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Journal articles on the topic 'Epoxyresin'

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1

HARA, Ichiro. "Health Hazards Caused by Epoxyresin-adhesives." Journal of The Adhesion Society of Japan 39, no. 12 (2003): 474–78. http://dx.doi.org/10.11618/adhesion.39.474.

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2

FUJITA, Hiroshi, and Hideki GODA. "Development of Epoxyresin-Silica Hybrid Materials." Journal of The Adhesion Society of Japan 46, no. 12 (2010): 484–90. http://dx.doi.org/10.11618/adhesion.46.484.

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3

Yamamoto, Hisanao, Naoki Sakamoto, Akira Fujita, Miyuki Harada, and Mitsukazu Ochi. "Physical and Bonding Properties of Mesogenic EpoxyResin with Low Melting Point." Journal of The Adhesion Society of Japan 51, s1 (2015): 306–14. http://dx.doi.org/10.11618/adhesion.51.306.

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4

Kumari, M. V. L., A. Kaviarasi, A. R. Prabakaran, and A. Anandavadivel. "SPECTROSCOPIC, MECHANICAL AND DIELECTRIC STUDIES ON FILMS OF EPOXYRESIN IN DIETHYLENETRIAMINE." Rasayan Journal of Chemistry 12, no. 04 (2019): 1688–92. http://dx.doi.org/10.31788/rjc.2019.1245384.

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5

MURAHARA, Masataka, and Masayuki OKOSHI. "Photochemical modification of fluororesin for bonding fluororesin and epoxyresin using excimer laser." Journal of Photopolymer Science and Technology 6, no. 3 (1993): 379–84. http://dx.doi.org/10.2494/photopolymer.6.379.

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6

HIRANO, Hiroshi, Kazuki NOGUCHI, Yoshinobu NAKAMURA, Joji KADOTA, Masaya CHIGANE, and Kiichi HASEGAWA. "Improvement of EpoxyResin/Copper Foil Adhesion by Introduction of Sulfur-Containing Polymers." Journal of The Adhesion Society of Japan 44, no. 4 (2008): 132–35. http://dx.doi.org/10.11618/adhesion.44.132.

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7

YOU, Xiaoliang, Xiuyang XIA, Fang WANG, Wei ZHU, and Jialing TANG. "STUDIES ON STRUCTURE AND PROPERTIES OF POLYURETHANE-EPOXYRESIN LATEX INTERPENETRATING POLYMER NETWORK." Acta Polymerica Sinica 009, no. 6 (July 3, 2009): 586–90. http://dx.doi.org/10.3724/sp.j.1105.2009.00586.

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8

Hameed, Ayad Qabash. "Wear rate of epoxy resin reinforced with multi walls carbon nanotubes." Iraqi Journal of Physics (IJP) 17, no. 40 (March 1, 2019): 1–10. http://dx.doi.org/10.30723/ijp.v17i40.399.

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In this study, nanocomposites have been prepared by addingmultiwall carbon nanotubes (MWCNTs) with weight ratios (0, 2, 3,4, 5) wt% to epoxy resin. The samples were prepared by hand lay-upmethod. Influence of an applied load before and after immersion insodium hydroxide (NaOH) of normality (0.3N) for (15 days) atlaboratory temperature on wear rate of Ep/MWCNTsnanocomposites was studied. The results showed that wear rateincreases with increasing the applied load for the as prepared andimmersed samples and after immersion. It was also found that epoxyresin reinforced with MWCNTs has wear rate less than neat epoxy.The sample (Ep + 5wt% of MWCNTs) has lower wear rate. Theimmersion effect in base solution led to increase in wear rate valuesfor all samples compared to natural condition.
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9

Benítez, L. A., O. G. Díaz, R. M. M. Eguía, and M. G. A. Gallegos. "Seminal Phagocytes Detection at Light-Microscopy Level using Three Different Techniques." Proceedings, annual meeting, Electron Microscopy Society of America 54 (August 11, 1996): 778–79. http://dx.doi.org/10.1017/s042482010016635x.

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The phagocytes are normally present in the conective tissue at different organs, and their number increased in immunological or inflammatory processes. In these cases, they are present too in corporal fluids.The presence of phagocytes in semen was referred by several authors, but that phenomenon has not been suficiently analysed. At smear Papanicolaou stained analysis, the seminal phagocytes can be inadverted thus, their relationship to the male infertility or another reproductive tract pathology can not be established.In this study we implemented three techniques to detect the presence of phagocytes in semen of 28 infertile patients: Myeloperoxidase for polymorphonuclears (leukocyte), Neutral red for macrophages and the semithin sections analysis at light microscopical level of the seminal pellet obtained by centrifugation and included in epoxyresin.
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10

KANDA, Katsumi, Yoshio HAYASHI, Keiji YAMANE, and Yoshikazu KONDO. "Composite electrodeposition of zinc powder and epoxyresin powder from a suspension bath containing alumina sol." Journal of the Metal Finishing Society of Japan 36, no. 11 (1985): 472–77. http://dx.doi.org/10.4139/sfj1950.36.472.

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11

Hoecker, F., K. Friedrich, H. Blumberg, and J. Karger-Kocsis. "Effects of fiber/matrix adhesion on off-axis mechanical response in carbon-fiber/epoxyresin composites." Composites Science and Technology 54, no. 3 (January 1995): 317–27. http://dx.doi.org/10.1016/0266-3538(95)00058-5.

