• 제목/요약/키워드: 3 Coordinate Measuring Machine

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가이드 수술용 템플릿을 위한 5축 정밀가공공정의 정확성에 관한 연구 (Accuracy of 5-axis precision milling for guided surgical template)

  • 박지만;이태경;정제교;김용;박은진;한종현;곽재영;김성균;허성주
    • 대한치과보철학회지
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    • 제48권4호
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    • pp.294-300
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    • 2010
  • 연구 목적: 컴퓨터-가이드 임플란트 수술은 전통적인 방법에 비해 여러 가지 장점을 가진다. 본 연구의 목적은 가이드 수술용 템플릿 제작을 위한 좌표동기화 5축 정밀가 공공정의 정확도를 범용 CAD 소프트웨어를 통해 역설계공학의 방법으로 평가하는 것이다. 연구 재료 및 방법: 악궁 형태의 모형에 거타퍼쳐 스타핑을 매식한 10 개의 모형을 만들고 상부에 실리콘 인상재를 이용하여 인공치은을 덮어 스타핑의 위치를 보이지 않게 가렸다. 모형의 하면에 동기화를 위한 좌표동기화 형상을 만든 뒤 Cone beam CT에서 3차원 영상을 얻었다. 임플란트 계획 소프트웨어의 CT 이미지 상에서 매식된 스타핑과 동일한 방향으로 스타핑의 1/2 깊이까지 가상의 시술계획을 하고, 스타핑의 방향벡터와 저지점 (1/2지점) 데이터를 석고모형의 영상으로 좌표동기화 하였다. 이후 모형하면의 좌표동기화 형상을 이용하여 가공기기상의 좌표로 좌표변환을 통해 가공좌표동기화를 하였다. 5축 밀링머신의 좌표동기화판에 모형을 고정한 후, 동기화된 가공데이터에 의거하여 스타핑과 동일한 직경의 드릴로 계획된 벡터와 깊이로 정확히 가공 하였다. 모델에 정확히 안착되는 인상트레이를 CT 장비에 미리 고정한 상태에서, 인상트레이에 모델을 적합하여 이미지를 획득한 뒤 3차원 재구성하는 방법으로 영상을 중첩하여 비교 분석하였다. SolidWorks (Dassault Systems, Concord, USA) 범용 CAD 상에 영상을 불러들여 역설계공학의 방법으로 실린더 상부, 하부의 중점에서의 위치편차와 각도편차를 조사하였다. 통계는 SPSS (release 14.0, SPSS Inc., Chicago, USA)를 이용하여 각 편차 사이의 상관관계를 분석하였다 ($\alpha$ = 0.05). 결과: 위치 편차로 인하여 모든 드릴 보어 (bore)에서 상부 1/2에 잔존하는 거타퍼쳐의 일부를 관찰할 수 있었다. 실험 모형상에서 계획된 이미지와 드릴링 후CT에서 역설계를 거친 이미지 사이의 위치편차는 상부에서 0.31 (0.15 - 0.42) mm, 하부에서 0.36 (0.24 - 0.51) mm, 각도편차는 1.62 (0.54 - 2.27)$^{\circ}$이었다. 실린더 상부와 하부 위치 편차는 양의 상관관계를 가졌다 (Pearson Correlation Coeffocient = 0.904, P= .013). 결론: 좌표동기화 5축 정밀가공 공정은 가이드 수술용 템플릿을 제작하는 데에 적합한 정확도를 가진다.

Accuracy of five implant impression technique: effect of splinting materials and methods

  • Lee, Sang-Jik;Cho, Sung-Bum
    • The Journal of Advanced Prosthodontics
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    • 제3권4호
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    • pp.177-185
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    • 2011
  • PURPOSE. The aim of this study was to evaluate the effect of dimensional stability of splinting material on the accuracy of master casts. MATERIALS AND METHODS. A stainless steel metal model with 6 implants embedded was used as a master model. Implant level impressions were made after square impression copings were splinted using 5 different techniques as follows. (1) Splinted with autopolymerizing resin and sectioned, reconnected to compensate polymerization shrinkage before the impression procedure. (2) Splinted with autopolymerizing resin just before impression procedure. (3) Primary impression made with impression plaster and secondary impression were made over with polyether impression material. (4) Splinted with impression plaster. (5) Splinted with VPS bite registration material. From master model, 5 impressions and 5 experimental casts, total 25 casts were made for each of 5 splinting methods. The distortion values of each splinting methods were measured using coordinate measuring machine, capable of recordings in the x-, y-, z- axes. A one-way analysis of variance (ANOVA) at a confidence level of 95% was used to evaluate the data and Tukey's studentized range test was used to determine significant differences between the groups. RESULTS. Group 1 showed best accuracy followed by Group 3 & 4. Group 2 and 5 showed relatively larger distortion value than other groups. No significant difference was found between group 3, 4, 5 in x-axis, group 2, 3, 4 in y-axis and group 1, 3, 4, 5 in z-axis (P<.0001). CONCLUSION. Both Splinting impression copings with autopolymerizing resin following compensation of polymerization shrinkage and splinting method with impression plaster can enhance the accuracy of master cast and impression plaster can be used simple and effective splinting material for implant impression procedure.

