• Title/Summary/Keyword: concave profile

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A Study on Correction of the Gear Tooth Profile Error by Finish Roll Forming (전조가공을 이용한 기어의 치형오차수정에 관한 연구)

  • Lyu Sung-Ki;Uematsu Seizo
    • Journal of the Korean Society for Precision Engineering
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    • v.22 no.4
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    • pp.159-166
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    • 2005
  • This study deals with the correction of gear tooth profile error by finish roll forming. First, we experimentally confirmed that the tooth profile error is a synthesis of the concave error and the pressure angle error. Since various types of tooth profile errors appear in the experiments, we introduced evaluation parameters for rolling gears to objectively evaluate profile quality. Using these evaluation parameters, we clarified the relationship among the tooth profile error, the addendum modification factor (A. M. factor), and the tool loading force. We verified the character of concave error, pressure angle error, tool loading force and number of cycles of finish roll forming by using a forced displacement method. This study makes clear that tool loading force and number of cycles of finish roll forming are very important factors that affect involute tooth profile error. The results of the experiment and analysis show that the proposed method reduces concave and pressure angle errors.

Comparison study on peference and perception in changed profile between dentists and lay people (측모에 대한 치과의사와 일반인의 인지도와 선호도에 관한 비교 연구)

  • Yim, S.J.;Lee, K.H.;Kook Y.A.;Mo, S.S.;Yang, M.S.;Kang Y.K.
    • The Journal of the Korean dental association
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    • v.44 no.12 s.451
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    • pp.816-829
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    • 2006
  • The purpose of this study was to determine the level of perception and preference between dentists and lay people to altered facial profile. The assessors consisted of 40 dentists and 54 lay people, the survey was performed using questionnaire asking the order of perception and preference. The profiles presented in the questionnaire were based on the profile of one man and one woman, each morphed according to anterior or posterior direction of maxilla and mandible. The results were as follows. 1. In antero-posterior change of man and woman s profile, both dentists and lay people were sensitive to relatively skeletal profile (convex profile) changes than skeletal profile (concave profile) changes. 2. At least dentists needed to be perceived a 2 mm change in convex profile and a 3 mm change in concave profile and lay people needed to be perceived a 2 mm change in convex profile and a 3 mm change in concave profile for profile view. 3. Dentists are more sensitive in perception of man s profile change than lay people, but there is no significant differences between dentists and lay people in sensitivity of detection for woman s profile changes . 4. It seems that there is a general concordance between dentists and lay people in there perception of man s and woman s facial profile. This information might be clinician in comprehensive perception and preference of dentists and lay people to altered facial profile.

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Machining Accuracy for Large Optical Mirror using On-Machine Spherical Surface ]Referenced Shack-Hartmann System (On-Machine 구면기준 Shack-Hartmann 장치를 이용한 대형 반사경의 가공 정밀도 연구)

  • Hong Jong Hui;Oh Chang Jin;Lee Eung Suk;Kim Ock Hyn
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.29 no.5 s.236
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    • pp.726-733
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    • 2005
  • A spherical surface referenced Shack-Hartmann method is studied for inspecting machining accuracy of large concave mirror This method is so strong to the vibration environment for using as an on-machine inspection system during polishing process of large optics comparing with the interferometry. The measuring uncertainty of the system is shown as less than p-v 150 m. On-machine measured surface profile data with this method is used for feed back control of the polishing time or depth to improve the surface profile accuracy of large concave mirror. Also, the spherical surface referenced Shack-Hartmann method is useful for measuring aspheric such as parabolic or hyperbolic surface profile, comparing that the interferomehy needs a special null lens, which is to be a reference and difficult to fabricate.

A Study on the Prediction of Thermal Deformation Using Temperature Analysis in Surface Grinding Process (연삭가공시 온도해석을 통한 열변형 예측)

  • 김강석;곽재섭;송지복
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1995.10a
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    • pp.19-23
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    • 1995
  • The thermal deformation of a workpiece during grinding is one of the most important factors that affect a flatness of a grinding surface. The heat generated in one-pass surface grinding causes the convex deformation of a workpiece. Therefore, the ground durfae represents a concave profile. In the analysis a simple model of the temperature distribution, based on the results of a finite element method, is applied. Theanalyzed results are compared with experimental results in surface grinding. The main results obtained are as follows: (1) The temperature distribution of a workpiece by FEM has a good agreement with the experimental results. (2) The bending moment by generated heat causes a convex deformation of the workpiece and it leads to a concave profile of the grinding surface.