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12

Stockert, Juan Carlos, Josefa Blanco, Juan Manuel Ferrer, Clara Trigoso, Agustin Tato, Pedro Del Castillo, Antonio Gomez, Pilar Testillano, and Maria Del Carmen Risueno. "Tungsten and molybdenum heteropolyacids as staining and contrastingagents: Reactivity with epoxyresin-embedded cell and tissue structures." Acta Histochemica 86, no. 2 (January 1989): 151—IN3. http://dx.doi.org/10.1016/s0065-1281(89)80084-4.

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13

Munirah, Munirah, Aries Chandra Trilaksana, and Juni Jekti Nugroho. "Seal apikal dari sealer berbahan dasar resin epoksi dan berbahan dasar mineral trioxideaggregate (Apicalsealingofepoxyresin-basedandmineral trioxideaggregatebased root canal sealers)." Journal of Dentomaxillofacial Science 13, no. 3 (October 30, 2014): 170. http://dx.doi.org/10.15562/jdmfs.v13i3.410.

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This study aimed to compare the apical sealing of epoxy resin-based and mineral trioxide aggregate (MTA)-based rootcanal sealer. Twenty four permanent central incisors were selected at random and divided into 4 groups (N = 24),namely positive control group, negative control group, Fillapex obturator group (MTA, and TopSeal group (epoxyresin). The samples were decoronated, root canal preparation, then kept in incubator of 37 C for 24 hours. Sampleswere immersed in india ink for 7 days. The samples were washed with distilled water, dried and nail varnish removed.The samples was grooved longitudinally on both side, and then carefully sectioned. Penetration was measured using astereo microscope and given score 0-4. Measurements were analyzed statistically. By using the Mann Whitney andKolmogorov-Smirnov tests, there is no significant difference between the apical sealing of the epoxy resin root canalsealer with MTA root canal sealer based (p>0.05). It means that the apical sealing of the epoxy resin root canal sealerbased comparable with MTA root canal sealer based. It was concluded that the apical sealing of epoxy resin-based sealer does not different to the MTA-based sealer.
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14

LUKASZCZYK, JAN, and KATARZYNA JASZCZ. "The synthesis of multifunctional polyester-epoxyresins." Polimery 44, no. 01 (January 1999): 56–58. http://dx.doi.org/10.14314/polimery.1999.056.

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15

Gallegos, M. G., E. Ramírez, and D. J. González. "Abnormal spermiogenesis in hybrid mice (C57BL X C3H)F1 treated with the mutagen ethyl methane sulphonate." Proceedings, annual meeting, Electron Microscopy Society of America 49 (August 1991): 140–41. http://dx.doi.org/10.1017/s0424820100085009.

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Ethyl methane sulphonate is an agent that produces a notable elevation in the percentage of morphologically abnormal spermatozooids. Inducement of minimal defects of the hook, bicephalic, biflagellated and amorphous forms and filamentous spermatozzoids have been described. The cytotoxic effect of the drug is manifested by death of primary spermatocytes, which is associated to the low number of epididlmary spermatozooids. The mechanisms that produce teratospermia have not been previously studied exhaustively.Hybrid mice of genotype (C57BL X C3H)F1 of 8 to 12 weeks of age were treated intraperitoneal ly with EMS at a dose of 200 mg/Kg for five consecutive days and killed four weeks later by cervical dislocation. The testicular tissue was fixed by inmersion in 6.5% glutaraldehyde in 0.2 M phosphate buffered saline at pH 7.3 and 4°C, and was included in epoxyresine. Fine sections were stained in leal citrate and uranyl acetate, and were observed in Zeiss EM109 electron microscope.
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16

Zhiyuan, Yu. "Carbon Fiber Reinforced Epoxy Resin Matrix Composites." Materials Science: Advanced Composite Materials 1, no. 1 (June 12, 2018). http://dx.doi.org/10.18063/msacm.v1i1.500.

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Carbon fi ber reinforced polymer matrix composites have been the focus of research. As the most widely used epoxyresin in all matrix materials, it is also the most studied. In this paper, the modification of TDE-85 epoxy resin, thecuring properties of curing agent and the preparation method of prepreg were reviewed. The progress and applicationof carbon fi ber reinforced epoxy resin composites at home and abroad were reviewed, made carbon fi ber / epoxy resincomposite materials in the automotive fuel cell application prospects.
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17

Liu, Ying, Mengyu Zhu, Yadong Hu, Yijun Zhao, and Chengzhu Zhu. "Photochemical reaction of superoxide radicals with 1-naphthol." Canadian Journal of Chemistry, May 28, 2021, 1–7. http://dx.doi.org/10.1139/cjc-2021-0028.

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The photochemical reactions between 1-naphthol (1-NP) and the superoxide anion radical (O2•–) were investigated in detail by using 365 nm UV irradiation. The results showed that the conversion rate of 1-NP decreased with the increase of the initial concentration of 1-NP, whereas by increasing the pH and riboflavin concentration, the photochemical reaction was accelerated. The second-order reaction rate constant was estimated to be (3.64 ± 0.17) × 108 L mol−1 s−1. The major photolysis products identified by using gas chromatography – mass spectrometry (GC–MS) were 1,4-naphquinone and 2,3-epoxyresin-2,3-dihydro-1,4-naphquinone, and their reaction pathways were also discussed. An atmospheric model showed that both the bulk water reaction and the heterogeneous surface reaction deserve attention in atmospheric aqueous chemistry.
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