• 제목/요약/키워드: Polishing temperature

검색결과 194건 처리시간 0.019초

고성 삼덕리유적 출토 적색마연토기의 제작 특성 연구 (Resarch on Manufacturing Technology of Red-Burnished Pottery Excavated from Samdeok-ri, Goseong, Korea)

  • 한이현;김수경;진홍주;장성윤
    • 헤리티지:역사와 과학
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    • 제53권4호
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    • pp.170-187
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    • 2020
  • 고성 삼덕리유적에서는 청동기시대 후기의 묘역식 지석묘와 석관묘가 발굴되었으며 적색마연토기, 석촉, 석검 등의 부장품이 출토되었다. 고성 삼덕리유적에서 출토된 적색마연토기는 약 50~160㎛ 두께의 안료층이 남아 있으나 대다수의 토기 표면에서 안료층의 박리, 박락현상이 관찰되었다. 적색마연토기의 태토는 중립의 석영, 장석, 각섬석 등으로 구성되어 있으며 부분적으로 철산화물의 불투명 광물도 확인되었다. 6호 석관묘에서 출토된 적색마연토기는 비짐으로 각섬석, 장석이 다량 포함되어 있어 다른 무덤에 부장된 적색마연토기와 차이를 보였다. 적색 안료는 태토와 유사한 광물 조성을 보이고 있으나 적철석(hematite)이 상당량 함유되어 있고, 미립의 석영, 장석, 각섬석 등이 관찰되었다. 광물 조성으로 볼 때 소성 온도는 900℃ 내외였을 것으로 추정된다. 삼덕리 일대 3km 이내에는 장석과 각섬석이 우세한 섬록암과 화강섬록암이 노출된 지역이 확인되므로 이 일대에서 토기 제작을 위한 원료를 채취하였을 가능성이 높다. 적색마연토기는 성형 후 안료를 물에 풀어서 토기 전면에 채색한 후 마연 기법으로 마무리한 것으로 판단된다. 태토와 안료층의 소결 상태를 고려할 때 채색 후 소성하였던 것으로 생각되며 '성형-반건조-채색-마연'의 과정을 거친 후 소성되었을 것으로 추정된다. 다만 토기에 도포하는 안료의 농도, 채색 시점과 방법에 따라 적색마연토기의 표면과 단면 상태가 다르게 나타나는 것으로 확인되었다. 대부분의 삼덕리유적 토기들은 안료층과 태토층이 뚜렷하게 구분되었으나 안료가 태토층에 스며들어가 안료와 태토가 뚜렷이 구분되지 않는 토기편도 관찰되었다. 이는 미립질의 안료가 묽은 농도로 도포되었거나 성형 직후 도포되었기 때문으로 보인다. 또한 대부분의 적색마연토기에서는 안료층의 박락과 마모현상이 관찰되었고 안료층이 일부만 잔존하는 경우도 많았다. 이는 안료를 도포하고 마연 처리한 토기에서 마모에 의한 손상이 더 쉽게 발생한다고 보고되고 있어 삼덕리유적 적색마연토기도 매장 환경에서 풍화에 의해 마모와 박락이 진행된 것으로 생각되며, 매장주체부 출토품보다 고분 외곽에 뿌려진 잔편에서 이러한 손상이 가속화되어 나타났다.

정미기의 능률에 미치는 기계적 요인및 작동조건에 관한 연구 (Mechanical and Operational Factors Affecting the Efficiency of Rice Polishing Machines)

