, Khaled N. "Correlation between flexural strength and denture base acrylic thickness overlaying implant stud attachments." Morgantown, W. Va. : [West Virginia University Libraries], 2010. http://hdl.handle.net/10450/11245.

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Thesis (M.S.)--West Virginia University, 2010.<br>Title from document title page. Document formatted into pages; contains viii, 49 p. : ill. (some col.). Vita. Includes abstract. Includes bibliographical references (p. 41-48).
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Tarigan, Slamat. "The assessment of bonding between synthetic tooth materials and denture base resins." Thesis, University of Manchester, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.329067.

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Books on the topic "Denture base resin"

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Taqa, Amer a., Nadira a. Hatim, and Saja Amjad Abdul Razzak. Evaluate the Effect of Nigella Sativa and Thyme Oil on the Color of Acrylic Resin Denture Base Material. GRIN Verlag GmbH, 2013.

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Book chapters on the topic "Denture base resin"

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Nejatian, T., A. Johnson, and R. Van Noort. "Reinforcement of Denture Base Resin." In Advances in Science and Technology. Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/3-908158-05-2.124.

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Wang, WeiQi, Guang Hong, Maimaitishawuti Dilinuer, Taizo Hamada, and Keiichi Sasaki. "The Influence of Surface Treatment of Acrylic Denture Base Resin on Peel Bond Strength Between Resilient Denture Liners." In Interface Oral Health Science 2011. Springer Japan, 2012. http://dx.doi.org/10.1007/978-4-431-54070-0_85.

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Hamada, Kenichi, Fumiaki Kawano, and Kenzo Asaoka. "Effects of Fiber-Resin Interface Property on Shape Recovery and Mechanical Properties of Denture-Base-Resin Matrix Smart Composite." In THERMEC 2006. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-428-6.3279.

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Monisha, J., K. N. Raghavendra Swamy, and S. Meenakshi. "Impact and Flexural Strength of Denture Base Resin Reinforced with Tungsten Disulfide Nanoparticles: An In-Vitro Study." In Advances in Science, Technology & Innovation. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-73816-6_22.

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Dilinuer, Maimaitishawuti, Guang Hong, WeiQi Wang, Taizo Hamada, and Keiichi Sasaki. "The Surface Wettability of Trial Acrylic Denture Base Resins." In Interface Oral Health Science 2011. Springer Japan, 2012. http://dx.doi.org/10.1007/978-4-431-54070-0_72.

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Wang, Russell, Ramazan Kayacan, and Cenker Küçükeşmen. "Nanotubes/Polymethyl Methacrylate Composite Resins as Denture Base Materials." In Springer Series in Biomaterials Science and Engineering. Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-22861-7_7.

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Takeuchi, Yasuhisa, Kazuko Nakajo, Takuichi Sato, Yoko Sakuma, Keiichi Sasaki, and Nobuhiro Takahashi. "Isolation and identification of viable bacteria within acrylic resin denture bases." In Interface Oral Health Science 2009. Springer Japan, 2010. http://dx.doi.org/10.1007/978-4-431-99644-6_58.

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Sanyal, Pronob, and Deepika Khanna. "Study to analyze the efficacy of three types of polishing techniques on two commercially available denture base acrylic resins." In Tissue Engineering and Regenerative Medicine. CRC Press, 2025. https://doi.org/10.1201/9781003536352-6.

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Cosmina Ardelean, Lavinia, Laura-Cristina Rusu, and Codruta Victoria Tigmeanu. "Alternative Denture Base Materials for Allergic Patients." In Oral Health Care [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.101956.

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Traditionally, a denture base is manufactured using a heat-cured acrylic resin. This type of resin was first used in dental labs in 1936, being a great step forward. Because of the many disadvantages as increased porosity, high water sorption, polymerization shrinkage, allergenic potential and citotoxicity due to the residual monomer, awkward flasking and packaging, and difficult processing, alternatives were continuously searched. Monomer-free and high-impact acrylics were developed, and gold plating of the denture base was experienced, in order to provide an alternative to allergic patients.
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H. Mohamed, Saied. "Reinforced Filler in Denture Base Materials." In Advances in Dentures - Prosthetic Solutions, Materials and Technologies [Working Title]. IntechOpen, 2024. http://dx.doi.org/10.5772/intechopen.112427.

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Dental prosthesis nowadays fabricated from Poly (methyl methacrylate) (PMMA) due to its easy handling, exceptional appearance. However, this material as an ideal denture base is still restricted by a few limitations such as poor strength and radiopacity. Attempts to improve the mechanical and radiopacity properties of denture base materials through the inclusion of verity of fiber and fillers. A nano-filler modified with the silane coupling agent could improve the dispersiblity of the fillers in polymer matrix. The clinical problem of using silanes in adhesion promotion is bond degradation ove
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Conference papers on the topic "Denture base resin"

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Piyananjaratsri, R., E. Chaowicharat, K. Saejok, et al. "The effects of fluorine ion implantation on acrylic resin denture base." In 2011 IEEE Nanotechnology Materials and Devices Conference (NMDC 2011). IEEE, 2011. http://dx.doi.org/10.1109/nmdc.2011.6155295.

