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      • KCI등재

        그리스 윤활유의 종류에 따른 SCM44의 마찰특성

        권순구,권순홍,김원경,최원식,Kwon, Soon-Goo,Kwon, Soon-Hong,Kim, Won-Kyung,Choi, Won-Sik 한국산업융합학회 2020 한국산업융합학회 논문집 Vol.23 No.6

        Friction mechanisms is a very important role in the industrial machinery. However, many experiments have been conducted to reduce the loss of energy resources and parts used due to friction because the friction force adversely affects parts, efficiency, noise, and the like of the power unit. Therefore, in this study, the friction coefficient according to the characteristics of the lubricant was measured to find out which Grease Lubricant maintains the low friction coefficient without being most affected by external conditions. A total of five grease lubricants were tested in this study: GHP CAL 301, GHP EP 2, GHP KG 10, GHP HPG 2, and GHP HTG 2. And the friction coefficient was conducted by changing the load conditions (2, 4, 6, 8, 10N) and rotational speed (24, 48, 67, 86, 105, 124, 143, 162vrpm) using a pin-on-disk wear test system. Also, duty number were calculated. As a result, it was confirmed that in all grease lubricants, the speed did not significantly affect the friction coefficient, and it was confirmed that in all lubricants, the size of the friction coefficient decreased as the load increased from a small load to a large load. In addition, it was determined from the experimental results that GHP EP 2 is the most suitable as a grease lubricant and GHP CAL 301 is not the most suitable.

      • KCI등재후보

        문경 풋사과를 활용한 발효 연구

        권순구(Soon Goo Kwon),최선미(Sun Mi Choi),우지희(Ji Hee Woo),데스티아니 수페노(Destiani Supeno),최원식(Won Sik Choi) 한국산업융합학회 2016 한국산업융합학회 논문집 Vol.19 No.4

        In this study, Green apple from Mungyeong area was used as material in the fermentation process. In apple fruit growing process, to produce a high quality apple fruit, some Green apple should be removed. Since the removed Green apple fruit is inedible, it doesn"t have any economical value. To solve this problem, this paper proposed fermentation process to increase the economical value of raw apple as a fermentation product. This research conducted seven days, and the pH and brix value analysis was done every 12 hours during fermentation process. The experimental results show that the fermentation product under blender treatment is better than cutting treatment and without cutting treatment. Initial brix 25% is the best treatment for fermentation because produce fermentation product with a good taste and aroma than other treatment.

      • KCI등재

        반용융 성형 제품의 미세조직 영상분석을 위한 프로그램 개발

        권순구(Soon-Goo Kwon),박준홍(Joon-Hong Park) 한국산업융합학회 2001 한국산업융합학회 논문집 Vol.4 No.1

        Many products related to automobile and airplane have been manufactured by semi-solid process. There are many parameters in semi-solid process such as punch velocity, die temperature, and solid fraction of material. Among these parameters, solid fraction of material is one of the most important factors to determine quality of product. To obtain solid fraction of a certain semi-solid product is very necessary and useful for inspecting and analyzing the product. In this paper, image analysis program for microstructure by semi-solid forming process has been developed with the simple apparatus such as a personal computer and scanner, instead of expensive image analyzer.<br/>

      • KCI등재

        경도-유효변형률 관계에 관한 유한요소 해석

        권순구(Soon-Goo Kwon),박준홍(Joon-Hong Park) 한국산업융합학회 1999 한국산업융합학회 논문집 Vol.2 No.2

        It is already known that hardness value of cold-forged product is in close conjunction with its effective strain. This paper presents the method to predict the relation between effective strains and hardness values by using FE-simulation of hardness test from the conception that hardness indicates resistance to plastic deformation. The results of FE-simulation for the material with pre-strain arc compared with those of experiments of the references to show the feasibility of the proposed method.<br/>

      • KCI등재

        말뚝 결합 블록식 안벽의 수평변위 억제에 대한 수치해석 연구

        권순구(Soon-Goo Kwon),이원효(Won-Hyo Lee),김태형(Tae-Hyung Kim) 한국해안해양공학회 2023 한국해안해양공학회 논문집 Vol.35 No.6