A new method to measure the accuracy of intraoral scanners along the complete dental arch: A pilot study

  • Iturrate, Mikel;Lizundia, Erlantz;Amezua, Xabier;Solaberrieta, Eneko
    • The Journal of Advanced Prosthodontics
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    • 제11권6호
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    • pp.331-340
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    • 2019
  • PURPOSE. The purpose of this study is to assess the accuracy of three intraoral scanners along the complete dental arch and evaluate the feasibility of the assessment methodology for further in vivo analysis. MATERIALS AND METHODS. A specific measurement pattern was fabricated and measured using a coordinate measuring machine for the assessment of control distances and angles. Afterwards, the pattern was placed and fixed in replica of an upper jaw for their subsequent scans (10 times) using 3 intraoral scanners, namely iTero Element1, Trios 3, and True Definition. 4 reference distances and 5 angles were measured and compared with the controls. Trueness and precision were assessed for each IOS: trueness, as the deviation of the measures from the control ones, while precision, as the dispersion of measurements in each reference parameter. These measurements were carried out using software for analyzing 3-dimensional data. Data analysis software was used for statistical and measurements analysis (α=.05). RESULTS. Significant differences (P<.05) were found depending on the intraoral scanner used. Best trueness values were achieved with iTero Element1 (mean from 10 ± 7 ㎛ to 91 ± 63 ㎛) while the worst values were obtained with Trios3 (mean from 42 ± 23 ㎛ to 174 ± 77 ㎛). Trueness analysis in angle measurements, as well as precision analysis, did not show conclusive results. CONCLUSION. iTero Element1 was more accurate than the current versions of Trios3 and True Definition. Importantly, the proposed methodology is considered reliable for analyzing accuracy in any dental arch length and valid for assessing both trueness and precision in an in vivo study.

Effective Volume of the Korea Research Institute of Standards and Science Free Air Chamber L1 for Low-Energy X-Ray Measurement

  • Chul-Young Yi;Yun Ho Kim;Don Yeong Jeong
    • 한국의학물리학회지:의학물리
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    • 제33권1호
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    • pp.1-9
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    • 2022
  • Purpose: To evaluate the effective volume of the Korea Research Institute of Standards and Science free air chamber (KRISS FAC) L1 used for the primary standard device of the low-energy X-ray air kerma. Methods: The mechanical dimensions were measured using a 3-dimensional coordinate measuring machine (3-d CMM, Model UMM 500, Carl Zeiss). The diameter of the diaphragm was measured by a ring gauge calibrator (Model KRISS-DM1, KRISS). The elongation of the collector length due to electric field distortion was determined from the capacitance measurement of the KRISS FAC considering the result of the finite element method (FEM) analysis using the code QuickField v6.4. Results: The measured length of the collector was 15.8003±0.0014 mm with a 68% confidence level (k=1). The aperture diameter of the diaphragm was 10.0021±0.0002 mm (k=1). The mechanical measurement volume of the KRISS FAC L1 was 1.2415±0.0006 cm3 (k=1). The elongated length of the collector due to the electric field distortion was 0.170±0.021 mm. Considering the elongated length, the effective measurement volume of the KRISS FAC L1 was 1.2548±0.0019 cm3(k=1). Conclusions: The effective volume of the KRISS FAC L1 was determined from the mechanically measured value by adding the elongated volume due to the electric field distortion in the FAC. The effective volume will replace the existing mechanically determined volume in establishing and maintaining the primary standard of the low-energy X-ray.

