• 제목/요약/키워드: Heat extrusion

검색결과 130건 처리시간 0.024초

용융금속 프로브용 규조토 내열보호관의 제조 및 특성연구 (Study on Characteristics and Manufacture of Heat-Resisting Diatomite Protection Tube for Probe Used in Steelmaking Process)

  • 이만업;정학재;이교운
    • 한국세라믹학회지
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    • 제42권4호
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    • pp.260-268
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    • 2005
  • 규조토를 주원료로 사용한 서로 다른 조성비의 세라믹 슬러리를 압출성형하여 내열보호관을 제조하고, 기계적 강도, 미세구조, 탄소분석을 하였다. 입도가 $50\~100\;{\mu}m$ 다공성 규조토를 $60wt\%$로 고정하고, 조성물 변수로써 유$\cdot$무기바인더로 silica sol$(4.3\~7.3\;wt\%)$, CMC(Sodium CarboxyMethyl Cellulose $(6\~9\;wt\%)$) 및 paper powder$(4.7\~7.7\;wt\%)$$1\;wt\%$씩 변화시켜 최적의 배합비를 얻었다. 시편의 특성을 조사한 결과, 규조토 $60\;wt\%$에 silica sol $5.3\;wt\%$, CMC $7\;wt\%$를 첨가하였을 경우, 꺽임강도 7.12 MPa, 탄성율 1090 MPa, 압축강도 1.47 MPa, 탄소 $2.3\;wt\%$ 이하로 철강산업에서의 온도$\cdot$성분측정 및 sample 채취를 할 수 있는 용융금속 프로브용 규조토 내열보호관을 제조할 수 있었다.

단축압출기 고체수송부에서의 비등온 열전달 현상에 관한 수치 해석 (Numerical Analysis of the Non-Isothermal Heat Transfer in Solids Conveying Zone of a Single Screw Extruder)

  • 안영철
    • 폴리머
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    • 제29권6호
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    • pp.549-556
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    • 2005
  • 단축압출기의 압출공정에서 고체수송부의 열전달 현상에 미치는 무차원수의 효과를 수치 해석적인 방법으로 연구하였다. 스크루의 기하학적 구조 및 특성에 따른 압출기 내에서의 고체 흐름 상태에 대한 이해를 바탕으로 고체 수송부에 대하여 열 수지 방정식을 세우고 무차원화하였다. 이에 유한체적법과 멱법칙 도식을 적용하여 이산화 방정식을 유도한 다음 반복 대입법과 완화법으로 해를 구하였다. 고체수송부의 열전달 특성을 규정하는 무차원수인 Biot 수와 Peclet 수가 수지 공급부의 온도와 고체수송부의 길이에 끼치는 영향을 조사하였다. Biot 수가 증가하면 냉각에 의한 열 손실이 지배하여 배럴의 온도는 급격히 감소하지만 고체층의 온도와 고체수송부의 길이에 미치는 영향은 적으며, Peclet 수가 증가하면 대류 항이 지배하여 고체층의 온도가 감소하고 고체수송부의 길이가 증가한다.

타이타늄-구리 폭발압접 이종 클래드 판재의 TIG 용접 건전성 평가 (Evaluation of Welding Soundness of Titanium-Copper Explosive-Bonded Dissimilar Clad Plate by TIG Welding)

  • 조평석;윤창석;황효운;이동근
    • 열처리공학회지
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    • 제34권2호
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    • pp.66-74
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    • 2021
  • Cladding material, which can selectively obtain excellent properties of different metals, is a composite material that combines two or more types of dissimilar metals into one plate. The titanium-copper cladding material between titanium which has excellent corrosion resistance and copper which has high thermal and electrical conductivity, are highly valuable composite materials. It can be used as heat exchangers with high conductivity under severe corrosion conditions. In order to apply the clad plate to the heat exchanger, it must be manufactured in the form of a tube and additional welding is required. It is important to select the cladding material manufacturing process and the welding process. The process of manufacturing the cladding material includes extrusion, rolling, and explosive bonding. Among them, the explosive bonding process is suitable for additional welding because no heat-affected zone is formed. In this study TIG welding of the explosive-bonded dissimilar clad plates was successfully performed by butt welding. The microstructures and bonding interface of the welded part were observed, and the effect of the bonding layer at the welding interface and the intermetallic compounds on the mechanical properties and tensile plastic deformation behaviors were analyzed. And also the integrity of TIG-welded dissimilar part was evaluated.

