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      • KCI등재

        수도(水稻)의 역학적(力學的) 및 리올러지 특성(特性)에 관(關)한 연구(硏究)

        허윤근,차균도,Huh, Yun Kun,Cha, Gyun Do 충남대학교 농업과학연구소 1987 Korean Journal of Agricultural Science Vol.14 No.1

        The mechanical and rheological properties of agricultural materials are important for engineering design and analysis of their mechanical harvesting, handling, transporting and processing systems. Agricultural materials, which composed of structural members and fluids do not react in a purely elastic manner, and their response when subjected to stress and strain is a combination of elastic and viscous behavior so called viscoelastic behavior. Many researchers have conducted studies on the mechanical and rheological properties of the various agricultural products, but a few researcher has studied those properties of rice plant, and also those data are available only for foreign varieties of rice plant. This study are conducted to experimentally determine the mechanical and the rheological properties such as axial compressive strength, tensile strength, bending and shear strength, stress relaxation and creep behavior of rice stems, and grain detachment strength. The rheological models for the rice stem were developed from the test data. The shearing characteristics were examined at some different levels of portion, cross-sectional area, moisture content of rice stem and shearing angle. The results obtained from this study were summarized as follows 1. The mechanical properties of the stems of the J aponica types were greater than those of the Indica ${\times}$ Japonica hybrid in compression, tension, bendingand shearing. 2. The mean value of the compressive force was 80.5 N in the Japonica types and 55.5 N in the Indica ${\times}$ Japonica hybrid which was about 70 percent to that of the Japonica types, and then the value increased progressively at the lower portion of the stems generally. 3. The average tensile force was about 226.6 N in the Japonica types and 123.6 N in the Indica ${\times}$ Japonica hybrid which was about 55 percent to that of the Japonica types. 4. The bending moment was $0.19N{\cdot}m$ in the Japonica types and $0.13N{\cdot}m$ in the Indica ${\times}$ Japonica hybrid which was 68 percent to that of the Japonica types and the bending strength was 7.7 MPa in the Japonica types and 6.5 MPa in the Indica ${\times}$ Japonica hybrid respectively. 5. The shearing force was 141.1 N in Jinju, the Japonica type and 101.4 N in Taebaeg, the Indica ${\times}$ Japonica hybrid which was 72 percent to that of Jinju, and the shearing strength of Taebaeg was 63 percent to that of Jinju. 6. The shearing force and the shearing energy along the stem portion in Jinju increased progressively together at the lower portions, meanwhile in Taebaeg the shearing force showed the maximum value at the intermediate portion and the shearing energy was the greatest at the portion of 21 cm from the ground level, and also the shearing strength and the shearing energy per unit cross-sectional area of the stem were the greater values at the intermediate portion than at any other portions. 7. The shearing force and the shearing energy increased with increase of the cross-sectional area of the rice stem and with decrease of the shearing angie from $90^{\circ}$ to $50^{\circ}$. 8. The shearing forces showed the minimum values of 110 N at Jinju and of 60 N at Taebaeg, the shearing energy at the moisture content decreased about 15 percent point from initial moisture content showed value of 50 mJ in Jinju and of 30 mJ in Taebaeg, respectively. 9. The stress relaxation behavior could be described by the generalized Maxwell model and also the compression creep behavior by Burger's model, respectively in the rice stem. 10. With increase of loading rate, the stress relaxation intensity increased, meanwhile the relaxation time and residual stress decreased. 11. In the compression creep test, the logarithmic creep occured at the stress less than 2.0 MPa and the steady-state creep at the stress larger than 2.0 MPa. 12. The stress level had not a sig

      • KCI등재

        벼줄기의 점탄성(粘彈性) 특성(特性)에 관(關)한 연구(硏究)

        허윤근,Huh, Yun Kun 충남대학교 농업과학연구소 1986 Korean Journal of Agricultural Science Vol.13 No.2

