• Title/Summary/Keyword: shaker

Search Result 250, Processing Time 0.022 seconds

Development of a Low Frequency Vibration Shaker Using Force Frequency Shifting (가진주파수 이동현상을 이용한 저주파 가진기의 개발)

  • ;L. L. Koss
    • Transactions of the Korean Society for Noise and Vibration Engineering
    • /
    • v.13 no.4
    • /
    • pp.274-280
    • /
    • 2003
  • If a sinusoidal excitation force moves back and forth along a structure with a certain frequency, the structure will be excited with the difference frequency of these two frequencies. A low frequency vibration shaker has been developed using this force frequency shifting without actually moving a shaker The shaker consists of an ordinary eccentric mass shaker, a plate, constant springs, and time varying dampers. The dampers are turned on and off in a sequential manner to simulate a traveling slide of an excitation force. The operation of the shaker is simulated by solving the equations of motion of the shaker. Characteristics of the shaker have been found and they can be utilized to design efficient low frequency shakers.

Development of a Low Frequency Vibration Shaker Using Force Frequency Shifting (가진주파수 이동현상을 이용한 저주파 가진기의 개발)

  • Lee, Gun-Myung;Koss, L.L.;Lee, Jung-Soo
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
    • /
    • 2002.11b
    • /
    • pp.182-186
    • /
    • 2002
  • If a sinusoidal excitation force moves back and forth along a structure with a certain frequency, the structure will be excited with the difference frequency of these two frequencies. A low frequency vibration shaker has been developed using this force frequency shifting without actually moving a shaker. The shaker consists of an ordinary eccentric mass shaker, a plate, constant springs, and time varying dampers. The dampers are turned on and off in a sequential manner to simulate a traveling slide of an excitation force. The operation of the shaker is simulated by solving the equations of motion of the shaker. Characteristics of the shaker have been found and they will be utilized to design efficient low frequency shakers.

  • PDF

Comparison of Chin Tuck Against Resistance and Shaker Exercise on Suprahyoid and Sternocleidomastoid Muscle Activity in Stroke Older Patients with Dysphagia (삼킴 장애가 있는 뇌졸중 노인 환자에서 저항성 고개 숙이기 운동과 Shaker 운동의 목뿔위 및 목빗근 활성 비교)

  • Kim, Bon Yi;Lee, Seul;Moon, Jong Hoon;Won, Young Sik
    • 재활복지
    • /
    • v.20 no.3
    • /
    • pp.179-193
    • /
    • 2016
  • Chin Tuck Against Resistance Exercise(CTARE) and Shaker exercise is used to common for strengthening of suprahyoid muscle. No previous studies was compare of two exercises for patients with dyaphagia. This study investigated the effects of CTARE and Shaker exercise on suprahyoid, sternocleidomastoid muscle activity in stroke older patients with dysphagia. Ten stroke patients with dyaphagia voluntarily participated in this study. All subjects was performed in the order in the CTARE (isometric, isokinetic), Shaker (isometric, isokinetic), and repeated each ten trials. After CTARE was performed, subjects took a 5 min wash out period to minimize muscle fatigue. Activity of suprahyoid and sternocleidomastoid muscle during two training was analyzed using surface electromyography(sEMG). Wilcoxon signed rank test was used to assess differecences for muscles activity between the effects of the CTAR and Shaker exercise within group. CTARE and Shaker exercise showed no significant difference activity in suprahyoid muscle(p > .05). CTARE showed significantly lower muscle activity in sternocleidomastoid muscle than Shaker exercise(p < .05). CTARE in stroke older patients with dysphagia may be a effective intervention to improve swallowing function than Shaker exercise.

Analysis on the Dynamic Behavior of Shaker (가진기의 동적 거동 해석)

  • 한상보;김윤환;송장규
    • Journal of KSNVE
    • /
    • v.8 no.1
    • /
    • pp.75-80
    • /
    • 1998
  • It is a well known fact that the shaker used in the vibration test interacts with the test structure and thus influences the test results. A two degree of freedom model of shaker is suggested and the vibration parameters of this model is experimentally extracted. According to this experimental results, the vibration parameters of the shaker can vary with respect to the test structure as well as the stinger used in the connecting mechanism. It is also found that the vibration parameters of the shaker provided by the manufacturer can not be accurate and these parameter values should be revaluated based on the test environments.

  • PDF

Structural and Vibration Analysis of On-shore Drilling System Consisting of Shale Shaker (시추용 육상 드릴링 시스템의 셰일 쉐이커 구조 및 진동해석)

  • Ban, Im-jun;Lim, Chae-og;Shin, Sung-chul
    • Journal of the Korean Society of Industry Convergence
    • /
    • v.23 no.6_2
    • /
    • pp.1033-1042
    • /
    • 2020
  • Shale shaker which is one of the mud circulation systems is composed of a basket, a vibrator and a screen. Its purpose of a shale shaker is to induce drilling fluid to flow through a screen, transport solids across a screen surface, and discharge solids off the end of the screen. The new shale shaker for the on-shore drilling system is designed to be smaller than the original shale shaker which has the same capacity with the new on to enable to transport and to operate on the trailer. In this study, structural and vibrational analysis of shale shaker was carried out to evaluate the appropriateness of the design in terms of the structural stability.

