• 제목/요약/키워드: Shot Velocity

검색결과 103건 처리시간 0.024초

아이스 하키 슬랩 샷(slap shot)의 운동학적 분석 (Kinematic analysis of Ire hockey slap shot)

  • 문곤성;박종률
    • 한국운동역학회지
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    • 제13권2호
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    • pp.13-28
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    • 2003
  • The purpose of this study was to analyze the kinematic characteristics of Ice hockey slap shot. The subjects of this study were four professional ice hockey players. The reflective markers were attached on the anatomical boundary line of body and the subjects were asked to perform the shot. Ariel Performance Analysis System was used to capture and digitize the shooting image, the data were analyzed by LabView 6i. The results were as fellows. 1. The period of the back swing phase was $0.542{\pm}0.062sec$, the down swing phase was $0.28{\pm}0.056sec$ and the total swing time was $0.825{\pm}0.017sec$ 2. The maximum linear velocity of the stick blade for x direction was shown after 7% of impact, for y, z direction were shown before 2%, 8% of Impact. 3. The maximum velocity of each segment for the left arm was $2.35{\pm}0.05m/s$ in the upper arm, $3.56{\pm}0.34m/s$ in the forearm, $4.75{\pm}0.67m/s$ in the hand. 4. The maximum velocity of each segment for the right arm was $4.67{\pm}0.43m/s$ in the upper arm, $7.22{\pm}0.69m/s$ in the forearm, $9.42{\pm}0.89m/s$ in the hand. 5. The angle of left elbow was generally flexed from the ready stance to the impact and was $82.26{\pm}3.45^{\circ}$ the moment of Impact. 6. The angle of the left shoulder was increased ut the down swing phase and was $78.74{\pm}4.78^{\circ}$ on the moment of impact. 7. The angle of the right shoulder was decreased in the down swing phase and increased before the impact. and the angle was $51.28{\pm}3.54^{\circ}$ on the moment of impact.

단일 숏 충돌시 피닝잔류응력 유일해를 위한 2차원 유한요소해석 모델 (A 2D FE Model for Unique Solution of Peening Residual Stress in Single Shot Impact)

  • 김태형;이형일
    • 대한기계학회논문집A
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    • 제32권4호
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    • pp.362-370
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    • 2008
  • In this paper, we propose a 2D-FE model in single impact with combined physical factors to obtain a unique residual stress by shot peening. Applied physical parameters consist of elastic-plastic deformation of shot ball, material damping coefficients, strain rate, dynamic friction coefficients. As a kinematical parameter, there is impact velocity. Single impact FE model consists of 2D axisymmetric elements. The FE model with combined factors showed converged and unique distributions of surface stress, maximum compressive residual stress and deformation depth. Further, in contrast to the FE models with rigid shot and elastic deformable shot, FE model with plastic deformable shot produces residual stresses very close to experimental solutions by X-ray diffraction. We therefore validated the 2D FE model with combined peening factors and plastic deformable shot. This FE model will be a base of the 3D FE model for residual stresses by multi-impact shot peening.

A three-dimensional finite element analysis of two/multiple shots impacting on a metallic component

  • Hong, T.;Ooi, J.Y.;Shaw, B.A.
    • Structural Engineering and Mechanics
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    • 제29권6호
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    • pp.709-729
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    • 2008
  • This paper describes a three-dimensional dynamic finite element analysis of two/multiple shots impacting on a metallic component. The model is validated against a published numerical study. An extensive parametric study is conducted to investigate the effect of shot impacting with overlap on the resulting residual stress profile within the component, including time interval between shot impacts, separation distance between the impacting points, and impacting velocity of successive shots. Several meaningful conclusions can be drawn regarding the effect of shot impacting with overlap.

남자 고등부 포환던지기 선수들의 연도 별 기록에 따른 글라이드와 딜리버리 국면의 운동학적 차이 (The Analysis of Kinematic Difference in Glide and Delivery Phase for the High School Male Shot Putter's Records classified by Year)