        말뚝이 결합된 블록식 안벽의 말뚝 근입깊이의 영향에 따른 거동파악을 하기 위해 잔류수위차 크기와 상치 콘크리트 유무 조건에 대하여 2차원 수치해석을 실시하였다. 수치해석 결과, 말뚝의 근입에 따라 안벽의 수평변위의 억제 효과가 나타나는 것을 확인하였으며, 말뚝이 사석층까지 근입된 경우에서 수평변위 억제 효과가 가장 크게 나타났다. 말뚝이 근입되지 않은 조건에서는 잔류수위차가 증가함에 따라 안벽의 수평변위도 비례적으로 증가하는 것으로 나타났다. 하지만 말뚝이 지반에 근입된 경우 잔류수위차가 증가하더라도 안벽의 수평변위에 대한 제어가 크게 발휘되었다. 상치콘크리트 유·무에 따른 블록식 안벽의 수평변위는 차이가 거의 없는 것으로 나타났다. 말뚝의 근입 깊이가 사석층까지 근입된 경우 조건에서는 말뚝이 짧은 말뚝에서 보이는 회전 거동을 보이는 것으로 나타났다. 말뚝의 근입깊이가 더 깊어짐에 따라 중간 말뚝의 거동과 같은 휨거동 양상을 보이는 것으로 해석되어 말뚝이 결합된 블록식 안벽에서 말뚝이 수평변위 억제에 크게 기여하는 것을 알 수 있다. A two-dimensional numerical analysis was performed on the depth of pile embedment, the magnitude of the residual water level, and the condition of the presence or absence of cap concrete to understand the behavior of the block-type quay wall with piles. The results showed the control effect of the lateral displacement of the quay wall depending on the embedment of the pile. When the piles were not embedded, the lateral displacement of the quay wall increased proportionally as the residual water level difference increased. In contrast, when the piles were embedded into the ground, the control of the lateral displacement of the quay wall was greatly exerted even if the residual water level difference increased. There was little difference in the lateral displacement of the block-type quay wall regardless of the presence or absence of cap concrete. Under the condition where the piles were embedded down to the rubble mound layer, the piles exhibited the rotational behavior seen in the short piles. As the embedment depth of the piles increased, the piles showed the same bending behavior as the intermediate piles. Thus, the piles significantly contribute to the control of lateral displacement in the block-type quay wall with piles.

      • KCI등재

        공압 실린더 액츄에이터 위치제어

        권순홍(Soon-Hong Kwon),최원식(Won-Sik Choi),정성원(Sung-Won Chung),박종민(Jong-Min Park),권순구(Soon-Goo Kwon),서정덕(Jung-Duk So) 한국기계가공학회 2011 한국기계가공학회지 Vol.10 No.6

        The fluid power products are widely used in current industrial area such as automation of products and equipment assembly, high-tech machine tool, aircraft, train, and etc. As the development of industry is in progress, the development of the fluid power products is demanding and it is required in every industrial area. This research proposed a pneumatic system to evaluate displacement accuracy of the pneumatic actuator without external load and to analyze capability of integration of the valve system. The pneumatic system consisted of a combination of pneumatic actuator, four two-port valves, two three-port valves, two pressure valve, a check valve, two proximity sensors, and a program logic controller (PLC). The position controller is based on the PLC connected with the proximity sensors. The maximum air pressure applied for tests was 49.05N/㎠ and the displacement accuracy of a stroke was measured using a dial gauge. The supply- and discharge-side of air pressure and the length of the stroke of the pneumatic cylinder were varied The test of the position control of the pneumatic cylinder was carried out 50 times at each supply- and discharge-side air pressure of 24.53/34.34, 29.43/39.24, 34.34/44.15, and 39.24/49.05N/㎠ and replicated three times. The accuracy of the displacement of the pneumatic cylinder stroke increased as the supply- and discharge-side of air pressure increased with the stroke length of 133mm. Also the displacement accuracy increased as the stroke length increased with the fixed supply- and discharge-side of air pressure of the pneumatic cylinder as 34.34 and 44.15N/㎠, respectively. The most accurate displacement of the pneumatic cylinder was obtained at the supplyand discharge-side of air pressure of 39.24 and 49.05N/㎠, respectively, and strokes of 170 and 190mm.