        수확시기(收穫時期)의 벼줄기에 대(對)한 역학적(力學的), 점탄성적(粘彈性的) 특성(特性)을 구명(究明)하기 위(爲)해 압축시(壓縮時) 최대압축하중(最大壓縮荷重), 이력현상(履歷現象), 가공경화현상(加工硬化現象) 및 점탄성(粘彈性) 거동(粘彈性)에 대(對)한 변형속도(變形速度), 초기하중(初期荷重)이 영향을 분석(分析)하며, 도해법(圖解法) 및 computer에 의(依)한 수치해법(數値解法)으로 하중이완(荷重弛緩)의 rheological model 을 제시(提示)코져 시험(試驗)한 결과(結果)는 다음과 같다. 1. 압축시험시(壓縮試驗時) 벼줄기의 최대압축하중(最大壓縮荷重)은 다수계(多收系) 품종(品種)보다 일반계(一般系)에서 큰 경향(傾向)이었다. 2. 동진벼의 부위별(部位別) 최대압축하중(最大壓縮荷重)은 4절간이 가장 컷고, 3절간, 1절간 하부(下部), 2절간, 1절간 상부(上部)의 순(順)으로 작았다. 3. 비례한도내(比例限度內)의 하중(荷重)으로 loading-unloading 할 때 일부의 잔유변형이 발생(發生)하여 탄소성(彈塑性) 변형(變形)을 일으켜 이력손실(履歷損失)을 가져왔다. 4. Loading-unloading cycle을 반부(反復)하면 소성변형(塑性變形)이 감소(減少)하여 가공경화현상(加工硬化現象)을 보였다. 5. 하중이완거동(荷重弛緩擧動)은 변형속도(變形速度)의 증가(增加)에 따라 이완속도(弛緩速度)가 빨라졌다. 6. Computer에 의(依)한 수치해법(數値解法)과 도해법(圖解法)으로 이완거동(弛緩擧動)을 분석(分析)한 결과(結果) 3개지수항(個指數項)으로 표시(表示)되고 일반화(一般化) Maxwell model로 나타내었다. 이 model의 rheology 방정식(方程式)은 다음과 같다. $$F(t)=C_1e^{{-t/{\tau}}_1}+C_2e^{{-t/{\tau}}_2}+C_3e^{{-t/{\tau}}_3}$$ 동진벼줄기의 함수율(含水率) 71.9%(w.b.), 초기하중(初期荷重) 45.5 N, 변형속도(變形速度) 38mm/min 일 때 하중이완(荷重弛緩) 방정식(方程式)은 다음과 같았다. $$F(t)=24.3e^{-t/1006}+7.6e^{-t/12.7}+13.6e^{-t/1.8}$$ 7. 초기변형(初期變形)이 클수록 하중이완(荷重弛緩)은 크게 일어났다. The objectives of this study were to examine the viscoelastic behaviour of stem samples of rice in force-relaxation and rheological model to represent its relaxation behaviour, and to study the effects of rate of deformation and initial deformation on the relaxation time. The results were as follows; 1. In the process of loading and unloading, there is any plastic deformation so called elasto-plastic hysterisis. 2. Loading and unloading of stem of rice for several cycles has also shown the reduction of plastic or residual deformation and work hardening. 3. The relaxation behaviour of stem of rice in compression may be described by a generalized Maxwell model consisting of three Maxwell units in parallel. The rheological equation of such a model is given as $$F(t)=C_1e^{{-t/{\tau}}_1}+C_2e^{{-t/{\tau}}_2}+C_3e^{{-t/{\tau}}_3}$$ 4. Force relaxation always increased with increasing rates of deformation and initial deformation.

      • KCI등재후보

        와류실식 디젤기관의 배기배출물 저감을 위한 연소실의 압축비 및 분구면적비 개선

        이창규(Chang-Kyu Lee),허윤근(Yun-Kun Huh),서신원(Sin-Won Seo) 충남대학교 농업과학연구소 2010 농업과학연구 Vol.37 No.3

        A swirl chamber type diesel engine attachable to 18 kW agricultural tractors was improved to reduce exhaust emissions. Compression ratio and throat area ratio of the combustion chamber were varied to determine optimum combustion conditions. Tests were composed of full load and 8-mode emission tests. Compression ratio was fixed as 21, but the swirl chamber volume was increased by 3.8%. Output power, torque, specific fuel consumption, exhaust gas temperature, and smoke level were not considerably different for compression ratios of 21.5 (reference condition) and 21 (test condition), while NOx, HC, CO and PM levels for the compression ratio of 21 were decreased by 11%, 46%, 28%, 11%, respectively, from those for the compression ratio of 21.5. The tests were also conducted with a compression ratio of 22 and 4.3% increased chamber volume. Output power, torque, exhaust gas temperature and smoke level were greater, while specific fuel consumption was less for the compression ratio of 22 than those for the compression ratio of 21.5. Increase of compression ratio decreased HC and CO levels by 24%, 39%, but increased NOx and PM levels by 24%, 39%. Based on these results, a compression ratio of 21 was selected as an optimum value. Then, full load tests with the selected compression ratio of 21 were carried out for different throat ratios of 1.0%, 1.1%, 1.2%. Output power and torque were greatest and smoke was lowest when throat area ratio was 1.1%, which satisfied the target values of specific fuel consumption (less than 272 g/㎾ㆍh) and exhaust gas temperature (less than 550℃). Therefore, a throat area ratio of 1.1% was selected as an optimum value.