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Takki, Al-Zahraa Furqan Mohammed, Abdul Mohsin Naji Almohaisen, and Kharia Salman Hassan. "Influence of chopped glass fibers reinforcement on the mechanical performance of denture base resin." In 2023 INTERNATIONAL CONFERENCE ON CIVIL, ARCHITECTURAL, AND ENVIRONMENTAL ENGINEERING (ICCAEE 2023). AIP Publishing, 2024. http://dx.doi.org/10.1063/5.0213130.

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ÜNAL, Ahmet, Fatma ÜNALAN, and Özlem DURAN. "MECHANICAL CHARACTERISTICS OF ACRYLIC RESIN DENTURE BASE MATERIAL REINFORCED WITH DIFFERENT KINDS OF GLASS FIBRES." In Processing and Fabrication of Advanced Materials VIII. WORLD SCIENTIFIC, 2001. http://dx.doi.org/10.1142/9789812811431_0041.

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Swadde, Makirem Flaieh, and Layla Mousa Al-Nadawi. "Effect of incorporating aluminum oxide nanoparticles and surface treatments on flexural strength of repair acrylic denture base resin." In FIFTH INTERNATIONAL CONFERENCE ON APPLIED SCIENCES: ICAS2023. AIP Publishing, 2024. http://dx.doi.org/10.1063/5.0209682.

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Devi Adiana, Ika, Trimurni Abidin, and Lasminda Syafiar. "Effect of High Molecular Nano-Chitosan Addition on The Impact Strength of Heat Polymerized Polymethyl Methacrylate Denture Base Resin." In International Dental Conference of Sumatera Utara 2017 (IDCSU 2017). Atlantis Press, 2018. http://dx.doi.org/10.2991/idcsu-17.2018.34.

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Zulkarnain, Mohammad, and Putri Angelyna. "The Effect of Immersed Heat Cured Acrylic Resin Denture Base in Chlorhexidin and Extract of Roselle Flower towards Color Stability." In International Dental Conference of Sumatera Utara 2017 (IDCSU 2017). Atlantis Press, 2018. http://dx.doi.org/10.2991/idcsu-17.2018.47.

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Wang, Guomin, Jue Zhang, Jing Fang, et al. "Sterilization and drug susceptibility study of Candida Albicans biofilm on denture base resin treated by direct and alternating current atmospheric pressure cold plasma microjet." In 2013 IEEE 40th International Conference on Plasma Sciences (ICOPS). IEEE, 2013. http://dx.doi.org/10.1109/plasma.2013.6635207.

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Wang, G., H. Pan, G. Ye, et al. "Sterilization and drug susceptibility study of Candida Albicans biofilm on denture base resin treated by direct and alternating current atmospheric pressure cold plasma microjet." In 2013 IEEE Pulsed Power and Plasma Science Conference (PPPS 2013). IEEE, 2013. http://dx.doi.org/10.1109/ppc.2013.6627702.

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MACEDO, Ana Paula, Sarah Ribeiro Cruz Araújo, Milena Moreira Lima, Anselmo Agostinho Simionato, Valéria Pagnano, and Rossana Almeida. "Evaluation of the microhardness of different 3D printing resins for denture base." In 27th Brazilian Congress of Thermal Sciences and Engineering. ABCM, 2023. http://dx.doi.org/10.26678/abcm.cobem2023.cob2023-1905.

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Babosa da Silva Rufino, Mirian, Jane Karla De Faria Borges Machado, and Sandra Imaculada Maintinguer. "UTILIZAÇÃO DE REJEITOS DA LARANJA COMO ADSORVENTE PARA A PURIFICAÇÃO DE GLICERINA BRUTA." In XI SIMPÓSIO DE TECNOLOGIA FATEC JABOTICABAL. FATEC JABOTICABAL, 2020. http://dx.doi.org/10.52138/sitec.v11i1.110.

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O presente trabalho tem por objetivo à utilização dos rejeitos da laranja para purificação da glicerina bruta obtida na produção de biodiesel. Dentre os métodos de purificação, a adsorção por resinas de troca iônica vem recebendo grande aceitação por sua simplicidade e baixo custo. Inicialmente, a glicerina bruta é submetida a um processo de pré-purificação, por meio de filtração, tratamento com ácido fosfórico e tratamento térmico, em seguida, a glicerina pré-purificada passa pelo processo de purificação por meio do método da adsorção, utilizando como material adsorvente os rejeitos da laranj
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Reports on the topic "Denture base resin"

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Majeed, Noor, and Bayan Khalaf. Methods of enhancing resilient liners’ adhesion to denture base resin: A systematic review. INPLASY - International Platform of Registered Systematic Review and Meta-analysis Protocols, 2024. https://doi.org/10.37766/inplasy2024.12.0042.

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