• 제목/요약/키워드: friction tester

검색결과 292건 처리시간 0.018초

로우터리 맥류파종기 경운날의 개량시험 (Improvement of Rotary Tine for Barley Seeder Attached to Rotary Tiller)

  • 김성래;김문규;김기대;허윤근
    • Journal of Biosystems Engineering
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    • 제4권1호
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    • pp.1-23
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    • 1979
  • The use of barley seeder attached to rotary tiller in the rural area has a significant meaning not only for the solution of labor peak season, but also for the increase of land utilization efficiency. The facts that presently being used barley seeders are all based on the mechanical principles of the reverse rotation, center drive and are all using forward rotating tine, which is used to be easily and heavily worn out when it rotates reversely, raise problem of recommending them to rural area in Korea. Therefore, the main objective of the study was to develop new type of rotary tine attachable to barley seeders. To attain the objective the following approaches were applied. (1) The kinematic analysis of reverse rotating barley seeders. (2) The studies on the soil bin and artificial soil. (3) The comparative experiment on the power requirement of prototype tine. The results obtained from the studies are summarized as follow: 1. The kinematic analysis of barley seeder attached to rotary tiller: The following results were obtained from the kinematic analysis for deriving general formulae of the motion and velocity characterizing the rotary tine of barley seeders presently being used by farmers. a) The position vector (P) of edge point (P) in the rotary tine of reverse rotating, center drive was obtained by the following formula. $$P=(vt+Rcos wt)i+Rsin wt j+ \{ Rcos \theta r sin \alpha cos (wt- \beta +\theta r) +Rsin \theta r sin \alpha sin (wt-\beta + \theta r) \} lk $$ b) The velocity of edge point $(P^')$ of reverse rotating, center drive rotary tine was obtained by the following formula. $$(P^')=(V-wR sin wt)i+(w\cdot Rcoswt)j + \{ -w\cdot Rcos \theta r\cdot sin \alpha \cdot sin (wt-\beta +\theta r) + w\cdot Rsin \theta r\cdot sin \alpha \cdot cos (wt- \beta + \theta r \} k $$ c) In order to reduce the power requirement of rotary tine, the angle between holder and edge point was desired to be reduced. d) In order to reduce the power requirement, the edge point of rotary tine should be moved from the angle at the begining of cutting to center line of machine, and the additional cutting width should be also reduced. 2. The studies on the soil bin and artificial soil: In order to measure the power requirement of various cutting tines under the same physical condition of soil, the indoor experiments Viere conducted by filling soil bin with artificially made soil similar to the common paddy soil and the results were as follows: a) When the rolling frequencies$(x)$ of the artificial soil were increased, the densIty$(Y)$ was also increased as follows: $$y=1.073200 +0.070780x - 0.002263x^2 (g/cm^3)$$ b) The absolute hardness $(Y)$ of soil had following relationship with the rolling frequencies$(x)$ and were increased as the rolling frequencies were increased. $$Y=37.74 - \frac {0.64 + 0.17x-0. 0054x^2} {(3.36-0.17x + 0.0054x^2)^3} (kg/cm^3)$$ c) The density of soil had significant effect on the cohesion and angle of internal friction of soil. For instance, the soil with density of 1.6 to 1.75 had equivalent density of sandy loam soil with 29.5% of natural soil moisture content. d) The coefficient of kinetiic friction of iron plate on artificial soil was 0.31 to 0.41 and was comparable with that of the natural soil. e) When the pulling speed of soil bin was the 2nd forward speed of power tiller, the rpm of driving shaft of rotary was similar to that of power tiller, soil bin apparatus is indicating the good indoor tester. 3. The comparative experiment on the power requirement of prototype tine of reverse rotating rotary: According to the preliminary test of rotary tine developed with various degrees of angle between holder and edge pcint due to the kinematic analysis, comparative test between prototype rotary tine with $30 ^\circ $ and $10 ^\circ$ of it and presently being used rotary tine was carried out 2nd the results were as follows: a) The total cutting torque was low when the angle between holder and edge point was reduced. b) $\theta r$ (angle between holder and edge point) of rotary tine seemed to be one: of the factors maximizing the increase of torque. c) As the angle between holder and edge point ($\theta r$) of rotary tine was $30 ^\circ $ rather than $45 ^\circ $, the angle of rotation during cutting soil was reduced and the total cutting torque was accordingly reduced about 10%, and the reduction efficiency of total cutting torque was low when the angle between holder and edge point ($\theta r$) of rotary tine was $10 ^\circ $, which indicates that the proper angle between holder and edge point of rotary tine should be larger than $10 ^\circ $ and smaller than $30 ^\circ $ . From above results, it could be concluded that the use of the prototype rotary tine which reduced the angle between holder and edge point to $30 ^\circ $, insted of $45 ^\circ $, is disirable not only decreasing the power requirements, but also increasing the durabie hour of it. Also forward researches are needed, WIlich determine the optimum tilted angle of rotary brocket, and rearrangement of the rotary tine on the rotary boss.