  • 노상하
    • Journal of Biosystems Engineering
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    • 제1권1호
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    • pp.15-15
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    • 1976
  • In analyzing the operational characteristics of a rice whitening machine, the internal radial pressure of the machine was measured using strain gage equipment. Changes in cylinder and feed screw configurations, screen type, cylinder speed and counter-pressure levels were examined to determine their impact on the quality and quantity of milled rice and the performance of the machine. The results are summarized as follows: 1. The internal radial pressure in the whitening chamber varied with the surface condition of the grain being processed. During the first or second pass through the machine, pressure was relatively low, reached a maximum after two to three passes with combinations I and II, three to six with combination III and then began to fall. 2. The pitch of the feed screw and the size of the feed gate opening which determine the rate of entry of grain into the whitening chamber, appeared to be the most important factor aff-::cting the degree of radial pressure, quality and quantity of milled rice and the efficiency of the machine. Using a feed screw with a wide pitch (4.8cm), radial pressure was relatively high and head rice recovery ratio \vere quite low. In this case capacity and machine effic?iency were much higher than obtained when using a feed screw with a narrow pitch (2.3cm). Very significant responses in radial pressure, head rice recovery rates and machine capacity were observed with changes in cylinder speed and counter-pressure levels when using the wide pitch feed screw. 3. The characteristics of the screen which surrounds the whitening chamber had an important effect on whitening efficiency. The existence of small protuberances on the original screen resulted in significant increases in both machine capacity and efficiency but without a significant decrease in head rice recovery or development of excessive radial pressure. Further work is required to determine the effects of screen surface conditions and the shape of the cylinderical steel roller on the rate of bran removal, machine efficiency and recovery rates. The size of the slotted perforations 0:1 the screen affects total milled rice recovery. The opening size on the original screen was fabricated to accommodate the round shape of Japonica rice varieties but was not suitable for the more slender Indica type. Milling Indica varieties with this screen resulted in a reduction in total milled rice recovery. 4. An increase in cylinder speed from 380 to 820 rpm produced a positive effect on head rice recovery for all machine combinations at every level of counter-pressure used in the tests. Head rice recovery was considerably lower at 380rpm using a wide screw pitch when compared to the results obtained at speeds from 600 to 820 r.p.m. The effects of cylinder speed On radial pressure, capacity and machine efficiency showed contrasting results, depending on the width of the feed screw pitch. With a narrow feed screw pitch (2.3cm), a direct proportional relationship was observed bet?ween cylinder speed and both radial pressure and machine efficiency. In contrast, using a 4.8 centimeter pitch feed roller produced a series of inverse relationships between the above variables. Based on the results of this study it is recommended when milling Indica type long grain rice varieties that the cylinder speed of the original machine be increased from 500-600 rmp up to a minimum of 800 rpm to obtain a greater abrasive effect between the grain and the screen. The pitch of the feed screw should be also reduced to decr?ease the level of internal radial pressure and to obtain higher machine efficiency and increased quality of milled rice with increased cylinder speeds. Further study on the interaction between cylinder speed and feed screw pitch is recommended. 5. An increase in the counter pressure level produced a negative effect On the head rice recovery with an increase in radial pressure, capacity, and machine efficiency over all combinations and at every level of cylinder speed. 6. Head rice recovery rates were conditioned primarily by the pressure inside the whitening chamber. According to the empirical cha racteristics curve developed in this study, the relationships of head rice recovery ($Y_h$) and machine capacity ($Y_c$/TEX>) to internal radial pressure ($X_p$) followed an inverse quadratic function and a linear function respectively: $$Y_h^\Delta=\frac{1}{{1.4383-0.2951X_p^\ast+0.1425X_p^{\ast\ast}}^2} , (R^2=0.98)$$$$Y_c^\Delta=-305.83+374.37X_p^{\ast\ast}, (R^2=0.88)$$The correlation between capacity and power consumption per unit of brown rice expressed in the following exponential function: $$Y_c^\Delta=1.63Y_c^{-0.7786^\{\ast\ast}, (R^2=0.94)$$These relationships indicate that when radial pressure increases above a certain range (1. 6 to 2.0 kg/$cm^2$ based On the results of the experiment) head ricerecovery decrea?ses in a quadratic relation with a inear increase in capacity but without any decrease in power consump tion per unit of brown rice. On the other hand, if radial pressure is below the range shown above, power consumption increases dramatically with a lin?ear decrease in capacity but without significant increases in head rice recovery. During the operation of a given whitening machine, the optimum radial pressure range or the correct capacity range should be selected by controlling the feed rate and/or counter-pressure keeping in mind the condition of the grain, particulary the hardness. It was observed that the total number of passes is related to radial pessure level, feed rate and counter-pressure level. The higher theradial pressure the fewer num?ber of pass required but with decreased head rice recovery. In particular, when using high feed rates, the total number of passes should be increased to more than three by reducing the counter-pressure level to avoid decreaseases in head rice recovery (less than 65 percent head rice recovery on the basis of brown rice) at every cylinder speed. 7. A rapid rise in grain temperature seemed to have a close relationship with the pressure generated inside the whitening chamber and, subsequently with head rice reco?very rates. The higher the rate of increase, the lower were the resulting head rice recoveries.

