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Effect of Composition on the Structural and Electrical Properties of PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] Based Ceramics

Yıl 2016, Cilt: 4 Sayı: 2, 100 - 110, 01.06.2016
https://doi.org/10.15317/Scitech.2016218522

Öz

Polycrystalline samples of (1-x)PMN-xPT [Pb(Mg1/3Nb2/3)O3-PbTiO3] (x=0.30 to 0.39) piezoelectric ceramics were synthesized via a solid-state reaction route. Based on the previous literature, 5% mol excess MgO was used in order to eliminate the formation of unwanted pyrochlore phase. Microstructural and compositional analyses have been carried out using scanning electron microscope (SEM) and X-ray diffraction (XRD). Besides, electrical characterization was performed by using impedance analyzer and Berlincourt d33-piezometer. Formation of the pyrochlore phase was eliminated significantly by using excess MgO and one-step calcination method. XRD patterns indicated a transition from rhombohedral to tetragonal phase with increasing PT content. Effect of altering PMN-PT composition on the piezoelectric and dielectric properties was also investigated. The results showed that the rhombohedral and tetragonal phases coexisted at 0.30

Kaynakça

  • Bouquin O., Lejeune M., Boilot J-P., 1991, ‚Formation of the Perovskite Phase in the PbMg1/3Nb2/3O3- PbTiO3 System‛, Journal of the American Ceramic Society, Cilt 74, Sayı 5, ss. 1152-1156.
  • Brown L. F., Carlson R. L., Sempsrott J. M., Stranford G. T., Fitzgerald J. J., 1997, ‚Investigation of the Dielectric and Piezoelectric Properties of PMN and PMN-PT Materials for Ultrasonic Transducer Applications‛, IEEE Ultrasonics Symposium Proceedings, Cilt. 1, ss. 561-564.
  • Cao Z., Li G., Zeng J., Zheng L., Yin Q., 2010, ‚Phase Transition Behaviour and Enhanced Electromechanical Properties in Sr Modified 0.65PbMg1/3Nb2/3O3–0.35PbTiO3 Ceramics‛, Journal of Physics D – Applied Physics, Cilt 43, ss. 015405 1-7.
  • Choi S. W., Shrout T. R., Jang S. J., Bhalla A. S., 1989, ‚Dielectric and Pyroelectric Properties in the Pb(Mg1/3Nb2/3)O3-PbTiO3 System‛, Ferroelectrics, Cilt 100, ss. 29-38. Cross L. E., 1994, ‚Relaxor Ferroelectrics‛, Ferroelectrics, Cilt 151, ss. 305-320.
  • Eugene V. C., Yushin N. K., Viehland D., 1998, ‚Dielectric Properties of (PMN)(1−x)(PT)x Single Crystals for Various Electrical and Thermal Histories‛, Journal of Applied Physics, Cilt 83, Sayı 6, ss. 3298- 3304.
  • Fengbing S., Qiang L., Haisheng Z., Chunhong L., Shixi Z., Dezhong S., 2004, ‚Phase Formation and Transitions in the Lead Magnesium Niobate–Lead Titanate System‛, Materials Chemistry and Physics, Cilt 83, ss. 135–139.
  • Gerber P., Böttger U., Waser R., 2006, ‚Composition Influences on the Electrical and Electromechanical Properties of Lead Zirconate Titanate Thin Films‛, Journal of Applied Physics, Cilt 100, ss. 124105 1-8.
  • Guha J. P., 1999, ‚Reaction Chemistry and Subsolidus Phase Equilibria in Lead-based Relaxor Systems: Part I - Formation and Stability of the Perovskite and Pyrochlore Compounds in the System PbO-MgO-Nb2O5‛, Journal of Materials Science, Cilt 34, ss. 4985-4994.
  • Haertling G. H., 1999, ‚Ferroelectric Ceramics: History and Technology‛, Journal of the American Ceramic Society, Cilt 82, Sayı 4, ss. 797- 818.
