• 제목/요약/키워드: 공진 주파수 분석

검색결과 442건 처리시간 0.017초

공진 주파수 분석법에 의한 임플랜트의 안정성 측정에 관한 연구 (A STUDY ON THE MEASUREMENT OF THE IMPLANT STABILITY USING RESONANCE FREQUENCY ANALYSIS)

  • 박철;임주환;조인호;임헌송
    • 대한치과보철학회지
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    • 제41권2호
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    • pp.182-206
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    • 2003
  • Statement of problem : Successful osseointegration of endosseous threaded implants is dependent on many factors. These may include the surface characteristics and gross geometry of implants, the quality and quantity of bone where implants are placed, and the magnitude and direction of stress in functional occlusion. Therefore clinical quantitative measurement of primary stability at placement and functional state of implant may play a role in prediction of possible clinical symptoms and the renovation of implant geometry, types and surface characteristic according to each patients conditions. Ultimately, it may increase success rate of implants. Purpose : Many available non-invasive techniques used for the clinical measurement of implant stability and osseointegration include percussion, radiography, the $Periotest^{(R)}$, Dental Fine $Tester^{(R)}$ and so on. There is, however, relatively little research undertaken to standardize quantitative measurement of stability of implant and osseointegration due to the various clinical applications performed by each individual operator. Therefore, in order to develop non-invasive experimental method to measure stability of implant quantitatively, the resonance frequency analyzer to measure the natural frequency of specific substance was developed in the procedure of this study. Material & method : To test the stability of the resonance frequency analyzer developed in this study, following methods and materials were used : 1) In-vitro study: the implant was placed in both epoxy resin of which physical properties are similar to the bone stiffness of human and fresh cow rib bone specimen. Then the resonance frequency values of them were measured and analyzed. In an attempt to test the reliability of the data gathered with the resonance frequency analyzer, comparative analysis with the data from the Periotest was conducted. 2) In-vivo study: the implants were inserted into the tibiae of 10 New Zealand rabbits and the resonance frequency value of them with connected abutments at healing time are measured immediately after insertion and gauged every 4 weeks for 16 weeks. Results : Results from these studies were such as follows : The same length implants placed in Hot Melt showed the repetitive resonance frequency values. As the length of abutment increased, the resonance frequency value changed significantly (p<0.01). As the thickness of transducer increased in order of 0.5, 1.0 and 2.0 mm, the resonance frequency value significantly increased (p<0.05). The implants placed in PL-2 and epoxy resin with different exposure degree resulted in the increase of resonance frequency value as the exposure degree of implants and the length of abutment decreased. In comparative experiment based on physical properties, as the thickness of transducer increased, the resonance frequency value increased significantly(p<0.01). As the stiffness of substances where implants were placed increased, and the effective length of implants decreased, the resonance frequencies value increased significantly (p<0.05). In the experiment with cow rib bone specimen, the increase of the length of abutment resulted in significant difference between the results from resonance frequency analyzer and the $Periotest^{(R)}$. There was no difference with significant meaning in the comparison based on the direction of measurement between the resonance frequency value and the $Periotest^{(R)}$ value (p<0.05). In-vivo experiment resulted in repetitive patternes of resonance frequency. As the time elapsed, the resonance frequency value increased significantly with the exception of 4th and 8th week (p<0.05). Conclusion : The development of resonance frequency analyzer is an attempt to standardize the quantitative measurement of stability of implant and osseointegration and compensate for the reliability of data from other non-invasive measuring devices It is considered that further research is needed to improve the efficiency of clinical application of resonance frequency analyzer. In addition, further investigation is warranted on the standardized quantitative analysis of the stability of implant.

BaV2O6와 BaWO4을 이용한 초저온 동시소성 세라믹 제조 (Fabrication of a Novel Ultra Low Temperature Co-fired Ceramic (ULTCC) Using BaV2O6 and BaWO4)

  • 김두원;이경호
    • 마이크로전자및패키징학회지
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    • 제28권4호
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    • pp.11-18
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    • 2021
  • (1-x)BaWO4-xBaV2O6(x=0.54~0.85) 조성의 새로운 초저온 동시 소성 세라믹(ULTCC)용 마이크로파 유전체 복합 재료를 BaWO4와 BaV2O6의 혼합물을 소성하여 제조되었다. 수축 시험은 세라믹 복합재가 BaV2O6의 영향으로 500℃의 낮은 온도에서 치밀화가 시작되며, 650℃에서 상대밀도 98%로 소결될 수 있음을 보였다. X-선 회절 분석은 복합체는 BaWO4와 BaV2O6이 공존하고 소결체에서 2차상이 검출되지 않음을 보였다. 이는 두 상이 서로 우수한 화학적 안정성이 있음을 의미하였다. 거의 0에 가까운 공진 주파수 온도계수(𝛕f)는 복합체에 존재하는 두 상의 𝛕f 값이 각각 양(+) 및 음(-)의 값임에 따라 두 상의 상대적 함량을 조절하여 얻을 수 있었다. BaV2O6의 함량이 x=0.53에서 0.85로 증가함에 따라 복합 재료의 𝛕f 값은 7.54에서 14.49 ppm/℃로 증가하였고 εr은 10.08에서 11.17로 증가했으며 Q×f값은 47,661에서 37,131 GHz로 감소하였다. 최고의 마이크로파 유전 특성은 BaV2O6의 함량이 x=0.6 일 때, εr=10.4, Q×f=44,090 GHz 및 𝛕f=-2.38 ppm/℃값을 얻을 수 있었다. 화학적 호환성 실험은 개발된 복합 재료가 동시 소성 과정에서 알루미늄 전극과 반응성이 없음을 보여주었다.