Design and Development of Shaker for Acceleration test of Gimbal (김발의 가속도 시험용 Shaker의 설계 및 개발)

  • Yoon, Jae-Youn
    • Journal of the Korean Society for Precision Engineering
    • /
    • v.18 no.1
    • /
    • pp.147-153
    • /
    • 2001
  • This paper proposes a shaker system design for acceleration test of gimbal. Main reason of shaker system design is to give acceleration to the gimbal, which is moving and tracking the target on the tracking test equipment. The shaker system is mounted on the tracking test equipment. It uses the scotch yoke mechanism to have the constant movement in return. The Scotch yoke mechanism changes the rotational movement of constant velocity to simple harmonic motion.

  • PDF

Development of n Low Frequency Vibration Shaker Using Force Frequency Shifting (가진주파수 이동현상을 이용한 저주파 가진기의 개발)

  • Lee, Gun-Myung;L.Koss;Lee, Jung-Soo
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
    • /
    • 2002.11a
    • /
    • pp.324.2-324
    • /
    • 2002
  • If a sinusoidal excitation force moves back and forth along a structure with a certain frequency, the structure will be excited with the difference frequency of these two frequencies. A low frequency vibration shaker has been developed using this force frequency shifting without actually moving a shaker. The shaker consists of an ordinary eccentric mass shaker, a plate, constant springs, and time varying dampers. The dampers are fumed on and off in a sequential manner to simulate a traveling slide of an excitation force. (omitted)

  • PDF

A virtual shaker testing experience: Modeling, computational methodology and preliminary results

  • Nali, Pietro;Bettacchioli, Alain;Landi, Guglielmo;Gnoffo, Marco
    • Advances in aircraft and spacecraft science
    • /
    • v.5 no.2
    • /
    • pp.251-258
    • /
    • 2018
  • This work illustrates the progress of a TAS activity at exploring the challenges and the benefits of the Virtual Shaker Testing (VST) approach. The definition and the validation of new computational methodologies with respect to the state of the art were encouraged throughout this activity. The shaker Finite Element (FE) model in lateral configuration was built for the purpose and it was merged with the SpaceCraft (S/C) FE model, together with the S/C-Shaker adapter. FE matrices were reduced through the Craig-Bampton method. The VST transient analysis was performed in MATLAB(R) numerical computing environment. The closed-loop vibration control is accounted for and the solution is obtained through the fourth-order Runge Kutta method. The use of pre-existing built-in functions was limited by authors with the aim of tracing the impact of all the problems' parameters in the solution. Assumptions and limitations of the proposed methodology are detailed throughout this paper. Some preliminary results pertaining to the current progress of the activity are thus illustrated before the conclusions.

Study on the Manufacturing of Compact Electronic Shaker for Vibration Test (진동 시험용 소형 전자식 가진기 제작에 관한 연구)

  • Joo, Kangwo;Lee, Jaegyoung;Lee, Bonggun;Yoon, Hyejun;Kim, Kwang sun
    • Journal of the Semiconductor & Display Technology
    • /
    • v.14 no.1
    • /
    • pp.31-37
    • /
    • 2015
  • This paper is on the design and manufacturing of vibration tester (shaker) for experiments about effects on the performance of semiconductor chips and Li-ion batteries by vibration. Shaker in the market are quite expensive, it is difficult for basic researchers to contact. In this study, in order to improve this, we designed and manufactured with an entry-level into mass production possible approaches in terms of performance required to a minimum. The shaker system is operated by Matlab and LabView. The target performances are 200Hz frequency and 5% error, and these were satisfied.

A lower bound analytical estimation of the fundamental lateral frequency down-shift of items subjected to sine testing

  • Nali, Pietro;Calvi, Adriano
    • Advances in aircraft and spacecraft science
    • /
    • v.7 no.1
    • /
    • pp.79-90
    • /
    • 2020
  • The dynamic coupling between shaker and test-article has been investigated by recent research through the so called Virtual Shaker Testing (VST) approach. Basically a VST model includes the mathematical models of the test-item, of the shaker body, of the seismic mass and the facility vibration control algorithm. The subsequent coupled dynamic simulation even if more complex than the classical hard-mounted sine test-prediction, is a closer representation of the reality and is expected to be more accurate. One of the most remarkable benefits of VST is the accurate quantification of the frequency down-shift (with respect to the hard-mounted value), typically affecting the first lateral resonance of heavy test-items, like medium or large size Spacecraft (S/Cs), once mounted on the shaker. In this work, starting from previous successful VST experiences, the parameters having impact on the frequency shift are identified and discussed one by one. A simplified analytical system is thus defined to propose an efficient and effective way of calculating the lower bound frequency shift through a simple equation. Such equation can be useful to correct the S/C lateral natural frequency measured during the test, in order to remove the contribution attributable to the shaker in use. The so-corrected frequency value becomes relevant when verifying the compliance of the S/C w.r.t. the frequency requirement from the Launcher Authority. Moreover, it allows to perform a consistent post-test correlation of the first lateral natural frequency of S/C FE model.