  • Inada, M., 1977, ‚Analysis of the Formation Process of the Piezoelectric PCM Ceramics‛, National Technical Report (Matsushita Elect. Ind. Co.), Cilt 27, Sayı 1, ss. 95-102.
  • Kelly J., Leonard M., Tantigate C., Safari A., 1997, ‚Effect of Composition on the Electromechanical Properties of (1-x)Pb(Mg1/3Nb2/3)O3–xPbTiO3 Ceramics‛ Journal of the American Ceramic Society, Cilt 80, Sayı 4, ss. 957–964.
  • Park S. E., Shrout T. R., 1997a, ‚Ultrahigh Strain and Piezoelectric Behavior in Relaxor Based Ferroelectric Single Crystals,‛ Journal of Applied Physics, Cilt 82, Sayı 4, ss. 1804–1811.
  • Park S. E., Shrout T. R., 1997b, ‚Relaxor Based Ferroelectric Single Crystals for Electro-Mechanical Actuators,‛ Materials Research Innovations, Cilt 1, Sayı 1, ss. 20–25.
  • Shrout T. R., Swartz S. L., 1983, ‚Dielectric Properties of Pyrochlore Lead Magnesium Niobate‛, Materials Research Bulletin, Cilt 18, ss. 663-67.
  • Swartz S. L., Shrout T. R., 1982, ‘‘Fabrication of Perovskite Lead Magnesium Niobate’’ Materials Research Bulletin, Cilt 17, Sayı 10, ss. 1245–1250.
  • Swartz S. L., Shrout T. R., Schulze W. A., Cross L. E., 1984, ‚Dielectric Properties of Lead Magnesium Niobate Ceramics,‛ Journal of the American Ceramic Society, Cilt 67, Sayı 5, ss. 311-315.
  • Taşpınar E., 1997, Production and Characterization of Lead Zirconate Titanate and Lead Magnesium NiobateLead Titanate Piezoceramics, Yüksek Lisans Tezi, Orta Doğu Teknik Üniversitesi, Fen Bilimleri Enstitüsü, Ankara.
  • Wakiya N., Saiki A., Ishizawa N., Shinozaki K., Mizutani N., 1993, "Crystal-Growth, Crystal-Structure and Chemical-Composition of A Pyrochlore Type Compound in Lead-Magnesium-NiobiumOxygen System," Materials Research Bulletin, Cilt 28, Sayı 2, ss. 137-143.
  • Wakiya N., Kim B. H., Shinozaki K., Mizutani N., 1994, "Composition Range of Cubic Pyrochlore Type Compound in Lead Magnesium Niobium Oxygen System", Journal of the Ceramic Society of Japan, Cilt 102, Sayı 6, ss. 612-615.
  • West R. C., Astle M. J., 1979-1980, Handbook of Chemistry and Physics, CRC Press, Boca Raton, FL, A.B.D.
  • Wongmaneerung, R., Rittidech, A., Khamman, O., Yimnirun, R., Ananta, S., 2009, ‚Processing and Properties of Pb(Mg1/3Nb2/3)O3-PbTiO3 Based Ceramics‛, Ceramics International, Cilt 35, ss. 125- 129.

PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ

Yıl 2016, Cilt: 4 Sayı: 2, 100 - 110, 01.06.2016
https://doi.org/10.15317/Scitech.2016218522

Öz

Bu çalışmada, çok kristalli (1-x)PMN-xPT [Pb(Mg1/3Nb2/3)O3-PbTiO3] (x=0,30-0,39) piezoelektrik seramikleri katı-hal reaksiyon yöntemi kullanılarak üretilmiştir. Üretim aşamasında istenilmeyen piroklor fazının oluşumunu engellemek için literatür çalışmalarından faydalanılarak %5 mol ekstra MgO tozu kullanılmıştır. Mikroyapı ve kompozisyon analizleri; taramalı elektron mikroskobu (SEM) ve X-ışınları kırınımı (XRD) ile, elektriksel karakterizasyon ise empendans analizörü ve Berlincourt d33-piezometre kullanılarak gerçekleştirilmiştir. Ekstra MgO ve tek kalsinasyon adımı kullanılarak piroklor faz oluşumunun büyük oranda engellendiği görülmüştür. XRD sonuçları PT miktarının artışı ile birlikte rombohedral fazdan tetragonal faza bir dönüşüm olduğunu ortaya koymuştur. Ayrıca, değişen PMN-PT kompozisyonunun dielektrik ve piezoelektrik özellikler üzerindeki etkisi de incelenmiştir. Deneysel sonuçlar, 0,30