급속냉각한 Al-(1, 3, 5)Cr 합금 압출재의 조직과 기계적 성질에 미치는 기계적 합금화의 영황 (Effect of Mechanical Alloying on the Structure and Mechanical Properties of Rapid Solidified Al-(1, 3, 5 )Cr Extruded Bars)

  • 지태구;김완철
    • 열처리공학회지
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    • 제7권1호
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    • pp.3-10
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    • 1994
  • The structure and mechanical properties of the extruded specimens were investigated in rapid solidified Al-(1, 3, 5) Cr alloys after mechanical alloying. Finer lamellar microstructure could no longer be resolved in the bars obtained by extrusion of the spherical particles after 200 min. of processing time. The structure of extruded bars are highly depended on the processing time of splats. The isothermal annealing of the extruded bars showed that all the alloys had good thermal stability up to $400^{\circ}C$ and did not show the recrystallization phenomena. Severe working of Al-(1, 3, 5) Cr splats produced a very fine grain size and substructural strengthening (high dislocation density and fine grain size). Effects of mechanical alloying on the thermal stability of the extruded bars Al-(1, 3, 5) Cr alloys decreases, with increasing Cr content. But the ultimate tensile Strength in the extruded bars increases with increasing Cr content.

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고주파유도용접된 열교환기용 BAS121합금튜브의 기계적 특성에 미치는 인발조건의 영향 (Effects of Drawing Parameters on Mechanical Properties of BAS121 Alloy Tubes for Heat-exchangers by High Frequency Induction Welding)

  • 한상우;김병일;이현우;전우용;국진선
    • 한국재료학회지
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    • 제14권12호
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    • pp.851-856
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    • 2004
  • The aim of this study is to investigate the optimum drawing parameter for BAS121 welded tubes. The BAS121 aluminium alloy tubes with 25 mm in external diameter and 1.3 mm in thickness for heat-exchangers were manufactured by high frequency induction welding with the V shaped convergence angle $6.5^{\circ}$ and power input 55 kW. With increasing the reduction of area ($13,\;21\%$) by drawing, tensile strength was increased and elongation was decreased. With increasing the reduction of area by drawing, hardness in weld metal increased rapidly, while that of base metal increased slowly. In the specimen with the outer diameter smaller than 22 mm, hardness of weld metal was higher than that of base metal. The optimum drawing parameter of area reduction in BAS121 alloys was estimated about $13\%$ because of the work hardening of welds.

Characterisation of Tensile Deformation through Infrared Imaging Technique

  • B. Venkataraman, Baldev Raj;Mukhophadyay, C.K.
    • 비파괴검사학회지
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    • 제22권6호
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    • pp.609-620
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    • 2002
  • It is well known that during tensile testing, a part of the mechanical work done on the specimen is transformed into heat energy. However, the ultimate temperature rise and the rate of temperature rise is related to the nature of the material, conditions of the test and also to the deformation behaviour of the material during loading. The recent advances in infrared sensors and image/data processing techniques enable observation and quantitative analysis of the heat energy dissipated during such tensile tests. In this study, infrared imaging technique has been used to characterise the tensile deformation in AISI type 316 nuclear grade stainless steel. Apart from identifying the different stages during tensile deformation, the technique provided an accurate full-field temperature image by which the point and time of strain localization could be identified. The technique makes it possible to visualise the region of deformation and failure and also predict the exact region of fracture in advance. The effect of thermal gradients on plastic flow in the case of interrupted straining revealed that the interruption of strain and restraining at a lower strain rate not only delays the growth of the temperature gradient, but the temperature rise per unit strain decreases. The technique is a potential NDE tool that can be used for on-line detection of thermal gradients developed during extrusion and metal forming process which can be used for ensuring uniform distribution of plastic strain.

HVOF 용사 건의 이동속도가 WC-Co 코팅층의 두께 형성 및 표면 특성에 미치는 영향 (Effect of Gun Nozzle Movement Speed in HVOF Process on the properties of Coating Thickness and Surface)

  • 김기범;김갑배;정종민;김권후
    • 열처리공학회지
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    • 제35권5호
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    • pp.262-269
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    • 2022
  • In order to process materials such as engineering plastics, which are difficult to mold due to their high strength compared to conventional polymer materials, it is necessary to improve the hardness and strength of parts such as screws and barrels of injection equipment in extrusion system. High-velocity oxygen fuel (HVOF) process is well known for its contribution on enhancement of surface properties. Thus in this study, using the HVOF process, WC coating layers of different thicknesses were bonded to the surface of S30C substrate by controlling the movement speed of the spray nozzle and each property was evaluated to decide the optimization condition. Through the results, the thickness of WC coating layer increased from 0 to 200 ㎛ maximum, along with the decrement of nozzle movement speed and the surface hardness get increased. Especially, the coated layer with the thickness over 180 ㎛ under the nozzle speed 500 mm/s had high hardness than thinner layer. In addition, the amount of wear consumed per unit time was also significantly reduced due to the formation of the coating layer.