  • 박재명;장재관;김태삼
    • 한국운동역학회지
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    • 제23권4호
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    • pp.295-306
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    • 2013
  • The purpose of this study was to provide high school male shot putters training methods of gliding and delivery motion through comparative analysis of kinematic characteristics. To accomplish this purpose, three dimensional motion analysis was performed for the subjects(PKC, KKH, YDL) who participated in high school male shot putter competition on 92nd (2011), 93rd (2013) National Sports Festival. The subjects were filmed by four Sony HXR-MC2000 video cameras with 60 fields/s. The three-dimensional kinematic data of the glide, conversion and delivery phase were obtained by Kwon3d 3.1 version. The data of the shoulder rotational angles and projection angles were calculated with Matlab R2009a. The following conclusions had been made. With the analysis of the gliding and stance length ratio, the gliding length was shorter at the TG than the SG with short-long technique but the gliding and stance length ratio was 46.8:53.2% respectively. The deviation of the shots trajectory from APSS(Athlete-plus-shot-system) revealed that the PKC showed similar to "n-a-b-c-I" of skilled S-shape type, KKH and YDL showed "n-a-d-f-I'" of unskilled type. Furthermore, they showed smaller radial distance from the central axis of the APSS and the shots were away from the linear trajectory. From this characteristics, The PKC who performed more TG than SG had shorter glide with S-shape of APSS(skilled type) showed the better record than others with technical skill. But KKH and YDL had bigger glide ratio with "n-a-d-f-I'" of unskilled type and improved their records with technical factor. The projection factor had an effect on the record directly. Because PKC maintained more lower glide and transition posture with momentum transfer through COG's rapid horizontal velocity respectively the subject possessed the characteristics of high horizontal and vertical velocity with large turning radius from shot putter to APSS.

쇼트피닝 잔류응력 예측을 위한 유한요소해석 (Finite Element Analysis for Prediction of Residual Stresses Induced by Shot Peening)

  • 김철;양원호;성기득;고명훈
    • 한국자동차공학회논문집
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    • 제9권1호
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    • pp.198-204
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    • 2001
  • The shot peening is largely used for a surface treatment of metallic components where small spherical pellets called shots are blasted onto the surface with velocities up to 100 m/s. This treatment leads to improvement of fatigue behavior due to the developed compressive residual stresses, and so it has gained widespread acceptance I the automobile and aerospace industries. The residual stress profile on surface layer depends on the parameters of shot peening, which are, shot velocity, shot diameter, coverage, impact angle, material properties etc. and the method to confirm this profile is the measurement by X-ray diffractometer only. Despite the importance to automobile ad aerospace industries, little attention has been devoted to the accurate modelling of the process. In this paper, the simulation technique is applied to predict the magnitude ad distribution of the residual stress and plastic deformation caused by shot peening with the help of the finite element analysis.

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쇼트피닝 잔류응력 예측을 위한 유한요소해석 (The Finite Element Analysis for Prediction of Residual Stresses Induced by Shot Peening)

  • 김철;양원호;성기득;조명래;고명훈
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 춘계학술대회논문집A
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    • pp.218-223
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    • 2000
  • The shot peening is largely used for a surface treatment in which small spherical parts called shots are blasted on a surface of a metallic components with velocities up to 100m/s. This treatment leads to an improvement of fatigue behavior due to the developed compressive residual stresses, and so it has gained widespread acceptance in the automobile and aerospace industries. The residual stress profile on surface layer depends on the parameters of shot peening, which are, shot velocity, shot diameter, coverage, impact angle, material properties etc. and the method to confirm this profile is only measurement by X-ray diffractometer. Despite its importance to automobile and aerospace industries, little attention has been devoted to the accurate modelling of the process. In this paper, the simulation technique is applied to predict the magnitude and distribution of the residual stress and plastic deformation caused by shot peening with the help of the finite element analysis.

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남자프로골퍼의 30 야드 칩샷과 피치샷 동작의 운동학적 차이 (Kinematical Differences of the Male Professional Golfers' 30 Yard Chip Shot and Pitch Shot Motion)

  • 편은경;박영훈;염창홍;손승;서국웅;서국은
    • 한국운동역학회지
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    • 제17권2호
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    • pp.177-185
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    • 2007
  • Even though there were no clear definitions of the short game and short game distance, short game capability is crucial for a good golf score. Generally, chip shot and pitch shot are regarded as two principal components of the short game. Chip shot is a short, low trajectory shot played to the green or from trouble back into play. Pitch shot is a high trajectory shot of short length. Biomechanical studies were conducted usually to analyze full swing and putting motions. The purpose of the study was to reveal the kinematical differences between professional golfers' 30 yard $53^{\circ}wedge$ chip shot and $56^{\circ}wedge$ pitch shot motions. Fifteen male professional golfers were recruited for the study. Kinematical data were collected by the 60 Hz three-dimensional motion analysis system. Statistical comparisons were made by paired t-test, ANOVA, and Duncan of the SPSS 12.0K with the $\alpha$ value of .05. Results show that both the left hand and the ball were placed left of the center of the left and right foot at address. The left hand position of the chip shot was significantly left side of that of the pitch shot. But the ball position of the pitch shot was significantly right side of that of the chip shot. All body segments aligned to the left of the target line, open, at address. Except shoulder, there were no significant pelvis, knee, and feet alignment differences between chip shot and pitch shot. These differences at address seem for the ball height control. Pitch shot swing motions(the shoulder and pelvis rotation and the club head travel distance) were significantly bigger than those of the chip shot. Club head velocity of the pitch shot was significantly faster than that of the chip shot at the moment of impact. This was for the same shot length control with different lofted clubs. Swing motion differences seem mainly caused by the same shot length control with different ball height control.