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지형오차와 치형수정을 고려한 헬리컬치차의 물림진동

  • 정태형;명재형
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1995.10a
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    • pp.803-806
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    • 1995
  • The vibration and nosic of gears is causeed by manufacting error,alignment error in assembly, and thr meshing stiffness of gears which changes periodically as the meshing of teeth process. On a pair of power transmission helical gears with profile error, the relation between the characteristics of gear vibration and the profile error type have been investigated by simulating the vibrational acceleration level and calculating the natural frequency. The results show that the profile error decrease the natural frequency by reducing the tool stiffness and that the concave error type increase the vibrationsl level. And this paper describes the effect of the tip relief on the vibrational acceleration level which a pair of helical gears with concave error generates.

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The Geometric Error Analysis by Various Various Inputs In Surface Grinding (평면연삭에서 다변수 입력에 의한 형상오차 해석)

  • 김강석;홍순익;송지복
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1997.04a
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    • pp.868-872
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    • 1997
  • The thermal deformation of a workpiece during grinding is one of the most important factors that affect a flatness of a grinding surface. The heat generated in one-pass surface grinding causes the convex deformation of a workpiece. Therefore, the ground surface represents a conacve profile. In the analysis a simple model of the temperature distribution,based on the result of a finite element method, is applied. The analyzed results are compared with experimental results in surface grinding. The main results obtained are as follows; (1) The temperature distibution of a workpiece by FEM is comparatively in good agreement with the experimental results. (2) The bending moment by generated heat cause a convex deformation of the workpiece and it reads to a concave profile of the grinding surface.

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A Study on the Concave and Pressure Angle Error of Gear Finish Roll Forming (기어전조의 기어 형상 및 압력각오차에 관한 연구)

  • Jang, J.H.;Kim, J.S.;Bae, H.J.;Uematsu, S.;Cho, S.H.;Lyu, S.K.
    • Journal of the Korean Society of Safety
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    • v.23 no.4
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    • pp.13-18
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    • 2008
  • This study deals with finish roll forming by forced displacement can be conceived as a method of eliminating errors in conventional form rolling under constant loads. This method produces a high-precision tooth profile by low-speed form rolling when a high rigid screw or cam is used at the pressurized section. Tooth profile is decided in the beginning of roll forming and ${\delta}_{max}$ mainly increases if the number of roll forming process is increased. Gear class is improved by one or two class after roll forming if the gear has convex type error and pressure angle error in KS 4 class. If the gear have concave type error and pressure angle error and pressure angle error, gear class is not improved in theory, but improved a little in practice. In the finishing roll forming, it inevitably yields both the concaving of tooth profile and plastic deflection of addendum of teeth. Experiments show that the concaving and the plastic deflection are successfully reduced, the accuracy of tooth profile reaches to KS 0 class.

Case Reports of Rieger's Syndrome (Rieger증후군의 증례)

  • Kee, Woo-Cheon;Kwag, Jun-Bong
    • The Journal of the Korean dental association
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    • v.25 no.8 s.219
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    • pp.783-788
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    • 1987
  • The authors observed the two cases of Rieger's syndrome in 21-year-old male and 13-year-old female with a chief complaint of Partial anodontia of permanent teeth on both jaws. We had done the laboratory and ophthalmic examinations and had taken radiographs. Final diagnosis was established as Rieger's syndrome. We obtained the results as follows, 1. There was no peculiar hereditary tendency in them. 2. The patients had no disturbance of general physical activity and mentality. 3. The male patient had pseudoprogenathism, concave profile, congenital missing on upper anterior and second premolar teeth, and conical shaped crown of upper len celral incisor. The female patient had also pseudoprognathism, concave profile, thickened upper labial frenum, decreased upper dental arch width, congenital missing on upper anterior teeth, and delayed eruption of second premolars. 4. The ophthalmic symptoms that were ins abnormalities, decreased visual acuity, and increased intraocular pressure were present. 5. The abnormalities except dental and ophthalmic abnormalities were not round.

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CASE REPORTS OF THE TREATMENT OF FACIAL ASYMMETRY (비대칭 안모의 교정치험례)

  • Kim, Dong-Ho;Park, Seung-Jong;Lee, Dong-Joo
    • The korean journal of orthodontics
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    • v.21 no.3
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    • pp.701-709
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    • 1991
  • This paper presents 2 clinical cases of facial asymmetry resulted from vertical asymmetry of the maxilla and unilateral hyperplasia of the mandibular condyle. Both patients, a 27 year 4 month old female and a 17 year 1 month old male, had a anterior crossbite with deviated dental midline and a concave profile. Both cases were treated with orthodontic and orthognathic procedure. The following results were obtained; 1. The facial asymmetry was favorably corrected. 2. The concave profile was improved. 3. The anterior crossbite was corrected. 4. The upper and lower dental midlines against the facial midline were corrected. 5. The functional overbite and overjet were established.

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