정미기의 능률에 미치는 기계적 요인및 작동조건에 관한 연구 (Mechanical and Operational Factors Affecting the Efficiency of Rice Polishing Machines)

  • 노상하;최재갑
    • Journal of Biosystems Engineering
    • /
    • 제1권1호
    • /
    • pp.17-48
    • /
    • 1976
  • In analyzing the operational characteristics of a rice whitening machine, the internal radial pressure of the machine was measured using strain gage equipment. Changes in cylinder and feed screw configurations, screen type, cylinder speed and counter-pressure levels were examined to determine their impact on the quality and quantity of milled rice and the performance of the machine. The results are summarized as follows: 1. The internal radial pressure in the whitening chamber varied with the surface condition of the grain being processed. During the first or second pass through the machine, pressure was relatively low, reached a maximum after two to three passes with combinations I and II, three to six with combination III and then began to fall. 2. The pitch of the feed screw and the size of the feed gate opening which determine the rate of entry of grain into the whitening chamber, appeared to be the most important factor aff-::cting the degree of radial pressure, quality and quantity of milled rice and the efficiency of the machine. Using a feed screw with a wide pitch (4.8cm), radial pressure was relatively high and head rice recovery ratio \vere quite low. In this case capacity and machine effic\ulcorneriency were much higher than obtained when using a feed screw with a narrow pitch (2.3cm). Very significant responses in radial pressure, head rice recovery rates and machine capacity were observed with changes in cylinder speed and counter-pressure levels when using the wide pitch feed screw. 3. The characteristics of the screen which surrounds the whitening chamber had an important effect on whitening efficiency. The existence of small protuberances on the original screen resulted in significant increases in both machine capacity and efficiency but without a significant decrease in head rice recovery or development of excessive radial pressure. Further work is required to determine the effects of screen surface conditions and the shape of the cylinderical steel roller on the rate of bran removal, machine efficiency and recovery rates. The size of the slotted perforations 0:1 the screen affects total milled rice recovery. The opening size on the original screen was fabricated to accommodate the round shape of Japonica rice varieties but was not suitable for the more slender Indica type. Milling Indica varieties with this screen resulted in a reduction in total milled rice recovery. 4. An increase in cylinder speed from 380 to 820 rpm produced a positive effect on head rice recovery for all machine combinations at every level of counter-pressure used in the tests. Head rice recovery was considerably lower at 380rpm using a wide screw pitch when compared to the results obtained at speeds from 600 to 820 r.p.m. The effects of cylinder speed On radial pressure, capacity and machine efficiency showed contrasting results, depending on the width of the feed screw pitch. With a narrow feed screw pitch (2.3cm), a direct proportional relationship was observed bet\ulcornerween cylinder speed and both radial pressure and machine efficiency. In contrast, using a 4.8 centimeter pitch feed roller produced a series of inverse relationships between the above variables. Based on the results of this study it is recommended when milling Indica type long grain rice varieties that the cylinder speed of the original machine be increased from 500-600 rmp up to a minimum of 800 rpm to obtain a greater abrasive effect between the grain and the screen. The pitch of the feed screw should be also reduced to decr\ulcornerease the level of internal radial pressure and to obtain higher machine efficiency and increased quality of milled rice with increased cylinder speeds. Further study on the interaction between cylinder speed and feed screw pitch is recommended. 5. An increase in the counter pressure level produced a negative effect On the head rice recovery with an increase in radial pressure, capacity, and machine efficiency over all combinations and at every level of cylinder speed. 6. Head rice recovery rates were conditioned primarily by the pressure inside the whitening chamber. According to the empirical cha racteristics curve developed in this study, the relationships of head rice recovery ($Y_h$) and machine capacity ($Y_c$/TEX>) to internal radial pressure ($X_p$) followed an inverse quadratic function and a linear function respectively: $$Y_h^\Delta=\frac{1}{{1.4383-0.2951X_p^\ast+0.1425X_p^{\ast\ast}}^2} , (R^2=0.98)$$ $$Y_c^\Delta=-305.83+374.37X_p^{\ast\ast}, (R^2=0.88)$$ The correlation between capacity and power consumption per unit of brown rice expressed in the following exponential function: $$Y_c^\Delta=1.63Y_c^{-0.7786^\{\ast\ast}, (R^2=0.94)$$ These relationships indicate that when radial pressure increases above a certain range (1. 6 to 2.0 kg/$cm^2$ based On the results of the experiment) head ricerecovery decrea\ulcornerses in a quadratic relation with a inear increase in capacity but without any decrease in power consump tion per unit of brown rice. On the other hand, if radial pressure is below the range shown above, power consumption increases dramatically with a lin\ulcornerear decrease in capacity but without significant increases in head rice recovery. During the operation of a given whitening machine, the optimum radial pressure range or the correct capacity range should be selected by controlling the feed rate and/or counter-pressure keeping in mind the condition of the grain, particulary the hardness. It was observed that the total number of passes is related to radial pessure level, feed rate and counter-pressure level. The higher theradial pressure the fewer num\ulcornerber of pass required but with decreased head rice recovery. In particular, when using high feed rates, the total number of passes should be increased to more than three by reducing the counter-pressure level to avoid decreaseases in head rice recovery (less than 65 percent head rice recovery on the basis of brown rice) at every cylinder speed. 7. A rapid rise in grain temperature seemed to have a close relationship with the pressure generated inside the whitening chamber and, subsequently with head rice reco\ulcornervery rates. The higher the rate of increase, the lower were the resulting head rice recoveries.

