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나영민,이현석,강태훈,박종규,박태곤,Na, Yeong-min,Lee, Hyun-seok,Kang, Tae-hun,Park, Jong-kyu,Park, Tae-gone 한국재료학회 2015 한국재료학회지 Vol.25 No.10
Electricity generation through fossil fuels has caused environmental pollution. To solve this problem, research on new renewable energy (solar, wind, geothermal heat, etc.) to replace fossil fuels is in progress. These devices are able to consistently generate power. However, they have many drawbacks, such as high installation costs and limitations in possible set-up environments. Thus, piezoelectric harvesting technology, which is able to overcome the limitations of existing energy technologies, is actively being studied. Piezoelectric harvesting technology uses the piezoelectric effect which occurs in crystals that generate voltage when stress is applied. Therefore, it has advantages such as a wider installation base and lower technological cost. In this study, a piezoelectric energy harvesting device based on constant wave motion was investigated. This device can regenerate electricity in a constant turbulent flow in the middle of the sea. The components of the device are circuitry, a steel bar, an bimorph piezoelectric element and buoyancy elements. In addition, a multiphysical analysis coupled with the structure and piezoelectric elements was conducted to estimate the performance of the device. With this piezoelectric energy harvesting device, the displacement and electric power were analyzed.
초음파 센서를 이용한 모션 인식 차량 통합 제어 장치의 제작 및 실험
나영민 ( Yeong Min Na ),박종규 ( Jong Kyu Park ),이현석 ( Hyun Seok Lee ),강태훈 ( Tae Hun Kang ) 한국센서학회 2015 센서학회지 Vol.24 No.3
Worldwide, studies on intelligent vehicles for the convenience of drivers have been actively conducted as the number of cars has increased. However, vehicle convenience enabled by buttons lowers the concentration on driving and hence poses as a huge threat to the safety of the driver. The use of one of the convenient features, impaired driving auxiliary equipment, is limited because of its complex usage, and this device also hinders the front view of the driver. This paper proposes a vehicle-control device for controlling the convenient features as well as changes in speed and direction using gestures and motions of the driver. This device consists of an ultrasonic sensor for recognizing movement, an arduino for accepting signal control functions and servo and DC motors apply to various vehicle parts. Firstly, the vehicle-control device was designed using a 3D CAD program known as Solidworks based on the size of the steering wheel. Then, through simulations, a suitable length for minimizing the absorbent between ultrasonic sensors was confirmed using a program known as COMSOL Multiphysics. Finally, simulation results were verified through experiments, and the optimal size of the device was identified through the number of errors.
면취 공정의 능동 제어를 위한 공압식 자동 강재 면취기와 센서 시스템의 제작 및 실험
나영민(Yeong-min Na),이현석(Hyun-seok Lee),김민효(Min-hyo Kim),박종규(Jong-kyu Park) 한국기계가공학회 2020 한국기계가공학회지 Vol.19 No.12
With the exception of welding activities, it is forbidden to use electricity in shipyards, owing to safety concerns such as the possibility of fire, explosions, and short circuits. In this paper, an automatic chamfering machine using pneumatics is proposed for use in such environments. Customers specify their requirements and the machine derives the corresponding theoretical design conditions. The proposed machine was used to perform 3D modeling, and its suitability and performance were confirmed via cutting experiments of the manufactured device. Two types of sensors may be used in this system: contact and non-contact. In the case of the contact type, an end-stop switch that can recognize the end of the material is installed, and when the machine reaches the end of the material, the end-stop switch is operated to cut off the air pressure. In the non-contact type, four sensors were used: photonic, ultrasonic, metal detection, and encoder. The use of the four sensors was repeated 30 times, and the average error determined. Thus, the optimum sensor was identified.
유선형 차체가 적용된 1인용 저속 전기 자동차의 설계 및 제작
나영민(Yeong-min Na),박종규(Jong-kyu Park) 한국기계가공학회 2018 한국기계가공학회지 Vol.17 No.4
In recent years, with the growing interest in electric vehicles, the development of a Neighborhood Electronic Vehicle (NEV) made for urban driving is accelerating. Existing NEVs are set to ~0.3 - 0.35 with more emphasis on performance rather than minimizing air resistance. In this paper, a NEV with a streamlined car body is proposed. The shape of dolphins and sharks was applied to the car body to minimize the air resistance generated when driving. Also, the performance of the vehicle was estimated by calculating the traction force and the roll couple, etc. To check the drag coefficient of the car body, finite element analysis software (COMSOL Multiphysics) was used. The frame of the vehicle is divided into the forward and the rear parts. Carbon pipe is used for the frame by MIG welding. The car body of the vehicle was fabricated by forming carbon fiber. This study confirmed the general possibility of using NEVs through driving experiments.