국산 치과용 구강스캐너(e-scanner)와 모델스캐너의 정확도 비교 (Comparison of the accuracy of domestic dental intra-oral scanner(e-scanner) and model scanner)

  • 김부섭;김정호
    • 대한치과기공학회지
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    • 제41권2호
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    • pp.53-61
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    • 2019
  • Purpose: The purpose of this study is to evaluate the discrepancy of scan process in dental intra oral scanner by comparing model scanner and anticipate possibility to introduce intra oral scan technique. Methods: 3D superimposition test was conducted to compare the scan discrepancy. The scanners used in this study are the e-oral scanner, the D750 model scanner, and the high precision CMM(3D Coordinate Measuring Machine). The standard of accuracy verification is ISO 5725-1; trueness and precision. Master model was manufactured by dental stone and scanned 5 times by intra oral, model scanner. Reference data was scanned 5 times by high accuracy CMM to evaluate the trueness. Results: Trueness of D750 scanner were $7.4{\mu}m$ $5.1{\mu}m$ $6.8{\mu}m$ at an abutment, an occluasal, a specific area. and trueness of e-scanner were $20.2{\mu}m$ $27.4{\mu}m$ $37.8{\mu}m$ at an abutment, an occluasal, a specific area. Precision of D750 scanner was $7.04{\mu}m$, e-scanner was $15.95{\mu}m$. Conclusion: When conducting in vitro test, The mean difference of trueness between e-scanner and D750 were $12.8{\mu}m$ at an abutment area, $22.3{\mu}m$ at an occlusal area, $31.0{\mu}m$ at a specific area and $8.91{\mu}m$ in precision. The scan discrepancies are within the range of clinical acceptance.

머시닝센터에서 볼 엔드밀가공으로 고능률, 고정밀도 제고를 위한 표면가공 조건 (Cutting Condition for Improving Cutting Efficiency and Accuracy by Ball Endmill on a Machining Center)

  • 윤종학
    • 한국생산제조학회지
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    • 제7권3호
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    • pp.99-103
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    • 1998
  • The curved surface machined by plate end mill causes a excess non-cutting volume, in these cases ball end mill is used for the curved surfaces. This study is aimed to obtain the optimum cutting conditions of various cutting speed, table speed, tool diameter, radius of curvature roughness on the conditions of various cutting speed, tool diameter, radius of curvature when machining the curved surface using the ball end mill. After designing curve rates, obtaining NC data by CAD/CAM system through CC-Cartesian method and transferred the data through DNC system, we machined the specimens by the CNC machining center, The surface roughness of specimens was measured by surface roughness tester and CNC 3D coordinate measuring machine. The cutting condition were the same as follow velocity; 15, 20, 25 30m/min, feed rate;40, 60, 80, 100m/min and radius of curvature; 30,40,50,60mm, tool diameters; ø8, ø12, ø16, ø 20mm. Analizing the working results, we can acquire the optimum cutting condition of curved specimen at the cutting velocity of 20~25m/min and the feed rate of 80mm/min. As the same cutting condition the best surface roughness was showed at ø16mm of the tool diameter. But the tool diameter was smaller than ø8mm. we could improve for the surface roughness by controlling the cusp.

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Three-dimensional accuracy of different correction methods for cast implant bars

  • Kwon, Ji-Yung;Kim, Chang-Whe;Lim, Young-Jun;Kwon, Ho-Beom;Kim, Myung-Joo
    • The Journal of Advanced Prosthodontics
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    • 제6권1호
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    • pp.39-45
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    • 2014
  • PURPOSE. The aim of the present study was to evaluate the accuracy of three techniques for correction of cast implant bars. MATERIALS AND METHODS. Thirty cast implant bars were fabricated on a metal master model. All cast implant bars were sectioned at 5 mm from the left gold cylinder using a disk of 0.3 mm thickness, and then each group of ten specimens was corrected by gas-air torch soldering, laser welding, and additional casting technique. Three dimensional evaluation including horizontal, vertical, and twisting measurements was based on measurement and comparison of (1) gap distances of the right abutment replica-gold cylinder interface at buccal, distal, lingual side, (2) changes of bar length, and (3) axis angle changes of the right gold cylinders at the step of the post-correction measurements on the three groups with a contact and non-contact coordinate measuring machine. One-way analysis of variance (ANOVA) and paired t-test were performed at the significance level of 5%. RESULTS. Gap distances of the cast implant bars after correction procedure showed no statistically significant difference among groups. Changes in bar length between pre-casting and post-correction measurement were statistically significance among groups. Axis angle changes of the right gold cylinders were not statistically significance among groups. CONCLUSION. There was no statistical significance among three techniques in horizontal, vertical and axial errors. But, gas-air torch soldering technique showed the most consistent and accurate trend in the correction of implant bar error. However, Laser welding technique, showed a large mean and standard deviation in vertical and twisting measurement and might be technique-sensitive method.