      • KCI등재후보

        농업기계 단기임대사업의 효율적 운영을 위한 실태조사 연구

        홍순중(Soon-Jung Hong),허윤근(Yun-Kun Huh),정선옥(Sun-Ok Chung),신승엽(Seung-Yeoub Shin) 충남대학교 농업과학연구소 2011 농업과학연구 Vol.38 No.3

        Status survey on short-term agricultural machinery rental business was conducted to provide basic data for effective and sustainable implementation of the rental system. Selected survey samples were 34 rental management institutions such as city and county level government offices and agricultural technology development centers, and Primary Agricultural Cooperatives. Survey was conducted through mailing of questionnaire papers and direct interviews with the officers in charge of the agricultural machinery short-term rental management. Number of agricultural machinery retained by the 34 management institutions for the machinery rental business was 3,699, and numbers of the machinery were 1630 for upland crops, 929 for rice, 542 for orchard farming, 274 for animal husbandry, and 324 for common use. Regarding size of warehouse for rental agricultural machinery, 50% of the institutes were less than 660 m<SUP>2</SUP>, 26.5% were greater than 993 m<SUP>2</SUP>, and 23.5% were between 663 and 990 m<SUP>2</SUP>. Institutes maintaining machinery washing facilities were only 10 (29%) among the 34 rental management institutions. Agricultural machinery rental business was advertised to farmers by 91% of the institutes, and the methods were leaflet (35.2%), village broadcasting (26.5%), call-up education (23.6%), and TV and radio (14.7%). Major contents of the advertisement were rental procedure (52.9%), rental machinery (26.5%), and rental cost (20.6%).

      • KCI등재후보

        콤바인 HST 전자제어시스템 개발

        서신원(Sin-Won Seo),허윤근(Yun-Kun Huh),이제용(Je-Yong Lee),이창규(Chang-Kyu Lee),배근수(Keun-Soo Bae) 충남대학교 농업과학연구소 2011 농업과학연구 Vol.38 No.1

        I/An electro-hydraulic transmission having advantages of convenience, safety, simple linking and high power, and an electronic control system were designed and fabricated. In this study, characteristics of the control system were investigated through outdoor tests for evaluation of installation of the system on a combine. Major findings were as followings. 1. Experiment for performance evaluation of the control system was conducted on concrete road. With steering lever in neutral position, driving HST swash plate and left/right wheel speed increased in proportion to driving lever angle. In case of steering control, steering swash plate angle changed in proportion to steering lever angle. This should cause increase in outer wheel speed, but it was observed that HST swash plate was controlled toward neutral to maintain the speed before steering. As a result, speed before steering was maintained despite the change in outer wheel speed by steering HST swash plate angle change. 2. It was observed that the HST system enabled steering with outer wheel maintained at constant speeds while inner wheel speed decreased, which was more stable than conventional mechanical links. In addition, for the selected 5 criteria, experiment showed satisfactory results and it was judged that installation on real vehicle would be feasible. 3. The control system showed response property of appropriate forward/reverse movement and lift/right steering, without causing any problems during experiment on concrete. Result of response property experiment on field operation also showed appropriate control over forward/reverse movement and left/right steering

      • KCI등재

        IPA분석을 통한 농업기계 임대사업의 전략적 개선방안

        홍순중(Soon-Jung Hong),허윤근(Yun-Kun Huh),정선옥(Sun-Ok Chung) 충남대학교 농업과학연구소 2013 농업과학연구 Vol.40 No.4

        Short-term agricultural machinery rental system has been operated by agricultural extension organization of local government (agricultural technology center) and sponsored by Ministry of Agriculture, Food, and Rural Affairs, to improve utilization efficiency and save agricultural production cost through joint utilization of agricultural machinery. This study was conducted to analyze current status of the rental system operation and provide recommendations for future direction. Question survey was conducted for officers in charge of the rental system in the technology center, and strategic improvement was suggested through importance performance analysis (IPA). Survey results showed that 11 issues should be reformed or improved by 2015, which is not practically feasible. IPA analysis resulted that administration and manpower support, cooperation between federal and local organizations, and cooperation with other organizations should be focused for successful operation of the rental system. Issues that seem to happen after 2015 need to be handled as future research.

      • KCI등재

        Evaluation of wireless communication devices for remote monitoring of protected crop production environment

        승오,류명진,류동기,정선옥,허윤근,최진용,Hur, Seung-Oh,Ryu, Myong-Jin,Ryu, Dong-Ki,Chung, Sun-Ok,Huh, Yun-Kun,Choi, Jin-Yong Institute of Agricultural Science 2011 Korean Journal of Agricultural Science Vol.38 No.4

        Wireless technology has enabled farmers monitor and control protected production environment more efficiently. Utilization of USN (Ubiquitous Sensor Network) devices also brought benefits due to reduced wiring and central data handling requirements. However, wireless communication loses signal under unfavorable conditions (e.g., blocked signal path, low signal intensity). In this paper, performance of commercial wireless communication devices were evaluated for application to protected crop production. Two different models of wireless communication devices were tested. Sensors used in the study were weather units installed outside and top of a greenhouse (wind velocity and direction, precipitation, temperature and humidity), inside ambient condition units (temperature, humidity, $CO_2$, and light intensity), and irrigation status units (irrigation flow and pressure, and soil water content). Performance of wireless communication was evaluated with and without crop. For a 2.4 GHz device, communication distance was decreased by about 10% when crops were present between the transmitting and receiving antennas installed on the ground, and the best performance was obtained when the antennas were installed 2 m above the crop canopy. When tested in a greenhouse, center of a greenhouse was chosen as the location of receiving antenna. The results would provide information useful for implementation of wireless environment monitoring system for protected crop production using USN devices.

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