      • KCI등재

        벌크화물용 포장용기의 최적 설계(I)-알고리즘 개발

        박종민,권순구,Park, Jong-Min,Kwon, Soon-Goo 한국포장학회 2000 한국포장학회지 Vol.6 No.1

        In optimum design of packaging container for bulk materials, minimum board area, compression performance and distribution efficiency must be considered. In this study, mathematical models for minimum board area (RMA), compression strength (CS) and maximum compression strength per unit board area (MCSA) of container as algorithm for optimum design of packaging conatiner for bulk materials were developed as follows : RMA=f(V,D), ${\alpha}_{RMA}=f(V,D)$, MCSA=f(V,D), and ${\alpha}_{MCSA}=f(V,D)$. In order to develop these models, compression test according to various dimensions of container and response surface analysis for minimum board area, compression strength, and maximum compression strength per unit board area of container were carried out. In developed models, volume and depth of container were principal independent variables. Through the verified results for these models, optimum design of packaging container on the design conditions and limit conditions was possible. These models might be used in developing optimum design software of packaging container for bulk materials.

      • KCI등재
      • KCI등재

        고속 스핀들의 동적거동과 밸런싱 해석

        구자함(Ja-Ham Koo),권순구(Soon-Goo Kwon),김종순(Jong-Soon Kim) 한국산학기술학회 2017 한국산학기술학회논문지 Vol.18 No.1

        공작기계 응용에 있어서 고속 및 고효율 가공의 추세는 스핀들의 고속화를 지속적으로 요구하고 있다. 내장형 모터를 장착한 스핀들은 가공시스템의 구조를 단순하게 한다. 하지만 로터에는 불평형 질량에 의해 진동이 발생하며, 이를 제거하기 위한 밸런싱 작업은 필수적이다. 이 논문에서는 내장형 모터를 장착한 고속 스핀들의 동적거동을 해석하였다. 불평형 질량, 베어링 강성, 회전 속도의 변화에 따른 휘돌림 궤적을 해석하였고, 이를 저감시키는 방법을 모색하였다. 또한 Timoshenko 빔 요소를 적용하여 스핀들-베어링 시스템을 모델링하고, 영향 계수법을 적용하여 밸런싱 과정을 시뮬레이션 하였다. 스핀들의 경우, 불평형 하중이 작용할 때, 베어링 지지점에서 가장 작은 휘돌림 궤적이 나타났으며, 양단에서 가장 큰 휘돌림 궤적을 나타내었다. 스핀들의 회전속도가 증가함에 따라 스핀들 선단에서의 휘돌림 궤적도 증가하였다. 베어링의 강성이 커짐에 따라 휘돌림 궤적 또한 증가하였다. 밸런싱 전, 후의 휘돌림 궤적 반경은 최대 73%까지 감소함을 확인할 수 있었다. 이러한 연구 결과는 CNC 자동선반의 스핀들 고속화에 중요한 정보를 제공하고 있다. A spindle with a built-in motor can be used to simplify the structure of a machine tool system, but the rotor inevitably has unbalanced mass. This paper presents an analysis of the dynamic behavior. The spindle was used in a CNC lathe and investigated using the finite element method and transfer matrices. The high-speed spindle can be very sensitive to the rotation of an unbalanced mass, which has a harmful effect on many machine tools. Thus, a balancing procedure was performed with a spindle-bearing system for the CNC lathe by numerical analysis. The balancing was performed through the influence coefficient method, and the whirl orbit radii before and after balancing were compared to evaluate the effects. The results show that the rotational speed of the spindle seriously affects the whirl responses of the spindle. The whirl responses were also affected by other factors, such as the unbalanced mass and bearing stiffness. The balancing of the assembled spindle model significantly reduced the whirl orbit magnitude.

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