THE DIMENSIONAL CHANGE OF CAST IMPLANT BARS AFTER LABORATORY PROCEDURE

  • Kwon, Ji-Yung;Kim, Chang-Whe;Lim, Young-Jun;Kim, Myung-Joo
    • 대한치과보철학회지
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    • 제45권3호
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    • pp.354-361
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    • 2007
  • Statement of Problems. The precision of fit between the bearing surfaces of implant abutments and the prosthesis framework has been considered fundamental to implant prosthodontic protocol. Purpose. The study aimed to investigate the effect of laboratory procedure on the dimensional accuracy of cast implant bars. Material and methods Thirty implant bars were fabricated on a metal master model. The gap distances were measured at the right implant abutment replica-gold cylinder interface after casting procedure. The bar length data of precasting and postcasting state were collected and analyzed. Results. The mean gap distance found after casting was $106.3{\mu}m$ for buccal side, $122.1{\mu}m$ for distal side and $117.1{\mu}m$ for the lingual side. The mean bar length was $17964.7{\mu}m$ at precasting measurement, $17891.6{\mu}m$ at postcasting measurement. The mean change of bar length was $-73.1{\mu}m$. Conclusion. Even though the techniques used in this study strictly followed the guidelines established in the literature, the 30 cast implant bars evaluated all yielded gap distances that were beyond acceptable accuracy. There was a statistically significant difference between precasting and postcasting bar length (P<0.01). There was a decreasing tendency in bar length after casting procedure. It was necessary to correct this dimensional change from laboratory procedure by some corrective methods.

유리섬유 / 탄소섬유 강화 비대칭 하이브리드 복합재료의 스프링 백 (Spring-back in GFR / CFR Unsymmetric Hybrid Composite Materials)

  • 정우균;안성훈;원명식
    • Composites Research
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    • 제18권6호
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    • pp.1-8
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    • 2005
  • 섬유강화 복합재료는 우수한 기계적, 전자기적 물성 등으로 다양한 분야에서 응용되고 있다. 열경화성 복합재는 제작공정에서의 성형온도와 제품의 운용온도인 상온간의 온도차이로 형상의 변형(스프링 백)이 발생하게 된다. 이러한 스프링 백은 하이브리드 구조의 정밀한 형상 제작을 위해서 반드시 보정되어야할 부분이다. 본 연구에서는 유리섬유/에폭시 복합재와 카본섬유/에폭시 복합재로 구성된 비대칭 하이브리드 복합재를 경화사이클, 적층두께, 적층방법 등 다양한 조건을 적용하여 제작하고 3차원 좌표측정기를 이용하여 스프링 백을 측정하였다. 또한 고전 적층판 이론(CLT)과 유한요소해석(ANSYS)으로 스프링백을 예측하고 실험결과와 비교하였다. 고전 적층판 이론과 유한요소해석으로 예측된 스프링 백은 실험 결과와 잘 일치하였으며, 성형온도가 낮을수록 스프링 백이 감소되는 경향을 보임을 확인하였으나 근원적으로 스프링 백이 제거되지는 않았다.

레이저트래커(Laser Tracker)를 이용한 대형 광학 거울의 형상 측정 (Measurement of Large Mirror Surface using a Laser Tracker)

  • 조은하;양호순;이윤우
    • 한국광학회지
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    • 제24권6호
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    • pp.331-337
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    • 2013
  • 대형 광학 거울은 연삭, 연마, 최종연마의 단계를 거쳐 가공된다. 이 가운데 가장 진행이 빠르고 가공량이 많은 연삭 단계에서 정밀하고 신속한 측정이 가능하다면 가공 공정의 효율성을 높일 수 있다. 그런데 연삭 단계의 광학면은 거칠고 광택이 없기 때문에 빛을 이용한 측정이 매우 어렵다. 따라서 간섭계를 사용할 수 없으며 기계적인 방법을 이용하여 면을 측정해야 한다. 레이저트래커는 이동이 가능한 3차원 좌표 측정기로, 이를 이용한 측정 방법이나 데이터 분석을 연구하면 연삭 단계의 광학 거울을 정밀하게 측정할 수 있다. 본 논문에서는 레이저트래커를 이용하여 직경 1 m의 구면 거울의 형상오차를 측정하고, 이 측정 결과를 간섭계로 측정한 것과 비교하였다. 레이저트래커를 이용한 측정법은 형상오차 rms $0.2{\mu}m$, PV $2.7{\mu}m$의 측정 결과를 얻는 것으로 파악되어 연삭 단계 광학면의 정밀한 측정이 가능할 것으로 보인다.