Kaynakça

  • Bouquin O., Lejeune M., Boilot J-P., 1991, ‚Formation of the Perovskite Phase in the PbMg1/3Nb2/3O3- PbTiO3 System‛, Journal of the American Ceramic Society, Cilt 74, Sayı 5, ss. 1152-1156.
  • Brown L. F., Carlson R. L., Sempsrott J. M., Stranford G. T., Fitzgerald J. J., 1997, ‚Investigation of the Dielectric and Piezoelectric Properties of PMN and PMN-PT Materials for Ultrasonic Transducer Applications‛, IEEE Ultrasonics Symposium Proceedings, Cilt. 1, ss. 561-564.
  • Cao Z., Li G., Zeng J., Zheng L., Yin Q., 2010, ‚Phase Transition Behaviour and Enhanced Electromechanical Properties in Sr Modified 0.65PbMg1/3Nb2/3O3–0.35PbTiO3 Ceramics‛, Journal of Physics D – Applied Physics, Cilt 43, ss. 015405 1-7.
  • Choi S. W., Shrout T. R., Jang S. J., Bhalla A. S., 1989, ‚Dielectric and Pyroelectric Properties in the Pb(Mg1/3Nb2/3)O3-PbTiO3 System‛, Ferroelectrics, Cilt 100, ss. 29-38. Cross L. E., 1994, ‚Relaxor Ferroelectrics‛, Ferroelectrics, Cilt 151, ss. 305-320.
  • Eugene V. C., Yushin N. K., Viehland D., 1998, ‚Dielectric Properties of (PMN)(1−x)(PT)x Single Crystals for Various Electrical and Thermal Histories‛, Journal of Applied Physics, Cilt 83, Sayı 6, ss. 3298- 3304.
  • Fengbing S., Qiang L., Haisheng Z., Chunhong L., Shixi Z., Dezhong S., 2004, ‚Phase Formation and Transitions in the Lead Magnesium Niobate–Lead Titanate System‛, Materials Chemistry and Physics, Cilt 83, ss. 135–139.
  • Gerber P., Böttger U., Waser R., 2006, ‚Composition Influences on the Electrical and Electromechanical Properties of Lead Zirconate Titanate Thin Films‛, Journal of Applied Physics, Cilt 100, ss. 124105 1-8.
  • Guha J. P., 1999, ‚Reaction Chemistry and Subsolidus Phase Equilibria in Lead-based Relaxor Systems: Part I - Formation and Stability of the Perovskite and Pyrochlore Compounds in the System PbO-MgO-Nb2O5‛, Journal of Materials Science, Cilt 34, ss. 4985-4994.
  • Haertling G. H., 1999, ‚Ferroelectric Ceramics: History and Technology‛, Journal of the American Ceramic Society, Cilt 82, Sayı 4, ss. 797- 818.
  • Inada, M., 1977, ‚Analysis of the Formation Process of the Piezoelectric PCM Ceramics‛, National Technical Report (Matsushita Elect. Ind. Co.), Cilt 27, Sayı 1, ss. 95-102.
  • Kelly J., Leonard M., Tantigate C., Safari A., 1997, ‚Effect of Composition on the Electromechanical Properties of (1-x)Pb(Mg1/3Nb2/3)O3–xPbTiO3 Ceramics‛ Journal of the American Ceramic Society, Cilt 80, Sayı 4, ss. 957–964.
  • Park S. E., Shrout T. R., 1997a, ‚Ultrahigh Strain and Piezoelectric Behavior in Relaxor Based Ferroelectric Single Crystals,‛ Journal of Applied Physics, Cilt 82, Sayı 4, ss. 1804–1811.
  • Park S. E., Shrout T. R., 1997b, ‚Relaxor Based Ferroelectric Single Crystals for Electro-Mechanical Actuators,‛ Materials Research Innovations, Cilt 1, Sayı 1, ss. 20–25.
  • Shrout T. R., Swartz S. L., 1983, ‚Dielectric Properties of Pyrochlore Lead Magnesium Niobate‛, Materials Research Bulletin, Cilt 18, ss. 663-67.
  • Swartz S. L., Shrout T. R., 1982, ‘‘Fabrication of Perovskite Lead Magnesium Niobate’’ Materials Research Bulletin, Cilt 17, Sayı 10, ss. 1245–1250.
  • Swartz S. L., Shrout T. R., Schulze W. A., Cross L. E., 1984, ‚Dielectric Properties of Lead Magnesium Niobate Ceramics,‛ Journal of the American Ceramic Society, Cilt 67, Sayı 5, ss. 311-315.
  • Taşpınar E., 1997, Production and Characterization of Lead Zirconate Titanate and Lead Magnesium NiobateLead Titanate Piezoceramics, Yüksek Lisans Tezi, Orta Doğu Teknik Üniversitesi, Fen Bilimleri Enstitüsü, Ankara.
  • Wakiya N., Saiki A., Ishizawa N., Shinozaki K., Mizutani N., 1993, "Crystal-Growth, Crystal-Structure and Chemical-Composition of A Pyrochlore Type Compound in Lead-Magnesium-NiobiumOxygen System," Materials Research Bulletin, Cilt 28, Sayı 2, ss. 137-143.
  • Wakiya N., Kim B. H., Shinozaki K., Mizutani N., 1994, "Composition Range of Cubic Pyrochlore Type Compound in Lead Magnesium Niobium Oxygen System", Journal of the Ceramic Society of Japan, Cilt 102, Sayı 6, ss. 612-615.
  • West R. C., Astle M. J., 1979-1980, Handbook of Chemistry and Physics, CRC Press, Boca Raton, FL, A.B.D.
  • Wongmaneerung, R., Rittidech, A., Khamman, O., Yimnirun, R., Ananta, S., 2009, ‚Processing and Properties of Pb(Mg1/3Nb2/3)O3-PbTiO3 Based Ceramics‛, Ceramics International, Cilt 35, ss. 125- 129.
Toplam 21 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mühendislik
Diğer ID JA46ZJ57AJ
Bölüm Makaleler
Yazarlar