나영민(Yeong Min Na),이현석(Hyun Seok Lee),박종규(Jong Kyu Park) 대한기계학회 2014 大韓機械學會論文集A Vol.38 No.5
최근에, 의학 분야의 MEMS 기술이 발전하면서 다양한 미세 유체 이송 시스템이 연구되고 있다. 본 논문에서는 기존의 펌프와는 다른, 두 개의 분리된 압전 판을 이용해 위장의 연동 운동을 모방한 마이크로 압전 펌프를 제안한다. 본 펌프는 진행파를 이용해 연동 운동을 일으켜 작동된다. 특히, 압전판에서 인가된 입력 전압에 의해 발생된 변위에 의해 동작된다. 이에 두 판 사이에서 진행파가 일어나며 유체는 진행파에 의해 생성된 압력차에 의해 이동된다. 압전 소자, 탄성체, 유체가 복합된 시스템을 이해하기 위해서 유한 요소 해석을 사용하였다. 챔버의 높이, 세라믹 개수 등의 설계 변수들을 변화시켜 유체의 유량을 확인하였다. Since the development of microelectromechanical systems (MEMS) technology for the medical field, various micro?fluid transfer systems have been studied. This paper proposes a micro?piezoelectric pump that imitates a stomach"s peristalsis by using two separate piezoelectric elements, in contrast to existing micro-pumps. This piezoelectric pump is operated by using the valve-less traveling wave of peristalsis movement. If the piezoelectric plates at the two separated plates are actuated at the input voltage, a traveling wave occurs between the two plates. Then, the fluid migrates by the pressure difference generated by the traveling wave. Finite element analysis was performed to understand the mechanics of the combined system with piezoelectric elements, elastic structures, and fluids. The effects of design variables such as the chamber height and number of ceramics on the flow rate of the fluid were examined.
나영민(Yeong-Min Na),박종규(Jong-Kyu Park) 한국기계가공학회 2017 한국기계가공학회지 Vol.16 No.1
The pollution problem of fossil energy sources has caused the development of green energy harvesting systems. Piezoelectric energy harvesting technology has been developed under those external environmental factors. A piezoelectric energy harvester can be defined as a device which transforms mechanical vibration or impact energy into electrical energy. Most researches have focused on bender structures. However, these have a limitation on energy efficiency because of the small effective electromechanical coupling factor, around 10%. Therefore, we should look for a new design for energy harvesting. A cymbal energy harvester can be a good candidate for the high-power energy harvester because it uses a high amplification mechanism using endcaps while keeping a higher electromechanical coupling factor. In this research, we focused on energy efficiency improvements of the cymbal energy harvester by changing the polarization direction, because the electromechanical coupling factor of the k33 mode and the k15 mode is larger than that of the k31 mode. Theoretically, we checked the cymbal harvester with radial polarization and it could obtain 6 times larger energy than that with the k31 direction polarization. Furthermore, we verified the theoretical expectation using the finite element method program. Consequently, we could expect a more efficient cymbal harvester with the radial polarization by comparing two polarization directions.
Hyun-seok Lee(이현석),Yeong-min Na(나영민),Hyun-su Jang(장현수),Ik-hyun Suk(석익현),Sin-hyun Kang(강신현),Hun-tae Kim(김훈태),Jong-kyu Park(박종규) 한국기계가공학회 2019 한국기계가공학회지 Vol.18 No.1
In this paper, the stability of the tunnel boring machine (TBM), used in tunnel excavation, according to the thrust force of the thrust jack was investigated. The existing hydraulic cylinder analysis method is fluid-structure interaction (FSI) analysis, where all of the flow setting and dynamic characteristics should be considered. Therefore, there is a need for a method to solve this problem simply and quickly. To facilitate this, the theoretical pressure in the hydraulic cylinder was calculated and compared with the analytical and experimental results. In the case of the analysis, the pressure generated inside the cylinder was analyzed statically, considering the operating characteristics of the shield TBM, and the stress and pressure were calculated. This method simplifies the analysis environment and shortens the analysis time compared to the existing analysis method. The obtained theoretical and analytical data were compared with the measured data during actual tunneling, and the analysis and experimental data showed a relative error of approximately 23.89%.