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오동상감(烏銅象嵌)기법을 활용한 장도(粧刀)의 제작기술 및 복원연구 (Jangdo(Small Ornamental Knives) manufacturing process and restoration research using Odong Inlay application)

  • 윤용현;조남철;정영상;장추남
    • 헤리티지:역사와 과학
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    • 제49권2호
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    • pp.172-189
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    • 2016
  • 본 연구에서는 "오주서종박물고변(五洲書種博物考辯)", "천공개물(天工開物)" 등 고문헌에 기록된 오동 재료와 합금비, 주조 시설, 주조법 등을 확인하고 이를 기초자료로 활용하여 오동상감기법으로 장도를 제작하였다. 오동상감기법 장도 제작은 크게 오동 합금, 은땜 합금, 오동판과 은판 제작, 칼자루와 칼집 제작, 장도의 장석인 두겁 및 부속품 제작, 오동 상감, 조립의 순으로 진행하였다. 오동의 합금은 "오주서종박물고변"에 보이는 상품(上品)으로 전통방식의 진오동(眞烏銅) 합금비인 구리와 금을 20:1의 중량비로 하였다. 은땜의 합금은 상감된 문양에 사용한 경우 은과 황동(Cu 7 : Zn 3)을 중량비 5:1로, 단순 접합 사용한 경우에는 은과 황동을 중량비 5:2로 합금하여 은땜판을 제작하였다. 칼집과 칼자루 제작은 진오동 합금비로 만든 오동 괴를 풀림과 단조작업을 실시하여 오동판의 두께를 0.6mm로, 오동의 뒷면인 은판도 두께 0.6mm로 제작한 뒤, 오동판과 은판 접합, 풀림과 단조, 오동판에 문양 새기기, 은 상감하기, 오동판으로 칼집과 칼자루 모양잡기, 은땜으로 접합하기, 연마 및 광택내기 등의 과정을 거쳐 완성하였다. 붉은색의 오동판 표면을 검은색으로 부식시키는 '오동 살리기(발색하기)'는 오동 합금의 품위에 따라 발색 효과가 차이가 난다. 한지를 30일 정도 썩힌 인뇨(人尿)에 적셔 칼집과 칼자루 등에 감아 따뜻한 곳($25^{\circ}C$ 이상)에 두고 2~3시간이 경과하면 오동판의 겉면만 검은색으로 발색되고 은이 상감된 문양은 그대로 있어 오동상감기법을 재현할 수 있었다. 오동상감 복원에 사용했던 오동판, 은판, 은땜판의 합금성분과 오동의 표면 발색성분을 알기 위해 과학분석을 실시하였다. 오동 합금 분석(시료 2개)결과 고문헌 기록(Cu 95wt%, Au 5wt%)과 평균성분비가 유사한 Cu 95.57wt%, Au 4.16wt%과 차이가 있는 Cu 98.04wt%, Au 1.95wt%로 검출되었는데, 전자는 오동판 가공에 성공률이 높은 반면, 후자는 가공과정에서 터지는 등의 실패가 있었다. 오동판과 은판이 부착된 시료의 성분분석 결과 은판 부분은 Ag 100wt%로 검출되었고, 오동판과 은판이 접합된 부분은 Cu, Ag, Au가 모두 검출되어 접합이 잘 되었음을 확인할 수 있었다. 은과 황동을 합금한 은땜판은 분석결과 Ag 성분이 다양하게 검출되고 있어 성분비와 관계없이 매우 불균질하게 섞여있음을 관찰하였다. 오동판에 검은색으로 발색된 부분의 성분분석 결과 소지 금속에서 검출되지 않았던 S의 함량이 검출되어 S의 함량이 오동 색상에 영향을 미친 것으로 판단되었다. 향후 발색에 대한 정확한 메커니즘을 밝히기 위해서는 추가적인 화합물, 색도 및 재현 연구 등 추가연구가 필요하다. 이번 연구를 통해 시도 및 확인된 고문헌 속의 오동합금 실험 및 재현, 오동상감기법에 의한 장도제작, 오동판 검은색 발색 메커니즘의 과학 분석결과 등은 오동상감기법의 복원을 위한 중요한 기초자료로 활용될 수 있을 것이다.