Hurşit Sefa Aydın Bu kişi benim

Volkan Kalem Bu kişi benim

Yayımlanma Tarihi 1 Haziran 2016
Yayımlandığı Sayı Yıl 2016 Cilt: 4 Sayı: 2

Kaynak Göster

APA Aydın, H. S., & Kalem, V. (2016). PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi, 4(2), 100-110. https://doi.org/10.15317/Scitech.2016218522
AMA Aydın HS, Kalem V. PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ. sujest. Haziran 2016;4(2):100-110. doi:10.15317/Scitech.2016218522
Chicago Aydın, Hurşit Sefa, ve Volkan Kalem. “PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ”. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi 4, sy. 2 (Haziran 2016): 100-110. https://doi.org/10.15317/Scitech.2016218522.
EndNote Aydın HS, Kalem V (01 Haziran 2016) PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi 4 2 100–110.
IEEE H. S. Aydın ve V. Kalem, “PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ”, sujest, c. 4, sy. 2, ss. 100–110, 2016, doi: 10.15317/Scitech.2016218522.
ISNAD Aydın, Hurşit Sefa - Kalem, Volkan. “PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ”. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi 4/2 (Haziran 2016), 100-110. https://doi.org/10.15317/Scitech.2016218522.
JAMA Aydın HS, Kalem V. PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ. sujest. 2016;4:100–110.
MLA Aydın, Hurşit Sefa ve Volkan Kalem. “PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ”. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi, c. 4, sy. 2, 2016, ss. 100-1, doi:10.15317/Scitech.2016218522.
Vancouver Aydın HS, Kalem V. PMN-PT [Pb(Mg1/3Nb2/3)O3-PbTiO3] ESASLI SERAMİKLERDE KOMPOZİSYONUN YAPISAL VE ELEKTRİKSEL ÖZELLİKLERE ETKİSİ. sujest. 2016;4(2):100-1.

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