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화강암질풍화토(花崗岩質風化土)의 역학적(力學的) 성질(性質)에 관(關)한 연구(硏究) -전단강도(剪斷强度)의 영향요소(影響要素)와 견밀도(堅密度)에 대(對)하여- (Studies on the Mechanical Properties of Weathered Granitic Soil -On the Elements of Shear Strength and Hardness-)

  • 조희두
    • 한국산림과학회지
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    • 제66권1호
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    • pp.16-36
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    • 1984
  • 화강암질풍화토(花崗岩質風化土)의 미교란(未攪亂) 시료(試料)를 사용하여 일면(一面) 직접(直接) 전단시험(剪斷試驗)으로 측정(測定)한 전단강도(剪斷强度)와 함수비(含水比), 간극비(間隙比), 건조밀도(乾燥密度), 비중(比重)과의 관계(關係)를 통계(統計) 분석(分析)하였고, 화강암질풍화토(花崗岩質風化土)의 사방시공지(砂防施工地)에 식재(植栽)된 리기다소나무림(林)과 리기테-다소나무림(林)에서 토양단면(土壤斷面)을 만들어 산중식토양경도계(山中式土壤硬度計)로 토양(土壤)의 견밀도(堅密度)를 측정(測定)하고 수근분포(樹根分布)를 조사(調査)하여 통계(統計) 분석(分析)한 결과(結果) 다음과 같다. 1) 함수비(含水比), 간극비(間隙比)와 전단강도(剪斷强度) 간(間)에는 유의적(有意的)인 부(負)의 상관(相關)이며 직접적(直接的)인 관계(關係)에 있었다. 2) 건조밀도(乾燥密度)와 전단강도(剪斷强度) 사이에는 정(正)의 상관(相關)이며 직접적(直接的)인 관계(關係)에 있었다. 3) 비중(比重)과 전단강도(剪斷强度) 간(間)에는 유의적(有意的)인 상관관계(相關關係)를 인정(認定)할 수 없었다. 4) 전단강도(剪斷强度)에 영향(影響)을 미치는 영향요소(影響要素)의 직접효과(直接效果)의 크기는 함수비(含水比)>간극비(間隙比)>건조밀도(乾燥密度)의 순위(順位)이다. 5) 다중선형(多重線型) 회귀방정식(回歸方程式)의 분산분석결과(分散分析結果) 함수비(含水比)만이 회귀성(回歸性)이 인정(認定)되므로 함수비(含水比)를 독립변수(獨立變數)로 하여 전단강도(剪斷强度)를 추정(推定)하기 위한 회귀방정식(回歸方程式)은 제한(制限)된 건조밀도(乾燥密度)의 범위내(範圍內)에서 적합도(適合度)가 매우 높게 평가(評價)되었다. 6) 토양(土壤)의 견밀도(堅密度)는 토심(土深)이 깊어짐에 따라 높아진다. 7) 토양(土壤)의 지표경도(指標硬度)와 수근수(樹根數) 간(間)에는 유의적(有意的)인 부(負)의 상관(相關)이며 직접적(直接的)인 관계(關係)에 있었다. 8) 리기다소나무와 리기테-다소나무의 수근(樹根)은 토심(土深) 20cm까지에 대부분 분포(分布)하고 있었다. 9) 리기다소나무림(林)과 리기테-다소나무림(林)에서 측정(測定)한 토양(土壤)의 지표경도(指標硬度)를 독립변수(獨立變數)로한 회귀방정식(回歸方程式)으로 수근수(樹根數)를 추정(推定)할 수 있었으나 낮은 적합도(適合度)를 나타내었다.

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