Heat waves impair cytoplasmic maturation of oocytes and preimplantation development in Korean native cattle (Hanwoo)

  • Sa, Soo Jin;Jeong, Jiyeon;Cho, Jaesung;Lee, Seung-Hwan;Choi, Inchul
    • 농업과학연구
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    • 제45권3호
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    • pp.493-498
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    • 2018
  • There has been widespread warming and a general increase in summer temperatures over the Korean peninsula ($0.5^{\circ}C$/10 years from 2001 to 2010). South Korea is transforming into a subtropical region, and the productivity of livestock is affected by the climatic changes. In this study, we investigated whether the summer heat waves affect the developmental competency of Korean native cattle (Hanwoo), a taurine type of cattle with a small portion of indicine varieties. We collected oocytes during the summer (heat stress, HS) and autumn (non-HS condition) and examined the developmental competencies including in vitro maturation and preimplantation embryo development. No significant differences were observed between the HS and non-HS oocytes in nuclear maturation (extrusion of the polar body); however, the cleavage and blastocyst rates were significantly lower in the HS group than those in the non-HS group. The lower developmental competence of the HS oocytes compared to the non-HS is, in part, due to insufficient cytoplasmic maturation because of a higher production of Reactive oxygen species (ROS) levels as well as peri/cortical distributed mitochondria in the HS oocytes after in vitro maturation. Next, we examined the ROS and mitochondria distribution and found a significant increase in the levels of ROS in the HS oocytes and a polarized distribution (pericortical cytoplasm) of mitochondria in the HS oocytes. In summary, impaired cytoplasmic maturation of oocytes from exposure to HS affects the preimplantation embryo development by dysfunction of mitochondria. To improve reproductive performance, embryo transfer using cryopreserved embryos/oocytes is recommended in the hot summer season of South Korea.

목분강화 재활용폴리에틸렌 그린복합재료의 기계적 특성, 충격 특성 및 열변형온도 (Mechanical and Impact Properties and Heat Deflection Temperature of Wood Flour-reinforced Recycled Polyethylene Green Composites)

  • 이기영;조동환
    • Elastomers and Composites
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    • 제46권3호
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    • pp.223-230
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    • 2011
  • 본 연구에서는 자원 재활용 측면에서 매트릭스수지로 재활용플라스틱과 보강재로 친환경 천연섬유로 구성된 그린복합재료를 제조하고 그 특성을 탐구하였다. 먼저 재활용폴리에틸렌과 천연섬유인 목분을 이용하여 이축 압출공 정 방법으로 목분함량이 서로 다른 펠렛을 제조하였다. 이 펠렛을 사용하여 압축성형 방법으로 목분/재활용폴리에틸렌 그린복합재료를 제조하고, 그들의 굴곡특성, 인장특성, 충격특성, 열변형온도 그리고 파단거동에 미치는 목분함량의 영향을 조사하였다. 결과는 목분/재활용폴리에틸렌 그린복합재료의 굴곡강도, 굴곡탄성률, 인장탄성률 및 열변형온도 는 목분함량이 증가함에 따라 크게 향상된 반면, 인장강도와 충격특성은 감소한다는 나타내었다. 주사전자현미경으로 관찰한 파단거동은 재활용폴리에틸렌의 유연한 파단현상과 비교하여 목분함량이 증가함에 따라 변화하는 충격거동 경향을 정성적으로 뒷받침해주었다.

SM30C의 탄소강에서 템퍼링 온도에 따른 미세조직 변화가 상온 인장특성에 미치는 영향 (Effect of Microstructure Change According to Tempering Temperature on Room Temperature Tensile Properties in Carbon Steel of SM30C)

  • 지예빈;김기범;정종민;김권후
    • 열처리공학회지
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    • 제36권1호
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    • pp.1-6
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    • 2023
  • In order to process plastic with similar mechanical performance to metal materials, it is necessary to improve the strength and hardness of core parts of the injection equipment in extrusion system. The tempering process is a heat treatment performed to reduce brittleness and improve elongation along with improvement of dimensional defects of martensite formed after quenching. In this study, changes in microstructure and mechanical properties according to temperature were evaluated after quenching and tempering of SM30C material. As a result, the strength and hardness were gradually decreased by tempering at 250~400℃, and the decrease was greatly increased under the tempering condition at 450℃. Under the tempering condition of 200~400℃, the main structure was lath martensite, and the precipitation amount and size of needle-shaped cementite increased along the lath with the increase of the tempering temperature. Most of the shape of cementite has a needle-like structure, and the formation of some spherical cementite is observed. Under the tempering condition of 450℃, a mixed structure of ferrite and martensite was formed according to the decomposition of martensite.