주기적 송신원 추출과 참조 송신원 부분집합을 이용한 완전 파형 역산 (Full Waveform Inversion using a Cyclic-shot Subsampling and a Reference-shot Subset)

  • 조상훈;하완수
    • 지구물리와물리탐사
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    • 제22권2호
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    • pp.49-55
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    • 2019
  • 본 연구에서는 주기적 송신원 추출 기법을 사용한 완전 파형 역산 시 목적함수의 안정적인 수렴을 위해 참조 송신원 부분집합을 사용하는 방법을 제안하였다. 완전 파형 역산은 반복적인 파동 전파 모델링을 통해 수행되며, 송신원 개수가 증가할수록 계산 시간이 증가하게 된다. 완전 파형 역산의 계산량을 줄이기 위한 기법들 중 하나로, 주기적 송신원 추출 기법을 사용할 수 있지만 이 경우 역산 초기부터 목적함수가 진동하며 수렴하기 때문에 수렴 판별에 문제가 생기게 된다. 이러한 문제를 해결하고자 본 연구에서는 주기적 송신원 추출 기법을 이용해 모델을 갱신하되, 고정된 참조 송신원 부분집합을 이용해 목적함수를 계산하는 방법을 제안하였다. Marmousi 속도 모델을 이용한 완전 파형 역산 예제를 통해 참조 송신원 부분집합을 이용하면 주기적 송신원 추출 기법을 사용하더라도 목적함수가 안정적으로 수렴할 수 있음을 확인하였다.

제주분지 제 5광구 탄성파자료의 중합전 역시간 구조보정 (Prestack Reverse Time Migration for Seismic Reflection data in Block 5, Jeju Basin)

  • 고진석;장성형
    • 자원환경지질
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    • 제43권4호
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    • pp.349-358
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    • 2010
  • 탄성파 심도영역 중합전 역시간 구조보정은 음원영역 파동외삽과 수진기영역 파동외삽의 상호상관으로 지층구조를 영상화하는 방법으로 암염돔 하부, 단층, 습곡, 심한 경사층 등 복잡한 층서구조를 영상화하는데 주로 이용된다. 여기에서는 한국지질자원연구원에서 개발된 중합전 심도영역 역시간 구조보정 기술을 국내 대륙붕 제주분지 제 5광구 탄성파 현장자료에 적용하여 음원번호 1280번 하부에 존재하는 향사 층서구조 영상을 향상시키고자 하였다. 음원모음 신호음을 향상시키기 위해 기본 자료처리를 실시하였고, 반복적으로 속도스펙트럼을 계산하는 방법으로 중합속도를 결정하여 속도모델을 구축하였다. 중합단면도상에 나타나는 향사구조는 산란파 영향으로 지층경계면의 연속성이 떨어져 보이지만 구조보정 적용 결과 탄성파 반사 에너지가 집중된 곳에서 향사구조 영상이 향상된 심도영역 지층단면도를 구할 수 있었다.

다중충돌 피닝잔류응력 평가를 위한 소성숏이 포함된 3차원 유한요소해석 모델 (A 3D FEA Model with Plastic Shots for Evaluation of Peening Residual Stress due to Multi-Impacts)

  • 김태형;이형일
    • 대한기계학회논문집A
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    • 제32권8호
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    • pp.642-653
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    • 2008
  • In this paper, we propose a 3-D finite element (FE) analysis model with combined physical behavior and kinematical impact factors for evaluation of residual stress in multi-impact shot peening. The FE model considers both physical behavior of material and characteristics of kinematical impact. The physical parameters include elastic-plastic FE modeling of shot ball, material damping coefficient, dynamic friction coefficient. The kinematical parameters include impact velocity and diameter of shot ball. Multi-impact FE model consists of 3-D symmetry-cell. We can describe a certain repeated area of peened specimen under equibiaxial residual stress by the cell. With the cell model, we investigate the FE peening coverage, dependency on the impact sequence, effect of repeated cycle. The proposed FE model provides converged and unique solution of surface stress, maximum compressive residual stress and deformation depth at four impact positions. Further, in contrast to the rigid and elastic shots, plastically deformable shot produces residual stresses closer to experimental solutions by X-ray diffraction. Consequently, it is confirmed that the FE model with peening factors and plastic shot is valid for multi-shot peening analyses.